Initializing AMReX (26.09-187-ga2b976ced0f8)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 AMReX (26.09-187-ga2b976ced0f8) initialized Successfully read inputs file ... ERF git hash: 1db94f18f AMReX git hash: 26.09-187-ga2b976ced Problem name (from inputs file) is: "Density Current" Level 0 is land Level 1 is land Using constant kinematic diffusion coefficients momentum : 75 m^2/s temperature : 75 m^2/s scalar : 0 m^2/s Thermal stratification based on gradient of potential temperature Thermal stratification based on gradient of potential temperature Turning off native vertical implicit solve flag because anelastic at level 1 with RK2 scheme. Maximum simulation length based on stop_time: 900 s (elapsed) Adding stop time 900 to start_time 0 Null land surface model! SOLVER CHOICE: At level 0 : compressible with implicit substepping At level 1 : anelastic with no substepping, using the RK2 integrator and fixed density vert_implicit_fac at level 0 : 1 1 0 (theta = 1, moisture = 1, tke = 1, momenta = 1)vert_implicit_fac at level 1 : 0 0 0 use_coriolis : 0 use_gravity : 1 Moisture Model: None Terrain Type: None Flat fitted terrain: false Buildings Type: None Mesh Type: ConstantDz ABL Driver Type: None Coupling Type: One-way Radiation Model: None Gradp_type : 0 Buoyancy_type at level 0 : 2 Buoyancy_type at level 1 : 3 Advection Choices: dycore_horiz_adv_type : Upwind_3rd dycore_vert_adv_type : Upwind_3rd dryscal_horiz_adv_type : Upwind_3rd dryscal_vert_adv_type : Upwind_3rd moistscal_horiz_adv_type : WENO3 moistscal_vert_adv_type : WENO3 Diffusion choices: rho0_trans : 1 alpha_T : 75 alpha_C : 0 dynamic_viscosity : 75 Sponge choices: Rayleigh damping : None w damping : 0 (coeff = -1 * dz/dt**2) Turbulence Settings at level 0 Using DNS model at level 0 Turbulence Settings at level 1 Using DNS model at level 1 WRF lateral boundary density forcing: disabled WRF lateral boundary cloud-water/cloud-ice forcing: disabled Refinement ratio at level 1 set to be 2 1 2 Creating new distribution map on level: 0 BA FROM SCRATCH AT LEVEL 0 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,31) (0,0,0)) ((32,0,0) (63,0,31) (0,0,0)) ((64,0,0) (95,0,31) (0,0,0)) ((96,0,0) (127,0,31) (0,0,0)) ) Problem name "density current" does not add any velocity perturbations. Creating new distribution map on level: 1 BA FROM SCRATCH AT LEVEL 1 (BoxArray maxbox(3) m_ref->m_hash_sig(0) ((0,0,0) (15,0,63) (0,0,0)) ((16,0,0) (31,0,63) (0,0,0)) ((32,0,0) (47,0,63) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (47,0,63) (0,0,0)) Problem name "density current" does not add any velocity perturbations. Projecting initial velocity field at level 1 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0 0 and volume-weighted sum 0 Subtracting 0 from rhs in subdomain 0 Sum after subtraction 0 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 0 0 and volume-weighted sum 0 Based on cfl of one Compressible dt at level 0 would be: 1.730975185 (terrain aware) 1.730975185 (terrain unaware) Anelastic dt at level 0 would be undefined Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2882620091 (terrain aware) 0.2882620091 (terrain unaware) Anelastic dt at level 1 would be undefined Fixed dt at level 1 is: 2 smallest grid spacing at level 1 = 100 dt at level 1 = 2 Viscous CFL is 0.007500000286 Max value of |p_hse - p_eos| is 0.015625, less than the tolerance 0.9886983633 Min/max value of dp0/dx are zero Min/max value of dp0/dy are zero Min/max value of dp0/dz + rho0*|g| are less than 0.0009428962367 Min/max value of -dp'/dz + buoyancy are -0.4841516316 0.0003076106077 with min at face (0,0,15) with max at face (10,0,24) 3DPlotfile write time = 0.006267072 seconds. Coarse STEP 1 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.730975185 (terrain aware) 1.730975185 (terrain unaware) Anelastic dt at level 0 would be undefined Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2882620091 (terrain aware) 0.2882620091 (terrain unaware) Anelastic dt at level 1 would be undefined Fixed dt at level 1 is: 2 [Level 0 step 1] ADVANCE from elapsed time = 0 to 2 with dt = 2 Making slow rhs at time 0 for fast variables advancing from 0 to 0.6666666666667 Fast time integration at level 0 from 0 to 0.6666666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 0 to 0.6666666666667 with dt = 0.6666666666667 using RHS created at 0 Making slow rhs at time 0.6666666666667 for fast variables advancing from 0 to 1 Fast time integration at level 0 from 0 to 0.5 with dt = 0.5 Fast time integration at level 0 from 0.5 to 1 with dt = 0.5 Time integration of scalars at level 0 from 0 to 1 with dt = 1 using RHS created at 0.6666666666667 Making slow rhs at time 1 for fast variables advancing from 0 to 2 Fast time integration at level 0 from 0 to 0.5 with dt = 0.5 Fast time integration at level 0 from 0.5 to 1 with dt = 0.5 Fast time integration at level 0 from 1 to 1.5 with dt = 0.5 Fast time integration at level 0 from 1.5 to 2 with dt = 0.5 Time integration of scalars at level 0 from 0 to 2 with dt = 2 using RHS created at 1 Done with advance_dycore at level 0 [Level 0 step 1] Advanced 4096 cells [Level 1 step 1] ADVANCE from elapsed time = 0 to 2 with dt = 2 Making slow rhs at time 0 for fast variables advancing from 0 to 2 No-substepping time integration at level 1 to 2 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007802381879 0.01355545595 and volume-weighted sum 0.6377664208 Subtracting 2.076062516e-10 from rhs in subdomain 0 Sum after subtraction 0.0350824222 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007802384207 MLMG: Initial residual (resid0) = 0.0007802384207 MLMG: Final Iter. 3 resid, resid/bnorm = 1.900189091e-06, 0.002435395494 MLMG: Timers: Solve = 0.00096512 Iter = 0.000764693 Bottom = 8.4301e-05 Time in solve 0.001348584 Max/L2 norm of divergence after solve at level 1 : 1.900341886e-06 8.121000974e-06 and volume-weighted sum 0.5837696195 Time integration of scalars at level 1 from 0 to 2 with dt = 2 using RHS created at 0 Making slow rhs at time 2 for fast variables advancing from 0 to 2 No-substepping time integration at level 1 to 2 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.685628376e-06 9.954818779e-06 and volume-weighted sum 0.583776474 Subtracting 1.900314073e-10 from rhs in subdomain 0 Sum after subtraction 0.0003001332516 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.685628376e-06 9.954818779e-06 and volume-weighted sum 0.583776474 Time integration of scalars at level 1 from 0 to 2 with dt = 2 using RHS created at 2 Done with advance_dycore at level 1 [Level 1 step 1] Advanced 3072 cells Coarse STEP 1 ends. TIME = 2 DT = 2 Timestep time = 0.015488367 seconds. Coarse STEP 2 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.73097444 (terrain aware) 1.73097444 (terrain unaware) Anelastic dt at level 0 would be: 215.1662985 (terrain aware) 215.1662985 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2881863484 (terrain aware) 0.2881863484 (terrain unaware) Anelastic dt at level 1 would be: 329.8363064 (terrain aware) 329.8363064 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 2] ADVANCE from elapsed time = 2 to 4 with dt = 2 Making slow rhs at time 2 for fast variables advancing from 2 to 2.666666666667 Fast time integration at level 0 from 2 to 2.666666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 2 to 2.666666666667 with dt = 0.6666666666667 using RHS created at 2 Making slow rhs at time 2.666666666667 for fast variables advancing from 2 to 3 Fast time integration at level 0 from 2 to 2.5 with dt = 0.5 Fast time integration at level 0 from 2.5 to 3 with dt = 0.5 Time integration of scalars at level 0 from 2 to 3 with dt = 1 using RHS created at 2.666666666667 Making slow rhs at time 3 for fast variables advancing from 2 to 4 Fast time integration at level 0 from 2 to 2.5 with dt = 0.5 Fast time integration at level 0 from 2.5 to 3 with dt = 0.5 Fast time integration at level 0 from 3 to 3.5 with dt = 0.5 Fast time integration at level 0 from 3.5 to 4 with dt = 0.5 Time integration of scalars at level 0 from 2 to 4 with dt = 2 using RHS created at 3 Done with advance_dycore at level 0 [Level 0 step 2] Advanced 4096 cells [Level 1 step 2] ADVANCE from elapsed time = 2 to 4 with dt = 2 Making slow rhs at time 2 for fast variables advancing from 2 to 4 No-substepping time integration at level 1 to 4 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.528093996e-06 2.598192259e-05 and volume-weighted sum -27.61585236 Subtracting -8.989535338e-09 from rhs in subdomain 0 Sum after subtraction 0.0004038156476 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 4.528093996e-06 2.598192259e-05 and volume-weighted sum -27.61585236 Time integration of scalars at level 1 from 2 to 4 with dt = 2 using RHS created at 2 Making slow rhs at time 4 for fast variables advancing from 2 to 4 No-substepping time integration at level 1 to 4 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.34534013e-06 3.132377969e-05 and volume-weighted sum -27.61533356 Subtracting -8.989366584e-09 from rhs in subdomain 0 Sum after subtraction -0.003150489647 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 4.34534013e-06 3.132377969e-05 and volume-weighted sum -27.61533356 Time integration of scalars at level 1 from 2 to 4 with dt = 2 using RHS created at 4 Done with advance_dycore at level 1 [Level 1 step 2] Advanced 3072 cells Coarse STEP 2 ends. TIME = 4 DT = 2 Timestep time = 0.014632122 seconds. Coarse STEP 3 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.730929736 (terrain aware) 1.730929736 (terrain unaware) Anelastic dt at level 0 would be: 133.3909873 (terrain aware) 133.3909873 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.288110725 (terrain aware) 0.288110725 (terrain unaware) Anelastic dt at level 1 would be: 165.0171637 (terrain aware) 165.0171637 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 3] ADVANCE from elapsed time = 4 to 6 with dt = 2 Making slow rhs at time 4 for fast variables advancing from 4 to 4.666666666667 Fast time integration at level 0 from 4 to 4.666666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 4 to 4.666666666667 with dt = 0.6666666666667 using RHS created at 4 Making slow rhs at time 4.666666666667 for fast variables advancing from 4 to 5 Fast time integration at level 0 from 4 to 4.5 with dt = 0.5 Fast time integration at level 0 from 4.5 to 5 with dt = 0.5 Time integration of scalars at level 0 from 4 to 5 with dt = 1 using RHS created at 4.666666666667 Making slow rhs at time 5 for fast variables advancing from 4 to 6 Fast time integration at level 0 from 4 to 4.5 with dt = 0.5 Fast time integration at level 0 from 4.5 to 5 with dt = 0.5 Fast time integration at level 0 from 5 to 5.5 with dt = 0.5 Fast time integration at level 0 from 5.5 to 6 with dt = 0.5 Time integration of scalars at level 0 from 4 to 6 with dt = 2 using RHS created at 5 Done with advance_dycore at level 0 [Level 0 step 3] Advanced 4096 cells [Level 1 step 3] ADVANCE from elapsed time = 4 to 6 with dt = 2 Making slow rhs at time 4 for fast variables advancing from 4 to 6 No-substepping time integration at level 1 to 6 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.164257113e-05 0.0003000646248 and volume-weighted sum 98.91777802 Subtracting 3.219979661e-08 from rhs in subdomain 0 Sum after subtraction -0.002753949957 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.161036774e-05 MLMG: Initial residual (resid0) = 7.161036774e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.426864952e-06, 0.1176766083 MLMG: Timers: Solve = 0.000519045 Iter = 0.000314997 Bottom = 2.7962e-05 Time in solve 0.000852974 Max/L2 norm of divergence after solve at level 1 : 8.45908653e-06 2.539165143e-05 and volume-weighted sum 98.91821289 Time integration of scalars at level 1 from 4 to 6 with dt = 2 using RHS created at 4 Making slow rhs at time 6 for fast variables advancing from 4 to 6 No-substepping time integration at level 1 to 6 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.172453818e-06 2.786266487e-05 and volume-weighted sum 98.91805267 Subtracting 3.219988542e-08 from rhs in subdomain 0 Sum after subtraction -6.912159733e-05 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 8.172453818e-06 2.786266487e-05 and volume-weighted sum 98.91805267 Time integration of scalars at level 1 from 4 to 6 with dt = 2 using RHS created at 6 Done with advance_dycore at level 1 [Level 1 step 3] Advanced 3072 cells Coarse STEP 3 ends. TIME = 6 DT = 2 Timestep time = 0.014791412 seconds. Coarse STEP 4 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.7303699 (terrain aware) 1.7303699 (terrain unaware) Anelastic dt at level 0 would be: 116.1158735 (terrain aware) 116.1158735 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2880346732 (terrain aware) 0.2880346732 (terrain unaware) Anelastic dt at level 1 would be: 109.9353106 (terrain aware) 109.9353106 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 4] ADVANCE from elapsed time = 6 to 8 with dt = 2 Making slow rhs at time 6 for fast variables advancing from 6 to 6.666666666667 Fast time integration at level 0 from 6 to 6.666666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 6 to 6.666666666667 with dt = 0.6666666666667 using RHS created at 6 Making slow rhs at time 6.666666666667 for fast variables advancing from 6 to 7 Fast time integration at level 0 from 6 to 6.5 with dt = 0.5 Fast time integration at level 0 from 6.5 to 7 with dt = 0.5 Time integration of scalars at level 0 from 6 to 7 with dt = 1 using RHS created at 6.666666666667 Making slow rhs at time 7 for fast variables advancing from 6 to 8 Fast time integration at level 0 from 6 to 6.5 with dt = 0.5 Fast time integration at level 0 from 6.5 to 7 with dt = 0.5 Fast time integration at level 0 from 7 to 7.5 with dt = 0.5 Fast time integration at level 0 from 7.5 to 8 with dt = 0.5 Time integration of scalars at level 0 from 6 to 8 with dt = 2 using RHS created at 7 Done with advance_dycore at level 0 [Level 0 step 4] Advanced 4096 cells [Level 1 step 4] ADVANCE from elapsed time = 6 to 8 with dt = 2 Making slow rhs at time 6 for fast variables advancing from 6 to 8 No-substepping time integration at level 1 to 8 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002057097154 0.0009476008709 and volume-weighted sum 980.208374 Subtracting 3.190782536e-07 from rhs in subdomain 0 Sum after subtraction 0.008090864867 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002053906355 MLMG: Initial residual (resid0) = 0.0002053906355 MLMG: Final Iter. 2 resid, resid/bnorm = 1.522457751e-06, 0.007412498351 MLMG: Timers: Solve = 0.001170408 Iter = 0.000817164 Bottom = 9.886e-05 Time in solve 0.001504599 Max/L2 norm of divergence after solve at level 1 : 1.203210559e-06 1.86572488e-05 and volume-weighted sum 980.2108154 Time integration of scalars at level 1 from 6 to 8 with dt = 2 using RHS created at 6 Making slow rhs at time 8 for fast variables advancing from 6 to 8 No-substepping time integration at level 1 to 8 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.519842044e-06 2.645208951e-05 and volume-weighted sum 980.2113037 Subtracting 3.190791915e-07 from rhs in subdomain 0 Sum after subtraction -0.001324224286 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.519842044e-06 2.645208951e-05 and volume-weighted sum 980.2113037 Time integration of scalars at level 1 from 6 to 8 with dt = 2 using RHS created at 8 Done with advance_dycore at level 1 [Level 1 step 4] Advanced 3072 cells Coarse STEP 4 ends. TIME = 8 DT = 2 Timestep time = 0.015652347 seconds. Coarse STEP 5 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.728457783 (terrain aware) 1.728457783 (terrain unaware) Anelastic dt at level 0 would be: 105.807341 (terrain aware) 105.807341 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2879561441 (terrain aware) 0.2879561441 (terrain unaware) Anelastic dt at level 1 would be: 82.26302024 (terrain aware) 82.26302024 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 5] ADVANCE from elapsed time = 8 to 10 with dt = 2 Making slow rhs at time 8 for fast variables advancing from 8 to 8.666666666667 Fast time integration at level 0 from 8 to 8.666666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 8 to 8.666666666667 with dt = 0.6666666666667 using RHS created at 8 Making slow rhs at time 8.666666666667 for fast variables advancing from 8 to 9 Fast time integration at level 0 from 8 to 8.5 with dt = 0.5 Fast time integration at level 0 from 8.5 to 9 with dt = 0.5 Time integration of scalars at level 0 from 8 to 9 with dt = 1 using RHS created at 8.666666666667 Making slow rhs at time 9 for fast variables advancing from 8 to 10 Fast time integration at level 0 from 8 to 8.5 with dt = 0.5 Fast time integration at level 0 from 8.5 to 9 with dt = 0.5 Fast time integration at level 0 from 9 to 9.5 with dt = 0.5 Fast time integration at level 0 from 9.5 to 10 with dt = 0.5 Time integration of scalars at level 0 from 8 to 10 with dt = 2 using RHS created at 9 Done with advance_dycore at level 0 [Level 0 step 5] Advanced 4096 cells [Level 1 step 5] ADVANCE from elapsed time = 8 to 10 with dt = 2 Making slow rhs at time 8 for fast variables advancing from 8 to 10 No-substepping time integration at level 1 to 10 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003279543016 0.00167520938 and volume-weighted sum 3432.617188 Subtracting 1.117388365e-06 from rhs in subdomain 0 Sum after subtraction -0.006228219718 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003268369182 MLMG: Initial residual (resid0) = 0.0003268369182 MLMG: Final Iter. 2 resid, resid/bnorm = 2.530410711e-06, 0.007742120419 MLMG: Timers: Solve = 0.000734127 Iter = 0.000528028 Bottom = 5.3781e-05 Time in solve 0.001057218 Max/L2 norm of divergence after solve at level 1 : 2.409447916e-06 6.318531814e-05 and volume-weighted sum 3432.616943 Time integration of scalars at level 1 from 8 to 10 with dt = 2 using RHS created at 8 Making slow rhs at time 10 for fast variables advancing from 8 to 10 No-substepping time integration at level 1 to 10 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.917564416e-06 6.785528967e-05 and volume-weighted sum 3432.616699 Subtracting 1.117388251e-06 from rhs in subdomain 0 Sum after subtraction -0.00158615876 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 2.917564416e-06 6.785528967e-05 and volume-weighted sum 3432.616699 Time integration of scalars at level 1 from 8 to 10 with dt = 2 using RHS created at 10 Done with advance_dycore at level 1 [Level 1 step 5] Advanced 3072 cells Coarse STEP 5 ends. TIME = 10 DT = 2 Timestep time = 0.015128135 seconds. Coarse STEP 6 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.725163434 (terrain aware) 1.725163434 (terrain unaware) Anelastic dt at level 0 would be: 95.15690662 (terrain aware) 95.15690662 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2878718594 (terrain aware) 0.2878718594 (terrain unaware) Anelastic dt at level 1 would be: 65.46695135 (terrain aware) 65.46695135 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 6] ADVANCE from elapsed time = 10 to 12 with dt = 2 Making slow rhs at time 10 for fast variables advancing from 10 to 10.66666666667 Fast time integration at level 0 from 10 to 10.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 10 to 10.66666666667 with dt = 0.6666666666667 using RHS created at 10 Making slow rhs at time 10.66666666667 for fast variables advancing from 10 to 11 Fast time integration at level 0 from 10 to 10.5 with dt = 0.5 Fast time integration at level 0 from 10.5 to 11 with dt = 0.5 Time integration of scalars at level 0 from 10 to 11 with dt = 1 using RHS created at 10.66666666667 Making slow rhs at time 11 for fast variables advancing from 10 to 12 Fast time integration at level 0 from 10 to 10.5 with dt = 0.5 Fast time integration at level 0 from 10.5 to 11 with dt = 0.5 Fast time integration at level 0 from 11 to 11.5 with dt = 0.5 Fast time integration at level 0 from 11.5 to 12 with dt = 0.5 Time integration of scalars at level 0 from 10 to 12 with dt = 2 using RHS created at 11 Done with advance_dycore at level 0 [Level 0 step 6] Advanced 4096 cells [Level 1 step 6] ADVANCE from elapsed time = 10 to 12 with dt = 2 Making slow rhs at time 10 for fast variables advancing from 10 to 12 No-substepping time integration at level 1 to 12 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006976661971 0.0024476049 and volume-weighted sum 7918.164062 Subtracting 2.577527312e-06 from rhs in subdomain 0 Sum after subtraction 0.006519258022 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006950886454 MLMG: Initial residual (resid0) = 0.0006950886454 MLMG: Final Iter. 2 resid, resid/bnorm = 3.220571671e-06, 0.004633325152 MLMG: Timers: Solve = 0.000739973 Iter = 0.00052952 Bottom = 5.4893e-05 Time in solve 0.001059063 Max/L2 norm of divergence after solve at level 1 : 4.485365935e-06 0.0001441081695 and volume-weighted sum 7918.174316 Time integration of scalars at level 1 from 10 to 12 with dt = 2 using RHS created at 10 Making slow rhs at time 12 for fast variables advancing from 10 to 12 No-substepping time integration at level 1 to 12 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.922723747e-06 0.0001474263554 and volume-weighted sum 7918.17627 Subtracting 2.577531404e-06 from rhs in subdomain 0 Sum after subtraction -0.001862645149 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 4.922723747e-06 0.0001474263554 and volume-weighted sum 7918.17627 Time integration of scalars at level 1 from 10 to 12 with dt = 2 using RHS created at 12 Done with advance_dycore at level 1 [Level 1 step 6] Advanced 3072 cells Coarse STEP 6 ends. TIME = 12 DT = 2 Timestep time = 0.015796909 seconds. Coarse STEP 7 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.72142667 (terrain aware) 1.72142667 (terrain unaware) Anelastic dt at level 0 would be: 84.04106015 (terrain aware) 84.04106015 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2877793046 (terrain aware) 0.2877793046 (terrain unaware) Anelastic dt at level 1 would be: 54.11133686 (terrain aware) 54.11133686 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 7] ADVANCE from elapsed time = 12 to 14 with dt = 2 Making slow rhs at time 12 for fast variables advancing from 12 to 12.66666666667 Fast time integration at level 0 from 12 to 12.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 12 to 12.66666666667 with dt = 0.6666666666667 using RHS created at 12 Making slow rhs at time 12.66666666667 for fast variables advancing from 12 to 13 Fast time integration at level 0 from 12 to 12.5 with dt = 0.5 Fast time integration at level 0 from 12.5 to 13 with dt = 0.5 Time integration of scalars at level 0 from 12 to 13 with dt = 1 using RHS created at 12.66666666667 Making slow rhs at time 13 for fast variables advancing from 12 to 14 Fast time integration at level 0 from 12 to 12.5 with dt = 0.5 Fast time integration at level 0 from 12.5 to 13 with dt = 0.5 Fast time integration at level 0 from 13 to 13.5 with dt = 0.5 Fast time integration at level 0 from 13.5 to 14 with dt = 0.5 Time integration of scalars at level 0 from 12 to 14 with dt = 2 using RHS created at 13 Done with advance_dycore at level 0 [Level 0 step 7] Advanced 4096 cells [Level 1 step 7] ADVANCE from elapsed time = 12 to 14 with dt = 2 Making slow rhs at time 12 for fast variables advancing from 12 to 14 No-substepping time integration at level 1 to 14 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006991951959 0.00273479172 and volume-weighted sum 14074.24316 Subtracting 4.581459507e-06 from rhs in subdomain 0 Sum after subtraction 0.01763692126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007037766627 MLMG: Initial residual (resid0) = 0.0007037766627 MLMG: Final Iter. 2 resid, resid/bnorm = 3.332912456e-06, 0.00473575294 MLMG: Timers: Solve = 0.000745545 Iter = 0.000544242 Bottom = 6.8235e-05 Time in solve 0.001065182 Max/L2 norm of divergence after solve at level 1 : 6.501068128e-06 0.0002548214688 and volume-weighted sum 14074.25195 Time integration of scalars at level 1 from 12 to 14 with dt = 2 using RHS created at 12 Making slow rhs at time 14 for fast variables advancing from 12 to 14 No-substepping time integration at level 1 to 14 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.363931218e-06 0.000257629581 and volume-weighted sum 14074.2627 Subtracting 4.581465873e-06 from rhs in subdomain 0 Sum after subtraction -0.004307366908 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 7.363931218e-06 0.000257629581 and volume-weighted sum 14074.2627 Time integration of scalars at level 1 from 12 to 14 with dt = 2 using RHS created at 14 Done with advance_dycore at level 1 [Level 1 step 7] Advanced 3072 cells Coarse STEP 7 ends. TIME = 14 DT = 2 Timestep time = 0.015092642 seconds. Coarse STEP 8 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71835569 (terrain aware) 1.71835569 (terrain unaware) Anelastic dt at level 0 would be: 75.41446097 (terrain aware) 75.41446097 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.287677213 (terrain aware) 0.287677213 (terrain unaware) Anelastic dt at level 1 would be: 45.9139531 (terrain aware) 45.9139531 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 8] ADVANCE from elapsed time = 14 to 16 with dt = 2 Making slow rhs at time 14 for fast variables advancing from 14 to 14.66666666667 Fast time integration at level 0 from 14 to 14.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 14 to 14.66666666667 with dt = 0.6666666666667 using RHS created at 14 Making slow rhs at time 14.66666666667 for fast variables advancing from 14 to 15 Fast time integration at level 0 from 14 to 14.5 with dt = 0.5 Fast time integration at level 0 from 14.5 to 15 with dt = 0.5 Time integration of scalars at level 0 from 14 to 15 with dt = 1 using RHS created at 14.66666666667 Making slow rhs at time 15 for fast variables advancing from 14 to 16 Fast time integration at level 0 from 14 to 14.5 with dt = 0.5 Fast time integration at level 0 from 14.5 to 15 with dt = 0.5 Fast time integration at level 0 from 15 to 15.5 with dt = 0.5 Fast time integration at level 0 from 15.5 to 16 with dt = 0.5 Time integration of scalars at level 0 from 14 to 16 with dt = 2 using RHS created at 15 Done with advance_dycore at level 0 [Level 0 step 8] Advanced 4096 cells [Level 1 step 8] ADVANCE from elapsed time = 14 to 16 with dt = 2 Making slow rhs at time 14 for fast variables advancing from 14 to 16 No-substepping time integration at level 1 to 16 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000563539681 0.002192158252 and volume-weighted sum 20605.67969 Subtracting 6.707577995e-06 from rhs in subdomain 0 Sum after subtraction 0.004292814992 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005702472408 MLMG: Initial residual (resid0) = 0.0005702472408 MLMG: Final Iter. 2 resid, resid/bnorm = 2.84062844e-06, 0.004981398117 MLMG: Timers: Solve = 0.000728084 Iter = 0.000538772 Bottom = 5.421e-05 Time in solve 0.001073981 Max/L2 norm of divergence after solve at level 1 : 8.117931429e-06 0.0003721552785 and volume-weighted sum 20605.67773 Time integration of scalars at level 1 from 14 to 16 with dt = 2 using RHS created at 14 Making slow rhs at time 16 for fast variables advancing from 14 to 16 No-substepping time integration at level 1 to 16 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.729839803e-06 0.0003748459858 and volume-weighted sum 20605.68359 Subtracting 6.707579359e-06 from rhs in subdomain 0 Sum after subtraction 0.00335421646 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 9.729839803e-06 0.0003748459858 and volume-weighted sum 20605.68359 Time integration of scalars at level 1 from 14 to 16 with dt = 2 using RHS created at 16 Done with advance_dycore at level 1 [Level 1 step 8] Advanced 3072 cells Coarse STEP 8 ends. TIME = 16 DT = 2 Timestep time = 0.015823179 seconds. Coarse STEP 9 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.716326897 (terrain aware) 1.716326897 (terrain unaware) Anelastic dt at level 0 would be: 71.27833737 (terrain aware) 71.27833737 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2875695707 (terrain aware) 0.2875695707 (terrain unaware) Anelastic dt at level 1 would be: 39.75788534 (terrain aware) 39.75788534 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 9] ADVANCE from elapsed time = 16 to 18 with dt = 2 Making slow rhs at time 16 for fast variables advancing from 16 to 16.66666666667 Fast time integration at level 0 from 16 to 16.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 16 to 16.66666666667 with dt = 0.6666666666667 using RHS created at 16 Making slow rhs at time 16.66666666667 for fast variables advancing from 16 to 17 Fast time integration at level 0 from 16 to 16.5 with dt = 0.5 Fast time integration at level 0 from 16.5 to 17 with dt = 0.5 Time integration of scalars at level 0 from 16 to 17 with dt = 1 using RHS created at 16.66666666667 Making slow rhs at time 17 for fast variables advancing from 16 to 18 Fast time integration at level 0 from 16 to 16.5 with dt = 0.5 Fast time integration at level 0 from 16.5 to 17 with dt = 0.5 Fast time integration at level 0 from 17 to 17.5 with dt = 0.5 Fast time integration at level 0 from 17.5 to 18 with dt = 0.5 Time integration of scalars at level 0 from 16 to 18 with dt = 2 using RHS created at 17 Done with advance_dycore at level 0 [Level 0 step 9] Advanced 4096 cells [Level 1 step 9] ADVANCE from elapsed time = 16 to 18 with dt = 2 Making slow rhs at time 16 for fast variables advancing from 16 to 18 No-substepping time integration at level 1 to 18 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003080060997 0.001587305334 and volume-weighted sum 25667.82422 Subtracting 8.35541141e-06 from rhs in subdomain 0 Sum after subtraction -0.01781154424 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000299650681 MLMG: Initial residual (resid0) = 0.000299650681 MLMG: Final Iter. 2 resid, resid/bnorm = 2.130320354e-06, 0.007109345868 MLMG: Timers: Solve = 0.000796313 Iter = 0.000597137 Bottom = 0.000112525 Time in solve 0.001113228 Max/L2 norm of divergence after solve at level 1 : 9.583091014e-06 0.0004631980264 and volume-weighted sum 25667.80859 Time integration of scalars at level 1 from 16 to 18 with dt = 2 using RHS created at 16 Making slow rhs at time 18 for fast variables advancing from 16 to 18 No-substepping time integration at level 1 to 18 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.145682472e-05 0.0004660833511 and volume-weighted sum 25667.82422 Subtracting 8.35541141e-06 from rhs in subdomain 0 Sum after subtraction -0.01878652349 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.145682472e-05 0.0004660833511 and volume-weighted sum 25667.82422 Time integration of scalars at level 1 from 16 to 18 with dt = 2 using RHS created at 18 Done with advance_dycore at level 1 [Level 1 step 9] Advanced 3072 cells Coarse STEP 9 ends. TIME = 18 DT = 2 Timestep time = 0.014938763 seconds. Coarse STEP 10 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.715016041 (terrain aware) 1.715016041 (terrain unaware) Anelastic dt at level 0 would be: 72.86077391 (terrain aware) 72.86077391 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2874606619 (terrain aware) 0.2874606619 (terrain unaware) Anelastic dt at level 1 would be: 35.02329774 (terrain aware) 35.02329774 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 10] ADVANCE from elapsed time = 18 to 20 with dt = 2 Making slow rhs at time 18 for fast variables advancing from 18 to 18.66666666667 Fast time integration at level 0 from 18 to 18.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 18 to 18.66666666667 with dt = 0.6666666666667 using RHS created at 18 Making slow rhs at time 18.66666666667 for fast variables advancing from 18 to 19 Fast time integration at level 0 from 18 to 18.5 with dt = 0.5 Fast time integration at level 0 from 18.5 to 19 with dt = 0.5 Time integration of scalars at level 0 from 18 to 19 with dt = 1 using RHS created at 18.66666666667 Making slow rhs at time 19 for fast variables advancing from 18 to 20 Fast time integration at level 0 from 18 to 18.5 with dt = 0.5 Fast time integration at level 0 from 18.5 to 19 with dt = 0.5 Fast time integration at level 0 from 19 to 19.5 with dt = 0.5 Fast time integration at level 0 from 19.5 to 20 with dt = 0.5 Time integration of scalars at level 0 from 18 to 20 with dt = 2 using RHS created at 19 Done with advance_dycore at level 0 [Level 0 step 10] Advanced 4096 cells [Level 1 step 10] ADVANCE from elapsed time = 18 to 20 with dt = 2 Making slow rhs at time 18 for fast variables advancing from 18 to 20 No-substepping time integration at level 1 to 20 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003921581665 0.001762910746 and volume-weighted sum 27533.75977 Subtracting 8.962811989e-06 from rhs in subdomain 0 Sum after subtraction 0.01559965312 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004011209821 MLMG: Initial residual (resid0) = 0.0004011209821 MLMG: Final Iter. 2 resid, resid/bnorm = 2.414773917e-06, 0.006020064 MLMG: Timers: Solve = 0.000740773 Iter = 0.00053118 Bottom = 5.6253e-05 Time in solve 0.001086141 Max/L2 norm of divergence after solve at level 1 : 1.137734216e-05 0.0004968647263 and volume-weighted sum 27533.77734 Time integration of scalars at level 1 from 18 to 20 with dt = 2 using RHS created at 18 Making slow rhs at time 20 for fast variables advancing from 18 to 20 No-substepping time integration at level 1 to 20 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.239824633e-05 0.0005003581755 and volume-weighted sum 27533.76562 Subtracting 8.962814718e-06 from rhs in subdomain 0 Sum after subtraction -0.008039932698 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.239824633e-05 0.0005003581755 and volume-weighted sum 27533.76562 Time integration of scalars at level 1 from 18 to 20 with dt = 2 using RHS created at 20 Done with advance_dycore at level 1 [Level 1 step 10] Advanced 3072 cells Coarse STEP 10 ends. TIME = 20 DT = 2 Timestep time = 0.015547832 seconds. Coarse STEP 11 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.713909928 (terrain aware) 1.713909928 (terrain unaware) Anelastic dt at level 0 would be: 75.37794955 (terrain aware) 75.37794955 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2873572106 (terrain aware) 0.2873572106 (terrain unaware) Anelastic dt at level 1 would be: 31.32432414 (terrain aware) 31.32432414 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 11] ADVANCE from elapsed time = 20 to 22 with dt = 2 Making slow rhs at time 20 for fast variables advancing from 20 to 20.66666666667 Fast time integration at level 0 from 20 to 20.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 20 to 20.66666666667 with dt = 0.6666666666667 using RHS created at 20 Making slow rhs at time 20.66666666667 for fast variables advancing from 20 to 21 Fast time integration at level 0 from 20 to 20.5 with dt = 0.5 Fast time integration at level 0 from 20.5 to 21 with dt = 0.5 Time integration of scalars at level 0 from 20 to 21 with dt = 1 using RHS created at 20.66666666667 Making slow rhs at time 21 for fast variables advancing from 20 to 22 Fast time integration at level 0 from 20 to 20.5 with dt = 0.5 Fast time integration at level 0 from 20.5 to 21 with dt = 0.5 Fast time integration at level 0 from 21 to 21.5 with dt = 0.5 Fast time integration at level 0 from 21.5 to 22 with dt = 0.5 Time integration of scalars at level 0 from 20 to 22 with dt = 2 using RHS created at 21 Done with advance_dycore at level 0 [Level 0 step 11] Advanced 4096 cells [Level 1 step 11] ADVANCE from elapsed time = 20 to 22 with dt = 2 Making slow rhs at time 20 for fast variables advancing from 20 to 22 No-substepping time integration at level 1 to 22 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004127047141 0.002143425401 and volume-weighted sum 25395.00391 Subtracting 8.26660289e-06 from rhs in subdomain 0 Sum after subtraction -0.009313225746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004209713079 MLMG: Initial residual (resid0) = 0.0004209713079 MLMG: Final Iter. 2 resid, resid/bnorm = 2.830114681e-06, 0.006722820923 MLMG: Timers: Solve = 0.000738103 Iter = 0.000535943 Bottom = 5.3893e-05 Time in solve 0.001054977 Max/L2 norm of divergence after solve at level 1 : 1.109659934e-05 0.0004584813432 and volume-weighted sum 25394.99023 Time integration of scalars at level 1 from 20 to 22 with dt = 2 using RHS created at 20 Making slow rhs at time 22 for fast variables advancing from 20 to 22 No-substepping time integration at level 1 to 22 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.21966732e-05 0.0004632465716 and volume-weighted sum 25394.99023 Subtracting 8.266598343e-06 from rhs in subdomain 0 Sum after subtraction 0.007152266335 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.21966732e-05 0.0004632465716 and volume-weighted sum 25394.99023 Time integration of scalars at level 1 from 20 to 22 with dt = 2 using RHS created at 22 Done with advance_dycore at level 1 [Level 1 step 11] Advanced 3072 cells Coarse STEP 11 ends. TIME = 22 DT = 2 Timestep time = 0.015956459 seconds. Coarse STEP 12 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.712632303 (terrain aware) 1.712632303 (terrain unaware) Anelastic dt at level 0 would be: 72.42710006 (terrain aware) 72.42710006 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2872625137 (terrain aware) 0.2872625137 (terrain unaware) Anelastic dt at level 1 would be: 28.39494901 (terrain aware) 28.39494901 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 12] ADVANCE from elapsed time = 22 to 24 with dt = 2 Making slow rhs at time 22 for fast variables advancing from 22 to 22.66666666667 Fast time integration at level 0 from 22 to 22.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 22 to 22.66666666667 with dt = 0.6666666666667 using RHS created at 22 Making slow rhs at time 22.66666666667 for fast variables advancing from 22 to 23 Fast time integration at level 0 from 22 to 22.5 with dt = 0.5 Fast time integration at level 0 from 22.5 to 23 with dt = 0.5 Time integration of scalars at level 0 from 22 to 23 with dt = 1 using RHS created at 22.66666666667 Making slow rhs at time 23 for fast variables advancing from 22 to 24 Fast time integration at level 0 from 22 to 22.5 with dt = 0.5 Fast time integration at level 0 from 22.5 to 23 with dt = 0.5 Fast time integration at level 0 from 23 to 23.5 with dt = 0.5 Fast time integration at level 0 from 23.5 to 24 with dt = 0.5 Time integration of scalars at level 0 from 22 to 24 with dt = 2 using RHS created at 23 Done with advance_dycore at level 0 [Level 0 step 12] Advanced 4096 cells [Level 1 step 12] ADVANCE from elapsed time = 22 to 24 with dt = 2 Making slow rhs at time 22 for fast variables advancing from 22 to 24 No-substepping time integration at level 1 to 24 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004910430289 0.003050384577 and volume-weighted sum 19872.6875 Subtracting 6.468973879e-06 from rhs in subdomain 0 Sum after subtraction -0.007683411241 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004975119955 MLMG: Initial residual (resid0) = 0.0004975119955 MLMG: Final Iter. 2 resid, resid/bnorm = 4.996516509e-06, 0.01004300732 MLMG: Timers: Solve = 0.000753818 Iter = 0.000553503 Bottom = 5.6435e-05 Time in solve 0.001072342 Max/L2 norm of divergence after solve at level 1 : 1.146509021e-05 0.0003592452267 and volume-weighted sum 19872.68555 Time integration of scalars at level 1 from 22 to 24 with dt = 2 using RHS created at 22 Making slow rhs at time 24 for fast variables advancing from 22 to 24 No-substepping time integration at level 1 to 24 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.253366645e-05 0.0003664408869 and volume-weighted sum 19872.69141 Subtracting 6.468975243e-06 from rhs in subdomain 0 Sum after subtraction -0.003114109859 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.253366645e-05 0.0003664408869 and volume-weighted sum 19872.69141 Time integration of scalars at level 1 from 22 to 24 with dt = 2 using RHS created at 24 Done with advance_dycore at level 1 [Level 1 step 12] Advanced 3072 cells Coarse STEP 12 ends. TIME = 24 DT = 2 Timestep time = 0.015258847 seconds. Coarse STEP 13 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711172138 (terrain aware) 1.711172138 (terrain unaware) Anelastic dt at level 0 would be: 66.53882404 (terrain aware) 66.53882404 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2871767575 (terrain aware) 0.2871767575 (terrain unaware) Anelastic dt at level 1 would be: 26.03764018 (terrain aware) 26.03764018 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 13] ADVANCE from elapsed time = 24 to 26 with dt = 2 Making slow rhs at time 24 for fast variables advancing from 24 to 24.66666666667 Fast time integration at level 0 from 24 to 24.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 24 to 24.66666666667 with dt = 0.6666666666667 using RHS created at 24 Making slow rhs at time 24.66666666667 for fast variables advancing from 24 to 25 Fast time integration at level 0 from 24 to 24.5 with dt = 0.5 Fast time integration at level 0 from 24.5 to 25 with dt = 0.5 Time integration of scalars at level 0 from 24 to 25 with dt = 1 using RHS created at 24.66666666667 Making slow rhs at time 25 for fast variables advancing from 24 to 26 Fast time integration at level 0 from 24 to 24.5 with dt = 0.5 Fast time integration at level 0 from 24.5 to 25 with dt = 0.5 Fast time integration at level 0 from 25 to 25.5 with dt = 0.5 Fast time integration at level 0 from 25.5 to 26 with dt = 0.5 Time integration of scalars at level 0 from 24 to 26 with dt = 2 using RHS created at 25 Done with advance_dycore at level 0 [Level 0 step 13] Advanced 4096 cells [Level 1 step 13] ADVANCE from elapsed time = 24 to 26 with dt = 2 Making slow rhs at time 24 for fast variables advancing from 24 to 26 No-substepping time integration at level 1 to 26 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005768809933 0.003229413182 and volume-weighted sum 12928.56738 Subtracting 4.208518021e-06 from rhs in subdomain 0 Sum after subtraction 0.007916241884 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005761734792 MLMG: Initial residual (resid0) = 0.0005761734792 MLMG: Final Iter. 2 resid, resid/bnorm = 5.32118429e-06, 0.009235385805 MLMG: Timers: Solve = 0.000728398 Iter = 0.000528053 Bottom = 5.6033e-05 Time in solve 0.001074243 Max/L2 norm of divergence after solve at level 1 : 9.529452655e-06 0.0002343464439 and volume-weighted sum 12928.57031 Time integration of scalars at level 1 from 24 to 26 with dt = 2 using RHS created at 24 Making slow rhs at time 26 for fast variables advancing from 24 to 26 No-substepping time integration at level 1 to 26 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.083611076e-06 0.0002466974547 and volume-weighted sum 12928.56934 Subtracting 4.208518476e-06 from rhs in subdomain 0 Sum after subtraction 0.002299202606 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 9.083611076e-06 0.0002466974547 and volume-weighted sum 12928.56934 Time integration of scalars at level 1 from 24 to 26 with dt = 2 using RHS created at 26 Done with advance_dycore at level 1 [Level 1 step 13] Advanced 3072 cells Coarse STEP 13 ends. TIME = 26 DT = 2 Timestep time = 0.015384564 seconds. Coarse STEP 14 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.709770088 (terrain aware) 1.709770088 (terrain unaware) Anelastic dt at level 0 would be: 58.54120644 (terrain aware) 58.54120644 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2870976323 (terrain aware) 0.2870976323 (terrain unaware) Anelastic dt at level 1 would be: 24.10036766 (terrain aware) 24.10036766 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 14] ADVANCE from elapsed time = 26 to 28 with dt = 2 Making slow rhs at time 26 for fast variables advancing from 26 to 26.66666666667 Fast time integration at level 0 from 26 to 26.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 26 to 26.66666666667 with dt = 0.6666666666667 using RHS created at 26 Making slow rhs at time 26.66666666667 for fast variables advancing from 26 to 27 Fast time integration at level 0 from 26 to 26.5 with dt = 0.5 Fast time integration at level 0 from 26.5 to 27 with dt = 0.5 Time integration of scalars at level 0 from 26 to 27 with dt = 1 using RHS created at 26.66666666667 Making slow rhs at time 27 for fast variables advancing from 26 to 28 Fast time integration at level 0 from 26 to 26.5 with dt = 0.5 Fast time integration at level 0 from 26.5 to 27 with dt = 0.5 Fast time integration at level 0 from 27 to 27.5 with dt = 0.5 Fast time integration at level 0 from 27.5 to 28 with dt = 0.5 Time integration of scalars at level 0 from 26 to 28 with dt = 2 using RHS created at 27 Done with advance_dycore at level 0 [Level 0 step 14] Advanced 4096 cells [Level 1 step 14] ADVANCE from elapsed time = 26 to 28 with dt = 2 Making slow rhs at time 26 for fast variables advancing from 26 to 28 No-substepping time integration at level 1 to 28 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004445715749 0.002176204231 and volume-weighted sum 6646.354492 Subtracting 2.163526915e-06 from rhs in subdomain 0 Sum after subtraction -0.003929017112 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004424080544 MLMG: Initial residual (resid0) = 0.0004424080544 MLMG: Final Iter. 2 resid, resid/bnorm = 3.228080459e-06, 0.007296613418 MLMG: Timers: Solve = 0.000744369 Iter = 0.000535622 Bottom = 5.4138e-05 Time in solve 0.00106826 Max/L2 norm of divergence after solve at level 1 : 5.391688319e-06 0.0001210170376 and volume-weighted sum 6646.361328 Time integration of scalars at level 1 from 26 to 28 with dt = 2 using RHS created at 26 Making slow rhs at time 28 for fast variables advancing from 26 to 28 No-substepping time integration at level 1 to 28 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.196338629e-06 0.0001465089445 and volume-weighted sum 6646.353027 Subtracting 2.16352646e-06 from rhs in subdomain 0 Sum after subtraction 0.007057678886 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 7.196338629e-06 0.0001465089445 and volume-weighted sum 6646.353027 Time integration of scalars at level 1 from 26 to 28 with dt = 2 using RHS created at 28 Done with advance_dycore at level 1 [Level 1 step 14] Advanced 3072 cells Coarse STEP 14 ends. TIME = 28 DT = 2 Timestep time = 0.015446573 seconds. Coarse STEP 15 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.708666955 (terrain aware) 1.708666955 (terrain unaware) Anelastic dt at level 0 would be: 52.07300585 (terrain aware) 52.07300585 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2870221021 (terrain aware) 0.2870221021 (terrain unaware) Anelastic dt at level 1 would be: 22.46836152 (terrain aware) 22.46836152 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 15] ADVANCE from elapsed time = 28 to 30 with dt = 2 Making slow rhs at time 28 for fast variables advancing from 28 to 28.66666666667 Fast time integration at level 0 from 28 to 28.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 28 to 28.66666666667 with dt = 0.6666666666667 using RHS created at 28 Making slow rhs at time 28.66666666667 for fast variables advancing from 28 to 29 Fast time integration at level 0 from 28 to 28.5 with dt = 0.5 Fast time integration at level 0 from 28.5 to 29 with dt = 0.5 Time integration of scalars at level 0 from 28 to 29 with dt = 1 using RHS created at 28.66666666667 Making slow rhs at time 29 for fast variables advancing from 28 to 30 Fast time integration at level 0 from 28 to 28.5 with dt = 0.5 Fast time integration at level 0 from 28.5 to 29 with dt = 0.5 Fast time integration at level 0 from 29 to 29.5 with dt = 0.5 Fast time integration at level 0 from 29.5 to 30 with dt = 0.5 Time integration of scalars at level 0 from 28 to 30 with dt = 2 using RHS created at 29 Done with advance_dycore at level 0 [Level 0 step 15] Advanced 4096 cells [Level 1 step 15] ADVANCE from elapsed time = 28 to 30 with dt = 2 Making slow rhs at time 28 for fast variables advancing from 28 to 30 No-substepping time integration at level 1 to 30 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004462745856 0.001381320297 and volume-weighted sum 1834.387207 Subtracting 5.971312476e-07 from rhs in subdomain 0 Sum after subtraction -0.002619344741 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004456774623 MLMG: Initial residual (resid0) = 0.0004456774623 MLMG: Final Iter. 2 resid, resid/bnorm = 1.803142368e-06, 0.004045845941 MLMG: Timers: Solve = 0.000737925 Iter = 0.000533272 Bottom = 5.6528e-05 Time in solve 0.001070463 Max/L2 norm of divergence after solve at level 1 : 2.400280209e-06 3.448678763e-05 and volume-weighted sum 1834.382935 Time integration of scalars at level 1 from 28 to 30 with dt = 2 using RHS created at 28 Making slow rhs at time 30 for fast variables advancing from 28 to 30 No-substepping time integration at level 1 to 30 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.966643585e-06 9.454416431e-05 and volume-weighted sum 1834.385864 Subtracting 5.971307928e-07 from rhs in subdomain 0 Sum after subtraction -0.00192085281 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 5.966643585e-06 9.454416431e-05 and volume-weighted sum 1834.385864 Time integration of scalars at level 1 from 28 to 30 with dt = 2 using RHS created at 30 Done with advance_dycore at level 1 [Level 1 step 15] Advanced 3072 cells Coarse STEP 15 ends. TIME = 30 DT = 2 Timestep time = 0.015369475 seconds. Coarse STEP 16 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.708033506 (terrain aware) 1.708033506 (terrain unaware) Anelastic dt at level 0 would be: 47.54787374 (terrain aware) 47.54787374 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2869483786 (terrain aware) 0.2869483786 (terrain unaware) Anelastic dt at level 1 would be: 21.06057136 (terrain aware) 21.06057136 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 16] ADVANCE from elapsed time = 30 to 32 with dt = 2 Making slow rhs at time 30 for fast variables advancing from 30 to 30.66666666667 Fast time integration at level 0 from 30 to 30.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 30 to 30.66666666667 with dt = 0.6666666666667 using RHS created at 30 Making slow rhs at time 30.66666666667 for fast variables advancing from 30 to 31 Fast time integration at level 0 from 30 to 30.5 with dt = 0.5 Fast time integration at level 0 from 30.5 to 31 with dt = 0.5 Time integration of scalars at level 0 from 30 to 31 with dt = 1 using RHS created at 30.66666666667 Making slow rhs at time 31 for fast variables advancing from 30 to 32 Fast time integration at level 0 from 30 to 30.5 with dt = 0.5 Fast time integration at level 0 from 30.5 to 31 with dt = 0.5 Fast time integration at level 0 from 31 to 31.5 with dt = 0.5 Fast time integration at level 0 from 31.5 to 32 with dt = 0.5 Time integration of scalars at level 0 from 30 to 32 with dt = 2 using RHS created at 31 Done with advance_dycore at level 0 [Level 0 step 16] Advanced 4096 cells [Level 1 step 16] ADVANCE from elapsed time = 30 to 32 with dt = 2 Making slow rhs at time 30 for fast variables advancing from 30 to 32 No-substepping time integration at level 1 to 32 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004137948563 0.00177602726 and volume-weighted sum -1553.646484 Subtracting -5.057443104e-07 from rhs in subdomain 0 Sum after subtraction -0.003434251994 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000413289119 MLMG: Initial residual (resid0) = 0.000413289119 MLMG: Final Iter. 2 resid, resid/bnorm = 2.640030289e-06, 0.006387853529 MLMG: Timers: Solve = 0.00074174 Iter = 0.000527334 Bottom = 5.7407e-05 Time in solve 0.001111422 Max/L2 norm of divergence after solve at level 1 : 2.134445822e-06 2.947142821e-05 and volume-weighted sum -1553.647461 Time integration of scalars at level 1 from 30 to 32 with dt = 2 using RHS created at 30 Making slow rhs at time 32 for fast variables advancing from 30 to 32 No-substepping time integration at level 1 to 32 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.229609087e-06 9.836337267e-05 and volume-weighted sum -1553.646484 Subtracting -5.057443104e-07 from rhs in subdomain 0 Sum after subtraction -0.007130438462 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 5.229609087e-06 9.836337267e-05 and volume-weighted sum -1553.646484 Time integration of scalars at level 1 from 30 to 32 with dt = 2 using RHS created at 32 Done with advance_dycore at level 1 [Level 1 step 16] Advanced 3072 cells Coarse STEP 16 ends. TIME = 32 DT = 2 Timestep time = 0.015124072 seconds. Coarse STEP 17 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.707612996 (terrain aware) 1.707612996 (terrain unaware) Anelastic dt at level 0 would be: 44.0382188 (terrain aware) 44.0382188 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2868752139 (terrain aware) 0.2868752139 (terrain unaware) Anelastic dt at level 1 would be: 19.82229442 (terrain aware) 19.82229442 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 17] ADVANCE from elapsed time = 32 to 34 with dt = 2 Making slow rhs at time 32 for fast variables advancing from 32 to 32.66666666667 Fast time integration at level 0 from 32 to 32.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 32 to 32.66666666667 with dt = 0.6666666666667 using RHS created at 32 Making slow rhs at time 32.66666666667 for fast variables advancing from 32 to 33 Fast time integration at level 0 from 32 to 32.5 with dt = 0.5 Fast time integration at level 0 from 32.5 to 33 with dt = 0.5 Time integration of scalars at level 0 from 32 to 33 with dt = 1 using RHS created at 32.66666666667 Making slow rhs at time 33 for fast variables advancing from 32 to 34 Fast time integration at level 0 from 32 to 32.5 with dt = 0.5 Fast time integration at level 0 from 32.5 to 33 with dt = 0.5 Fast time integration at level 0 from 33 to 33.5 with dt = 0.5 Fast time integration at level 0 from 33.5 to 34 with dt = 0.5 Time integration of scalars at level 0 from 32 to 34 with dt = 2 using RHS created at 33 Done with advance_dycore at level 0 [Level 0 step 17] Advanced 4096 cells [Level 1 step 17] ADVANCE from elapsed time = 32 to 34 with dt = 2 Making slow rhs at time 32 for fast variables advancing from 32 to 34 No-substepping time integration at level 1 to 34 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002842539689 0.001409549499 and volume-weighted sum -3619.979248 Subtracting -1.178378625e-06 from rhs in subdomain 0 Sum after subtraction -0.008207280189 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002854323538 MLMG: Initial residual (resid0) = 0.0002854323538 MLMG: Final Iter. 2 resid, resid/bnorm = 1.641255949e-06, 0.00575006986 MLMG: Timers: Solve = 0.0007355 Iter = 0.000521192 Bottom = 5.5754e-05 Time in solve 0.00106241 Max/L2 norm of divergence after solve at level 1 : 2.819288056e-06 6.589302939e-05 and volume-weighted sum -3619.982666 Time integration of scalars at level 1 from 32 to 34 with dt = 2 using RHS created at 32 Making slow rhs at time 34 for fast variables advancing from 32 to 34 No-substepping time integration at level 1 to 34 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.198184565e-06 0.0001198561367 and volume-weighted sum -3619.981445 Subtracting -1.178379421e-06 from rhs in subdomain 0 Sum after subtraction 0.001673470251 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 6.198184565e-06 0.0001198561367 and volume-weighted sum -3619.981445 Time integration of scalars at level 1 from 32 to 34 with dt = 2 using RHS created at 34 Done with advance_dycore at level 1 [Level 1 step 17] Advanced 3072 cells Coarse STEP 17 ends. TIME = 34 DT = 2 Timestep time = 0.015569959 seconds. Coarse STEP 18 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.70683143 (terrain aware) 1.70683143 (terrain unaware) Anelastic dt at level 0 would be: 40.76427876 (terrain aware) 40.76427876 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2867997581 (terrain aware) 0.2867997581 (terrain unaware) Anelastic dt at level 1 would be: 18.71619197 (terrain aware) 18.71619197 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 18] ADVANCE from elapsed time = 34 to 36 with dt = 2 Making slow rhs at time 34 for fast variables advancing from 34 to 34.66666666667 Fast time integration at level 0 from 34 to 34.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 34 to 34.66666666667 with dt = 0.6666666666667 using RHS created at 34 Making slow rhs at time 34.66666666667 for fast variables advancing from 34 to 35 Fast time integration at level 0 from 34 to 34.5 with dt = 0.5 Fast time integration at level 0 from 34.5 to 35 with dt = 0.5 Time integration of scalars at level 0 from 34 to 35 with dt = 1 using RHS created at 34.66666666667 Making slow rhs at time 35 for fast variables advancing from 34 to 36 Fast time integration at level 0 from 34 to 34.5 with dt = 0.5 Fast time integration at level 0 from 34.5 to 35 with dt = 0.5 Fast time integration at level 0 from 35 to 35.5 with dt = 0.5 Fast time integration at level 0 from 35.5 to 36 with dt = 0.5 Time integration of scalars at level 0 from 34 to 36 with dt = 2 using RHS created at 35 Done with advance_dycore at level 0 [Level 0 step 18] Advanced 4096 cells [Level 1 step 18] ADVANCE from elapsed time = 34 to 36 with dt = 2 Making slow rhs at time 34 for fast variables advancing from 34 to 36 No-substepping time integration at level 1 to 36 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005218942533 0.001586879487 and volume-weighted sum -4456.248047 Subtracting -1.45060153e-06 from rhs in subdomain 0 Sum after subtraction 0.008178176358 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005204436602 MLMG: Initial residual (resid0) = 0.0005204436602 MLMG: Final Iter. 2 resid, resid/bnorm = 2.441924153e-06, 0.004692004994 MLMG: Timers: Solve = 0.000743144 Iter = 0.000542221 Bottom = 5.5962e-05 Time in solve 0.001073357 Max/L2 norm of divergence after solve at level 1 : 3.892782843e-06 8.113783406e-05 and volume-weighted sum -4456.249512 Time integration of scalars at level 1 from 34 to 36 with dt = 2 using RHS created at 34 Making slow rhs at time 36 for fast variables advancing from 34 to 36 No-substepping time integration at level 1 to 36 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.767688319e-06 0.0001331336389 and volume-weighted sum -4456.248047 Subtracting -1.45060153e-06 from rhs in subdomain 0 Sum after subtraction -0.00347790774 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 6.767688319e-06 0.0001331336389 and volume-weighted sum -4456.248047 Time integration of scalars at level 1 from 34 to 36 with dt = 2 using RHS created at 36 Done with advance_dycore at level 1 [Level 1 step 18] Advanced 3072 cells Coarse STEP 18 ends. TIME = 36 DT = 2 Timestep time = 0.015148524 seconds. Coarse STEP 19 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.705361281 (terrain aware) 1.705361281 (terrain unaware) Anelastic dt at level 0 would be: 37.31380645 (terrain aware) 37.31380645 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.286719683 (terrain aware) 0.286719683 (terrain unaware) Anelastic dt at level 1 would be: 17.71629307 (terrain aware) 17.71629307 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 19] ADVANCE from elapsed time = 36 to 38 with dt = 2 Making slow rhs at time 36 for fast variables advancing from 36 to 36.66666666667 Fast time integration at level 0 from 36 to 36.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 36 to 36.66666666667 with dt = 0.6666666666667 using RHS created at 36 Making slow rhs at time 36.66666666667 for fast variables advancing from 36 to 37 Fast time integration at level 0 from 36 to 36.5 with dt = 0.5 Fast time integration at level 0 from 36.5 to 37 with dt = 0.5 Time integration of scalars at level 0 from 36 to 37 with dt = 1 using RHS created at 36.66666666667 Making slow rhs at time 37 for fast variables advancing from 36 to 38 Fast time integration at level 0 from 36 to 36.5 with dt = 0.5 Fast time integration at level 0 from 36.5 to 37 with dt = 0.5 Fast time integration at level 0 from 37 to 37.5 with dt = 0.5 Fast time integration at level 0 from 37.5 to 38 with dt = 0.5 Time integration of scalars at level 0 from 36 to 38 with dt = 2 using RHS created at 37 Done with advance_dycore at level 0 [Level 0 step 19] Advanced 4096 cells [Level 1 step 19] ADVANCE from elapsed time = 36 to 38 with dt = 2 Making slow rhs at time 36 for fast variables advancing from 36 to 38 No-substepping time integration at level 1 to 38 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005226698122 0.002010690514 and volume-weighted sum -4211.681152 Subtracting -1.370989935e-06 from rhs in subdomain 0 Sum after subtraction -0.01970329322 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005240407772 MLMG: Initial residual (resid0) = 0.0005240407772 MLMG: Final Iter. 2 resid, resid/bnorm = 2.583736205e-06, 0.004930410534 MLMG: Timers: Solve = 0.000727018 Iter = 0.000525189 Bottom = 5.2539e-05 Time in solve 0.001057594 Max/L2 norm of divergence after solve at level 1 : 3.954803105e-06 7.708463818e-05 and volume-weighted sum -4211.68457 Time integration of scalars at level 1 from 36 to 38 with dt = 2 using RHS created at 36 Making slow rhs at time 38 for fast variables advancing from 36 to 38 No-substepping time integration at level 1 to 38 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.000518963e-06 0.0001352247928 and volume-weighted sum -4211.682129 Subtracting -1.370990276e-06 from rhs in subdomain 0 Sum after subtraction -0.00256113708 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 7.000518963e-06 0.0001352247928 and volume-weighted sum -4211.682129 Time integration of scalars at level 1 from 36 to 38 with dt = 2 using RHS created at 38 Done with advance_dycore at level 1 [Level 1 step 19] Advanced 3072 cells Coarse STEP 19 ends. TIME = 38 DT = 2 Timestep time = 0.015691988 seconds. Coarse STEP 20 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.703443204 (terrain aware) 1.703443204 (terrain unaware) Anelastic dt at level 0 would be: 33.6529536 (terrain aware) 33.6529536 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2866337964 (terrain aware) 0.2866337964 (terrain unaware) Anelastic dt at level 1 would be: 16.80124615 (terrain aware) 16.80124615 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 20] ADVANCE from elapsed time = 38 to 40 with dt = 2 Making slow rhs at time 38 for fast variables advancing from 38 to 38.66666666667 Fast time integration at level 0 from 38 to 38.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 38 to 38.66666666667 with dt = 0.6666666666667 using RHS created at 38 Making slow rhs at time 38.66666666667 for fast variables advancing from 38 to 39 Fast time integration at level 0 from 38 to 38.5 with dt = 0.5 Fast time integration at level 0 from 38.5 to 39 with dt = 0.5 Time integration of scalars at level 0 from 38 to 39 with dt = 1 using RHS created at 38.66666666667 Making slow rhs at time 39 for fast variables advancing from 38 to 40 Fast time integration at level 0 from 38 to 38.5 with dt = 0.5 Fast time integration at level 0 from 38.5 to 39 with dt = 0.5 Fast time integration at level 0 from 39 to 39.5 with dt = 0.5 Fast time integration at level 0 from 39.5 to 40 with dt = 0.5 Time integration of scalars at level 0 from 38 to 40 with dt = 2 using RHS created at 39 Done with advance_dycore at level 0 [Level 0 step 20] Advanced 4096 cells [Level 1 step 20] ADVANCE from elapsed time = 38 to 40 with dt = 2 Making slow rhs at time 38 for fast variables advancing from 38 to 40 No-substepping time integration at level 1 to 40 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004739965079 0.001589522348 and volume-weighted sum -3130.155762 Subtracting -1.018930902e-06 from rhs in subdomain 0 Sum after subtraction 0.01085572876 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000475015433 MLMG: Initial residual (resid0) = 0.000475015433 MLMG: Final Iter. 2 resid, resid/bnorm = 2.359796781e-06, 0.004967832007 MLMG: Timers: Solve = 0.000743076 Iter = 0.000542416 Bottom = 5.4851e-05 Time in solve 0.001063396 Max/L2 norm of divergence after solve at level 1 : 3.378372639e-06 5.757631152e-05 and volume-weighted sum -3130.158936 Time integration of scalars at level 1 from 38 to 40 with dt = 2 using RHS created at 38 Making slow rhs at time 40 for fast variables advancing from 38 to 40 No-substepping time integration at level 1 to 40 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.056631148e-06 0.0001307610655 and volume-weighted sum -3130.156494 Subtracting -1.01893113e-06 from rhs in subdomain 0 Sum after subtraction -0.01088483259 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 7.056631148e-06 0.0001307610655 and volume-weighted sum -3130.156494 Time integration of scalars at level 1 from 38 to 40 with dt = 2 using RHS created at 40 Done with advance_dycore at level 1 [Level 1 step 20] Advanced 3072 cells Coarse STEP 20 ends. TIME = 40 DT = 2 Timestep time = 0.0150292 seconds. Coarse STEP 21 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.701588903 (terrain aware) 1.701588903 (terrain unaware) Anelastic dt at level 0 would be: 30.5192013 (terrain aware) 30.5192013 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2865421916 (terrain aware) 0.2865421916 (terrain unaware) Anelastic dt at level 1 would be: 15.96462703 (terrain aware) 15.96462703 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 21] ADVANCE from elapsed time = 40 to 42 with dt = 2 Making slow rhs at time 40 for fast variables advancing from 40 to 40.66666666667 Fast time integration at level 0 from 40 to 40.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 40 to 40.66666666667 with dt = 0.6666666666667 using RHS created at 40 Making slow rhs at time 40.66666666667 for fast variables advancing from 40 to 41 Fast time integration at level 0 from 40 to 40.5 with dt = 0.5 Fast time integration at level 0 from 40.5 to 41 with dt = 0.5 Time integration of scalars at level 0 from 40 to 41 with dt = 1 using RHS created at 40.66666666667 Making slow rhs at time 41 for fast variables advancing from 40 to 42 Fast time integration at level 0 from 40 to 40.5 with dt = 0.5 Fast time integration at level 0 from 40.5 to 41 with dt = 0.5 Fast time integration at level 0 from 41 to 41.5 with dt = 0.5 Fast time integration at level 0 from 41.5 to 42 with dt = 0.5 Time integration of scalars at level 0 from 40 to 42 with dt = 2 using RHS created at 41 Done with advance_dycore at level 0 [Level 0 step 21] Advanced 4096 cells [Level 1 step 21] ADVANCE from elapsed time = 40 to 42 with dt = 2 Making slow rhs at time 40 for fast variables advancing from 40 to 42 No-substepping time integration at level 1 to 42 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003129660909 0.001620813971 and volume-weighted sum -1523.525757 Subtracting -4.959393891e-07 from rhs in subdomain 0 Sum after subtraction 0.007305061445 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003124701616 MLMG: Initial residual (resid0) = 0.0003124701616 MLMG: Final Iter. 2 resid, resid/bnorm = 2.613742254e-06, 0.008364774287 MLMG: Timers: Solve = 0.000978388 Iter = 0.00078528 Bottom = 8.4072e-05 Time in solve 0.001416386 Max/L2 norm of divergence after solve at level 1 : 3.109278623e-06 2.932074858e-05 and volume-weighted sum -1523.523071 Time integration of scalars at level 1 from 40 to 42 with dt = 2 using RHS created at 40 Making slow rhs at time 42 for fast variables advancing from 40 to 42 No-substepping time integration at level 1 to 42 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.104768883e-06 0.000127157211 and volume-weighted sum -1523.521973 Subtracting -4.959381386e-07 from rhs in subdomain 0 Sum after subtraction 5.820766091e-05 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 7.104768883e-06 0.000127157211 and volume-weighted sum -1523.521973 Time integration of scalars at level 1 from 40 to 42 with dt = 2 using RHS created at 42 Done with advance_dycore at level 1 [Level 1 step 21] Advanced 3072 cells Coarse STEP 21 ends. TIME = 42 DT = 2 Timestep time = 0.0164826 seconds. Coarse STEP 22 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.699919079 (terrain aware) 1.699919079 (terrain unaware) Anelastic dt at level 0 would be: 28.55282741 (terrain aware) 28.55282741 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2864459673 (terrain aware) 0.2864459673 (terrain unaware) Anelastic dt at level 1 would be: 15.19829489 (terrain aware) 15.19829489 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 22] ADVANCE from elapsed time = 42 to 44 with dt = 2 Making slow rhs at time 42 for fast variables advancing from 42 to 42.66666666667 Fast time integration at level 0 from 42 to 42.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 42 to 42.66666666667 with dt = 0.6666666666667 using RHS created at 42 Making slow rhs at time 42.66666666667 for fast variables advancing from 42 to 43 Fast time integration at level 0 from 42 to 42.5 with dt = 0.5 Fast time integration at level 0 from 42.5 to 43 with dt = 0.5 Time integration of scalars at level 0 from 42 to 43 with dt = 1 using RHS created at 42.66666666667 Making slow rhs at time 43 for fast variables advancing from 42 to 44 Fast time integration at level 0 from 42 to 42.5 with dt = 0.5 Fast time integration at level 0 from 42.5 to 43 with dt = 0.5 Fast time integration at level 0 from 43 to 43.5 with dt = 0.5 Fast time integration at level 0 from 43.5 to 44 with dt = 0.5 Time integration of scalars at level 0 from 42 to 44 with dt = 2 using RHS created at 43 Done with advance_dycore at level 0 [Level 0 step 22] Advanced 4096 cells [Level 1 step 22] ADVANCE from elapsed time = 42 to 44 with dt = 2 Making slow rhs at time 42 for fast variables advancing from 42 to 44 No-substepping time integration at level 1 to 44 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003828561166 0.001837486168 and volume-weighted sum 387.1314087 Subtracting 1.260193443e-07 from rhs in subdomain 0 Sum after subtraction 0.02924934961 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000382730097 MLMG: Initial residual (resid0) = 0.000382730097 MLMG: Final Iter. 2 resid, resid/bnorm = 2.821048838e-06, 0.007370857056 MLMG: Timers: Solve = 0.000734664 Iter = 0.000532127 Bottom = 5.3815e-05 Time in solve 0.00105716 Max/L2 norm of divergence after solve at level 1 : 2.694723662e-06 1.186910595e-05 and volume-weighted sum 387.1355591 Time integration of scalars at level 1 from 42 to 44 with dt = 2 using RHS created at 42 Making slow rhs at time 44 for fast variables advancing from 42 to 44 No-substepping time integration at level 1 to 44 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.111514035e-06 0.0001305993646 and volume-weighted sum 387.1321716 Subtracting 1.260195859e-07 from rhs in subdomain 0 Sum after subtraction 0.0007566995919 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 8.111514035e-06 0.0001305993646 and volume-weighted sum 387.1321716 Time integration of scalars at level 1 from 42 to 44 with dt = 2 using RHS created at 44 Done with advance_dycore at level 1 [Level 1 step 22] Advanced 3072 cells Coarse STEP 22 ends. TIME = 44 DT = 2 Timestep time = 0.01513366 seconds. Coarse STEP 23 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.698197548 (terrain aware) 1.698197548 (terrain unaware) Anelastic dt at level 0 would be: 27.5926562 (terrain aware) 27.5926562 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2863465393 (terrain aware) 0.2863465393 (terrain unaware) Anelastic dt at level 1 would be: 14.49633696 (terrain aware) 14.49633696 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 23] ADVANCE from elapsed time = 44 to 46 with dt = 2 Making slow rhs at time 44 for fast variables advancing from 44 to 44.66666666667 Fast time integration at level 0 from 44 to 44.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 44 to 44.66666666667 with dt = 0.6666666666667 using RHS created at 44 Making slow rhs at time 44.66666666667 for fast variables advancing from 44 to 45 Fast time integration at level 0 from 44 to 44.5 with dt = 0.5 Fast time integration at level 0 from 44.5 to 45 with dt = 0.5 Time integration of scalars at level 0 from 44 to 45 with dt = 1 using RHS created at 44.66666666667 Making slow rhs at time 45 for fast variables advancing from 44 to 46 Fast time integration at level 0 from 44 to 44.5 with dt = 0.5 Fast time integration at level 0 from 44.5 to 45 with dt = 0.5 Fast time integration at level 0 from 45 to 45.5 with dt = 0.5 Fast time integration at level 0 from 45.5 to 46 with dt = 0.5 Time integration of scalars at level 0 from 44 to 46 with dt = 2 using RHS created at 45 Done with advance_dycore at level 0 [Level 0 step 23] Advanced 4096 cells [Level 1 step 23] ADVANCE from elapsed time = 44 to 46 with dt = 2 Making slow rhs at time 44 for fast variables advancing from 44 to 46 No-substepping time integration at level 1 to 46 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001665842719 0.000824394403 and volume-weighted sum 2412.320068 Subtracting 7.85260454e-07 from rhs in subdomain 0 Sum after subtraction 0.01274747774 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001657990069 MLMG: Initial residual (resid0) = 0.0001657990069 MLMG: Final Iter. 2 resid, resid/bnorm = 1.279313437e-06, 0.007716049906 MLMG: Timers: Solve = 0.000722661 Iter = 0.000523758 Bottom = 5.3587e-05 Time in solve 0.001048158 Max/L2 norm of divergence after solve at level 1 : 1.337146387e-06 4.381316103e-05 and volume-weighted sum 2412.318848 Time integration of scalars at level 1 from 44 to 46 with dt = 2 using RHS created at 44 Making slow rhs at time 46 for fast variables advancing from 44 to 46 No-substepping time integration at level 1 to 46 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.202471119e-06 0.0001435134764 and volume-weighted sum 2412.322021 Subtracting 7.852610793e-07 from rhs in subdomain 0 Sum after subtraction -0.001717125997 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 9.202471119e-06 0.0001435134764 and volume-weighted sum 2412.322021 Time integration of scalars at level 1 from 44 to 46 with dt = 2 using RHS created at 46 Done with advance_dycore at level 1 [Level 1 step 23] Advanced 3072 cells Coarse STEP 23 ends. TIME = 46 DT = 2 Timestep time = 0.015613975 seconds. Coarse STEP 24 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.696259354 (terrain aware) 1.696259354 (terrain unaware) Anelastic dt at level 0 would be: 27.00071295 (terrain aware) 27.00071295 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2862450065 (terrain aware) 0.2862450065 (terrain unaware) Anelastic dt at level 1 would be: 13.85382989 (terrain aware) 13.85382989 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 24] ADVANCE from elapsed time = 46 to 48 with dt = 2 Making slow rhs at time 46 for fast variables advancing from 46 to 46.66666666667 Fast time integration at level 0 from 46 to 46.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 46 to 46.66666666667 with dt = 0.6666666666667 using RHS created at 46 Making slow rhs at time 46.66666666667 for fast variables advancing from 46 to 47 Fast time integration at level 0 from 46 to 46.5 with dt = 0.5 Fast time integration at level 0 from 46.5 to 47 with dt = 0.5 Time integration of scalars at level 0 from 46 to 47 with dt = 1 using RHS created at 46.66666666667 Making slow rhs at time 47 for fast variables advancing from 46 to 48 Fast time integration at level 0 from 46 to 46.5 with dt = 0.5 Fast time integration at level 0 from 46.5 to 47 with dt = 0.5 Fast time integration at level 0 from 47 to 47.5 with dt = 0.5 Fast time integration at level 0 from 47.5 to 48 with dt = 0.5 Time integration of scalars at level 0 from 46 to 48 with dt = 2 using RHS created at 47 Done with advance_dycore at level 0 [Level 0 step 24] Advanced 4096 cells [Level 1 step 24] ADVANCE from elapsed time = 46 to 48 with dt = 2 Making slow rhs at time 46 for fast variables advancing from 46 to 48 No-substepping time integration at level 1 to 48 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000199137663 0.0009899783181 and volume-weighted sum 4383.088379 Subtracting 1.426786525e-06 from rhs in subdomain 0 Sum after subtraction -0.01152511686 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001977108768 MLMG: Initial residual (resid0) = 0.0001977108768 MLMG: Final Iter. 2 resid, resid/bnorm = 9.704144759e-07, 0.004908250179 MLMG: Timers: Solve = 0.000732821 Iter = 0.000533789 Bottom = 5.2798e-05 Time in solve 0.001053047 Max/L2 norm of divergence after solve at level 1 : 2.154120011e-06 7.92320061e-05 and volume-weighted sum 4383.08252 Time integration of scalars at level 1 from 46 to 48 with dt = 2 using RHS created at 46 Making slow rhs at time 48 for fast variables advancing from 46 to 48 No-substepping time integration at level 1 to 48 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.029912528e-05 0.0001638469548 and volume-weighted sum 4383.083496 Subtracting 1.426785047e-06 from rhs in subdomain 0 Sum after subtraction 0.0004365574569 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.029912528e-05 0.0001638469548 and volume-weighted sum 4383.083496 Time integration of scalars at level 1 from 46 to 48 with dt = 2 using RHS created at 48 Done with advance_dycore at level 1 [Level 1 step 24] Advanced 3072 cells Coarse STEP 24 ends. TIME = 48 DT = 2 Timestep time = 0.015076952 seconds. Coarse STEP 25 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.694078122 (terrain aware) 1.694078122 (terrain unaware) Anelastic dt at level 0 would be: 26.2711521 (terrain aware) 26.2711521 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2861422258 (terrain aware) 0.2861422258 (terrain unaware) Anelastic dt at level 1 would be: 13.26621751 (terrain aware) 13.26621751 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 25] ADVANCE from elapsed time = 48 to 50 with dt = 2 Making slow rhs at time 48 for fast variables advancing from 48 to 48.66666666667 Fast time integration at level 0 from 48 to 48.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 48 to 48.66666666667 with dt = 0.6666666666667 using RHS created at 48 Making slow rhs at time 48.66666666667 for fast variables advancing from 48 to 49 Fast time integration at level 0 from 48 to 48.5 with dt = 0.5 Fast time integration at level 0 from 48.5 to 49 with dt = 0.5 Time integration of scalars at level 0 from 48 to 49 with dt = 1 using RHS created at 48.66666666667 Making slow rhs at time 49 for fast variables advancing from 48 to 50 Fast time integration at level 0 from 48 to 48.5 with dt = 0.5 Fast time integration at level 0 from 48.5 to 49 with dt = 0.5 Fast time integration at level 0 from 49 to 49.5 with dt = 0.5 Fast time integration at level 0 from 49.5 to 50 with dt = 0.5 Time integration of scalars at level 0 from 48 to 50 with dt = 2 using RHS created at 49 Done with advance_dycore at level 0 [Level 0 step 25] Advanced 4096 cells [Level 1 step 25] ADVANCE from elapsed time = 48 to 50 with dt = 2 Making slow rhs at time 48 for fast variables advancing from 48 to 50 No-substepping time integration at level 1 to 50 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002624798217 0.001395648578 and volume-weighted sum 6107.85791 Subtracting 1.988234999e-06 from rhs in subdomain 0 Sum after subtraction -0.01408625394 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002644680499 MLMG: Initial residual (resid0) = 0.0002644680499 MLMG: Final Iter. 2 resid, resid/bnorm = 1.579719537e-06, 0.005973196123 MLMG: Timers: Solve = 0.00102073 Iter = 0.000529766 Bottom = 5.6692e-05 Time in solve 0.001384599 Max/L2 norm of divergence after solve at level 1 : 3.568522516e-06 0.0001103986579 and volume-weighted sum 6107.855469 Time integration of scalars at level 1 from 48 to 50 with dt = 2 using RHS created at 48 Making slow rhs at time 50 for fast variables advancing from 48 to 50 No-substepping time integration at level 1 to 50 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.129521843e-05 0.0001862244826 and volume-weighted sum 6107.854004 Subtracting 1.988233635e-06 from rhs in subdomain 0 Sum after subtraction -0.006519258022 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.129521843e-05 0.0001862244826 and volume-weighted sum 6107.854004 Time integration of scalars at level 1 from 48 to 50 with dt = 2 using RHS created at 50 Done with advance_dycore at level 1 [Level 1 step 25] Advanced 3072 cells Coarse STEP 25 ends. TIME = 50 DT = 2 Timestep time = 0.015587588 seconds. Coarse STEP 26 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.691883181 (terrain aware) 1.691883181 (terrain unaware) Anelastic dt at level 0 would be: 25.39492331 (terrain aware) 25.39492331 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2860392587 (terrain aware) 0.2860392587 (terrain unaware) Anelastic dt at level 1 would be: 12.72892456 (terrain aware) 12.72892456 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 26] ADVANCE from elapsed time = 50 to 52 with dt = 2 Making slow rhs at time 50 for fast variables advancing from 50 to 50.66666666667 Fast time integration at level 0 from 50 to 50.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 50 to 50.66666666667 with dt = 0.6666666666667 using RHS created at 50 Making slow rhs at time 50.66666666667 for fast variables advancing from 50 to 51 Fast time integration at level 0 from 50 to 50.5 with dt = 0.5 Fast time integration at level 0 from 50.5 to 51 with dt = 0.5 Time integration of scalars at level 0 from 50 to 51 with dt = 1 using RHS created at 50.66666666667 Making slow rhs at time 51 for fast variables advancing from 50 to 52 Fast time integration at level 0 from 50 to 50.5 with dt = 0.5 Fast time integration at level 0 from 50.5 to 51 with dt = 0.5 Fast time integration at level 0 from 51 to 51.5 with dt = 0.5 Fast time integration at level 0 from 51.5 to 52 with dt = 0.5 Time integration of scalars at level 0 from 50 to 52 with dt = 2 using RHS created at 51 Done with advance_dycore at level 0 [Level 0 step 26] Advanced 4096 cells [Level 1 step 26] ADVANCE from elapsed time = 50 to 52 with dt = 2 Making slow rhs at time 50 for fast variables advancing from 50 to 52 No-substepping time integration at level 1 to 52 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001639282564 0.0008203470497 and volume-weighted sum 7433.164062 Subtracting 2.419649718e-06 from rhs in subdomain 0 Sum after subtraction -0.03114109859 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001615086221 MLMG: Initial residual (resid0) = 0.0001615086221 MLMG: Final Iter. 2 resid, resid/bnorm = 9.830218914e-07, 0.006086498033 MLMG: Timers: Solve = 0.000773172 Iter = 0.000575247 Bottom = 5.648e-05 Time in solve 0.001153141 Max/L2 norm of divergence after solve at level 1 : 3.4016266e-06 0.000134203452 and volume-weighted sum 7433.166992 Time integration of scalars at level 1 from 50 to 52 with dt = 2 using RHS created at 50 Making slow rhs at time 52 for fast variables advancing from 50 to 52 No-substepping time integration at level 1 to 52 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.214976328e-05 0.0002059700782 and volume-weighted sum 7433.171875 Subtracting 2.419652219e-06 from rhs in subdomain 0 Sum after subtraction 0.002852175385 in subdomain 0 Max/L2 norm of divergence after solve at level 1 : 1.214976328e-05 0.0002059700782 and volume-weighted sum 7433.171875 Time integration of scalars at level 1 from 50 to 52 with dt = 2 using RHS created at 52 Done with advance_dycore at level 1 [Level 1 step 26] Advanced 3072 cells Coarse STEP 26 ends. TIME = 52 DT = 2 Timestep time = 0.015280898 seconds. Coarse STEP 27 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.690023665 (terrain aware) 1.690023665 (terrain unaware) Anelastic dt at level 0 would be: 24.59287845 (terrain aware) 24.59287845 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2859373162 (terrain aware) 0.2859373162 (terrain unaware) Anelastic dt at level 1 would be: 12.2372995 (terrain aware) 12.2372995 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 27] ADVANCE from elapsed time = 52 to 54 with dt = 2 Making slow rhs at time 52 for fast variables advancing from 52 to 52.66666666667 Fast time integration at level 0 from 52 to 52.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 52 to 52.66666666667 with dt = 0.6666666666667 using RHS created at 52 Making slow rhs at time 52.66666666667 for fast variables advancing from 52 to 53 Fast time integration at level 0 from 52 to 52.5 with dt = 0.5 Fast time integration at level 0 from 52.5 to 53 with dt = 0.5 Time integration of scalars at level 0 from 52 to 53 with dt = 1 using RHS created at 52.66666666667 Making slow rhs at time 53 for fast variables advancing from 52 to 54 Fast time integration at level 0 from 52 to 52.5 with dt = 0.5 Fast time integration at level 0 from 52.5 to 53 with dt = 0.5 Fast time integration at level 0 from 53 to 53.5 with dt = 0.5 Fast time integration at level 0 from 53.5 to 54 with dt = 0.5 Time integration of scalars at level 0 from 52 to 54 with dt = 2 using RHS created at 53 Done with advance_dycore at level 0 [Level 0 step 27] Advanced 4096 cells [Level 1 step 27] ADVANCE from elapsed time = 52 to 54 with dt = 2 Making slow rhs at time 52 for fast variables advancing from 52 to 54 No-substepping time integration at level 1 to 54 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003269802546 0.001039747382 and volume-weighted sum 8257.310547 Subtracting 2.687926553e-06 from rhs in subdomain 0 Sum after subtraction -0.01222360879 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000329668168 MLMG: Initial residual (resid0) = 0.000329668168 MLMG: Final Iter. 2 resid, resid/bnorm = 1.717518899e-06, 0.0052098413 MLMG: Timers: Solve = 0.00073363 Iter = 0.000531542 Bottom = 5.4841e-05 Time in solve 0.001064576 Max/L2 norm of divergence after solve at level 1 : 4.405388609e-06 0.0001491201256 and volume-weighted sum 8257.310547 Time integration of scalars at level 1 from 52 to 54 with dt = 2 using RHS created at 52 Making slow rhs at time 54 for fast variables advancing from 52 to 54 No-substepping time integration at level 1 to 54 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.284718746e-05 0.0002210382372 and volume-weighted sum 8257.311523 Subtracting 2.687927008e-06 from rhs in subdomain 0 Sum after subtraction 0.01644366421 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.0159255e-05 MLMG: Initial residual (resid0) = 1.0159255e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 5.161406989e-06, 0.5080497265 MLMG: Timers: Solve = 0.000524584 Iter = 0.000325467 Bottom = 3.0372e-05 Time in solve 0.000841139 Max/L2 norm of divergence after solve at level 1 : 7.850583643e-06 0.0001500907965 and volume-weighted sum 8257.310547 Time integration of scalars at level 1 from 52 to 54 with dt = 2 using RHS created at 54 Done with advance_dycore at level 1 [Level 1 step 27] Advanced 3072 cells Coarse STEP 27 ends. TIME = 54 DT = 2 Timestep time = 0.016269763 seconds. Coarse STEP 28 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.688532357 (terrain aware) 1.688532357 (terrain unaware) Anelastic dt at level 0 would be: 23.96706784 (terrain aware) 23.96706784 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2858367706 (terrain aware) 0.2858367706 (terrain unaware) Anelastic dt at level 1 would be: 11.78417307 (terrain aware) 11.78417307 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 28] ADVANCE from elapsed time = 54 to 56 with dt = 2 Making slow rhs at time 54 for fast variables advancing from 54 to 54.66666666667 Fast time integration at level 0 from 54 to 54.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 54 to 54.66666666667 with dt = 0.6666666666667 using RHS created at 54 Making slow rhs at time 54.66666666667 for fast variables advancing from 54 to 55 Fast time integration at level 0 from 54 to 54.5 with dt = 0.5 Fast time integration at level 0 from 54.5 to 55 with dt = 0.5 Time integration of scalars at level 0 from 54 to 55 with dt = 1 using RHS created at 54.66666666667 Making slow rhs at time 55 for fast variables advancing from 54 to 56 Fast time integration at level 0 from 54 to 54.5 with dt = 0.5 Fast time integration at level 0 from 54.5 to 55 with dt = 0.5 Fast time integration at level 0 from 55 to 55.5 with dt = 0.5 Fast time integration at level 0 from 55.5 to 56 with dt = 0.5 Time integration of scalars at level 0 from 54 to 56 with dt = 2 using RHS created at 55 Done with advance_dycore at level 0 [Level 0 step 28] Advanced 4096 cells [Level 1 step 28] ADVANCE from elapsed time = 54 to 56 with dt = 2 Making slow rhs at time 54 for fast variables advancing from 54 to 56 No-substepping time integration at level 1 to 56 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003335785586 0.001269953093 and volume-weighted sum 8595.124023 Subtracting 2.797891966e-06 from rhs in subdomain 0 Sum after subtraction -0.001746229827 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003363764554 MLMG: Initial residual (resid0) = 0.0003363764554 MLMG: Final Iter. 2 resid, resid/bnorm = 1.704982424e-06, 0.005068673287 MLMG: Timers: Solve = 0.000754104 Iter = 0.000556254 Bottom = 5.276e-05 Time in solve 0.001077566 Max/L2 norm of divergence after solve at level 1 : 4.502537195e-06 0.0001552499743 and volume-weighted sum 8595.124023 Time integration of scalars at level 1 from 54 to 56 with dt = 2 using RHS created at 54 Making slow rhs at time 56 for fast variables advancing from 54 to 56 No-substepping time integration at level 1 to 56 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.371814869e-05 0.000230578371 and volume-weighted sum 8595.12207 Subtracting 2.797891284e-06 from rhs in subdomain 0 Sum after subtraction 0.004947651178 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.092025559e-05 MLMG: Initial residual (resid0) = 1.092025559e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 5.366486221e-06, 0.4914249778 MLMG: Timers: Solve = 0.000523848 Iter = 0.000314213 Bottom = 2.8644e-05 Time in solve 0.000846633 Max/L2 norm of divergence after solve at level 1 : 8.165370673e-06 0.0001562300458 and volume-weighted sum 8595.116211 Time integration of scalars at level 1 from 54 to 56 with dt = 2 using RHS created at 56 Done with advance_dycore at level 1 [Level 1 step 28] Advanced 3072 cells Coarse STEP 28 ends. TIME = 56 DT = 2 Timestep time = 0.016149117 seconds. Coarse STEP 29 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.687137757 (terrain aware) 1.687137757 (terrain unaware) Anelastic dt at level 0 would be: 23.55941976 (terrain aware) 23.55941976 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2857387768 (terrain aware) 0.2857387768 (terrain unaware) Anelastic dt at level 1 would be: 11.37011869 (terrain aware) 11.37011869 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 29] ADVANCE from elapsed time = 56 to 58 with dt = 2 Making slow rhs at time 56 for fast variables advancing from 56 to 56.66666666667 Fast time integration at level 0 from 56 to 56.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 56 to 56.66666666667 with dt = 0.6666666666667 using RHS created at 56 Making slow rhs at time 56.66666666667 for fast variables advancing from 56 to 57 Fast time integration at level 0 from 56 to 56.5 with dt = 0.5 Fast time integration at level 0 from 56.5 to 57 with dt = 0.5 Time integration of scalars at level 0 from 56 to 57 with dt = 1 using RHS created at 56.66666666667 Making slow rhs at time 57 for fast variables advancing from 56 to 58 Fast time integration at level 0 from 56 to 56.5 with dt = 0.5 Fast time integration at level 0 from 56.5 to 57 with dt = 0.5 Fast time integration at level 0 from 57 to 57.5 with dt = 0.5 Fast time integration at level 0 from 57.5 to 58 with dt = 0.5 Time integration of scalars at level 0 from 56 to 58 with dt = 2 using RHS created at 57 Done with advance_dycore at level 0 [Level 0 step 29] Advanced 4096 cells [Level 1 step 29] ADVANCE from elapsed time = 56 to 58 with dt = 2 Making slow rhs at time 56 for fast variables advancing from 56 to 58 No-substepping time integration at level 1 to 58 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000280662498 0.0008950668271 and volume-weighted sum 8582.064453 Subtracting 2.793640761e-06 from rhs in subdomain 0 Sum after subtraction 0.008672941476 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002778688504 MLMG: Initial residual (resid0) = 0.0002778688504 MLMG: Final Iter. 2 resid, resid/bnorm = 1.145245733e-06, 0.004121533129 MLMG: Timers: Solve = 0.000786059 Iter = 0.00053131 Bottom = 5.5461e-05 Time in solve 0.00112161 Max/L2 norm of divergence after solve at level 1 : 3.938679583e-06 0.0001549573062 and volume-weighted sum 8582.056641 Time integration of scalars at level 1 from 56 to 58 with dt = 2 using RHS created at 56 Making slow rhs at time 58 for fast variables advancing from 56 to 58 No-substepping time integration at level 1 to 58 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.417670865e-05 0.0002350723516 and volume-weighted sum 8582.064453 Subtracting 2.793640761e-06 from rhs in subdomain 0 Sum after subtraction 0.008032657206 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.138306561e-05 MLMG: Initial residual (resid0) = 1.138306561e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 5.606859759e-06, 0.4925614893 MLMG: Timers: Solve = 0.000522633 Iter = 0.000321124 Bottom = 2.8693e-05 Time in solve 0.000837515 Max/L2 norm of divergence after solve at level 1 : 8.399132639e-06 0.0001560868986 and volume-weighted sum 8582.0625 Time integration of scalars at level 1 from 56 to 58 with dt = 2 using RHS created at 58 Done with advance_dycore at level 1 [Level 1 step 29] Advanced 3072 cells Coarse STEP 29 ends. TIME = 58 DT = 2 Timestep time = 0.016424121 seconds. Coarse STEP 30 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.685615902 (terrain aware) 1.685615902 (terrain unaware) Anelastic dt at level 0 would be: 23.32169498 (terrain aware) 23.32169498 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2856419193 (terrain aware) 0.2856419193 (terrain unaware) Anelastic dt at level 1 would be: 10.98871215 (terrain aware) 10.98871215 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 30] ADVANCE from elapsed time = 58 to 60 with dt = 2 Making slow rhs at time 58 for fast variables advancing from 58 to 58.66666666667 Fast time integration at level 0 from 58 to 58.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 58 to 58.66666666667 with dt = 0.6666666666667 using RHS created at 58 Making slow rhs at time 58.66666666667 for fast variables advancing from 58 to 59 Fast time integration at level 0 from 58 to 58.5 with dt = 0.5 Fast time integration at level 0 from 58.5 to 59 with dt = 0.5 Time integration of scalars at level 0 from 58 to 59 with dt = 1 using RHS created at 58.66666666667 Making slow rhs at time 59 for fast variables advancing from 58 to 60 Fast time integration at level 0 from 58 to 58.5 with dt = 0.5 Fast time integration at level 0 from 58.5 to 59 with dt = 0.5 Fast time integration at level 0 from 59 to 59.5 with dt = 0.5 Fast time integration at level 0 from 59.5 to 60 with dt = 0.5 Time integration of scalars at level 0 from 58 to 60 with dt = 2 using RHS created at 59 Done with advance_dycore at level 0 [Level 0 step 30] Advanced 4096 cells [Level 1 step 30] ADVANCE from elapsed time = 58 to 60 with dt = 2 Making slow rhs at time 58 for fast variables advancing from 58 to 60 No-substepping time integration at level 1 to 60 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001850462286 0.0008560722927 and volume-weighted sum 8329.595703 Subtracting 2.711457e-06 from rhs in subdomain 0 Sum after subtraction 0.01810258254 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001877576869 MLMG: Initial residual (resid0) = 0.0001877576869 MLMG: Final Iter. 2 resid, resid/bnorm = 1.162537956e-06, 0.006191692781 MLMG: Timers: Solve = 0.000753372 Iter = 0.000554869 Bottom = 5.5821e-05 Time in solve 0.001087652 Max/L2 norm of divergence after solve at level 1 : 3.874185495e-06 0.0001503749227 and volume-weighted sum 8329.592773 Time integration of scalars at level 1 from 58 to 60 with dt = 2 using RHS created at 58 Making slow rhs at time 60 for fast variables advancing from 58 to 60 No-substepping time integration at level 1 to 60 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.453020377e-05 0.0002372975287 and volume-weighted sum 8329.592773 Subtracting 2.711456091e-06 from rhs in subdomain 0 Sum after subtraction 0.01606531441 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.181874177e-05 MLMG: Initial residual (resid0) = 1.181874177e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 5.835493539e-06, 0.4937491417 MLMG: Timers: Solve = 0.000512608 Iter = 0.000310677 Bottom = 2.9141e-05 Time in solve 0.000865813 Max/L2 norm of divergence after solve at level 1 : 8.544884622e-06 0.0001516627672 and volume-weighted sum 8329.598633 Time integration of scalars at level 1 from 58 to 60 with dt = 2 using RHS created at 60 Done with advance_dycore at level 1 [Level 1 step 30] Advanced 3072 cells Coarse STEP 30 ends. TIME = 60 DT = 2 Timestep time = 0.016165994 seconds. Coarse STEP 31 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.683979605 (terrain aware) 1.683979605 (terrain unaware) Anelastic dt at level 0 would be: 22.98156704 (terrain aware) 22.98156704 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2855454529 (terrain aware) 0.2855454529 (terrain unaware) Anelastic dt at level 1 would be: 10.63575014 (terrain aware) 10.63575014 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 31] ADVANCE from elapsed time = 60 to 62 with dt = 2 Making slow rhs at time 60 for fast variables advancing from 60 to 60.66666666667 Fast time integration at level 0 from 60 to 60.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 60 to 60.66666666667 with dt = 0.6666666666667 using RHS created at 60 Making slow rhs at time 60.66666666667 for fast variables advancing from 60 to 61 Fast time integration at level 0 from 60 to 60.5 with dt = 0.5 Fast time integration at level 0 from 60.5 to 61 with dt = 0.5 Time integration of scalars at level 0 from 60 to 61 with dt = 1 using RHS created at 60.66666666667 Making slow rhs at time 61 for fast variables advancing from 60 to 62 Fast time integration at level 0 from 60 to 60.5 with dt = 0.5 Fast time integration at level 0 from 60.5 to 61 with dt = 0.5 Fast time integration at level 0 from 61 to 61.5 with dt = 0.5 Fast time integration at level 0 from 61.5 to 62 with dt = 0.5 Time integration of scalars at level 0 from 60 to 62 with dt = 2 using RHS created at 61 Done with advance_dycore at level 0 [Level 0 step 31] Advanced 4096 cells [Level 1 step 31] ADVANCE from elapsed time = 60 to 62 with dt = 2 Making slow rhs at time 60 for fast variables advancing from 60 to 62 No-substepping time integration at level 1 to 62 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000236961263 0.001141841989 and volume-weighted sum 7895.389648 Subtracting 2.570113793e-06 from rhs in subdomain 0 Sum after subtraction 0.000320142135 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002395313786 MLMG: Initial residual (resid0) = 0.0002395313786 MLMG: Final Iter. 2 resid, resid/bnorm = 1.61123171e-06, 0.006726599764 MLMG: Timers: Solve = 0.000731301 Iter = 0.000531081 Bottom = 5.5938e-05 Time in solve 0.001060353 Max/L2 norm of divergence after solve at level 1 : 4.181230906e-06 0.0001425631053 and volume-weighted sum 7895.382324 Time integration of scalars at level 1 from 60 to 62 with dt = 2 using RHS created at 60 Making slow rhs at time 62 for fast variables advancing from 60 to 62 No-substepping time integration at level 1 to 62 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.481969957e-05 0.0002376661723 and volume-weighted sum 7895.382324 Subtracting 2.570111519e-06 from rhs in subdomain 0 Sum after subtraction 0.01478474587 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.224958305e-05 MLMG: Initial residual (resid0) = 1.224958305e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 6.063665751e-06, 0.4950099587 MLMG: Timers: Solve = 0.00051056 Iter = 0.000310893 Bottom = 2.8469e-05 Time in solve 0.000872844 Max/L2 norm of divergence after solve at level 1 : 8.635222912e-06 0.000144001533 and volume-weighted sum 7895.381348 Time integration of scalars at level 1 from 60 to 62 with dt = 2 using RHS created at 62 Done with advance_dycore at level 1 [Level 1 step 31] Advanced 3072 cells Coarse STEP 31 ends. TIME = 62 DT = 2 Timestep time = 0.017006544 seconds. Coarse STEP 32 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.682336901 (terrain aware) 1.682336901 (terrain unaware) Anelastic dt at level 0 would be: 22.39510026 (terrain aware) 22.39510026 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.285448763 (terrain aware) 0.285448763 (terrain unaware) Anelastic dt at level 1 would be: 10.30346855 (terrain aware) 10.30346855 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 32] ADVANCE from elapsed time = 62 to 64 with dt = 2 Making slow rhs at time 62 for fast variables advancing from 62 to 62.66666666667 Fast time integration at level 0 from 62 to 62.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 62 to 62.66666666667 with dt = 0.6666666666667 using RHS created at 62 Making slow rhs at time 62.66666666667 for fast variables advancing from 62 to 63 Fast time integration at level 0 from 62 to 62.5 with dt = 0.5 Fast time integration at level 0 from 62.5 to 63 with dt = 0.5 Time integration of scalars at level 0 from 62 to 63 with dt = 1 using RHS created at 62.66666666667 Making slow rhs at time 63 for fast variables advancing from 62 to 64 Fast time integration at level 0 from 62 to 62.5 with dt = 0.5 Fast time integration at level 0 from 62.5 to 63 with dt = 0.5 Fast time integration at level 0 from 63 to 63.5 with dt = 0.5 Fast time integration at level 0 from 63.5 to 64 with dt = 0.5 Time integration of scalars at level 0 from 62 to 64 with dt = 2 using RHS created at 63 Done with advance_dycore at level 0 [Level 0 step 32] Advanced 4096 cells [Level 1 step 32] ADVANCE from elapsed time = 62 to 64 with dt = 2 Making slow rhs at time 62 for fast variables advancing from 62 to 64 No-substepping time integration at level 1 to 64 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001698720444 0.0007857375895 and volume-weighted sum 7331.735352 Subtracting 2.386632559e-06 from rhs in subdomain 0 Sum after subtraction -0.01574517228 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001722586749 MLMG: Initial residual (resid0) = 0.0001722586749 MLMG: Final Iter. 2 resid, resid/bnorm = 1.166747097e-06, 0.006773226894 MLMG: Timers: Solve = 0.000734031 Iter = 0.000532221 Bottom = 5.4024e-05 Time in solve 0.001063284 Max/L2 norm of divergence after solve at level 1 : 3.55305383e-06 0.0001323385077 and volume-weighted sum 7331.733398 Time integration of scalars at level 1 from 62 to 64 with dt = 2 using RHS created at 62 Making slow rhs at time 64 for fast variables advancing from 62 to 64 No-substepping time integration at level 1 to 64 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.503463136e-05 0.0002370284492 and volume-weighted sum 7331.741211 Subtracting 2.386634606e-06 from rhs in subdomain 0 Sum after subtraction 0.002764863893 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.26479963e-05 MLMG: Initial residual (resid0) = 1.26479963e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 6.292763373e-06, 0.4975304604 MLMG: Timers: Solve = 0.000758884 Iter = 0.000350314 Bottom = 2.944e-05 Time in solve 0.001082321 Max/L2 norm of divergence after solve at level 1 : 8.679460734e-06 0.0001340543386 and volume-weighted sum 7331.740234 Time integration of scalars at level 1 from 62 to 64 with dt = 2 using RHS created at 64 Done with advance_dycore at level 1 [Level 1 step 32] Advanced 3072 cells Coarse STEP 32 ends. TIME = 64 DT = 2 Timestep time = 0.016433757 seconds. Coarse STEP 33 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.68073294 (terrain aware) 1.68073294 (terrain unaware) Anelastic dt at level 0 would be: 21.66072813 (terrain aware) 21.66072813 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2853516447 (terrain aware) 0.2853516447 (terrain unaware) Anelastic dt at level 1 would be: 9.994137734 (terrain aware) 9.994137734 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 33] ADVANCE from elapsed time = 64 to 66 with dt = 2 Making slow rhs at time 64 for fast variables advancing from 64 to 64.66666666667 Fast time integration at level 0 from 64 to 64.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 64 to 64.66666666667 with dt = 0.6666666666667 using RHS created at 64 Making slow rhs at time 64.66666666667 for fast variables advancing from 64 to 65 Fast time integration at level 0 from 64 to 64.5 with dt = 0.5 Fast time integration at level 0 from 64.5 to 65 with dt = 0.5 Time integration of scalars at level 0 from 64 to 65 with dt = 1 using RHS created at 64.66666666667 Making slow rhs at time 65 for fast variables advancing from 64 to 66 Fast time integration at level 0 from 64 to 64.5 with dt = 0.5 Fast time integration at level 0 from 64.5 to 65 with dt = 0.5 Fast time integration at level 0 from 65 to 65.5 with dt = 0.5 Fast time integration at level 0 from 65.5 to 66 with dt = 0.5 Time integration of scalars at level 0 from 64 to 66 with dt = 2 using RHS created at 65 Done with advance_dycore at level 0 [Level 0 step 33] Advanced 4096 cells [Level 1 step 33] ADVANCE from elapsed time = 64 to 66 with dt = 2 Making slow rhs at time 64 for fast variables advancing from 64 to 66 No-substepping time integration at level 1 to 66 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001012918074 0.0004009301774 and volume-weighted sum 6697.900391 Subtracting 2.180306183e-06 from rhs in subdomain 0 Sum after subtraction 0.01434818842 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.911149391e-05 MLMG: Initial residual (resid0) = 9.911149391e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.804498066e-06, 0.08883427829 MLMG: Timers: Solve = 0.000520237 Iter = 0.00032024 Bottom = 2.9561e-05 Time in solve 0.000842354 Max/L2 norm of divergence after solve at level 1 : 8.69622454e-06 0.0001270356152 and volume-weighted sum 6697.901855 Time integration of scalars at level 1 from 64 to 66 with dt = 2 using RHS created at 64 Making slow rhs at time 66 for fast variables advancing from 64 to 66 No-substepping time integration at level 1 to 66 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.667602919e-05 0.0002349633578 and volume-weighted sum 6697.893066 Subtracting 2.180303682e-06 from rhs in subdomain 0 Sum after subtraction 0.0009604264051 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.449572574e-05 MLMG: Initial residual (resid0) = 1.449572574e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 6.121205388e-06, 0.4222765863 MLMG: Timers: Solve = 0.000506285 Iter = 0.000307106 Bottom = 2.8485e-05 Time in solve 0.000825688 Max/L2 norm of divergence after solve at level 1 : 8.305069059e-06 0.0001227189059 and volume-weighted sum 6697.896484 Time integration of scalars at level 1 from 64 to 66 with dt = 2 using RHS created at 66 Done with advance_dycore at level 1 [Level 1 step 33] Advanced 3072 cells Coarse STEP 33 ends. TIME = 66 DT = 2 Timestep time = 0.015778113 seconds. Coarse STEP 34 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.679205124 (terrain aware) 1.679205124 (terrain unaware) Anelastic dt at level 0 would be: 20.86064546 (terrain aware) 20.86064546 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2852540793 (terrain aware) 0.2852540793 (terrain unaware) Anelastic dt at level 1 would be: 9.705229257 (terrain aware) 9.705229257 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 34] ADVANCE from elapsed time = 66 to 68 with dt = 2 Making slow rhs at time 66 for fast variables advancing from 66 to 66.66666666667 Fast time integration at level 0 from 66 to 66.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 66 to 66.66666666667 with dt = 0.6666666666667 using RHS created at 66 Making slow rhs at time 66.66666666667 for fast variables advancing from 66 to 67 Fast time integration at level 0 from 66 to 66.5 with dt = 0.5 Fast time integration at level 0 from 66.5 to 67 with dt = 0.5 Time integration of scalars at level 0 from 66 to 67 with dt = 1 using RHS created at 66.66666666667 Making slow rhs at time 67 for fast variables advancing from 66 to 68 Fast time integration at level 0 from 66 to 66.5 with dt = 0.5 Fast time integration at level 0 from 66.5 to 67 with dt = 0.5 Fast time integration at level 0 from 67 to 67.5 with dt = 0.5 Fast time integration at level 0 from 67.5 to 68 with dt = 0.5 Time integration of scalars at level 0 from 66 to 68 with dt = 2 using RHS created at 67 Done with advance_dycore at level 0 [Level 0 step 34] Advanced 4096 cells [Level 1 step 34] ADVANCE from elapsed time = 66 to 68 with dt = 2 Making slow rhs at time 66 for fast variables advancing from 66 to 68 No-substepping time integration at level 1 to 68 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001622468117 0.0008363344241 and volume-weighted sum 6043.282227 Subtracting 1.967214303e-06 from rhs in subdomain 0 Sum after subtraction 0.04016328603 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001602795819 MLMG: Initial residual (resid0) = 0.0001602795819 MLMG: Final Iter. 2 resid, resid/bnorm = 9.135173968e-07, 0.005699524656 MLMG: Timers: Solve = 0.000727916 Iter = 0.000521987 Bottom = 5.6299e-05 Time in solve 0.001055434 Max/L2 norm of divergence after solve at level 1 : 2.880115062e-06 0.0001091141312 and volume-weighted sum 6043.284668 Time integration of scalars at level 1 from 66 to 68 with dt = 2 using RHS created at 66 Making slow rhs at time 68 for fast variables advancing from 66 to 68 No-substepping time integration at level 1 to 68 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.555873314e-05 0.0002370422881 and volume-weighted sum 6043.287109 Subtracting 1.967215894e-06 from rhs in subdomain 0 Sum after subtraction -0.01367880031 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.359152157e-05 MLMG: Initial residual (resid0) = 1.359152157e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 6.785612641e-06, 0.4992533624 MLMG: Timers: Solve = 0.000507429 Iter = 0.000304694 Bottom = 2.9666e-05 Time in solve 0.000876675 Max/L2 norm of divergence after solve at level 1 : 8.75024125e-06 0.0001114593761 and volume-weighted sum 6043.287598 Time integration of scalars at level 1 from 66 to 68 with dt = 2 using RHS created at 68 Done with advance_dycore at level 1 [Level 1 step 34] Advanced 3072 cells Coarse STEP 34 ends. TIME = 68 DT = 2 Timestep time = 0.016215115 seconds. Coarse STEP 35 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.677802925 (terrain aware) 1.677802925 (terrain unaware) Anelastic dt at level 0 would be: 20.09477585 (terrain aware) 20.09477585 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2851560856 (terrain aware) 0.2851560856 (terrain unaware) Anelastic dt at level 1 would be: 9.434680798 (terrain aware) 9.434680798 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 35] ADVANCE from elapsed time = 68 to 70 with dt = 2 Making slow rhs at time 68 for fast variables advancing from 68 to 68.66666666667 Fast time integration at level 0 from 68 to 68.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 68 to 68.66666666667 with dt = 0.6666666666667 using RHS created at 68 Making slow rhs at time 68.66666666667 for fast variables advancing from 68 to 69 Fast time integration at level 0 from 68 to 68.5 with dt = 0.5 Fast time integration at level 0 from 68.5 to 69 with dt = 0.5 Time integration of scalars at level 0 from 68 to 69 with dt = 1 using RHS created at 68.66666666667 Making slow rhs at time 69 for fast variables advancing from 68 to 70 Fast time integration at level 0 from 68 to 68.5 with dt = 0.5 Fast time integration at level 0 from 68.5 to 69 with dt = 0.5 Fast time integration at level 0 from 69 to 69.5 with dt = 0.5 Fast time integration at level 0 from 69.5 to 70 with dt = 0.5 Time integration of scalars at level 0 from 68 to 70 with dt = 2 using RHS created at 69 Done with advance_dycore at level 0 [Level 0 step 35] Advanced 4096 cells [Level 1 step 35] ADVANCE from elapsed time = 68 to 70 with dt = 2 Making slow rhs at time 68 for fast variables advancing from 68 to 70 No-substepping time integration at level 1 to 70 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001307970233 0.0006757032243 and volume-weighted sum 5445.777344 Subtracting 1.772713972e-06 from rhs in subdomain 0 Sum after subtraction 0.01461012289 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000130264496 MLMG: Initial residual (resid0) = 0.000130264496 MLMG: Final Iter. 2 resid, resid/bnorm = 8.836123015e-07, 0.006783216726 MLMG: Timers: Solve = 0.000728897 Iter = 0.000522011 Bottom = 5.5512e-05 Time in solve 0.001059593 Max/L2 norm of divergence after solve at level 1 : 2.657179721e-06 9.832603246e-05 and volume-weighted sum 5445.779297 Time integration of scalars at level 1 from 68 to 70 with dt = 2 using RHS created at 68 Making slow rhs at time 70 for fast variables advancing from 68 to 70 No-substepping time integration at level 1 to 70 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.595483627e-05 0.000238431443 and volume-weighted sum 5445.779297 Subtracting 1.772714654e-06 from rhs in subdomain 0 Sum after subtraction -0.01382431947 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.418212651e-05 MLMG: Initial residual (resid0) = 1.418212651e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 7.077732334e-06, 0.4990600049 MLMG: Timers: Solve = 0.000519168 Iter = 0.000320102 Bottom = 3.0446e-05 Time in solve 0.000830093 Max/L2 norm of divergence after solve at level 1 : 8.846633136e-06 0.0001011082277 and volume-weighted sum 5445.776855 Time integration of scalars at level 1 from 68 to 70 with dt = 2 using RHS created at 70 Done with advance_dycore at level 1 [Level 1 step 35] Advanced 3072 cells Coarse STEP 35 ends. TIME = 70 DT = 2 Timestep time = 0.016023555 seconds. Coarse STEP 36 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.676484917 (terrain aware) 1.676484917 (terrain unaware) Anelastic dt at level 0 would be: 19.42034692 (terrain aware) 19.42034692 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2850572722 (terrain aware) 0.2850572722 (terrain unaware) Anelastic dt at level 1 would be: 9.180614215 (terrain aware) 9.180614215 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 36] ADVANCE from elapsed time = 70 to 72 with dt = 2 Making slow rhs at time 70 for fast variables advancing from 70 to 70.66666666667 Fast time integration at level 0 from 70 to 70.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 70 to 70.66666666667 with dt = 0.6666666666667 using RHS created at 70 Making slow rhs at time 70.66666666667 for fast variables advancing from 70 to 71 Fast time integration at level 0 from 70 to 70.5 with dt = 0.5 Fast time integration at level 0 from 70.5 to 71 with dt = 0.5 Time integration of scalars at level 0 from 70 to 71 with dt = 1 using RHS created at 70.66666666667 Making slow rhs at time 71 for fast variables advancing from 70 to 72 Fast time integration at level 0 from 70 to 70.5 with dt = 0.5 Fast time integration at level 0 from 70.5 to 71 with dt = 0.5 Fast time integration at level 0 from 71 to 71.5 with dt = 0.5 Fast time integration at level 0 from 71.5 to 72 with dt = 0.5 Time integration of scalars at level 0 from 70 to 72 with dt = 2 using RHS created at 71 Done with advance_dycore at level 0 [Level 0 step 36] Advanced 4096 cells [Level 1 step 36] ADVANCE from elapsed time = 70 to 72 with dt = 2 Making slow rhs at time 70 for fast variables advancing from 70 to 72 No-substepping time integration at level 1 to 72 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001289570937 0.000518522691 and volume-weighted sum 5060.992188 Subtracting 1.647458362e-06 from rhs in subdomain 0 Sum after subtraction 0.008789356798 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001306045451 MLMG: Initial residual (resid0) = 0.0001306045451 MLMG: Final Iter. 2 resid, resid/bnorm = 6.72043825e-07, 0.005145638715 MLMG: Timers: Solve = 0.000759203 Iter = 0.00055895 Bottom = 6.7262e-05 Time in solve 0.001085733 Max/L2 norm of divergence after solve at level 1 : 2.090935595e-06 9.137235611e-05 and volume-weighted sum 5060.992188 Time integration of scalars at level 1 from 70 to 72 with dt = 2 using RHS created at 70 Making slow rhs at time 72 for fast variables advancing from 70 to 72 No-substepping time integration at level 1 to 72 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.642969437e-05 0.0002424014529 and volume-weighted sum 5060.987305 Subtracting 1.64745677e-06 from rhs in subdomain 0 Sum after subtraction -0.002677552402 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.47822384e-05 MLMG: Initial residual (resid0) = 1.47822384e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 7.372439541e-06, 0.4987363517 MLMG: Timers: Solve = 0.000519362 Iter = 0.000307659 Bottom = 2.9916e-05 Time in solve 0.000845352 Max/L2 norm of divergence after solve at level 1 : 9.023118764e-06 9.456866974e-05 and volume-weighted sum 5060.99707 Time integration of scalars at level 1 from 70 to 72 with dt = 2 using RHS created at 72 Done with advance_dycore at level 1 [Level 1 step 36] Advanced 3072 cells Coarse STEP 36 ends. TIME = 72 DT = 2 Timestep time = 0.016230215 seconds. Coarse STEP 37 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.675086593 (terrain aware) 1.675086593 (terrain unaware) Anelastic dt at level 0 would be: 18.81286116 (terrain aware) 18.81286116 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2849569688 (terrain aware) 0.2849569688 (terrain unaware) Anelastic dt at level 1 would be: 8.941428528 (terrain aware) 8.941428528 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 37] ADVANCE from elapsed time = 72 to 74 with dt = 2 Making slow rhs at time 72 for fast variables advancing from 72 to 72.66666666667 Fast time integration at level 0 from 72 to 72.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 72 to 72.66666666667 with dt = 0.6666666666667 using RHS created at 72 Making slow rhs at time 72.66666666667 for fast variables advancing from 72 to 73 Fast time integration at level 0 from 72 to 72.5 with dt = 0.5 Fast time integration at level 0 from 72.5 to 73 with dt = 0.5 Time integration of scalars at level 0 from 72 to 73 with dt = 1 using RHS created at 72.66666666667 Making slow rhs at time 73 for fast variables advancing from 72 to 74 Fast time integration at level 0 from 72 to 72.5 with dt = 0.5 Fast time integration at level 0 from 72.5 to 73 with dt = 0.5 Fast time integration at level 0 from 73 to 73.5 with dt = 0.5 Fast time integration at level 0 from 73.5 to 74 with dt = 0.5 Time integration of scalars at level 0 from 72 to 74 with dt = 2 using RHS created at 73 Done with advance_dycore at level 0 [Level 0 step 37] Advanced 4096 cells [Level 1 step 37] ADVANCE from elapsed time = 72 to 74 with dt = 2 Making slow rhs at time 72 for fast variables advancing from 72 to 74 No-substepping time integration at level 1 to 74 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000202655152 0.0006786293816 and volume-weighted sum 4954.333496 Subtracting 1.612738743e-06 from rhs in subdomain 0 Sum after subtraction -0.00192085281 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002042678971 MLMG: Initial residual (resid0) = 0.0002042678971 MLMG: Final Iter. 2 resid, resid/bnorm = 8.865226846e-07, 0.004339999985 MLMG: Timers: Solve = 0.000728659 Iter = 0.000528768 Bottom = 5.5825e-05 Time in solve 0.001053028 Max/L2 norm of divergence after solve at level 1 : 2.080167178e-06 8.94809491e-05 and volume-weighted sum 4954.332031 Time integration of scalars at level 1 from 72 to 74 with dt = 2 using RHS created at 72 Making slow rhs at time 74 for fast variables advancing from 72 to 74 No-substepping time integration at level 1 to 74 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.696229447e-05 0.0002480252588 and volume-weighted sum 4954.339844 Subtracting 1.612740789e-06 from rhs in subdomain 0 Sum after subtraction 0.00954605639 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.534954936e-05 MLMG: Initial residual (resid0) = 1.534954936e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 7.672590073e-06, 0.4998576641 MLMG: Timers: Solve = 0.000520589 Iter = 0.000316539 Bottom = 2.9622e-05 Time in solve 0.000837911 Max/L2 norm of divergence after solve at level 1 : 9.286217391e-06 9.290364687e-05 and volume-weighted sum 4954.336914 Time integration of scalars at level 1 from 72 to 74 with dt = 2 using RHS created at 74 Done with advance_dycore at level 1 [Level 1 step 37] Advanced 3072 cells Coarse STEP 37 ends. TIME = 74 DT = 2 Timestep time = 0.016051464 seconds. Coarse STEP 38 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.67343465 (terrain aware) 1.67343465 (terrain unaware) Anelastic dt at level 0 would be: 18.19546792 (terrain aware) 18.19546792 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2848542253 (terrain aware) 0.2848542253 (terrain unaware) Anelastic dt at level 1 would be: 8.715700377 (terrain aware) 8.715700377 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 38] ADVANCE from elapsed time = 74 to 76 with dt = 2 Making slow rhs at time 74 for fast variables advancing from 74 to 74.66666666667 Fast time integration at level 0 from 74 to 74.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 74 to 74.66666666667 with dt = 0.6666666666667 using RHS created at 74 Making slow rhs at time 74.66666666667 for fast variables advancing from 74 to 75 Fast time integration at level 0 from 74 to 74.5 with dt = 0.5 Fast time integration at level 0 from 74.5 to 75 with dt = 0.5 Time integration of scalars at level 0 from 74 to 75 with dt = 1 using RHS created at 74.66666666667 Making slow rhs at time 75 for fast variables advancing from 74 to 76 Fast time integration at level 0 from 74 to 74.5 with dt = 0.5 Fast time integration at level 0 from 74.5 to 75 with dt = 0.5 Fast time integration at level 0 from 75 to 75.5 with dt = 0.5 Fast time integration at level 0 from 75.5 to 76 with dt = 0.5 Time integration of scalars at level 0 from 74 to 76 with dt = 2 using RHS created at 75 Done with advance_dycore at level 0 [Level 0 step 38] Advanced 4096 cells [Level 1 step 38] ADVANCE from elapsed time = 74 to 76 with dt = 2 Making slow rhs at time 74 for fast variables advancing from 74 to 76 No-substepping time integration at level 1 to 76 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002147153718 0.0007192273042 and volume-weighted sum 5145.903809 Subtracting 1.675098929e-06 from rhs in subdomain 0 Sum after subtraction 0.00158615876 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002130402718 MLMG: Initial residual (resid0) = 0.0002130402718 MLMG: Final Iter. 2 resid, resid/bnorm = 9.968498489e-07, 0.00467916159 MLMG: Timers: Solve = 0.000726761 Iter = 0.000529403 Bottom = 5.6208e-05 Time in solve 0.001053449 Max/L2 norm of divergence after solve at level 1 : 2.066837624e-06 9.294487245e-05 and volume-weighted sum 5145.897461 Time integration of scalars at level 1 from 74 to 76 with dt = 2 using RHS created at 74 Making slow rhs at time 76 for fast variables advancing from 74 to 76 No-substepping time integration at level 1 to 76 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.755118137e-05 0.0002557177504 and volume-weighted sum 5145.904297 Subtracting 1.675099043e-06 from rhs in subdomain 0 Sum after subtraction -0.002735760063 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.587608313e-05 MLMG: Initial residual (resid0) = 1.587608313e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 7.978151189e-06, 0.5025264025 MLMG: Timers: Solve = 0.000681257 Iter = 0.000321776 Bottom = 3.0038e-05 Time in solve 0.001010853 Max/L2 norm of divergence after solve at level 1 : 9.654089808e-06 9.642203077e-05 and volume-weighted sum 5145.90625 Time integration of scalars at level 1 from 74 to 76 with dt = 2 using RHS created at 76 Done with advance_dycore at level 1 [Level 1 step 38] Advanced 3072 cells Coarse STEP 38 ends. TIME = 76 DT = 2 Timestep time = 0.016223569 seconds. Coarse STEP 39 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.671530132 (terrain aware) 1.671530132 (terrain unaware) Anelastic dt at level 0 would be: 17.52279375 (terrain aware) 17.52279375 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2847485574 (terrain aware) 0.2847485574 (terrain unaware) Anelastic dt at level 1 would be: 8.502270453 (terrain aware) 8.502270453 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 39] ADVANCE from elapsed time = 76 to 78 with dt = 2 Making slow rhs at time 76 for fast variables advancing from 76 to 76.66666666667 Fast time integration at level 0 from 76 to 76.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 76 to 76.66666666667 with dt = 0.6666666666667 using RHS created at 76 Making slow rhs at time 76.66666666667 for fast variables advancing from 76 to 77 Fast time integration at level 0 from 76 to 76.5 with dt = 0.5 Fast time integration at level 0 from 76.5 to 77 with dt = 0.5 Time integration of scalars at level 0 from 76 to 77 with dt = 1 using RHS created at 76.66666666667 Making slow rhs at time 77 for fast variables advancing from 76 to 78 Fast time integration at level 0 from 76 to 76.5 with dt = 0.5 Fast time integration at level 0 from 76.5 to 77 with dt = 0.5 Fast time integration at level 0 from 77 to 77.5 with dt = 0.5 Fast time integration at level 0 from 77.5 to 78 with dt = 0.5 Time integration of scalars at level 0 from 76 to 78 with dt = 2 using RHS created at 77 Done with advance_dycore at level 0 [Level 0 step 39] Advanced 4096 cells [Level 1 step 39] ADVANCE from elapsed time = 76 to 78 with dt = 2 Making slow rhs at time 76 for fast variables advancing from 76 to 78 No-substepping time integration at level 1 to 78 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001861236524 0.0006441878504 and volume-weighted sum 5591.387695 Subtracting 1.820113198e-06 from rhs in subdomain 0 Sum after subtraction -0.01839362085 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001843035425 MLMG: Initial residual (resid0) = 0.0001843035425 MLMG: Final Iter. 2 resid, resid/bnorm = 8.572023944e-07, 0.004651036114 MLMG: Timers: Solve = 0.000738177 Iter = 0.000539078 Bottom = 5.59e-05 Time in solve 0.001056221 Max/L2 norm of divergence after solve at level 1 : 2.218410373e-06 0.0001009636981 and volume-weighted sum 5591.384277 Time integration of scalars at level 1 from 76 to 78 with dt = 2 using RHS created at 76 Making slow rhs at time 78 for fast variables advancing from 76 to 78 No-substepping time integration at level 1 to 78 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.819932368e-05 0.0002655888675 and volume-weighted sum 5591.388672 Subtracting 1.820113539e-06 from rhs in subdomain 0 Sum after subtraction -0.01376611181 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.637921378e-05 MLMG: Initial residual (resid0) = 1.637921378e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.287640412e-06, 0.50598526 MLMG: Timers: Solve = 0.000851571 Iter = 0.000545008 Bottom = 7.6298e-05 Time in solve 0.001161315 Max/L2 norm of divergence after solve at level 1 : 1.010624692e-05 0.0001043731609 and volume-weighted sum 5591.381348 Time integration of scalars at level 1 from 76 to 78 with dt = 2 using RHS created at 78 Done with advance_dycore at level 1 [Level 1 step 39] Advanced 3072 cells Coarse STEP 39 ends. TIME = 78 DT = 2 Timestep time = 0.016219303 seconds. Coarse STEP 40 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.669545298 (terrain aware) 1.669545298 (terrain unaware) Anelastic dt at level 0 would be: 16.83034633 (terrain aware) 16.83034633 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2846396672 (terrain aware) 0.2846396672 (terrain unaware) Anelastic dt at level 1 would be: 8.295031662 (terrain aware) 8.295031662 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 40] ADVANCE from elapsed time = 78 to 80 with dt = 2 Making slow rhs at time 78 for fast variables advancing from 78 to 78.66666666667 Fast time integration at level 0 from 78 to 78.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 78 to 78.66666666667 with dt = 0.6666666666667 using RHS created at 78 Making slow rhs at time 78.66666666667 for fast variables advancing from 78 to 79 Fast time integration at level 0 from 78 to 78.5 with dt = 0.5 Fast time integration at level 0 from 78.5 to 79 with dt = 0.5 Time integration of scalars at level 0 from 78 to 79 with dt = 1 using RHS created at 78.66666666667 Making slow rhs at time 79 for fast variables advancing from 78 to 80 Fast time integration at level 0 from 78 to 78.5 with dt = 0.5 Fast time integration at level 0 from 78.5 to 79 with dt = 0.5 Fast time integration at level 0 from 79 to 79.5 with dt = 0.5 Fast time integration at level 0 from 79.5 to 80 with dt = 0.5 Time integration of scalars at level 0 from 78 to 80 with dt = 2 using RHS created at 79 Done with advance_dycore at level 0 [Level 0 step 40] Advanced 4096 cells [Level 1 step 40] ADVANCE from elapsed time = 78 to 80 with dt = 2 Making slow rhs at time 78 for fast variables advancing from 78 to 80 No-substepping time integration at level 1 to 80 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001160967513 0.0006519266171 and volume-weighted sum 6229.255371 Subtracting 2.027752316e-06 from rhs in subdomain 0 Sum after subtraction -0.009109498933 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001181245025 MLMG: Initial residual (resid0) = 0.0001181245025 MLMG: Final Iter. 2 resid, resid/bnorm = 9.010600479e-07, 0.007628053892 MLMG: Timers: Solve = 0.000724901 Iter = 0.000526257 Bottom = 5.3564e-05 Time in solve 0.001065273 Max/L2 norm of divergence after solve at level 1 : 2.440530807e-06 0.0001124588671 and volume-weighted sum 6229.256836 Time integration of scalars at level 1 from 78 to 80 with dt = 2 using RHS created at 78 Making slow rhs at time 80 for fast variables advancing from 78 to 80 No-substepping time integration at level 1 to 80 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.885928214e-05 0.0002769772254 and volume-weighted sum 6229.244141 Subtracting 2.027748678e-06 from rhs in subdomain 0 Sum after subtraction 0.01597800292 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.698945198e-05 MLMG: Initial residual (resid0) = 1.698945198e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.599127796e-06, 0.5061451197 MLMG: Timers: Solve = 0.000600361 Iter = 0.000406265 Bottom = 3.0287e-05 Time in solve 0.000936154 Max/L2 norm of divergence after solve at level 1 : 1.062825322e-05 0.0001157162333 and volume-weighted sum 6229.259277 Time integration of scalars at level 1 from 78 to 80 with dt = 2 using RHS created at 80 Done with advance_dycore at level 1 [Level 1 step 40] Advanced 3072 cells Coarse STEP 40 ends. TIME = 80 DT = 2 Timestep time = 0.016210536 seconds. Coarse STEP 41 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.667615895 (terrain aware) 1.667615895 (terrain unaware) Anelastic dt at level 0 would be: 16.22222876 (terrain aware) 16.22222876 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2845274801 (terrain aware) 0.2845274801 (terrain unaware) Anelastic dt at level 1 would be: 8.098584889 (terrain aware) 8.098584889 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 41] ADVANCE from elapsed time = 80 to 82 with dt = 2 Making slow rhs at time 80 for fast variables advancing from 80 to 80.66666666667 Fast time integration at level 0 from 80 to 80.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 80 to 80.66666666667 with dt = 0.6666666666667 using RHS created at 80 Making slow rhs at time 80.66666666667 for fast variables advancing from 80 to 81 Fast time integration at level 0 from 80 to 80.5 with dt = 0.5 Fast time integration at level 0 from 80.5 to 81 with dt = 0.5 Time integration of scalars at level 0 from 80 to 81 with dt = 1 using RHS created at 80.66666666667 Making slow rhs at time 81 for fast variables advancing from 80 to 82 Fast time integration at level 0 from 80 to 80.5 with dt = 0.5 Fast time integration at level 0 from 80.5 to 81 with dt = 0.5 Fast time integration at level 0 from 81 to 81.5 with dt = 0.5 Fast time integration at level 0 from 81.5 to 82 with dt = 0.5 Time integration of scalars at level 0 from 80 to 82 with dt = 2 using RHS created at 81 Done with advance_dycore at level 0 [Level 0 step 41] Advanced 4096 cells [Level 1 step 41] ADVANCE from elapsed time = 80 to 82 with dt = 2 Making slow rhs at time 80 for fast variables advancing from 80 to 82 No-substepping time integration at level 1 to 82 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001432275749 0.000702787831 and volume-weighted sum 6986.699219 Subtracting 2.274316103e-06 from rhs in subdomain 0 Sum after subtraction 0.02051820047 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001409532561 MLMG: Initial residual (resid0) = 0.0001409532561 MLMG: Final Iter. 2 resid, resid/bnorm = 9.881296137e-07, 0.007010335568 MLMG: Timers: Solve = 0.000745962 Iter = 0.000533315 Bottom = 5.6538e-05 Time in solve 0.00107314 Max/L2 norm of divergence after solve at level 1 : 2.739368938e-06 0.0001261116558 and volume-weighted sum 6986.70166 Time integration of scalars at level 1 from 80 to 82 with dt = 2 using RHS created at 80 Making slow rhs at time 82 for fast variables advancing from 80 to 82 No-substepping time integration at level 1 to 82 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 1.970690209e-05 0.0002895806392 and volume-weighted sum 6986.698242 Subtracting 2.274315875e-06 from rhs in subdomain 0 Sum after subtraction 0.01466833055 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.765464731e-05 MLMG: Initial residual (resid0) = 1.765464731e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.908897144e-06, 0.5046204925 MLMG: Timers: Solve = 0.000924175 Iter = 0.000396879 Bottom = 4.6204e-05 Time in solve 0.001329013 Max/L2 norm of divergence after solve at level 1 : 1.118704677e-05 0.0001292001689 and volume-weighted sum 6986.701172 Time integration of scalars at level 1 from 80 to 82 with dt = 2 using RHS created at 82 Done with advance_dycore at level 1 [Level 1 step 41] Advanced 3072 cells Coarse STEP 41 ends. TIME = 82 DT = 2 Timestep time = 0.017194562 seconds. Coarse STEP 42 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.665374463 (terrain aware) 1.665374463 (terrain unaware) Anelastic dt at level 0 would be: 15.79739428 (terrain aware) 15.79739428 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2844130019 (terrain aware) 0.2844130019 (terrain unaware) Anelastic dt at level 1 would be: 7.912664296 (terrain aware) 7.912664296 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 42] ADVANCE from elapsed time = 82 to 84 with dt = 2 Making slow rhs at time 82 for fast variables advancing from 82 to 82.66666666667 Fast time integration at level 0 from 82 to 82.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 82 to 82.66666666667 with dt = 0.6666666666667 using RHS created at 82 Making slow rhs at time 82.66666666667 for fast variables advancing from 82 to 83 Fast time integration at level 0 from 82 to 82.5 with dt = 0.5 Fast time integration at level 0 from 82.5 to 83 with dt = 0.5 Time integration of scalars at level 0 from 82 to 83 with dt = 1 using RHS created at 82.66666666667 Making slow rhs at time 83 for fast variables advancing from 82 to 84 Fast time integration at level 0 from 82 to 82.5 with dt = 0.5 Fast time integration at level 0 from 82.5 to 83 with dt = 0.5 Fast time integration at level 0 from 83 to 83.5 with dt = 0.5 Fast time integration at level 0 from 83.5 to 84 with dt = 0.5 Time integration of scalars at level 0 from 82 to 84 with dt = 2 using RHS created at 83 Done with advance_dycore at level 0 [Level 0 step 42] Advanced 4096 cells [Level 1 step 42] ADVANCE from elapsed time = 82 to 84 with dt = 2 Making slow rhs at time 82 for fast variables advancing from 82 to 84 No-substepping time integration at level 1 to 84 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.926108083e-05 0.0004350504314 and volume-weighted sum 7825.100586 Subtracting 2.54723318e-06 from rhs in subdomain 0 Sum after subtraction -0.006752088666 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.67138481e-05 MLMG: Initial residual (resid0) = 7.67138481e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.585400792e-06, 0.1119146124 MLMG: Timers: Solve = 0.000521567 Iter = 0.000312961 Bottom = 3.0695e-05 Time in solve 0.000847482 Max/L2 norm of divergence after solve at level 1 : 1.113355393e-05 0.0001473115117 and volume-weighted sum 7825.104492 Time integration of scalars at level 1 from 82 to 84 with dt = 2 using RHS created at 82 Making slow rhs at time 84 for fast variables advancing from 82 to 84 No-substepping time integration at level 1 to 84 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.208305523e-05 0.0002985548635 and volume-weighted sum 7825.106445 Subtracting 2.547235226e-06 from rhs in subdomain 0 Sum after subtraction -0.005471520126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 1.95358225e-05 MLMG: Initial residual (resid0) = 1.95358225e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.686765796e-06, 0.4446583092 MLMG: Timers: Solve = 0.000686383 Iter = 0.000371768 Bottom = 2.9956e-05 Time in solve 0.001012286 Max/L2 norm of divergence after solve at level 1 : 1.12359412e-05 0.0001438151085 and volume-weighted sum 7825.092285 Time integration of scalars at level 1 from 82 to 84 with dt = 2 using RHS created at 84 Done with advance_dycore at level 1 [Level 1 step 42] Advanced 3072 cells Coarse STEP 42 ends. TIME = 84 DT = 2 Timestep time = 0.015950382 seconds. Coarse STEP 43 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.662451749 (terrain aware) 1.662451749 (terrain unaware) Anelastic dt at level 0 would be: 15.54393149 (terrain aware) 15.54393149 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2842965866 (terrain aware) 0.2842965866 (terrain unaware) Anelastic dt at level 1 would be: 7.73687828 (terrain aware) 7.73687828 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 43] ADVANCE from elapsed time = 84 to 86 with dt = 2 Making slow rhs at time 84 for fast variables advancing from 84 to 84.66666666667 Fast time integration at level 0 from 84 to 84.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 84 to 84.66666666667 with dt = 0.6666666666667 using RHS created at 84 Making slow rhs at time 84.66666666667 for fast variables advancing from 84 to 85 Fast time integration at level 0 from 84 to 84.5 with dt = 0.5 Fast time integration at level 0 from 84.5 to 85 with dt = 0.5 Time integration of scalars at level 0 from 84 to 85 with dt = 1 using RHS created at 84.66666666667 Making slow rhs at time 85 for fast variables advancing from 84 to 86 Fast time integration at level 0 from 84 to 84.5 with dt = 0.5 Fast time integration at level 0 from 84.5 to 85 with dt = 0.5 Fast time integration at level 0 from 85 to 85.5 with dt = 0.5 Fast time integration at level 0 from 85.5 to 86 with dt = 0.5 Time integration of scalars at level 0 from 84 to 86 with dt = 2 using RHS created at 85 Done with advance_dycore at level 0 [Level 0 step 43] Advanced 4096 cells [Level 1 step 43] ADVANCE from elapsed time = 84 to 86 with dt = 2 Making slow rhs at time 84 for fast variables advancing from 84 to 86 No-substepping time integration at level 1 to 86 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.216409383e-05 0.0004405032378 and volume-weighted sum 8702.426758 Subtracting 2.83282111e-06 from rhs in subdomain 0 Sum after subtraction -0.003696186468 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.93312725e-05 MLMG: Initial residual (resid0) = 5.93312725e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.745870218e-06, 0.1474074274 MLMG: Timers: Solve = 0.000526608 Iter = 0.000311525 Bottom = 2.8251e-05 Time in solve 0.000857297 Max/L2 norm of divergence after solve at level 1 : 1.157913357e-05 0.0001618332899 and volume-weighted sum 8702.432617 Time integration of scalars at level 1 from 84 to 86 with dt = 2 using RHS created at 84 Making slow rhs at time 86 for fast variables advancing from 84 to 86 No-substepping time integration at level 1 to 86 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.359598875e-05 0.0003132665879 and volume-weighted sum 8702.432617 Subtracting 2.832823156e-06 from rhs in subdomain 0 Sum after subtraction -0.0222644303 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.076317287e-05 MLMG: Initial residual (resid0) = 2.076317287e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 8.938406609e-06, 0.4304932952 MLMG: Timers: Solve = 0.000723727 Iter = 0.000512058 Bottom = 5.0807e-05 Time in solve 0.001182542 Max/L2 norm of divergence after solve at level 1 : 1.177284867e-05 0.0001595321955 and volume-weighted sum 8702.428711 Time integration of scalars at level 1 from 84 to 86 with dt = 2 using RHS created at 86 Done with advance_dycore at level 1 [Level 1 step 43] Advanced 3072 cells Coarse STEP 43 ends. TIME = 86 DT = 2 Timestep time = 0.016119696 seconds. Coarse STEP 44 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.659556305 (terrain aware) 1.659556305 (terrain unaware) Anelastic dt at level 0 would be: 15.34666992 (terrain aware) 15.34666992 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2841785135 (terrain aware) 0.2841785135 (terrain unaware) Anelastic dt at level 1 would be: 7.570952064 (terrain aware) 7.570952064 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 44] ADVANCE from elapsed time = 86 to 88 with dt = 2 Making slow rhs at time 86 for fast variables advancing from 86 to 86.66666666667 Fast time integration at level 0 from 86 to 86.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 86 to 86.66666666667 with dt = 0.6666666666667 using RHS created at 86 Making slow rhs at time 86.66666666667 for fast variables advancing from 86 to 87 Fast time integration at level 0 from 86 to 86.5 with dt = 0.5 Fast time integration at level 0 from 86.5 to 87 with dt = 0.5 Time integration of scalars at level 0 from 86 to 87 with dt = 1 using RHS created at 86.66666666667 Making slow rhs at time 87 for fast variables advancing from 86 to 88 Fast time integration at level 0 from 86 to 86.5 with dt = 0.5 Fast time integration at level 0 from 86.5 to 87 with dt = 0.5 Fast time integration at level 0 from 87 to 87.5 with dt = 0.5 Fast time integration at level 0 from 87.5 to 88 with dt = 0.5 Time integration of scalars at level 0 from 86 to 88 with dt = 2 using RHS created at 87 Done with advance_dycore at level 0 [Level 0 step 44] Advanced 4096 cells [Level 1 step 44] ADVANCE from elapsed time = 86 to 88 with dt = 2 Making slow rhs at time 86 for fast variables advancing from 86 to 88 No-substepping time integration at level 1 to 88 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001102292445 0.000615522149 and volume-weighted sum 9529.375977 Subtracting 3.102010396e-06 from rhs in subdomain 0 Sum after subtraction 0.002153683454 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001133312544 MLMG: Initial residual (resid0) = 0.0001133312544 MLMG: Final Iter. 2 resid, resid/bnorm = 6.221853255e-07, 0.005489971023 MLMG: Timers: Solve = 0.000742338 Iter = 0.00054566 Bottom = 5.8074e-05 Time in solve 0.001065475 Max/L2 norm of divergence after solve at level 1 : 3.723500413e-06 0.0001719562424 and volume-weighted sum 9529.373047 Time integration of scalars at level 1 from 86 to 88 with dt = 2 using RHS created at 86 Making slow rhs at time 88 for fast variables advancing from 86 to 88 No-substepping time integration at level 1 to 88 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.276187297e-05 0.000332479307 and volume-weighted sum 9529.375 Subtracting 3.102010169e-06 from rhs in subdomain 0 Sum after subtraction 0.002852175385 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.014428355e-05 MLMG: Initial residual (resid0) = 2.014428355e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 9.788628631e-06, 0.4859258831 MLMG: Timers: Solve = 0.000520519 Iter = 0.000321211 Bottom = 2.9909e-05 Time in solve 0.000839886 Max/L2 norm of divergence after solve at level 1 : 1.289322972e-05 0.0001746549242 and volume-weighted sum 9529.37207 Time integration of scalars at level 1 from 86 to 88 with dt = 2 using RHS created at 88 Done with advance_dycore at level 1 [Level 1 step 44] Advanced 3072 cells Coarse STEP 44 ends. TIME = 88 DT = 2 Timestep time = 0.016129953 seconds. Coarse STEP 45 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.656713759 (terrain aware) 1.656713759 (terrain unaware) Anelastic dt at level 0 would be: 15.11724092 (terrain aware) 15.11724092 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.284058969 (terrain aware) 0.284058969 (terrain unaware) Anelastic dt at level 1 would be: 7.414526233 (terrain aware) 7.414526233 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 45] ADVANCE from elapsed time = 88 to 90 with dt = 2 Making slow rhs at time 88 for fast variables advancing from 88 to 88.66666666667 Fast time integration at level 0 from 88 to 88.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 88 to 88.66666666667 with dt = 0.6666666666667 using RHS created at 88 Making slow rhs at time 88.66666666667 for fast variables advancing from 88 to 89 Fast time integration at level 0 from 88 to 88.5 with dt = 0.5 Fast time integration at level 0 from 88.5 to 89 with dt = 0.5 Time integration of scalars at level 0 from 88 to 89 with dt = 1 using RHS created at 88.66666666667 Making slow rhs at time 89 for fast variables advancing from 88 to 90 Fast time integration at level 0 from 88 to 88.5 with dt = 0.5 Fast time integration at level 0 from 88.5 to 89 with dt = 0.5 Fast time integration at level 0 from 89 to 89.5 with dt = 0.5 Fast time integration at level 0 from 89.5 to 90 with dt = 0.5 Time integration of scalars at level 0 from 88 to 90 with dt = 2 using RHS created at 89 Done with advance_dycore at level 0 [Level 0 step 45] Advanced 4096 cells [Level 1 step 45] ADVANCE from elapsed time = 88 to 90 with dt = 2 Making slow rhs at time 88 for fast variables advancing from 88 to 90 No-substepping time integration at level 1 to 90 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.163290866e-05 0.0004744746257 and volume-weighted sum 10238.95508 Subtracting 3.332993174e-06 from rhs in subdomain 0 Sum after subtraction 0.01798616722 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.829990889e-05 MLMG: Initial residual (resid0) = 6.829990889e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 9.702284842e-06, 0.1420541406 MLMG: Timers: Solve = 0.00052323 Iter = 0.000322125 Bottom = 3.1577e-05 Time in solve 0.000856542 Max/L2 norm of divergence after solve at level 1 : 1.303432509e-05 0.0001890268177 and volume-weighted sum 10238.96387 Time integration of scalars at level 1 from 88 to 90 with dt = 2 using RHS created at 88 Making slow rhs at time 90 for fast variables advancing from 88 to 90 No-substepping time integration at level 1 to 90 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.615759149e-05 0.0003413185186 and volume-weighted sum 10238.95508 Subtracting 3.332993174e-06 from rhs in subdomain 0 Sum after subtraction 0.01629814506 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.282459354e-05 MLMG: Initial residual (resid0) = 2.282459354e-05 MLMG: Final Iter. 1 resid, resid/bnorm = 9.420515198e-06, 0.4127352834 MLMG: Timers: Solve = 0.000533258 Iter = 0.00033067 Bottom = 3.0212e-05 Time in solve 0.000855563 Max/L2 norm of divergence after solve at level 1 : 1.275027171e-05 0.0001871332788 and volume-weighted sum 10238.94531 Time integration of scalars at level 1 from 88 to 90 with dt = 2 using RHS created at 90 Done with advance_dycore at level 1 [Level 1 step 45] Advanced 3072 cells Coarse STEP 45 ends. TIME = 90 DT = 2 Timestep time = 0.016036882 seconds. Coarse STEP 46 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.653903698 (terrain aware) 1.653903698 (terrain unaware) Anelastic dt at level 0 would be: 14.86471988 (terrain aware) 14.86471988 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2839382882 (terrain aware) 0.2839382882 (terrain unaware) Anelastic dt at level 1 would be: 7.267156135 (terrain aware) 7.267156135 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 46] ADVANCE from elapsed time = 90 to 92 with dt = 2 Making slow rhs at time 90 for fast variables advancing from 90 to 90.66666666667 Fast time integration at level 0 from 90 to 90.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 90 to 90.66666666667 with dt = 0.6666666666667 using RHS created at 90 Making slow rhs at time 90.66666666667 for fast variables advancing from 90 to 91 Fast time integration at level 0 from 90 to 90.5 with dt = 0.5 Fast time integration at level 0 from 90.5 to 91 with dt = 0.5 Time integration of scalars at level 0 from 90 to 91 with dt = 1 using RHS created at 90.66666666667 Making slow rhs at time 91 for fast variables advancing from 90 to 92 Fast time integration at level 0 from 90 to 90.5 with dt = 0.5 Fast time integration at level 0 from 90.5 to 91 with dt = 0.5 Fast time integration at level 0 from 91 to 91.5 with dt = 0.5 Fast time integration at level 0 from 91.5 to 92 with dt = 0.5 Time integration of scalars at level 0 from 90 to 92 with dt = 2 using RHS created at 91 Done with advance_dycore at level 0 [Level 0 step 46] Advanced 4096 cells [Level 1 step 46] ADVANCE from elapsed time = 90 to 92 with dt = 2 Making slow rhs at time 90 for fast variables advancing from 90 to 92 No-substepping time integration at level 1 to 92 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.112618864e-05 0.000477783411 and volume-weighted sum 10746.56738 Subtracting 3.498231536e-06 from rhs in subdomain 0 Sum after subtraction -0.02101296559 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.462441085e-05 MLMG: Initial residual (resid0) = 9.462441085e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 6.440186553e-07, 0.006806051824 MLMG: Timers: Solve = 0.000732437 Iter = 0.000519688 Bottom = 5.7129e-05 Time in solve 0.001048902 Max/L2 norm of divergence after solve at level 1 : 4.050787538e-06 0.0001939138747 and volume-weighted sum 10746.57129 Time integration of scalars at level 1 from 90 to 92 with dt = 2 using RHS created at 90 Making slow rhs at time 92 for fast variables advancing from 90 to 92 No-substepping time integration at level 1 to 92 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.442765981e-05 0.0003581019118 and volume-weighted sum 10746.56445 Subtracting 3.498230626e-06 from rhs in subdomain 0 Sum after subtraction -0.01024454832 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.228067569e-05 MLMG: Initial residual (resid0) = 2.228067569e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 6.429327186e-07, 0.02885606885 MLMG: Timers: Solve = 0.000736962 Iter = 0.000536295 Bottom = 5.7105e-05 Time in solve 0.001057418 Max/L2 norm of divergence after solve at level 1 : 3.844499588e-06 0.0001939031063 and volume-weighted sum 10746.56445 Time integration of scalars at level 1 from 90 to 92 with dt = 2 using RHS created at 92 Done with advance_dycore at level 1 [Level 1 step 46] Advanced 3072 cells Coarse STEP 46 ends. TIME = 92 DT = 2 Timestep time = 0.016439336 seconds. Coarse STEP 47 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.651076054 (terrain aware) 1.651076054 (terrain unaware) Anelastic dt at level 0 would be: 14.64072563 (terrain aware) 14.64072563 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2838167878 (terrain aware) 0.2838167878 (terrain unaware) Anelastic dt at level 1 would be: 7.123414768 (terrain aware) 7.123414768 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 47] ADVANCE from elapsed time = 92 to 94 with dt = 2 Making slow rhs at time 92 for fast variables advancing from 92 to 92.66666666667 Fast time integration at level 0 from 92 to 92.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 92 to 92.66666666667 with dt = 0.6666666666667 using RHS created at 92 Making slow rhs at time 92.66666666667 for fast variables advancing from 92 to 93 Fast time integration at level 0 from 92 to 92.5 with dt = 0.5 Fast time integration at level 0 from 92.5 to 93 with dt = 0.5 Time integration of scalars at level 0 from 92 to 93 with dt = 1 using RHS created at 92.66666666667 Making slow rhs at time 93 for fast variables advancing from 92 to 94 Fast time integration at level 0 from 92 to 92.5 with dt = 0.5 Fast time integration at level 0 from 92.5 to 93 with dt = 0.5 Fast time integration at level 0 from 93 to 93.5 with dt = 0.5 Fast time integration at level 0 from 93.5 to 94 with dt = 0.5 Time integration of scalars at level 0 from 92 to 94 with dt = 2 using RHS created at 93 Done with advance_dycore at level 0 [Level 0 step 47] Advanced 4096 cells [Level 1 step 47] ADVANCE from elapsed time = 92 to 94 with dt = 2 Making slow rhs at time 92 for fast variables advancing from 92 to 94 No-substepping time integration at level 1 to 94 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001487029949 0.0006363486173 and volume-weighted sum 11087.8252 Subtracting 3.609318128e-06 from rhs in subdomain 0 Sum after subtraction -0.03119930625 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001523122919 MLMG: Initial residual (resid0) = 0.0001523122919 MLMG: Final Iter. 2 resid, resid/bnorm = 8.584611351e-07, 0.005636190996 MLMG: Timers: Solve = 0.000789606 Iter = 0.000563536 Bottom = 5.6471e-05 Time in solve 0.0011268 Max/L2 norm of divergence after solve at level 1 : 4.468020052e-06 0.0002000880049 and volume-weighted sum 11087.82715 Time integration of scalars at level 1 from 92 to 94 with dt = 2 using RHS created at 92 Making slow rhs at time 94 for fast variables advancing from 92 to 94 No-substepping time integration at level 1 to 94 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.498691902e-05 0.0003686356067 and volume-weighted sum 11087.81836 Subtracting 3.609315854e-06 from rhs in subdomain 0 Sum after subtraction -0.02206070349 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.272190977e-05 MLMG: Initial residual (resid0) = 2.272190977e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 6.592842965e-07, 0.02901535667 MLMG: Timers: Solve = 0.000775227 Iter = 0.000529372 Bottom = 5.6725e-05 Time in solve 0.001159125 Max/L2 norm of divergence after solve at level 1 : 3.957655281e-06 0.0002000603272 and volume-weighted sum 11087.82227 Time integration of scalars at level 1 from 92 to 94 with dt = 2 using RHS created at 94 Done with advance_dycore at level 1 [Level 1 step 47] Advanced 3072 cells Coarse STEP 47 ends. TIME = 94 DT = 2 Timestep time = 0.016646906 seconds. Coarse STEP 48 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.648243939 (terrain aware) 1.648243939 (terrain unaware) Anelastic dt at level 0 would be: 14.46995118 (terrain aware) 14.46995118 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2836945611 (terrain aware) 0.2836945611 (terrain unaware) Anelastic dt at level 1 would be: 6.988056198 (terrain aware) 6.988056198 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 48] ADVANCE from elapsed time = 94 to 96 with dt = 2 Making slow rhs at time 94 for fast variables advancing from 94 to 94.66666666667 Fast time integration at level 0 from 94 to 94.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 94 to 94.66666666667 with dt = 0.6666666666667 using RHS created at 94 Making slow rhs at time 94.66666666667 for fast variables advancing from 94 to 95 Fast time integration at level 0 from 94 to 94.5 with dt = 0.5 Fast time integration at level 0 from 94.5 to 95 with dt = 0.5 Time integration of scalars at level 0 from 94 to 95 with dt = 1 using RHS created at 94.66666666667 Making slow rhs at time 95 for fast variables advancing from 94 to 96 Fast time integration at level 0 from 94 to 94.5 with dt = 0.5 Fast time integration at level 0 from 94.5 to 95 with dt = 0.5 Fast time integration at level 0 from 95 to 95.5 with dt = 0.5 Fast time integration at level 0 from 95.5 to 96 with dt = 0.5 Time integration of scalars at level 0 from 94 to 96 with dt = 2 using RHS created at 95 Done with advance_dycore at level 0 [Level 0 step 48] Advanced 4096 cells [Level 1 step 48] ADVANCE from elapsed time = 94 to 96 with dt = 2 Making slow rhs at time 94 for fast variables advancing from 94 to 96 No-substepping time integration at level 1 to 96 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001173463534 0.0005739986664 and volume-weighted sum 11240.33594 Subtracting 3.658963578e-06 from rhs in subdomain 0 Sum after subtraction 0.02235174179 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001136873834 MLMG: Initial residual (resid0) = 0.0001136873834 MLMG: Final Iter. 2 resid, resid/bnorm = 7.162166185e-07, 0.006299877539 MLMG: Timers: Solve = 0.000728999 Iter = 0.000529943 Bottom = 5.5651e-05 Time in solve 0.001063371 Max/L2 norm of divergence after solve at level 1 : 4.341593012e-06 0.00020283513 and volume-weighted sum 11240.35254 Time integration of scalars at level 1 from 94 to 96 with dt = 2 using RHS created at 94 Making slow rhs at time 96 for fast variables advancing from 94 to 96 No-substepping time integration at level 1 to 96 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.577574924e-05 0.0003772496129 and volume-weighted sum 11240.34961 Subtracting 3.658967898e-06 from rhs in subdomain 0 Sum after subtraction 5.820766091e-05 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.359811879e-05 MLMG: Initial residual (resid0) = 2.359811879e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 6.825764558e-07, 0.02892503701 MLMG: Timers: Solve = 0.000739112 Iter = 0.000527646 Bottom = 5.6574e-05 Time in solve 0.001065541 Max/L2 norm of divergence after solve at level 1 : 4.002824426e-06 0.0002028126619 and volume-weighted sum 11240.35156 Time integration of scalars at level 1 from 94 to 96 with dt = 2 using RHS created at 96 Done with advance_dycore at level 1 [Level 1 step 48] Advanced 3072 cells Coarse STEP 48 ends. TIME = 96 DT = 2 Timestep time = 0.016371004 seconds. Coarse STEP 49 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.645466959 (terrain aware) 1.645466959 (terrain unaware) Anelastic dt at level 0 would be: 14.34120634 (terrain aware) 14.34120634 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2835715334 (terrain aware) 0.2835715334 (terrain unaware) Anelastic dt at level 1 would be: 6.860636967 (terrain aware) 6.860636967 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 49] ADVANCE from elapsed time = 96 to 98 with dt = 2 Making slow rhs at time 96 for fast variables advancing from 96 to 96.66666666667 Fast time integration at level 0 from 96 to 96.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 96 to 96.66666666667 with dt = 0.6666666666667 using RHS created at 96 Making slow rhs at time 96.66666666667 for fast variables advancing from 96 to 97 Fast time integration at level 0 from 96 to 96.5 with dt = 0.5 Fast time integration at level 0 from 96.5 to 97 with dt = 0.5 Time integration of scalars at level 0 from 96 to 97 with dt = 1 using RHS created at 96.66666666667 Making slow rhs at time 97 for fast variables advancing from 96 to 98 Fast time integration at level 0 from 96 to 96.5 with dt = 0.5 Fast time integration at level 0 from 96.5 to 97 with dt = 0.5 Fast time integration at level 0 from 97 to 97.5 with dt = 0.5 Fast time integration at level 0 from 97.5 to 98 with dt = 0.5 Time integration of scalars at level 0 from 96 to 98 with dt = 2 using RHS created at 97 Done with advance_dycore at level 0 [Level 0 step 49] Advanced 4096 cells [Level 1 step 49] ADVANCE from elapsed time = 96 to 98 with dt = 2 Making slow rhs at time 96 for fast variables advancing from 96 to 98 No-substepping time integration at level 1 to 98 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.643054076e-05 0.0004862144124 and volume-weighted sum 11304.1416 Subtracting 3.679733481e-06 from rhs in subdomain 0 Sum after subtraction -0.02019805834 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.011026901e-05 MLMG: Initial residual (resid0) = 7.011026901e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.280266914e-07, 0.01038402319 MLMG: Timers: Solve = 0.000735656 Iter = 0.000529005 Bottom = 5.7359e-05 Time in solve 0.001066964 Max/L2 norm of divergence after solve at level 1 : 4.21050936e-06 0.0002039745596 and volume-weighted sum 11304.15918 Time integration of scalars at level 1 from 96 to 98 with dt = 2 using RHS created at 96 Making slow rhs at time 98 for fast variables advancing from 96 to 98 No-substepping time integration at level 1 to 98 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.650148235e-05 0.0003852590453 and volume-weighted sum 11304.14355 Subtracting 3.679734164e-06 from rhs in subdomain 0 Sum after subtraction 0.005180481821 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.465544821e-05 MLMG: Initial residual (resid0) = 2.465544821e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.051995681e-07, 0.02860217914 MLMG: Timers: Solve = 0.000754971 Iter = 0.000551225 Bottom = 5.6824e-05 Time in solve 0.001123377 Max/L2 norm of divergence after solve at level 1 : 4.034489393e-06 0.0002039642422 and volume-weighted sum 11304.14648 Time integration of scalars at level 1 from 96 to 98 with dt = 2 using RHS created at 98 Done with advance_dycore at level 1 [Level 1 step 49] Advanced 3072 cells Coarse STEP 49 ends. TIME = 98 DT = 2 Timestep time = 0.016553292 seconds. Coarse STEP 50 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.642755693 (terrain aware) 1.642755693 (terrain unaware) Anelastic dt at level 0 would be: 14.18205717 (terrain aware) 14.18205717 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2834473322 (terrain aware) 0.2834473322 (terrain unaware) Anelastic dt at level 1 would be: 6.740651626 (terrain aware) 6.740651626 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 50] ADVANCE from elapsed time = 98 to 100 with dt = 2 Making slow rhs at time 98 for fast variables advancing from 98 to 98.66666666667 Fast time integration at level 0 from 98 to 98.66666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 98 to 98.66666666667 with dt = 0.6666666666667 using RHS created at 98 Making slow rhs at time 98.66666666667 for fast variables advancing from 98 to 99 Fast time integration at level 0 from 98 to 98.5 with dt = 0.5 Fast time integration at level 0 from 98.5 to 99 with dt = 0.5 Time integration of scalars at level 0 from 98 to 99 with dt = 1 using RHS created at 98.66666666667 Making slow rhs at time 99 for fast variables advancing from 98 to 100 Fast time integration at level 0 from 98 to 98.5 with dt = 0.5 Fast time integration at level 0 from 98.5 to 99 with dt = 0.5 Fast time integration at level 0 from 99 to 99.5 with dt = 0.5 Fast time integration at level 0 from 99.5 to 100 with dt = 0.5 Time integration of scalars at level 0 from 98 to 100 with dt = 2 using RHS created at 99 Done with advance_dycore at level 0 [Level 0 step 50] Advanced 4096 cells [Level 1 step 50] ADVANCE from elapsed time = 98 to 100 with dt = 2 Making slow rhs at time 98 for fast variables advancing from 98 to 100 No-substepping time integration at level 1 to 100 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.370804764e-05 0.0006014158134 and volume-weighted sum 11287.60645 Subtracting 3.674351092e-06 from rhs in subdomain 0 Sum after subtraction 0.03626337275 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.738241351e-05 MLMG: Initial residual (resid0) = 9.738241351e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.360902146e-07, 0.007558759302 MLMG: Timers: Solve = 0.000745855 Iter = 0.000530564 Bottom = 5.7856e-05 Time in solve 0.001062281 Max/L2 norm of divergence after solve at level 1 : 4.294648534e-06 0.0002036765509 and volume-weighted sum 11287.61621 Time integration of scalars at level 1 from 98 to 100 with dt = 2 using RHS created at 98 Making slow rhs at time 100 for fast variables advancing from 98 to 100 No-substepping time integration at level 1 to 100 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.744607627e-05 0.0003928492079 and volume-weighted sum 11287.60352 Subtracting 3.674350182e-06 from rhs in subdomain 0 Sum after subtraction 0.02252636477 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.572248741e-05 MLMG: Initial residual (resid0) = 2.572248741e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.270962783e-07, 0.02826694958 MLMG: Timers: Solve = 0.000734861 Iter = 0.000533434 Bottom = 5.7088e-05 Time in solve 0.001123888 Max/L2 norm of divergence after solve at level 1 : 4.028901458e-06 0.0002036663645 and volume-weighted sum 11287.60547 Time integration of scalars at level 1 from 98 to 100 with dt = 2 using RHS created at 100 Done with advance_dycore at level 1 [Level 1 step 50] Advanced 3072 cells Coarse STEP 50 ends. TIME = 100 DT = 2 Timestep time = 0.016476874 seconds. 3DPlotfile write time = 0.003966267 seconds. Coarse STEP 51 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.640066033 (terrain aware) 1.640066033 (terrain unaware) Anelastic dt at level 0 would be: 13.99534801 (terrain aware) 13.99534801 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2833215478 (terrain aware) 0.2833215478 (terrain unaware) Anelastic dt at level 1 would be: 6.627614399 (terrain aware) 6.627614399 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 51] ADVANCE from elapsed time = 100 to 102 with dt = 2 Making slow rhs at time 100 for fast variables advancing from 100 to 100.6666666667 Fast time integration at level 0 from 100 to 100.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 100 to 100.6666666667 with dt = 0.6666666666667 using RHS created at 100 Making slow rhs at time 100.6666666667 for fast variables advancing from 100 to 101 Fast time integration at level 0 from 100 to 100.5 with dt = 0.5 Fast time integration at level 0 from 100.5 to 101 with dt = 0.5 Time integration of scalars at level 0 from 100 to 101 with dt = 1 using RHS created at 100.6666666667 Making slow rhs at time 101 for fast variables advancing from 100 to 102 Fast time integration at level 0 from 100 to 100.5 with dt = 0.5 Fast time integration at level 0 from 100.5 to 101 with dt = 0.5 Fast time integration at level 0 from 101 to 101.5 with dt = 0.5 Fast time integration at level 0 from 101.5 to 102 with dt = 0.5 Time integration of scalars at level 0 from 100 to 102 with dt = 2 using RHS created at 101 Done with advance_dycore at level 0 [Level 0 step 51] Advanced 4096 cells [Level 1 step 51] ADVANCE from elapsed time = 100 to 102 with dt = 2 Making slow rhs at time 100 for fast variables advancing from 100 to 102 No-substepping time integration at level 1 to 102 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.569287067e-05 0.0005843416438 and volume-weighted sum 11220.59668 Subtracting 3.652537998e-06 from rhs in subdomain 0 Sum after subtraction 0.003608874977 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.934540867e-05 MLMG: Initial residual (resid0) = 9.934540867e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.451415058e-07, 0.007500512991 MLMG: Timers: Solve = 0.001365009 Iter = 0.000865415 Bottom = 5.6394e-05 Time in solve 0.001768728 Max/L2 norm of divergence after solve at level 1 : 4.202127457e-06 0.0002024645219 and volume-weighted sum 11220.59668 Time integration of scalars at level 1 from 100 to 102 with dt = 2 using RHS created at 100 Making slow rhs at time 102 for fast variables advancing from 100 to 102 No-substepping time integration at level 1 to 102 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.828403376e-05 0.000400002551 and volume-weighted sum 11220.59082 Subtracting 3.652536179e-06 from rhs in subdomain 0 Sum after subtraction -0.00064028427 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.679590216e-05 MLMG: Initial residual (resid0) = 2.679590216e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.481214652e-07, 0.02791924961 MLMG: Timers: Solve = 0.001382277 Iter = 0.000874306 Bottom = 5.7313e-05 Time in solve 0.001742576 Max/L2 norm of divergence after solve at level 1 : 4.009809345e-06 0.0002024578571 and volume-weighted sum 11220.59375 Time integration of scalars at level 1 from 100 to 102 with dt = 2 using RHS created at 102 Done with advance_dycore at level 1 [Level 1 step 51] Advanced 3072 cells Coarse STEP 51 ends. TIME = 102 DT = 2 Timestep time = 0.024500836 seconds. Coarse STEP 52 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.63738591 (terrain aware) 1.63738591 (terrain unaware) Anelastic dt at level 0 would be: 13.78121356 (terrain aware) 13.78121356 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2831938821 (terrain aware) 0.2831938821 (terrain unaware) Anelastic dt at level 1 would be: 6.521052025 (terrain aware) 6.521052025 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 52] ADVANCE from elapsed time = 102 to 104 with dt = 2 Making slow rhs at time 102 for fast variables advancing from 102 to 102.6666666667 Fast time integration at level 0 from 102 to 102.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 102 to 102.6666666667 with dt = 0.6666666666667 using RHS created at 102 Making slow rhs at time 102.6666666667 for fast variables advancing from 102 to 103 Fast time integration at level 0 from 102 to 102.5 with dt = 0.5 Fast time integration at level 0 from 102.5 to 103 with dt = 0.5 Time integration of scalars at level 0 from 102 to 103 with dt = 1 using RHS created at 102.6666666667 Making slow rhs at time 103 for fast variables advancing from 102 to 104 Fast time integration at level 0 from 102 to 102.5 with dt = 0.5 Fast time integration at level 0 from 102.5 to 103 with dt = 0.5 Fast time integration at level 0 from 103 to 103.5 with dt = 0.5 Fast time integration at level 0 from 103.5 to 104 with dt = 0.5 Time integration of scalars at level 0 from 102 to 104 with dt = 2 using RHS created at 103 Done with advance_dycore at level 0 [Level 0 step 52] Advanced 4096 cells [Level 1 step 52] ADVANCE from elapsed time = 102 to 104 with dt = 2 Making slow rhs at time 102 for fast variables advancing from 102 to 104 No-substepping time integration at level 1 to 104 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.094117321e-05 0.0004427170788 and volume-weighted sum 11083.75586 Subtracting 3.607993449e-06 from rhs in subdomain 0 Sum after subtraction 0.02852175385 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.132731192e-05 MLMG: Initial residual (resid0) = 4.132731192e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.668086255e-07, 0.01855452545 MLMG: Timers: Solve = 0.001083054 Iter = 0.000591429 Bottom = 5.8967e-05 Time in solve 0.001456989 Max/L2 norm of divergence after solve at level 1 : 3.919471055e-06 0.0001999904489 and volume-weighted sum 11083.74707 Time integration of scalars at level 1 from 102 to 104 with dt = 2 using RHS created at 102 Making slow rhs at time 104 for fast variables advancing from 102 to 104 No-substepping time integration at level 1 to 104 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.892431803e-05 0.000406977284 and volume-weighted sum 11083.75391 Subtracting 3.607992767e-06 from rhs in subdomain 0 Sum after subtraction 0.01030275598 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.794066131e-05 MLMG: Initial residual (resid0) = 2.794066131e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.680168892e-07, 0.027487427 MLMG: Timers: Solve = 0.000763387 Iter = 0.000518225 Bottom = 5.6822e-05 Time in solve 0.001142411 Max/L2 norm of divergence after solve at level 1 : 3.971159458e-06 0.0001999894739 and volume-weighted sum 11083.75195 Time integration of scalars at level 1 from 102 to 104 with dt = 2 using RHS created at 104 Done with advance_dycore at level 1 [Level 1 step 52] Advanced 3072 cells Coarse STEP 52 ends. TIME = 104 DT = 2 Timestep time = 0.020981151 seconds. Coarse STEP 53 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.63474006 (terrain aware) 1.63474006 (terrain unaware) Anelastic dt at level 0 would be: 13.54817609 (terrain aware) 13.54817609 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2830643351 (terrain aware) 0.2830643351 (terrain unaware) Anelastic dt at level 1 would be: 6.417353058 (terrain aware) 6.417353058 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 53] ADVANCE from elapsed time = 104 to 106 with dt = 2 Making slow rhs at time 104 for fast variables advancing from 104 to 104.6666666667 Fast time integration at level 0 from 104 to 104.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 104 to 104.6666666667 with dt = 0.6666666666667 using RHS created at 104 Making slow rhs at time 104.6666666667 for fast variables advancing from 104 to 105 Fast time integration at level 0 from 104 to 104.5 with dt = 0.5 Fast time integration at level 0 from 104.5 to 105 with dt = 0.5 Time integration of scalars at level 0 from 104 to 105 with dt = 1 using RHS created at 104.6666666667 Making slow rhs at time 105 for fast variables advancing from 104 to 106 Fast time integration at level 0 from 104 to 104.5 with dt = 0.5 Fast time integration at level 0 from 104.5 to 105 with dt = 0.5 Fast time integration at level 0 from 105 to 105.5 with dt = 0.5 Fast time integration at level 0 from 105.5 to 106 with dt = 0.5 Time integration of scalars at level 0 from 104 to 106 with dt = 2 using RHS created at 105 Done with advance_dycore at level 0 [Level 0 step 53] Advanced 4096 cells [Level 1 step 53] ADVANCE from elapsed time = 104 to 106 with dt = 2 Making slow rhs at time 104 for fast variables advancing from 104 to 106 No-substepping time integration at level 1 to 106 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.188719999e-05 0.0005016396171 and volume-weighted sum 10864.4873 Subtracting 3.536616987e-06 from rhs in subdomain 0 Sum after subtraction -0.007392372936 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.835058619e-05 MLMG: Initial residual (resid0) = 5.835058619e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.935213944e-07, 0.01359920204 MLMG: Timers: Solve = 0.000756546 Iter = 0.000557061 Bottom = 5.7528e-05 Time in solve 0.001079064 Max/L2 norm of divergence after solve at level 1 : 3.938679583e-06 0.0001960406516 and volume-weighted sum 10864.47168 Time integration of scalars at level 1 from 104 to 106 with dt = 2 using RHS created at 104 Making slow rhs at time 106 for fast variables advancing from 104 to 106 No-substepping time integration at level 1 to 106 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 2.995063551e-05 0.000413564936 and volume-weighted sum 10864.4668 Subtracting 3.536610393e-06 from rhs in subdomain 0 Sum after subtraction -0.01507578418 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 2.937801219e-05 MLMG: Initial residual (resid0) = 2.937801219e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 7.865105545e-07, 0.02677208185 MLMG: Timers: Solve = 0.000743981 Iter = 0.000534209 Bottom = 5.6724e-05 Time in solve 0.001064724 Max/L2 norm of divergence after solve at level 1 : 3.898981959e-06 0.0001960343798 and volume-weighted sum 10864.47461 Time integration of scalars at level 1 from 104 to 106 with dt = 2 using RHS created at 106 Done with advance_dycore at level 1 [Level 1 step 53] Advanced 3072 cells Coarse STEP 53 ends. TIME = 106 DT = 2 Timestep time = 0.016489038 seconds. Coarse STEP 54 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.63212282 (terrain aware) 1.63212282 (terrain unaware) Anelastic dt at level 0 would be: 13.30120544 (terrain aware) 13.30120544 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2829328882 (terrain aware) 0.2829328882 (terrain unaware) Anelastic dt at level 1 would be: 6.317983772 (terrain aware) 6.317983772 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 54] ADVANCE from elapsed time = 106 to 108 with dt = 2 Making slow rhs at time 106 for fast variables advancing from 106 to 106.6666666667 Fast time integration at level 0 from 106 to 106.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 106 to 106.6666666667 with dt = 0.6666666666667 using RHS created at 106 Making slow rhs at time 106.6666666667 for fast variables advancing from 106 to 107 Fast time integration at level 0 from 106 to 106.5 with dt = 0.5 Fast time integration at level 0 from 106.5 to 107 with dt = 0.5 Time integration of scalars at level 0 from 106 to 107 with dt = 1 using RHS created at 106.6666666667 Making slow rhs at time 107 for fast variables advancing from 106 to 108 Fast time integration at level 0 from 106 to 106.5 with dt = 0.5 Fast time integration at level 0 from 106.5 to 107 with dt = 0.5 Fast time integration at level 0 from 107 to 107.5 with dt = 0.5 Fast time integration at level 0 from 107.5 to 108 with dt = 0.5 Time integration of scalars at level 0 from 106 to 108 with dt = 2 using RHS created at 107 Done with advance_dycore at level 0 [Level 0 step 54] Advanced 4096 cells [Level 1 step 54] ADVANCE from elapsed time = 106 to 108 with dt = 2 Making slow rhs at time 106 for fast variables advancing from 106 to 108 No-substepping time integration at level 1 to 108 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.080435171e-05 0.0005355475587 and volume-weighted sum 10569.38574 Subtracting 3.440555247e-06 from rhs in subdomain 0 Sum after subtraction 0.02450542524 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.736379146e-05 MLMG: Initial residual (resid0) = 6.736379146e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.148917914e-07, 0.01209688094 MLMG: Timers: Solve = 0.000733997 Iter = 0.000530267 Bottom = 5.4448e-05 Time in solve 0.001062941 Max/L2 norm of divergence after solve at level 1 : 3.9935112e-06 0.0001907225378 and volume-weighted sum 10569.38184 Time integration of scalars at level 1 from 106 to 108 with dt = 2 using RHS created at 106 Making slow rhs at time 108 for fast variables advancing from 106 to 108 No-substepping time integration at level 1 to 108 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.080302849e-05 0.0004196713853 and volume-weighted sum 10569.39258 Subtracting 3.440557521e-06 from rhs in subdomain 0 Sum after subtraction 0.02718297765 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.085963181e-05 MLMG: Initial residual (resid0) = 3.085963181e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.034230632e-07, 0.02603475936 MLMG: Timers: Solve = 0.000736954 Iter = 0.000538963 Bottom = 5.7024e-05 Time in solve 0.001054887 Max/L2 norm of divergence after solve at level 1 : 3.798399121e-06 0.0001907115657 and volume-weighted sum 10569.38281 Time integration of scalars at level 1 from 106 to 108 with dt = 2 using RHS created at 108 Done with advance_dycore at level 1 [Level 1 step 54] Advanced 3072 cells Coarse STEP 54 ends. TIME = 108 DT = 2 Timestep time = 0.016355896 seconds. Coarse STEP 55 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.629487103 (terrain aware) 1.629487103 (terrain unaware) Anelastic dt at level 0 would be: 13.05187921 (terrain aware) 13.05187921 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2827995787 (terrain aware) 0.2827995787 (terrain unaware) Anelastic dt at level 1 would be: 6.22424474 (terrain aware) 6.22424474 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 55] ADVANCE from elapsed time = 108 to 110 with dt = 2 Making slow rhs at time 108 for fast variables advancing from 108 to 108.6666666667 Fast time integration at level 0 from 108 to 108.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 108 to 108.6666666667 with dt = 0.6666666666667 using RHS created at 108 Making slow rhs at time 108.6666666667 for fast variables advancing from 108 to 109 Fast time integration at level 0 from 108 to 108.5 with dt = 0.5 Fast time integration at level 0 from 108.5 to 109 with dt = 0.5 Time integration of scalars at level 0 from 108 to 109 with dt = 1 using RHS created at 108.6666666667 Making slow rhs at time 109 for fast variables advancing from 108 to 110 Fast time integration at level 0 from 108 to 108.5 with dt = 0.5 Fast time integration at level 0 from 108.5 to 109 with dt = 0.5 Fast time integration at level 0 from 109 to 109.5 with dt = 0.5 Fast time integration at level 0 from 109.5 to 110 with dt = 0.5 Time integration of scalars at level 0 from 108 to 110 with dt = 2 using RHS created at 109 Done with advance_dycore at level 0 [Level 0 step 55] Advanced 4096 cells [Level 1 step 55] ADVANCE from elapsed time = 108 to 110 with dt = 2 Making slow rhs at time 108 for fast variables advancing from 108 to 110 No-substepping time integration at level 1 to 110 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.536565393e-05 0.0004739295109 and volume-weighted sum 10316.33301 Subtracting 3.358181402e-06 from rhs in subdomain 0 Sum after subtraction -0.00826548785 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.872383215e-05 MLMG: Initial residual (resid0) = 4.872383215e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.227061699e-07, 0.01688508689 MLMG: Timers: Solve = 0.000739769 Iter = 0.000528052 Bottom = 5.434e-05 Time in solve 0.001059864 Max/L2 norm of divergence after solve at level 1 : 3.770575859e-06 0.0001861541969 and volume-weighted sum 10316.32129 Time integration of scalars at level 1 from 108 to 110 with dt = 2 using RHS created at 108 Making slow rhs at time 110 for fast variables advancing from 108 to 110 No-substepping time integration at level 1 to 110 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.16738151e-05 0.0004267300537 and volume-weighted sum 10316.31934 Subtracting 3.358176855e-06 from rhs in subdomain 0 Sum after subtraction -0.01856824383 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.234092947e-05 MLMG: Initial residual (resid0) = 3.234092947e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.184115359e-07, 0.02530575171 MLMG: Timers: Solve = 0.0007361 Iter = 0.000531661 Bottom = 5.7272e-05 Time in solve 0.001064144 Max/L2 norm of divergence after solve at level 1 : 3.726687282e-06 0.0001861465717 and volume-weighted sum 10316.32324 Time integration of scalars at level 1 from 108 to 110 with dt = 2 using RHS created at 110 Done with advance_dycore at level 1 [Level 1 step 55] Advanced 3072 cells Coarse STEP 55 ends. TIME = 110 DT = 2 Timestep time = 0.01638359 seconds. Coarse STEP 56 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.626769131 (terrain aware) 1.626769131 (terrain unaware) Anelastic dt at level 0 would be: 12.81627398 (terrain aware) 12.81627398 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.28266314 (terrain aware) 0.28266314 (terrain unaware) Anelastic dt at level 1 would be: 6.135811118 (terrain aware) 6.135811118 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 56] ADVANCE from elapsed time = 110 to 112 with dt = 2 Making slow rhs at time 110 for fast variables advancing from 110 to 110.6666666667 Fast time integration at level 0 from 110 to 110.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 110 to 110.6666666667 with dt = 0.6666666666667 using RHS created at 110 Making slow rhs at time 110.6666666667 for fast variables advancing from 110 to 111 Fast time integration at level 0 from 110 to 110.5 with dt = 0.5 Fast time integration at level 0 from 110.5 to 111 with dt = 0.5 Time integration of scalars at level 0 from 110 to 111 with dt = 1 using RHS created at 110.6666666667 Making slow rhs at time 111 for fast variables advancing from 110 to 112 Fast time integration at level 0 from 110 to 110.5 with dt = 0.5 Fast time integration at level 0 from 110.5 to 111 with dt = 0.5 Fast time integration at level 0 from 111 to 111.5 with dt = 0.5 Fast time integration at level 0 from 111.5 to 112 with dt = 0.5 Time integration of scalars at level 0 from 110 to 112 with dt = 2 using RHS created at 111 Done with advance_dycore at level 0 [Level 0 step 56] Advanced 4096 cells [Level 1 step 56] ADVANCE from elapsed time = 110 to 112 with dt = 2 Making slow rhs at time 110 for fast variables advancing from 110 to 112 No-substepping time integration at level 1 to 112 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.584155537e-05 0.0004966382985 and volume-weighted sum 10151.25293 Subtracting 3.304444363e-06 from rhs in subdomain 0 Sum after subtraction 0.009604264051 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.914599701e-05 MLMG: Initial residual (resid0) = 7.914599701e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.208644431e-07, 0.01037152205 MLMG: Timers: Solve = 0.000732344 Iter = 0.000536727 Bottom = 5.4633e-05 Time in solve 0.001058255 Max/L2 norm of divergence after solve at level 1 : 3.708526492e-06 0.0001831750124 and volume-weighted sum 10151.24707 Time integration of scalars at level 1 from 110 to 112 with dt = 2 using RHS created at 110 Making slow rhs at time 112 for fast variables advancing from 110 to 112 No-substepping time integration at level 1 to 112 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.288220614e-05 0.0004347946087 and volume-weighted sum 10151.26367 Subtracting 3.304447773e-06 from rhs in subdomain 0 Sum after subtraction 0.008440110832 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.378477777e-05 MLMG: Initial residual (resid0) = 3.378477777e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.313054423e-07, 0.02460591681 MLMG: Timers: Solve = 0.000741315 Iter = 0.000541942 Bottom = 5.7599e-05 Time in solve 0.001060523 Max/L2 norm of divergence after solve at level 1 : 3.676395863e-06 0.0001831690461 and volume-weighted sum 10151.25391 Time integration of scalars at level 1 from 110 to 112 with dt = 2 using RHS created at 112 Done with advance_dycore at level 1 [Level 1 step 56] Advanced 3072 cells Coarse STEP 56 ends. TIME = 112 DT = 2 Timestep time = 0.016464591 seconds. Coarse STEP 57 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.623975312 (terrain aware) 1.623975312 (terrain unaware) Anelastic dt at level 0 would be: 12.59380679 (terrain aware) 12.59380679 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2825230504 (terrain aware) 0.2825230504 (terrain unaware) Anelastic dt at level 1 would be: 6.052356272 (terrain aware) 6.052356272 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 57] ADVANCE from elapsed time = 112 to 114 with dt = 2 Making slow rhs at time 112 for fast variables advancing from 112 to 112.6666666667 Fast time integration at level 0 from 112 to 112.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 112 to 112.6666666667 with dt = 0.6666666666667 using RHS created at 112 Making slow rhs at time 112.6666666667 for fast variables advancing from 112 to 113 Fast time integration at level 0 from 112 to 112.5 with dt = 0.5 Fast time integration at level 0 from 112.5 to 113 with dt = 0.5 Time integration of scalars at level 0 from 112 to 113 with dt = 1 using RHS created at 112.6666666667 Making slow rhs at time 113 for fast variables advancing from 112 to 114 Fast time integration at level 0 from 112 to 112.5 with dt = 0.5 Fast time integration at level 0 from 112.5 to 113 with dt = 0.5 Fast time integration at level 0 from 113 to 113.5 with dt = 0.5 Fast time integration at level 0 from 113.5 to 114 with dt = 0.5 Time integration of scalars at level 0 from 112 to 114 with dt = 2 using RHS created at 113 Done with advance_dycore at level 0 [Level 0 step 57] Advanced 4096 cells [Level 1 step 57] ADVANCE from elapsed time = 112 to 114 with dt = 2 Making slow rhs at time 112 for fast variables advancing from 112 to 114 No-substepping time integration at level 1 to 114 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.239573799e-05 0.0005337645416 and volume-weighted sum 10219.79199 Subtracting 3.326755177e-06 from rhs in subdomain 0 Sum after subtraction 5.820766091e-05 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.906898099e-05 MLMG: Initial residual (resid0) = 7.906898099e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.128517948e-07, 0.01028028689 MLMG: Timers: Solve = 0.000727717 Iter = 0.000527096 Bottom = 5.6563e-05 Time in solve 0.001053691 Max/L2 norm of divergence after solve at level 1 : 3.74764204e-06 0.0001844132494 and volume-weighted sum 10219.79199 Time integration of scalars at level 1 from 112 to 114 with dt = 2 using RHS created at 112 Making slow rhs at time 114 for fast variables advancing from 112 to 114 No-substepping time integration at level 1 to 114 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.396579996e-05 0.0004446606617 and volume-weighted sum 10219.80664 Subtracting 3.326759952e-06 from rhs in subdomain 0 Sum after subtraction -0.001979060471 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.518916856e-05 MLMG: Initial residual (resid0) = 3.518916856e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.419046935e-07, 0.02392510884 MLMG: Timers: Solve = 0.000749462 Iter = 0.000546825 Bottom = 6.8225e-05 Time in solve 0.001076126 Max/L2 norm of divergence after solve at level 1 : 3.705266863e-06 0.0001844063809 and volume-weighted sum 10219.79785 Time integration of scalars at level 1 from 112 to 114 with dt = 2 using RHS created at 114 Done with advance_dycore at level 1 [Level 1 step 57] Advanced 3072 cells Coarse STEP 57 ends. TIME = 114 DT = 2 Timestep time = 0.016344751 seconds. Coarse STEP 58 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.620922362 (terrain aware) 1.620922362 (terrain unaware) Anelastic dt at level 0 would be: 12.36589652 (terrain aware) 12.36589652 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2823797013 (terrain aware) 0.2823797013 (terrain unaware) Anelastic dt at level 1 would be: 5.973536283 (terrain aware) 5.973536283 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 58] ADVANCE from elapsed time = 114 to 116 with dt = 2 Making slow rhs at time 114 for fast variables advancing from 114 to 114.6666666667 Fast time integration at level 0 from 114 to 114.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 114 to 114.6666666667 with dt = 0.6666666666667 using RHS created at 114 Making slow rhs at time 114.6666666667 for fast variables advancing from 114 to 115 Fast time integration at level 0 from 114 to 114.5 with dt = 0.5 Fast time integration at level 0 from 114.5 to 115 with dt = 0.5 Time integration of scalars at level 0 from 114 to 115 with dt = 1 using RHS created at 114.6666666667 Making slow rhs at time 115 for fast variables advancing from 114 to 116 Fast time integration at level 0 from 114 to 114.5 with dt = 0.5 Fast time integration at level 0 from 114.5 to 115 with dt = 0.5 Fast time integration at level 0 from 115 to 115.5 with dt = 0.5 Fast time integration at level 0 from 115.5 to 116 with dt = 0.5 Time integration of scalars at level 0 from 114 to 116 with dt = 2 using RHS created at 115 Done with advance_dycore at level 0 [Level 0 step 58] Advanced 4096 cells [Level 1 step 58] ADVANCE from elapsed time = 114 to 116 with dt = 2 Making slow rhs at time 114 for fast variables advancing from 114 to 116 No-substepping time integration at level 1 to 116 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001115504419 0.0005635354319 and volume-weighted sum 10464.00488 Subtracting 3.406251608e-06 from rhs in subdomain 0 Sum after subtraction 0.01752050593 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001081441806 MLMG: Initial residual (resid0) = 0.0001081441806 MLMG: Final Iter. 2 resid, resid/bnorm = 8.14200348e-07, 0.00752884103 MLMG: Timers: Solve = 0.000740304 Iter = 0.000542937 Bottom = 5.7833e-05 Time in solve 0.001084179 Max/L2 norm of divergence after solve at level 1 : 3.837049007e-06 0.0001888219122 and volume-weighted sum 10464.01562 Time integration of scalars at level 1 from 114 to 116 with dt = 2 using RHS created at 114 Making slow rhs at time 116 for fast variables advancing from 114 to 116 No-substepping time integration at level 1 to 116 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.490038216e-05 0.000456296315 and volume-weighted sum 10464.00781 Subtracting 3.406252517e-06 from rhs in subdomain 0 Sum after subtraction 0.01752050593 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.656972694e-05 MLMG: Initial residual (resid0) = 3.656972694e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.50237484e-07, 0.02324976213 MLMG: Timers: Solve = 0.000740274 Iter = 0.00052765 Bottom = 5.6632e-05 Time in solve 0.001074576 Max/L2 norm of divergence after solve at level 1 : 3.783963621e-06 0.0001888125116 and volume-weighted sum 10464.00781 Time integration of scalars at level 1 from 114 to 116 with dt = 2 using RHS created at 116 Done with advance_dycore at level 1 [Level 1 step 58] Advanced 3072 cells Coarse STEP 58 ends. TIME = 116 DT = 2 Timestep time = 0.016487294 seconds. Coarse STEP 59 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.617810553 (terrain aware) 1.617810553 (terrain unaware) Anelastic dt at level 0 would be: 12.12333542 (terrain aware) 12.12333542 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2822328317 (terrain aware) 0.2822328317 (terrain unaware) Anelastic dt at level 1 would be: 5.896421583 (terrain aware) 5.896421583 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 59] ADVANCE from elapsed time = 116 to 118 with dt = 2 Making slow rhs at time 116 for fast variables advancing from 116 to 116.6666666667 Fast time integration at level 0 from 116 to 116.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 116 to 116.6666666667 with dt = 0.6666666666667 using RHS created at 116 Making slow rhs at time 116.6666666667 for fast variables advancing from 116 to 117 Fast time integration at level 0 from 116 to 116.5 with dt = 0.5 Fast time integration at level 0 from 116.5 to 117 with dt = 0.5 Time integration of scalars at level 0 from 116 to 117 with dt = 1 using RHS created at 116.6666666667 Making slow rhs at time 117 for fast variables advancing from 116 to 118 Fast time integration at level 0 from 116 to 116.5 with dt = 0.5 Fast time integration at level 0 from 116.5 to 117 with dt = 0.5 Fast time integration at level 0 from 117 to 117.5 with dt = 0.5 Fast time integration at level 0 from 117.5 to 118 with dt = 0.5 Time integration of scalars at level 0 from 116 to 118 with dt = 2 using RHS created at 117 Done with advance_dycore at level 0 [Level 0 step 59] Advanced 4096 cells [Level 1 step 59] ADVANCE from elapsed time = 116 to 118 with dt = 2 Making slow rhs at time 116 for fast variables advancing from 116 to 118 No-substepping time integration at level 1 to 118 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.457538206e-05 0.0005778167979 and volume-weighted sum 10895.9707 Subtracting 3.5468654e-06 from rhs in subdomain 0 Sum after subtraction -0.004074536264 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.102852007e-05 MLMG: Initial residual (resid0) = 8.102852007e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.368076578e-07, 0.01032732241 MLMG: Timers: Solve = 0.000741688 Iter = 0.000541375 Bottom = 5.7106e-05 Time in solve 0.001061914 Max/L2 norm of divergence after solve at level 1 : 3.986060619e-06 0.0001966164564 and volume-weighted sum 10895.96777 Time integration of scalars at level 1 from 116 to 118 with dt = 2 using RHS created at 116 Making slow rhs at time 118 for fast variables advancing from 116 to 118 No-substepping time integration at level 1 to 118 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.638677299e-05 0.0004696848046 and volume-weighted sum 10895.97754 Subtracting 3.546867674e-06 from rhs in subdomain 0 Sum after subtraction 0.001164153218 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.783723514e-05 MLMG: Initial residual (resid0) = 3.783723514e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.699009868e-07, 0.02299060673 MLMG: Timers: Solve = 0.000749815 Iter = 0.000547811 Bottom = 5.6654e-05 Time in solve 0.001066895 Max/L2 norm of divergence after solve at level 1 : 3.932509571e-06 0.0001966059936 and volume-weighted sum 10895.95996 Time integration of scalars at level 1 from 116 to 118 with dt = 2 using RHS created at 118 Done with advance_dycore at level 1 [Level 1 step 59] Advanced 3072 cells Coarse STEP 59 ends. TIME = 118 DT = 2 Timestep time = 0.016350178 seconds. Coarse STEP 60 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.614630496 (terrain aware) 1.614630496 (terrain unaware) Anelastic dt at level 0 would be: 11.88509923 (terrain aware) 11.88509923 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2820825162 (terrain aware) 0.2820825162 (terrain unaware) Anelastic dt at level 1 would be: 5.822011146 (terrain aware) 5.822011146 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 60] ADVANCE from elapsed time = 118 to 120 with dt = 2 Making slow rhs at time 118 for fast variables advancing from 118 to 118.6666666667 Fast time integration at level 0 from 118 to 118.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 118 to 118.6666666667 with dt = 0.6666666666667 using RHS created at 118 Making slow rhs at time 118.6666666667 for fast variables advancing from 118 to 119 Fast time integration at level 0 from 118 to 118.5 with dt = 0.5 Fast time integration at level 0 from 118.5 to 119 with dt = 0.5 Time integration of scalars at level 0 from 118 to 119 with dt = 1 using RHS created at 118.6666666667 Making slow rhs at time 119 for fast variables advancing from 118 to 120 Fast time integration at level 0 from 118 to 118.5 with dt = 0.5 Fast time integration at level 0 from 118.5 to 119 with dt = 0.5 Fast time integration at level 0 from 119 to 119.5 with dt = 0.5 Fast time integration at level 0 from 119.5 to 120 with dt = 0.5 Time integration of scalars at level 0 from 118 to 120 with dt = 2 using RHS created at 119 Done with advance_dycore at level 0 [Level 0 step 60] Advanced 4096 cells [Level 1 step 60] ADVANCE from elapsed time = 118 to 120 with dt = 2 Making slow rhs at time 118 for fast variables advancing from 118 to 120 No-substepping time integration at level 1 to 120 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.027938798e-05 0.0005685692304 and volume-weighted sum 11391.67676 Subtracting 3.708228178e-06 from rhs in subdomain 0 Sum after subtraction 0.002502929419 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.910480832e-05 MLMG: Initial residual (resid0) = 5.910480832e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.669931049e-07, 0.01466874033 MLMG: Timers: Solve = 0.000749721 Iter = 0.000548902 Bottom = 5.6882e-05 Time in solve 0.001071924 Max/L2 norm of divergence after solve at level 1 : 4.157423973e-06 0.0002055572259 and volume-weighted sum 11391.66992 Time integration of scalars at level 1 from 118 to 120 with dt = 2 using RHS created at 118 Making slow rhs at time 120 for fast variables advancing from 118 to 120 No-substepping time integration at level 1 to 120 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.778142855e-05 0.000483758573 and volume-weighted sum 11391.68066 Subtracting 3.708229315e-06 from rhs in subdomain 0 Sum after subtraction 0.005471520126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 3.921583266e-05 MLMG: Initial residual (resid0) = 3.921583266e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.914503269e-07, 0.02273189835 MLMG: Timers: Solve = 0.000736311 Iter = 0.000529896 Bottom = 5.5078e-05 Time in solve 0.001059126 Max/L2 norm of divergence after solve at level 1 : 4.100147635e-06 0.0002055495715 and volume-weighted sum 11391.6748 Time integration of scalars at level 1 from 118 to 120 with dt = 2 using RHS created at 120 Done with advance_dycore at level 1 [Level 1 step 60] Advanced 3072 cells Coarse STEP 60 ends. TIME = 120 DT = 2 Timestep time = 0.016371149 seconds. Coarse STEP 61 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.611375785 (terrain aware) 1.611375785 (terrain unaware) Anelastic dt at level 0 would be: 11.68746335 (terrain aware) 11.68746335 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2819287362 (terrain aware) 0.2819287362 (terrain unaware) Anelastic dt at level 1 would be: 5.751837406 (terrain aware) 5.751837406 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 61] ADVANCE from elapsed time = 120 to 122 with dt = 2 Making slow rhs at time 120 for fast variables advancing from 120 to 120.6666666667 Fast time integration at level 0 from 120 to 120.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 120 to 120.6666666667 with dt = 0.6666666666667 using RHS created at 120 Making slow rhs at time 120.6666666667 for fast variables advancing from 120 to 121 Fast time integration at level 0 from 120 to 120.5 with dt = 0.5 Fast time integration at level 0 from 120.5 to 121 with dt = 0.5 Time integration of scalars at level 0 from 120 to 121 with dt = 1 using RHS created at 120.6666666667 Making slow rhs at time 121 for fast variables advancing from 120 to 122 Fast time integration at level 0 from 120 to 120.5 with dt = 0.5 Fast time integration at level 0 from 120.5 to 121 with dt = 0.5 Fast time integration at level 0 from 121 to 121.5 with dt = 0.5 Fast time integration at level 0 from 121.5 to 122 with dt = 0.5 Time integration of scalars at level 0 from 120 to 122 with dt = 2 using RHS created at 121 Done with advance_dycore at level 0 [Level 0 step 61] Advanced 4096 cells [Level 1 step 61] ADVANCE from elapsed time = 120 to 122 with dt = 2 Making slow rhs at time 120 for fast variables advancing from 120 to 122 No-substepping time integration at level 1 to 122 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.837203935e-05 0.0005495338119 and volume-weighted sum 11935.07422 Subtracting 3.885115348e-06 from rhs in subdomain 0 Sum after subtraction -0.01030275598 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.4486929e-05 MLMG: Initial residual (resid0) = 5.4486929e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 8.974411685e-07, 0.01647076011 MLMG: Timers: Solve = 0.000741174 Iter = 0.000531433 Bottom = 5.791e-05 Time in solve 0.001121194 Max/L2 norm of divergence after solve at level 1 : 4.330184311e-06 0.0002153587848 and volume-weighted sum 11935.08203 Time integration of scalars at level 1 from 120 to 122 with dt = 2 using RHS created at 120 Making slow rhs at time 122 for fast variables advancing from 120 to 122 No-substepping time integration at level 1 to 122 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 3.919703886e-05 0.0004985354608 and volume-weighted sum 11935.07715 Subtracting 3.885116257e-06 from rhs in subdomain 0 Sum after subtraction -0.01647276804 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.116968194e-05 MLMG: Initial residual (resid0) = 4.116968194e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.107334336e-07, 0.02212145925 MLMG: Timers: Solve = 0.000781044 Iter = 0.000579851 Bottom = 7.5527e-05 Time in solve 0.001138722 Max/L2 norm of divergence after solve at level 1 : 4.277564585e-06 0.0002153534442 and volume-weighted sum 11935.07715 Time integration of scalars at level 1 from 120 to 122 with dt = 2 using RHS created at 122 Done with advance_dycore at level 1 [Level 1 step 61] Advanced 3072 cells Coarse STEP 61 ends. TIME = 122 DT = 2 Timestep time = 0.017216547 seconds. Coarse STEP 62 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.608065641 (terrain aware) 1.608065641 (terrain unaware) Anelastic dt at level 0 would be: 11.55475242 (terrain aware) 11.55475242 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2817718456 (terrain aware) 0.2817718456 (terrain unaware) Anelastic dt at level 1 would be: 5.685806786 (terrain aware) 5.685806786 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 62] ADVANCE from elapsed time = 122 to 124 with dt = 2 Making slow rhs at time 122 for fast variables advancing from 122 to 122.6666666667 Fast time integration at level 0 from 122 to 122.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 122 to 122.6666666667 with dt = 0.6666666666667 using RHS created at 122 Making slow rhs at time 122.6666666667 for fast variables advancing from 122 to 123 Fast time integration at level 0 from 122 to 122.5 with dt = 0.5 Fast time integration at level 0 from 122.5 to 123 with dt = 0.5 Time integration of scalars at level 0 from 122 to 123 with dt = 1 using RHS created at 122.6666666667 Making slow rhs at time 123 for fast variables advancing from 122 to 124 Fast time integration at level 0 from 122 to 122.5 with dt = 0.5 Fast time integration at level 0 from 122.5 to 123 with dt = 0.5 Fast time integration at level 0 from 123 to 123.5 with dt = 0.5 Fast time integration at level 0 from 123.5 to 124 with dt = 0.5 Time integration of scalars at level 0 from 122 to 124 with dt = 2 using RHS created at 123 Done with advance_dycore at level 0 [Level 0 step 62] Advanced 4096 cells [Level 1 step 62] ADVANCE from elapsed time = 122 to 124 with dt = 2 Making slow rhs at time 122 for fast variables advancing from 122 to 124 No-substepping time integration at level 1 to 124 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.124781117e-05 0.0005223439657 and volume-weighted sum 12460.41895 Subtracting 4.056125817e-06 from rhs in subdomain 0 Sum after subtraction -0.01268927008 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.287085176e-05 MLMG: Initial residual (resid0) = 4.287085176e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.248742572e-07, 0.02157349885 MLMG: Timers: Solve = 0.000732621 Iter = 0.000532106 Bottom = 5.469e-05 Time in solve 0.001078982 Max/L2 norm of divergence after solve at level 1 : 4.465691745e-06 0.0002248341043 and volume-weighted sum 12460.42383 Time integration of scalars at level 1 from 122 to 124 with dt = 2 using RHS created at 122 Making slow rhs at time 124 for fast variables advancing from 122 to 124 No-substepping time integration at level 1 to 124 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.10550274e-05 0.0005135654355 and volume-weighted sum 12460.42383 Subtracting 4.056127636e-06 from rhs in subdomain 0 Sum after subtraction -0.01868465915 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.30375585e-05 MLMG: Initial residual (resid0) = 4.30375585e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.272553143e-07, 0.02154525742 MLMG: Timers: Solve = 0.000909666 Iter = 0.000677516 Bottom = 8.676e-05 Time in solve 0.001363178 Max/L2 norm of divergence after solve at level 1 : 4.443805665e-06 0.0002248314559 and volume-weighted sum 12460.41113 Time integration of scalars at level 1 from 122 to 124 with dt = 2 using RHS created at 124 Done with advance_dycore at level 1 [Level 1 step 62] Advanced 3072 cells Coarse STEP 62 ends. TIME = 124 DT = 2 Timestep time = 0.016537779 seconds. Coarse STEP 63 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.604729718 (terrain aware) 1.604729718 (terrain unaware) Anelastic dt at level 0 would be: 11.460589 (terrain aware) 11.460589 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2816120493 (terrain aware) 0.2816120493 (terrain unaware) Anelastic dt at level 1 would be: 5.62384001 (terrain aware) 5.62384001 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 63] ADVANCE from elapsed time = 124 to 126 with dt = 2 Making slow rhs at time 124 for fast variables advancing from 124 to 124.6666666667 Fast time integration at level 0 from 124 to 124.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 124 to 124.6666666667 with dt = 0.6666666666667 using RHS created at 124 Making slow rhs at time 124.6666666667 for fast variables advancing from 124 to 125 Fast time integration at level 0 from 124 to 124.5 with dt = 0.5 Fast time integration at level 0 from 124.5 to 125 with dt = 0.5 Time integration of scalars at level 0 from 124 to 125 with dt = 1 using RHS created at 124.6666666667 Making slow rhs at time 125 for fast variables advancing from 124 to 126 Fast time integration at level 0 from 124 to 124.5 with dt = 0.5 Fast time integration at level 0 from 124.5 to 125 with dt = 0.5 Fast time integration at level 0 from 125 to 125.5 with dt = 0.5 Fast time integration at level 0 from 125.5 to 126 with dt = 0.5 Time integration of scalars at level 0 from 124 to 126 with dt = 2 using RHS created at 125 Done with advance_dycore at level 0 [Level 0 step 63] Advanced 4096 cells [Level 1 step 63] ADVANCE from elapsed time = 124 to 126 with dt = 2 Making slow rhs at time 124 for fast variables advancing from 124 to 126 No-substepping time integration at level 1 to 126 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.411698319e-05 0.0005673297564 and volume-weighted sum 12974.34766 Subtracting 4.223420547e-06 from rhs in subdomain 0 Sum after subtraction -0.003259629011 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.482850272e-05 MLMG: Initial residual (resid0) = 4.482850272e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.418472473e-07, 0.02101000957 MLMG: Timers: Solve = 0.000737414 Iter = 0.000537293 Bottom = 5.5628e-05 Time in solve 0.001073447 Max/L2 norm of divergence after solve at level 1 : 4.610978067e-06 0.0002341057116 and volume-weighted sum 12974.37207 Time integration of scalars at level 1 from 124 to 126 with dt = 2 using RHS created at 124 Making slow rhs at time 126 for fast variables advancing from 124 to 126 No-substepping time integration at level 1 to 126 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.261313006e-05 0.0005287902895 and volume-weighted sum 12974.35938 Subtracting 4.223424185e-06 from rhs in subdomain 0 Sum after subtraction -0.0007566995919 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.482629447e-05 MLMG: Initial residual (resid0) = 4.482629447e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.408595361e-07, 0.02098901011 MLMG: Timers: Solve = 0.000774931 Iter = 0.000528794 Bottom = 5.5291e-05 Time in solve 0.001138074 Max/L2 norm of divergence after solve at level 1 : 4.615169019e-06 0.0002341040235 and volume-weighted sum 12974.35938 Time integration of scalars at level 1 from 124 to 126 with dt = 2 using RHS created at 126 Done with advance_dycore at level 1 [Level 1 step 63] Advanced 3072 cells Coarse STEP 63 ends. TIME = 126 DT = 2 Timestep time = 0.016408048 seconds. Coarse STEP 64 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.601395732 (terrain aware) 1.601395732 (terrain unaware) Anelastic dt at level 0 would be: 11.38233525 (terrain aware) 11.38233525 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2814493659 (terrain aware) 0.2814493659 (terrain unaware) Anelastic dt at level 1 would be: 5.565835751 (terrain aware) 5.565835751 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 64] ADVANCE from elapsed time = 126 to 128 with dt = 2 Making slow rhs at time 126 for fast variables advancing from 126 to 126.6666666667 Fast time integration at level 0 from 126 to 126.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 126 to 126.6666666667 with dt = 0.6666666666667 using RHS created at 126 Making slow rhs at time 126.6666666667 for fast variables advancing from 126 to 127 Fast time integration at level 0 from 126 to 126.5 with dt = 0.5 Fast time integration at level 0 from 126.5 to 127 with dt = 0.5 Time integration of scalars at level 0 from 126 to 127 with dt = 1 using RHS created at 126.6666666667 Making slow rhs at time 127 for fast variables advancing from 126 to 128 Fast time integration at level 0 from 126 to 126.5 with dt = 0.5 Fast time integration at level 0 from 126.5 to 127 with dt = 0.5 Fast time integration at level 0 from 127 to 127.5 with dt = 0.5 Fast time integration at level 0 from 127.5 to 128 with dt = 0.5 Time integration of scalars at level 0 from 126 to 128 with dt = 2 using RHS created at 127 Done with advance_dycore at level 0 [Level 0 step 64] Advanced 4096 cells [Level 1 step 64] ADVANCE from elapsed time = 126 to 128 with dt = 2 Making slow rhs at time 126 for fast variables advancing from 126 to 128 No-substepping time integration at level 1 to 128 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.453347694e-05 0.0005919155665 and volume-weighted sum 13368.80469 Subtracting 4.351824373e-06 from rhs in subdomain 0 Sum after subtraction -0.01274747774 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.888529631e-05 MLMG: Initial residual (resid0) = 5.888529631e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.688174032e-07, 0.01645261981 MLMG: Timers: Solve = 0.000802153 Iter = 0.000603773 Bottom = 5.9079e-05 Time in solve 0.00113865 Max/L2 norm of divergence after solve at level 1 : 4.71342355e-06 0.000241222122 and volume-weighted sum 13368.83301 Time integration of scalars at level 1 from 126 to 128 with dt = 2 using RHS created at 126 Making slow rhs at time 128 for fast variables advancing from 126 to 128 No-substepping time integration at level 1 to 128 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.369253293e-05 0.0005432812613 and volume-weighted sum 13368.82422 Subtracting 4.351830739e-06 from rhs in subdomain 0 Sum after subtraction -0.01245643944 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.64056975e-05 MLMG: Initial residual (resid0) = 4.64056975e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.701143426e-07, 0.02090507001 MLMG: Timers: Solve = 0.001243065 Iter = 0.000942488 Bottom = 0.000123013 Time in solve 0.001577857 Max/L2 norm of divergence after solve at level 1 : 4.743225873e-06 0.0002412211761 and volume-weighted sum 13368.82715 Time integration of scalars at level 1 from 126 to 128 with dt = 2 using RHS created at 128 Done with advance_dycore at level 1 [Level 1 step 64] Advanced 3072 cells Coarse STEP 64 ends. TIME = 128 DT = 2 Timestep time = 0.017046359 seconds. Coarse STEP 65 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.598091847 (terrain aware) 1.598091847 (terrain unaware) Anelastic dt at level 0 would be: 11.30160673 (terrain aware) 11.30160673 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2812837767 (terrain aware) 0.2812837767 (terrain unaware) Anelastic dt at level 1 would be: 5.509864606 (terrain aware) 5.509864606 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 65] ADVANCE from elapsed time = 128 to 130 with dt = 2 Making slow rhs at time 128 for fast variables advancing from 128 to 128.6666666667 Fast time integration at level 0 from 128 to 128.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 128 to 128.6666666667 with dt = 0.6666666666667 using RHS created at 128 Making slow rhs at time 128.6666666667 for fast variables advancing from 128 to 129 Fast time integration at level 0 from 128 to 128.5 with dt = 0.5 Fast time integration at level 0 from 128.5 to 129 with dt = 0.5 Time integration of scalars at level 0 from 128 to 129 with dt = 1 using RHS created at 128.6666666667 Making slow rhs at time 129 for fast variables advancing from 128 to 130 Fast time integration at level 0 from 128 to 128.5 with dt = 0.5 Fast time integration at level 0 from 128.5 to 129 with dt = 0.5 Fast time integration at level 0 from 129 to 129.5 with dt = 0.5 Fast time integration at level 0 from 129.5 to 130 with dt = 0.5 Time integration of scalars at level 0 from 128 to 130 with dt = 2 using RHS created at 129 Done with advance_dycore at level 0 [Level 0 step 65] Advanced 4096 cells [Level 1 step 65] ADVANCE from elapsed time = 128 to 130 with dt = 2 Making slow rhs at time 128 for fast variables advancing from 128 to 130 No-substepping time integration at level 1 to 130 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.593748599e-05 0.0005787402042 and volume-weighted sum 13596.46387 Subtracting 4.425932275e-06 from rhs in subdomain 0 Sum after subtraction 0.05075708032 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.781068128e-05 MLMG: Initial residual (resid0) = 4.781068128e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.962661807e-07, 0.02083773166 MLMG: Timers: Solve = 0.00074503 Iter = 0.00054417 Bottom = 5.6948e-05 Time in solve 0.00108183 Max/L2 norm of divergence after solve at level 1 : 4.781410098e-06 0.0002453289635 and volume-weighted sum 13596.46387 Time integration of scalars at level 1 from 128 to 130 with dt = 2 using RHS created at 128 Making slow rhs at time 130 for fast variables advancing from 128 to 130 No-substepping time integration at level 1 to 130 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.563014954e-05 0.0005567852641 and volume-weighted sum 13596.47363 Subtracting 4.425935458e-06 from rhs in subdomain 0 Sum after subtraction 0.03178138286 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 4.808355516e-05 MLMG: Initial residual (resid0) = 4.808355516e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 9.979980859e-07, 0.02075549774 MLMG: Timers: Solve = 0.000924367 Iter = 0.000682231 Bottom = 5.6419e-05 Time in solve 0.001250121 Max/L2 norm of divergence after solve at level 1 : 4.823319614e-06 0.0002453281777 and volume-weighted sum 13596.44727 Time integration of scalars at level 1 from 128 to 130 with dt = 2 using RHS created at 130 Done with advance_dycore at level 1 [Level 1 step 65] Advanced 3072 cells Coarse STEP 65 ends. TIME = 130 DT = 2 Timestep time = 0.016487607 seconds. Coarse STEP 66 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.594830877 (terrain aware) 1.594830877 (terrain unaware) Anelastic dt at level 0 would be: 11.22107489 (terrain aware) 11.22107489 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2811154122 (terrain aware) 0.2811154122 (terrain unaware) Anelastic dt at level 1 would be: 5.455918231 (terrain aware) 5.455918231 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 66] ADVANCE from elapsed time = 130 to 132 with dt = 2 Making slow rhs at time 130 for fast variables advancing from 130 to 130.6666666667 Fast time integration at level 0 from 130 to 130.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 130 to 130.6666666667 with dt = 0.6666666666667 using RHS created at 130 Making slow rhs at time 130.6666666667 for fast variables advancing from 130 to 131 Fast time integration at level 0 from 130 to 130.5 with dt = 0.5 Fast time integration at level 0 from 130.5 to 131 with dt = 0.5 Time integration of scalars at level 0 from 130 to 131 with dt = 1 using RHS created at 130.6666666667 Making slow rhs at time 131 for fast variables advancing from 130 to 132 Fast time integration at level 0 from 130 to 130.5 with dt = 0.5 Fast time integration at level 0 from 130.5 to 131 with dt = 0.5 Fast time integration at level 0 from 131 to 131.5 with dt = 0.5 Fast time integration at level 0 from 131.5 to 132 with dt = 0.5 Time integration of scalars at level 0 from 130 to 132 with dt = 2 using RHS created at 131 Done with advance_dycore at level 0 [Level 0 step 66] Advanced 4096 cells [Level 1 step 66] ADVANCE from elapsed time = 130 to 132 with dt = 2 Making slow rhs at time 130 for fast variables advancing from 130 to 132 No-substepping time integration at level 1 to 132 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.221188232e-05 0.0006107675144 and volume-weighted sum 13587.7334 Subtracting 4.423090104e-06 from rhs in subdomain 0 Sum after subtraction 0.006752088666 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.663497334e-05 MLMG: Initial residual (resid0) = 6.663497334e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.028329052e-06, 0.01543227211 MLMG: Timers: Solve = 0.000734038 Iter = 0.000524762 Bottom = 5.7152e-05 Time in solve 0.001071556 Max/L2 norm of divergence after solve at level 1 : 4.856614396e-06 0.0002451761102 and volume-weighted sum 13587.74902 Time integration of scalars at level 1 from 130 to 132 with dt = 2 using RHS created at 130 Making slow rhs at time 132 for fast variables advancing from 130 to 132 No-substepping time integration at level 1 to 132 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.717288539e-05 0.0005688697565 and volume-weighted sum 13587.74512 Subtracting 4.423094197e-06 from rhs in subdomain 0 Sum after subtraction 0.01903390512 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.07312543e-05 MLMG: Initial residual (resid0) = 5.07312543e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.022995093e-06, 0.02016498707 MLMG: Timers: Solve = 0.001086277 Iter = 0.000745331 Bottom = 5.4282e-05 Time in solve 0.001425259 Max/L2 norm of divergence after solve at level 1 : 4.815869033e-06 0.0002451715409 and volume-weighted sum 13587.74121 Time integration of scalars at level 1 from 130 to 132 with dt = 2 using RHS created at 132 Done with advance_dycore at level 1 [Level 1 step 66] Advanced 3072 cells Coarse STEP 66 ends. TIME = 132 DT = 2 Timestep time = 0.01651378 seconds. Coarse STEP 67 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.59160254 (terrain aware) 1.59160254 (terrain unaware) Anelastic dt at level 0 would be: 11.15448101 (terrain aware) 11.15448101 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2809443842 (terrain aware) 0.2809443842 (terrain unaware) Anelastic dt at level 1 would be: 5.405762115 (terrain aware) 5.405762115 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 67] ADVANCE from elapsed time = 132 to 134 with dt = 2 Making slow rhs at time 132 for fast variables advancing from 132 to 132.6666666667 Fast time integration at level 0 from 132 to 132.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 132 to 132.6666666667 with dt = 0.6666666666667 using RHS created at 132 Making slow rhs at time 132.6666666667 for fast variables advancing from 132 to 133 Fast time integration at level 0 from 132 to 132.5 with dt = 0.5 Fast time integration at level 0 from 132.5 to 133 with dt = 0.5 Time integration of scalars at level 0 from 132 to 133 with dt = 1 using RHS created at 132.6666666667 Making slow rhs at time 133 for fast variables advancing from 132 to 134 Fast time integration at level 0 from 132 to 132.5 with dt = 0.5 Fast time integration at level 0 from 132.5 to 133 with dt = 0.5 Fast time integration at level 0 from 133 to 133.5 with dt = 0.5 Fast time integration at level 0 from 133.5 to 134 with dt = 0.5 Time integration of scalars at level 0 from 132 to 134 with dt = 2 using RHS created at 133 Done with advance_dycore at level 0 [Level 0 step 67] Advanced 4096 cells [Level 1 step 67] ADVANCE from elapsed time = 132 to 134 with dt = 2 Making slow rhs at time 132 for fast variables advancing from 132 to 134 No-substepping time integration at level 1 to 134 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.73537904e-05 0.0006393277436 and volume-weighted sum 13371.89941 Subtracting 4.352831638e-06 from rhs in subdomain 0 Sum after subtraction -0.04091998562 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.170661022e-05 MLMG: Initial residual (resid0) = 8.170661022e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.055030225e-06, 0.01291242149 MLMG: Timers: Solve = 0.000763227 Iter = 0.000514811 Bottom = 5.5338e-05 Time in solve 0.001109217 Max/L2 norm of divergence after solve at level 1 : 4.899455234e-06 0.0002412858594 and volume-weighted sum 13371.91113 Time integration of scalars at level 1 from 132 to 134 with dt = 2 using RHS created at 132 Making slow rhs at time 134 for fast variables advancing from 132 to 134 No-substepping time integration at level 1 to 134 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 4.896614701e-05 0.0005796751939 and volume-weighted sum 13371.91602 Subtracting 4.352837095e-06 from rhs in subdomain 0 Sum after subtraction 0.003958120942 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.331898501e-05 MLMG: Initial residual (resid0) = 5.331898501e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.044697001e-06, 0.01959333941 MLMG: Timers: Solve = 0.000833522 Iter = 0.00063188 Bottom = 5.5456e-05 Time in solve 0.00115935 Max/L2 norm of divergence after solve at level 1 : 4.752539098e-06 0.0002412785252 and volume-weighted sum 13371.91699 Time integration of scalars at level 1 from 132 to 134 with dt = 2 using RHS created at 134 Done with advance_dycore at level 1 [Level 1 step 67] Advanced 3072 cells Coarse STEP 67 ends. TIME = 134 DT = 2 Timestep time = 0.01644477 seconds. Coarse STEP 68 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.588403112 (terrain aware) 1.588403112 (terrain unaware) Anelastic dt at level 0 would be: 11.10421164 (terrain aware) 11.10421164 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.280768625 (terrain aware) 0.280768625 (terrain unaware) Anelastic dt at level 1 would be: 5.359250823 (terrain aware) 5.359250823 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 68] ADVANCE from elapsed time = 134 to 136 with dt = 2 Making slow rhs at time 134 for fast variables advancing from 134 to 134.6666666667 Fast time integration at level 0 from 134 to 134.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 134 to 134.6666666667 with dt = 0.6666666666667 using RHS created at 134 Making slow rhs at time 134.6666666667 for fast variables advancing from 134 to 135 Fast time integration at level 0 from 134 to 134.5 with dt = 0.5 Fast time integration at level 0 from 134.5 to 135 with dt = 0.5 Time integration of scalars at level 0 from 134 to 135 with dt = 1 using RHS created at 134.6666666667 Making slow rhs at time 135 for fast variables advancing from 134 to 136 Fast time integration at level 0 from 134 to 134.5 with dt = 0.5 Fast time integration at level 0 from 134.5 to 135 with dt = 0.5 Fast time integration at level 0 from 135 to 135.5 with dt = 0.5 Fast time integration at level 0 from 135.5 to 136 with dt = 0.5 Time integration of scalars at level 0 from 134 to 136 with dt = 2 using RHS created at 135 Done with advance_dycore at level 0 [Level 0 step 68] Advanced 4096 cells [Level 1 step 68] ADVANCE from elapsed time = 134 to 136 with dt = 2 Making slow rhs at time 134 for fast variables advancing from 134 to 136 No-substepping time integration at level 1 to 136 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.125626922e-05 0.0006263168762 and volume-weighted sum 13037.72461 Subtracting 4.24405107e-06 from rhs in subdomain 0 Sum after subtraction 0.02922024578 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.550033165e-05 MLMG: Initial residual (resid0) = 5.550033165e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.07307369e-06, 0.01933454536 MLMG: Timers: Solve = 0.000893264 Iter = 0.000536912 Bottom = 5.712e-05 Time in solve 0.001228444 Max/L2 norm of divergence after solve at level 1 : 4.732632078e-06 0.0002352560405 and volume-weighted sum 13037.74121 Time integration of scalars at level 1 from 134 to 136 with dt = 2 using RHS created at 134 Making slow rhs at time 136 for fast variables advancing from 134 to 136 No-substepping time integration at level 1 to 136 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.146302283e-05 0.0005899463431 and volume-weighted sum 13037.74121 Subtracting 4.244056527e-06 from rhs in subdomain 0 Sum after subtraction 0.01880107448 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.570708527e-05 MLMG: Initial residual (resid0) = 5.570708527e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.062659067e-06, 0.01907583326 MLMG: Timers: Solve = 0.001009152 Iter = 0.000726511 Bottom = 5.4725e-05 Time in solve 0.001332057 Max/L2 norm of divergence after solve at level 1 : 4.640780389e-06 0.000235250438 and volume-weighted sum 13037.75098 Time integration of scalars at level 1 from 134 to 136 with dt = 2 using RHS created at 136 Done with advance_dycore at level 1 [Level 1 step 68] Advanced 3072 cells Coarse STEP 68 ends. TIME = 136 DT = 2 Timestep time = 0.016465728 seconds. Coarse STEP 69 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.585244215 (terrain aware) 1.585244215 (terrain unaware) Anelastic dt at level 0 would be: 11.05904205 (terrain aware) 11.05904205 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2805890474 (terrain aware) 0.2805890474 (terrain unaware) Anelastic dt at level 1 would be: 5.316229979 (terrain aware) 5.316229979 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 69] ADVANCE from elapsed time = 136 to 138 with dt = 2 Making slow rhs at time 136 for fast variables advancing from 136 to 136.6666666667 Fast time integration at level 0 from 136 to 136.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 136 to 136.6666666667 with dt = 0.6666666666667 using RHS created at 136 Making slow rhs at time 136.6666666667 for fast variables advancing from 136 to 137 Fast time integration at level 0 from 136 to 136.5 with dt = 0.5 Fast time integration at level 0 from 136.5 to 137 with dt = 0.5 Time integration of scalars at level 0 from 136 to 137 with dt = 1 using RHS created at 136.6666666667 Making slow rhs at time 137 for fast variables advancing from 136 to 138 Fast time integration at level 0 from 136 to 136.5 with dt = 0.5 Fast time integration at level 0 from 136.5 to 137 with dt = 0.5 Fast time integration at level 0 from 137 to 137.5 with dt = 0.5 Fast time integration at level 0 from 137.5 to 138 with dt = 0.5 Time integration of scalars at level 0 from 136 to 138 with dt = 2 using RHS created at 137 Done with advance_dycore at level 0 [Level 0 step 69] Advanced 4096 cells [Level 1 step 69] ADVANCE from elapsed time = 136 to 138 with dt = 2 Making slow rhs at time 136 for fast variables advancing from 136 to 138 No-substepping time integration at level 1 to 138 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.359668285e-05 0.0006350050098 and volume-weighted sum 12709.74023 Subtracting 4.137285032e-06 from rhs in subdomain 0 Sum after subtraction -0.02735760063 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.773395969e-05 MLMG: Initial residual (resid0) = 5.773395969e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.078973582e-06, 0.01868871599 MLMG: Timers: Solve = 0.000728541 Iter = 0.000527022 Bottom = 5.682e-05 Time in solve 0.001105134 Max/L2 norm of divergence after solve at level 1 : 4.52902168e-06 0.0002293355647 and volume-weighted sum 12709.73145 Time integration of scalars at level 1 from 136 to 138 with dt = 2 using RHS created at 136 Making slow rhs at time 138 for fast variables advancing from 136 to 138 No-substepping time integration at level 1 to 138 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.365349352e-05 0.0006009068456 and volume-weighted sum 12709.72559 Subtracting 4.137280484e-06 from rhs in subdomain 0 Sum after subtraction 0.02066371962 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.779078128e-05 MLMG: Initial residual (resid0) = 5.779078128e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.076470653e-06, 0.01862703077 MLMG: Timers: Solve = 0.000815301 Iter = 0.000611493 Bottom = 5.4386e-05 Time in solve 0.001137481 Max/L2 norm of divergence after solve at level 1 : 4.533678293e-06 0.0002293333673 and volume-weighted sum 12709.72363 Time integration of scalars at level 1 from 136 to 138 with dt = 2 using RHS created at 138 Done with advance_dycore at level 1 [Level 1 step 69] Advanced 3072 cells Coarse STEP 69 ends. TIME = 138 DT = 2 Timestep time = 0.016441878 seconds. Coarse STEP 70 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.582130915 (terrain aware) 1.582130915 (terrain unaware) Anelastic dt at level 0 would be: 11.00695117 (terrain aware) 11.00695117 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2804060797 (terrain aware) 0.2804060797 (terrain unaware) Anelastic dt at level 1 would be: 5.276530902 (terrain aware) 5.276530902 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 70] ADVANCE from elapsed time = 138 to 140 with dt = 2 Making slow rhs at time 138 for fast variables advancing from 138 to 138.6666666667 Fast time integration at level 0 from 138 to 138.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 138 to 138.6666666667 with dt = 0.6666666666667 using RHS created at 138 Making slow rhs at time 138.6666666667 for fast variables advancing from 138 to 139 Fast time integration at level 0 from 138 to 138.5 with dt = 0.5 Fast time integration at level 0 from 138.5 to 139 with dt = 0.5 Time integration of scalars at level 0 from 138 to 139 with dt = 1 using RHS created at 138.6666666667 Making slow rhs at time 139 for fast variables advancing from 138 to 140 Fast time integration at level 0 from 138 to 138.5 with dt = 0.5 Fast time integration at level 0 from 138.5 to 139 with dt = 0.5 Fast time integration at level 0 from 139 to 139.5 with dt = 0.5 Fast time integration at level 0 from 139.5 to 140 with dt = 0.5 Time integration of scalars at level 0 from 138 to 140 with dt = 2 using RHS created at 139 Done with advance_dycore at level 0 [Level 0 step 70] Advanced 4096 cells [Level 1 step 70] ADVANCE from elapsed time = 138 to 140 with dt = 2 Making slow rhs at time 138 for fast variables advancing from 138 to 140 No-substepping time integration at level 1 to 140 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.785113899e-05 0.0006751818582 and volume-weighted sum 12437.10449 Subtracting 4.048536539e-06 from rhs in subdomain 0 Sum after subtraction 0.009313225746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.189967826e-05 MLMG: Initial residual (resid0) = 6.189967826e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.081383743e-06, 0.01746994071 MLMG: Timers: Solve = 0.000735005 Iter = 0.000536924 Bottom = 5.4994e-05 Time in solve 0.001061984 Max/L2 norm of divergence after solve at level 1 : 4.429835826e-06 0.0002244167408 and volume-weighted sum 12437.0918 Time integration of scalars at level 1 from 138 to 140 with dt = 2 using RHS created at 138 Making slow rhs at time 140 for fast variables advancing from 138 to 140 No-substepping time integration at level 1 to 140 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.546957254e-05 0.0006127397064 and volume-weighted sum 12437.10156 Subtracting 4.048535629e-06 from rhs in subdomain 0 Sum after subtraction 0.02526212484 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 5.951811545e-05 MLMG: Initial residual (resid0) = 5.951811545e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.086038537e-06, 0.01824719273 MLMG: Timers: Solve = 0.001032032 Iter = 0.000823047 Bottom = 5.3733e-05 Time in solve 0.001360493 Max/L2 norm of divergence after solve at level 1 : 4.447065294e-06 0.0002244154311 and volume-weighted sum 12437.10254 Time integration of scalars at level 1 from 138 to 140 with dt = 2 using RHS created at 140 Done with advance_dycore at level 1 [Level 1 step 70] Advanced 3072 cells Coarse STEP 70 ends. TIME = 140 DT = 2 Timestep time = 0.016290927 seconds. Coarse STEP 71 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.57905919 (terrain aware) 1.57905919 (terrain unaware) Anelastic dt at level 0 would be: 10.94552858 (terrain aware) 10.94552858 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2802195731 (terrain aware) 0.2802195731 (terrain unaware) Anelastic dt at level 1 would be: 5.239988487 (terrain aware) 5.239988487 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 71] ADVANCE from elapsed time = 140 to 142 with dt = 2 Making slow rhs at time 140 for fast variables advancing from 140 to 140.6666666667 Fast time integration at level 0 from 140 to 140.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 140 to 140.6666666667 with dt = 0.6666666666667 using RHS created at 140 Making slow rhs at time 140.6666666667 for fast variables advancing from 140 to 141 Fast time integration at level 0 from 140 to 140.5 with dt = 0.5 Fast time integration at level 0 from 140.5 to 141 with dt = 0.5 Time integration of scalars at level 0 from 140 to 141 with dt = 1 using RHS created at 140.6666666667 Making slow rhs at time 141 for fast variables advancing from 140 to 142 Fast time integration at level 0 from 140 to 140.5 with dt = 0.5 Fast time integration at level 0 from 140.5 to 141 with dt = 0.5 Fast time integration at level 0 from 141 to 141.5 with dt = 0.5 Fast time integration at level 0 from 141.5 to 142 with dt = 0.5 Time integration of scalars at level 0 from 140 to 142 with dt = 2 using RHS created at 141 Done with advance_dycore at level 0 [Level 0 step 71] Advanced 4096 cells [Level 1 step 71] ADVANCE from elapsed time = 140 to 142 with dt = 2 Making slow rhs at time 140 for fast variables advancing from 140 to 142 No-substepping time integration at level 1 to 142 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.677621812e-05 0.000666870852 and volume-weighted sum 12261.90039 Subtracting 3.991503945e-06 from rhs in subdomain 0 Sum after subtraction -0.02328306437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.076771388e-05 MLMG: Initial residual (resid0) = 6.076771388e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.085354597e-06, 0.01786071062 MLMG: Timers: Solve = 0.000736663 Iter = 0.000532139 Bottom = 5.5552e-05 Time in solve 0.001078042 Max/L2 norm of divergence after solve at level 1 : 4.380941391e-06 0.0002212565742 and volume-weighted sum 12261.91992 Time integration of scalars at level 1 from 140 to 142 with dt = 2 using RHS created at 140 Making slow rhs at time 142 for fast variables advancing from 140 to 142 No-substepping time integration at level 1 to 142 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.67343086e-05 0.0006256431807 and volume-weighted sum 12261.90137 Subtracting 3.9915044e-06 from rhs in subdomain 0 Sum after subtraction -0.01536682248 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.0725808e-05 MLMG: Initial residual (resid0) = 6.0725808e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.090837031e-06, 0.01796331815 MLMG: Timers: Solve = 0.00072327 Iter = 0.000518137 Bottom = 5.3677e-05 Time in solve 0.001061943 Max/L2 norm of divergence after solve at level 1 : 4.399102181e-06 0.0002212554245 and volume-weighted sum 12261.91113 Time integration of scalars at level 1 from 140 to 142 with dt = 2 using RHS created at 142 Done with advance_dycore at level 1 [Level 1 step 71] Advanced 3072 cells Coarse STEP 71 ends. TIME = 142 DT = 2 Timestep time = 0.017294105 seconds. Coarse STEP 72 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.576039321 (terrain aware) 1.576039321 (terrain unaware) Anelastic dt at level 0 would be: 10.87903245 (terrain aware) 10.87903245 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2800293598 (terrain aware) 0.2800293598 (terrain unaware) Anelastic dt at level 1 would be: 5.203810853 (terrain aware) 5.203810853 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 72] ADVANCE from elapsed time = 142 to 144 with dt = 2 Making slow rhs at time 142 for fast variables advancing from 142 to 142.6666666667 Fast time integration at level 0 from 142 to 142.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 142 to 142.6666666667 with dt = 0.6666666666667 using RHS created at 142 Making slow rhs at time 142.6666666667 for fast variables advancing from 142 to 143 Fast time integration at level 0 from 142 to 142.5 with dt = 0.5 Fast time integration at level 0 from 142.5 to 143 with dt = 0.5 Time integration of scalars at level 0 from 142 to 143 with dt = 1 using RHS created at 142.6666666667 Making slow rhs at time 143 for fast variables advancing from 142 to 144 Fast time integration at level 0 from 142 to 142.5 with dt = 0.5 Fast time integration at level 0 from 142.5 to 143 with dt = 0.5 Fast time integration at level 0 from 143 to 143.5 with dt = 0.5 Fast time integration at level 0 from 143.5 to 144 with dt = 0.5 Time integration of scalars at level 0 from 142 to 144 with dt = 2 using RHS created at 143 Done with advance_dycore at level 0 [Level 0 step 72] Advanced 4096 cells [Level 1 step 72] ADVANCE from elapsed time = 142 to 144 with dt = 2 Making slow rhs at time 142 for fast variables advancing from 142 to 144 No-substepping time integration at level 1 to 144 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.906261504e-05 0.0006544211064 and volume-weighted sum 12150.8916 Subtracting 3.955368356e-06 from rhs in subdomain 0 Sum after subtraction 0.03428431228 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.301800022e-05 MLMG: Initial residual (resid0) = 6.301800022e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.089301804e-06, 0.01728556678 MLMG: Timers: Solve = 0.000729308 Iter = 0.000528683 Bottom = 5.6606e-05 Time in solve 0.001050805 Max/L2 norm of divergence after solve at level 1 : 4.357658327e-06 0.0002192543907 and volume-weighted sum 12150.90137 Time integration of scalars at level 1 from 142 to 144 with dt = 2 using RHS created at 142 Making slow rhs at time 144 for fast variables advancing from 142 to 144 No-substepping time integration at level 1 to 144 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 5.925633013e-05 0.0006394922966 and volume-weighted sum 12150.91309 Subtracting 3.955375178e-06 from rhs in subdomain 0 Sum after subtraction 0.02112938091 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.321171531e-05 MLMG: Initial residual (resid0) = 6.321171531e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.090698788e-06, 0.01725469343 MLMG: Timers: Solve = 0.000799939 Iter = 0.000526988 Bottom = 5.4373e-05 Time in solve 0.001160341 Max/L2 norm of divergence after solve at level 1 : 4.357658327e-06 0.0002192532556 and volume-weighted sum 12150.89355 Time integration of scalars at level 1 from 142 to 144 with dt = 2 using RHS created at 144 Done with advance_dycore at level 1 [Level 1 step 72] Advanced 3072 cells Coarse STEP 72 ends. TIME = 144 DT = 2 Timestep time = 0.016261757 seconds. Coarse STEP 73 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.573087699 (terrain aware) 1.573087699 (terrain unaware) Anelastic dt at level 0 would be: 10.80863579 (terrain aware) 10.80863579 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2798352908 (terrain aware) 0.2798352908 (terrain unaware) Anelastic dt at level 1 would be: 5.170457882 (terrain aware) 5.170457882 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 73] ADVANCE from elapsed time = 144 to 146 with dt = 2 Making slow rhs at time 144 for fast variables advancing from 144 to 144.6666666667 Fast time integration at level 0 from 144 to 144.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 144 to 144.6666666667 with dt = 0.6666666666667 using RHS created at 144 Making slow rhs at time 144.6666666667 for fast variables advancing from 144 to 145 Fast time integration at level 0 from 144 to 144.5 with dt = 0.5 Fast time integration at level 0 from 144.5 to 145 with dt = 0.5 Time integration of scalars at level 0 from 144 to 145 with dt = 1 using RHS created at 144.6666666667 Making slow rhs at time 145 for fast variables advancing from 144 to 146 Fast time integration at level 0 from 144 to 144.5 with dt = 0.5 Fast time integration at level 0 from 144.5 to 145 with dt = 0.5 Fast time integration at level 0 from 145 to 145.5 with dt = 0.5 Fast time integration at level 0 from 145.5 to 146 with dt = 0.5 Time integration of scalars at level 0 from 144 to 146 with dt = 2 using RHS created at 145 Done with advance_dycore at level 0 [Level 0 step 73] Advanced 4096 cells [Level 1 step 73] ADVANCE from elapsed time = 144 to 146 with dt = 2 Making slow rhs at time 144 for fast variables advancing from 144 to 146 No-substepping time integration at level 1 to 146 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.233807653e-05 0.0006766921142 and volume-weighted sum 12091.44922 Subtracting 3.936018402e-06 from rhs in subdomain 0 Sum after subtraction 0.03236345947 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.627410039e-05 MLMG: Initial residual (resid0) = 6.627410039e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.10133351e-06, 0.01661785692 MLMG: Timers: Solve = 0.000733968 Iter = 0.000533173 Bottom = 5.5363e-05 Time in solve 0.001054743 Max/L2 norm of divergence after solve at level 1 : 4.345551133e-06 0.0002181850141 and volume-weighted sum 12091.47461 Time integration of scalars at level 1 from 144 to 146 with dt = 2 using RHS created at 144 Making slow rhs at time 146 for fast variables advancing from 144 to 146 No-substepping time integration at level 1 to 146 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.236694753e-05 0.0006539715105 and volume-weighted sum 12091.45801 Subtracting 3.936021585e-06 from rhs in subdomain 0 Sum after subtraction 0.03032619134 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.630297867e-05 MLMG: Initial residual (resid0) = 6.630297867e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.099117526e-06, 0.01657719724 MLMG: Timers: Solve = 0.00084515 Iter = 0.000521015 Bottom = 5.3718e-05 Time in solve 0.001163205 Max/L2 norm of divergence after solve at level 1 : 4.351139069e-06 0.0002181813616 and volume-weighted sum 12091.45996 Time integration of scalars at level 1 from 144 to 146 with dt = 2 using RHS created at 146 Done with advance_dycore at level 1 [Level 1 step 73] Advanced 3072 cells Coarse STEP 73 ends. TIME = 146 DT = 2 Timestep time = 0.016353216 seconds. Coarse STEP 74 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.570201791 (terrain aware) 1.570201791 (terrain unaware) Anelastic dt at level 0 would be: 10.73084458 (terrain aware) 10.73084458 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2796374406 (terrain aware) 0.2796374406 (terrain unaware) Anelastic dt at level 1 would be: 5.140004677 (terrain aware) 5.140004677 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 74] ADVANCE from elapsed time = 146 to 148 with dt = 2 Making slow rhs at time 146 for fast variables advancing from 146 to 146.6666666667 Fast time integration at level 0 from 146 to 146.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 146 to 146.6666666667 with dt = 0.6666666666667 using RHS created at 146 Making slow rhs at time 146.6666666667 for fast variables advancing from 146 to 147 Fast time integration at level 0 from 146 to 146.5 with dt = 0.5 Fast time integration at level 0 from 146.5 to 147 with dt = 0.5 Time integration of scalars at level 0 from 146 to 147 with dt = 1 using RHS created at 146.6666666667 Making slow rhs at time 147 for fast variables advancing from 146 to 148 Fast time integration at level 0 from 146 to 146.5 with dt = 0.5 Fast time integration at level 0 from 146.5 to 147 with dt = 0.5 Fast time integration at level 0 from 147 to 147.5 with dt = 0.5 Fast time integration at level 0 from 147.5 to 148 with dt = 0.5 Time integration of scalars at level 0 from 146 to 148 with dt = 2 using RHS created at 147 Done with advance_dycore at level 0 [Level 0 step 74] Advanced 4096 cells [Level 1 step 74] ADVANCE from elapsed time = 146 to 148 with dt = 2 Making slow rhs at time 146 for fast variables advancing from 146 to 148 No-substepping time integration at level 1 to 148 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.506219506e-05 0.0006884690374 and volume-weighted sum 12171.98242 Subtracting 3.962233677e-06 from rhs in subdomain 0 Sum after subtraction -0.01559965312 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.902441964e-05 MLMG: Initial residual (resid0) = 6.902441964e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.123590209e-06, 0.01627815515 MLMG: Timers: Solve = 0.000737528 Iter = 0.000520387 Bottom = 5.3487e-05 Time in solve 0.00107119 Max/L2 norm of divergence after solve at level 1 : 4.392117262e-06 0.0002196386486 and volume-weighted sum 12171.97852 Time integration of scalars at level 1 from 146 to 148 with dt = 2 using RHS created at 146 Making slow rhs at time 148 for fast variables advancing from 146 to 148 No-substepping time integration at level 1 to 148 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.505753845e-05 0.0006696474156 and volume-weighted sum 12171.96484 Subtracting 3.96222822e-06 from rhs in subdomain 0 Sum after subtraction -0.04260800779 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 6.901974848e-05 MLMG: Initial residual (resid0) = 6.901974848e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.119178478e-06, 0.01621533744 MLMG: Timers: Solve = 0.00093967 Iter = 0.000526077 Bottom = 5.3773e-05 Time in solve 0.001304613 Max/L2 norm of divergence after solve at level 1 : 4.379544407e-06 0.0002196344576 and volume-weighted sum 12171.97656 Time integration of scalars at level 1 from 146 to 148 with dt = 2 using RHS created at 148 Done with advance_dycore at level 1 [Level 1 step 74] Advanced 3072 cells Coarse STEP 74 ends. TIME = 148 DT = 2 Timestep time = 0.016461432 seconds. Coarse STEP 75 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.567357457 (terrain aware) 1.567357457 (terrain unaware) Anelastic dt at level 0 would be: 10.64641221 (terrain aware) 10.64641221 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2794355299 (terrain aware) 0.2794355299 (terrain unaware) Anelastic dt at level 1 would be: 5.112293286 (terrain aware) 5.112293286 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 75] ADVANCE from elapsed time = 148 to 150 with dt = 2 Making slow rhs at time 148 for fast variables advancing from 148 to 148.6666666667 Fast time integration at level 0 from 148 to 148.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 148 to 148.6666666667 with dt = 0.6666666666667 using RHS created at 148 Making slow rhs at time 148.6666666667 for fast variables advancing from 148 to 149 Fast time integration at level 0 from 148 to 148.5 with dt = 0.5 Fast time integration at level 0 from 148.5 to 149 with dt = 0.5 Time integration of scalars at level 0 from 148 to 149 with dt = 1 using RHS created at 148.6666666667 Making slow rhs at time 149 for fast variables advancing from 148 to 150 Fast time integration at level 0 from 148 to 148.5 with dt = 0.5 Fast time integration at level 0 from 148.5 to 149 with dt = 0.5 Fast time integration at level 0 from 149 to 149.5 with dt = 0.5 Fast time integration at level 0 from 149.5 to 150 with dt = 0.5 Time integration of scalars at level 0 from 148 to 150 with dt = 2 using RHS created at 149 Done with advance_dycore at level 0 [Level 0 step 75] Advanced 4096 cells [Level 1 step 75] ADVANCE from elapsed time = 148 to 150 with dt = 2 Making slow rhs at time 148 for fast variables advancing from 148 to 150 No-substepping time integration at level 1 to 150 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.724987179e-05 0.0007043523365 and volume-weighted sum 12457.31348 Subtracting 4.055114914e-06 from rhs in subdomain 0 Sum after subtraction -0.01565786079 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.130498125e-05 MLMG: Initial residual (resid0) = 7.130498125e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.13389342e-06, 0.0159020219 MLMG: Timers: Solve = 0.000729909 Iter = 0.000534151 Bottom = 5.4806e-05 Time in solve 0.001063704 Max/L2 norm of divergence after solve at level 1 : 4.499685019e-06 0.0002247868688 and volume-weighted sum 12457.32227 Time integration of scalars at level 1 from 148 to 150 with dt = 2 using RHS created at 148 Making slow rhs at time 150 for fast variables advancing from 148 to 150 No-substepping time integration at level 1 to 150 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.713159382e-05 0.0006869809004 and volume-weighted sum 12457.32031 Subtracting 4.055117188e-06 from rhs in subdomain 0 Sum after subtraction -0.002328306437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.118671056e-05 MLMG: Initial residual (resid0) = 7.118671056e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.134353624e-06, 0.0159349069 MLMG: Timers: Solve = 0.000924432 Iter = 0.00052305 Bottom = 5.4039e-05 Time in solve 0.001239414 Max/L2 norm of divergence after solve at level 1 : 4.483386874e-06 0.0002247825323 and volume-weighted sum 12457.32324 Time integration of scalars at level 1 from 148 to 150 with dt = 2 using RHS created at 150 Done with advance_dycore at level 1 [Level 1 step 75] Advanced 3072 cells Coarse STEP 75 ends. TIME = 150 DT = 2 Timestep time = 0.016320144 seconds. Coarse STEP 76 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.564095295 (terrain aware) 1.564095295 (terrain unaware) Anelastic dt at level 0 would be: 10.5504094 (terrain aware) 10.5504094 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2792292978 (terrain aware) 0.2792292978 (terrain unaware) Anelastic dt at level 1 would be: 5.087147875 (terrain aware) 5.087147875 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 76] ADVANCE from elapsed time = 150 to 152 with dt = 2 Making slow rhs at time 150 for fast variables advancing from 150 to 150.6666666667 Fast time integration at level 0 from 150 to 150.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 150 to 150.6666666667 with dt = 0.6666666666667 using RHS created at 150 Making slow rhs at time 150.6666666667 for fast variables advancing from 150 to 151 Fast time integration at level 0 from 150 to 150.5 with dt = 0.5 Fast time integration at level 0 from 150.5 to 151 with dt = 0.5 Time integration of scalars at level 0 from 150 to 151 with dt = 1 using RHS created at 150.6666666667 Making slow rhs at time 151 for fast variables advancing from 150 to 152 Fast time integration at level 0 from 150 to 150.5 with dt = 0.5 Fast time integration at level 0 from 150.5 to 151 with dt = 0.5 Fast time integration at level 0 from 151 to 151.5 with dt = 0.5 Fast time integration at level 0 from 151.5 to 152 with dt = 0.5 Time integration of scalars at level 0 from 150 to 152 with dt = 2 using RHS created at 151 Done with advance_dycore at level 0 [Level 0 step 76] Advanced 4096 cells [Level 1 step 76] ADVANCE from elapsed time = 150 to 152 with dt = 2 Making slow rhs at time 150 for fast variables advancing from 150 to 152 No-substepping time integration at level 1 to 152 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.856769323e-05 0.0007326788618 and volume-weighted sum 13025.25977 Subtracting 4.239993359e-06 from rhs in subdomain 0 Sum after subtraction -0.02013985068 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.28076775e-05 MLMG: Initial residual (resid0) = 7.28076775e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.136266292e-06, 0.01560640801 MLMG: Timers: Solve = 0.000735671 Iter = 0.000522357 Bottom = 5.6461e-05 Time in solve 0.001063018 Max/L2 norm of divergence after solve at level 1 : 4.702247679e-06 0.0002350326686 and volume-weighted sum 13025.25781 Time integration of scalars at level 1 from 150 to 152 with dt = 2 using RHS created at 150 Making slow rhs at time 152 for fast variables advancing from 150 to 152 No-substepping time integration at level 1 to 152 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 6.83311373e-05 0.0007062236546 and volume-weighted sum 13025.25586 Subtracting 4.239991995e-06 from rhs in subdomain 0 Sum after subtraction -0.04057073966 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.257111429e-05 MLMG: Initial residual (resid0) = 7.257111429e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.144220732e-06, 0.01576688886 MLMG: Timers: Solve = 0.001043672 Iter = 0.000664833 Bottom = 6.6419e-05 Time in solve 0.001372112 Max/L2 norm of divergence after solve at level 1 : 4.671514034e-06 0.0002350288851 and volume-weighted sum 13025.27344 Time integration of scalars at level 1 from 150 to 152 with dt = 2 using RHS created at 152 Done with advance_dycore at level 1 [Level 1 step 76] Advanced 3072 cells Coarse STEP 76 ends. TIME = 152 DT = 2 Timestep time = 0.016352692 seconds. Coarse STEP 77 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.56042201 (terrain aware) 1.56042201 (terrain unaware) Anelastic dt at level 0 would be: 10.4578565 (terrain aware) 10.4578565 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2790183905 (terrain aware) 0.2790183905 (terrain unaware) Anelastic dt at level 1 would be: 5.064406319 (terrain aware) 5.064406319 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 77] ADVANCE from elapsed time = 152 to 154 with dt = 2 Making slow rhs at time 152 for fast variables advancing from 152 to 152.6666666667 Fast time integration at level 0 from 152 to 152.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 152 to 152.6666666667 with dt = 0.6666666666667 using RHS created at 152 Making slow rhs at time 152.6666666667 for fast variables advancing from 152 to 153 Fast time integration at level 0 from 152 to 152.5 with dt = 0.5 Fast time integration at level 0 from 152.5 to 153 with dt = 0.5 Time integration of scalars at level 0 from 152 to 153 with dt = 1 using RHS created at 152.6666666667 Making slow rhs at time 153 for fast variables advancing from 152 to 154 Fast time integration at level 0 from 152 to 152.5 with dt = 0.5 Fast time integration at level 0 from 152.5 to 153 with dt = 0.5 Fast time integration at level 0 from 153 to 153.5 with dt = 0.5 Fast time integration at level 0 from 153.5 to 154 with dt = 0.5 Time integration of scalars at level 0 from 152 to 154 with dt = 2 using RHS created at 153 Done with advance_dycore at level 0 [Level 0 step 77] Advanced 4096 cells [Level 1 step 77] ADVANCE from elapsed time = 152 to 154 with dt = 2 Making slow rhs at time 152 for fast variables advancing from 152 to 154 No-substepping time integration at level 1 to 154 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.163034752e-05 0.0007592787733 and volume-weighted sum 13835.47461 Subtracting 4.503734999e-06 from rhs in subdomain 0 Sum after subtraction 0.006053596735 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.468448166e-05 MLMG: Initial residual (resid0) = 7.468448166e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.135445928e-06, 0.01520323753 MLMG: Timers: Solve = 0.000740865 Iter = 0.000543922 Bottom = 5.5246e-05 Time in solve 0.001070425 Max/L2 norm of divergence after solve at level 1 : 4.968605936e-06 0.000249648816 and volume-weighted sum 13835.47852 Time integration of scalars at level 1 from 152 to 154 with dt = 2 using RHS created at 152 Making slow rhs at time 154 for fast variables advancing from 152 to 154 No-substepping time integration at level 1 to 154 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.030460984e-05 0.0007272591465 and volume-weighted sum 13835.48535 Subtracting 4.503738637e-06 from rhs in subdomain 0 Sum after subtraction 0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.480834756e-05 MLMG: Initial residual (resid0) = 7.480834756e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.148451702e-06, 0.01535191946 MLMG: Timers: Solve = 0.000831919 Iter = 0.000594369 Bottom = 5.4032e-05 Time in solve 0.001211572 Max/L2 norm of divergence after solve at level 1 : 4.951842129e-06 0.0002496450907 and volume-weighted sum 13835.46484 Time integration of scalars at level 1 from 152 to 154 with dt = 2 using RHS created at 154 Done with advance_dycore at level 1 [Level 1 step 77] Advanced 3072 cells Coarse STEP 77 ends. TIME = 154 DT = 2 Timestep time = 0.016329692 seconds. Coarse STEP 78 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.556689418 (terrain aware) 1.556689418 (terrain unaware) Anelastic dt at level 0 would be: 10.36754116 (terrain aware) 10.36754116 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2788026589 (terrain aware) 0.2788026589 (terrain unaware) Anelastic dt at level 1 would be: 5.043948814 (terrain aware) 5.043948814 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 78] ADVANCE from elapsed time = 154 to 156 with dt = 2 Making slow rhs at time 154 for fast variables advancing from 154 to 154.6666666667 Fast time integration at level 0 from 154 to 154.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 154 to 154.6666666667 with dt = 0.6666666666667 using RHS created at 154 Making slow rhs at time 154.6666666667 for fast variables advancing from 154 to 155 Fast time integration at level 0 from 154 to 154.5 with dt = 0.5 Fast time integration at level 0 from 154.5 to 155 with dt = 0.5 Time integration of scalars at level 0 from 154 to 155 with dt = 1 using RHS created at 154.6666666667 Making slow rhs at time 155 for fast variables advancing from 154 to 156 Fast time integration at level 0 from 154 to 154.5 with dt = 0.5 Fast time integration at level 0 from 154.5 to 155 with dt = 0.5 Fast time integration at level 0 from 155 to 155.5 with dt = 0.5 Fast time integration at level 0 from 155.5 to 156 with dt = 0.5 Time integration of scalars at level 0 from 154 to 156 with dt = 2 using RHS created at 155 Done with advance_dycore at level 0 [Level 0 step 78] Advanced 4096 cells [Level 1 step 78] ADVANCE from elapsed time = 154 to 156 with dt = 2 Making slow rhs at time 154 for fast variables advancing from 154 to 156 No-substepping time integration at level 1 to 156 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.409509271e-05 0.0007814747514 and volume-weighted sum 14673.47363 Subtracting 4.776521564e-06 from rhs in subdomain 0 Sum after subtraction -0.01181615517 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.887160609e-05 MLMG: Initial residual (resid0) = 7.887160609e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.132877514e-06, 0.01436356548 MLMG: Timers: Solve = 0.000724041 Iter = 0.000520368 Bottom = 5.4543e-05 Time in solve 0.00105146 Max/L2 norm of divergence after solve at level 1 : 5.24520874e-06 0.0002647658985 and volume-weighted sum 14673.46875 Time integration of scalars at level 1 from 154 to 156 with dt = 2 using RHS created at 154 Making slow rhs at time 156 for fast variables advancing from 154 to 156 No-substepping time integration at level 1 to 156 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.415283471e-05 0.0007490427815 and volume-weighted sum 14673.48438 Subtracting 4.776524747e-06 from rhs in subdomain 0 Sum after subtraction -0.007043126971 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 7.892936264e-05 MLMG: Initial residual (resid0) = 7.892936264e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.146621798e-06, 0.01452718955 MLMG: Timers: Solve = 0.00109785 Iter = 0.000760936 Bottom = 5.3905e-05 Time in solve 0.001423826 Max/L2 norm of divergence after solve at level 1 : 5.243346095e-06 0.0002647642686 and volume-weighted sum 14673.49414 Time integration of scalars at level 1 from 154 to 156 with dt = 2 using RHS created at 156 Done with advance_dycore at level 1 [Level 1 step 78] Advanced 3072 cells Coarse STEP 78 ends. TIME = 156 DT = 2 Timestep time = 0.016401497 seconds. Coarse STEP 79 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.55292002 (terrain aware) 1.55292002 (terrain unaware) Anelastic dt at level 0 would be: 10.2787207 (terrain aware) 10.2787207 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2785816002 (terrain aware) 0.2785816002 (terrain unaware) Anelastic dt at level 1 would be: 5.025710985 (terrain aware) 5.025710985 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 79] ADVANCE from elapsed time = 156 to 158 with dt = 2 Making slow rhs at time 156 for fast variables advancing from 156 to 156.6666666667 Fast time integration at level 0 from 156 to 156.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 156 to 156.6666666667 with dt = 0.6666666666667 using RHS created at 156 Making slow rhs at time 156.6666666667 for fast variables advancing from 156 to 157 Fast time integration at level 0 from 156 to 156.5 with dt = 0.5 Fast time integration at level 0 from 156.5 to 157 with dt = 0.5 Time integration of scalars at level 0 from 156 to 157 with dt = 1 using RHS created at 156.6666666667 Making slow rhs at time 157 for fast variables advancing from 156 to 158 Fast time integration at level 0 from 156 to 156.5 with dt = 0.5 Fast time integration at level 0 from 156.5 to 157 with dt = 0.5 Fast time integration at level 0 from 157 to 157.5 with dt = 0.5 Fast time integration at level 0 from 157.5 to 158 with dt = 0.5 Time integration of scalars at level 0 from 156 to 158 with dt = 2 using RHS created at 157 Done with advance_dycore at level 0 [Level 0 step 79] Advanced 4096 cells [Level 1 step 79] ADVANCE from elapsed time = 156 to 158 with dt = 2 Making slow rhs at time 156 for fast variables advancing from 156 to 158 No-substepping time integration at level 1 to 158 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.751304656e-05 0.0007886806852 and volume-weighted sum 15365.73828 Subtracting 5.001867976e-06 from rhs in subdomain 0 Sum after subtraction -0.02316664904 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.25149109e-05 MLMG: Initial residual (resid0) = 8.25149109e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.151718607e-06, 0.01395770255 MLMG: Timers: Solve = 0.000728714 Iter = 0.00051897 Bottom = 5.6455e-05 Time in solve 0.001058567 Max/L2 norm of divergence after solve at level 1 : 5.4910779e-06 0.0002772525477 and volume-weighted sum 15365.71191 Time integration of scalars at level 1 from 156 to 158 with dt = 2 using RHS created at 156 Making slow rhs at time 158 for fast variables advancing from 156 to 158 No-substepping time integration at level 1 to 158 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 7.748231292e-05 0.0007702919538 and volume-weighted sum 15365.73828 Subtracting 5.001867976e-06 from rhs in subdomain 0 Sum after subtraction 0.003725290298 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.248418453e-05 MLMG: Initial residual (resid0) = 8.248418453e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.160515239e-06, 0.01406954881 MLMG: Timers: Solve = 0.000870926 Iter = 0.000670372 Bottom = 5.3055e-05 Time in solve 0.001193818 Max/L2 norm of divergence after solve at level 1 : 5.497597158e-06 0.000277252926 and volume-weighted sum 15365.74023 Time integration of scalars at level 1 from 156 to 158 with dt = 2 using RHS created at 158 Done with advance_dycore at level 1 [Level 1 step 79] Advanced 3072 cells Coarse STEP 79 ends. TIME = 158 DT = 2 Timestep time = 0.016388169 seconds. Coarse STEP 80 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.54912693 (terrain aware) 1.54912693 (terrain unaware) Anelastic dt at level 0 would be: 10.20025 (terrain aware) 10.20025 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2783531654 (terrain aware) 0.2783531654 (terrain unaware) Anelastic dt at level 1 would be: 5.008419677 (terrain aware) 5.008419677 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 80] ADVANCE from elapsed time = 158 to 160 with dt = 2 Making slow rhs at time 158 for fast variables advancing from 158 to 158.6666666667 Fast time integration at level 0 from 158 to 158.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 158 to 158.6666666667 with dt = 0.6666666666667 using RHS created at 158 Making slow rhs at time 158.6666666667 for fast variables advancing from 158 to 159 Fast time integration at level 0 from 158 to 158.5 with dt = 0.5 Fast time integration at level 0 from 158.5 to 159 with dt = 0.5 Time integration of scalars at level 0 from 158 to 159 with dt = 1 using RHS created at 158.6666666667 Making slow rhs at time 159 for fast variables advancing from 158 to 160 Fast time integration at level 0 from 158 to 158.5 with dt = 0.5 Fast time integration at level 0 from 158.5 to 159 with dt = 0.5 Fast time integration at level 0 from 159 to 159.5 with dt = 0.5 Fast time integration at level 0 from 159.5 to 160 with dt = 0.5 Time integration of scalars at level 0 from 158 to 160 with dt = 2 using RHS created at 159 Done with advance_dycore at level 0 [Level 0 step 80] Advanced 4096 cells [Level 1 step 80] ADVANCE from elapsed time = 158 to 160 with dt = 2 Making slow rhs at time 158 for fast variables advancing from 158 to 160 No-substepping time integration at level 1 to 160 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.023530245e-05 0.0008026973228 and volume-weighted sum 15753.8877 Subtracting 5.128218618e-06 from rhs in subdomain 0 Sum after subtraction -0.04400499165 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.536350651e-05 MLMG: Initial residual (resid0) = 8.536350651e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.175172656e-06, 0.01376668643 MLMG: Timers: Solve = 0.00073438 Iter = 0.000535014 Bottom = 5.8017e-05 Time in solve 0.001067562 Max/L2 norm of divergence after solve at level 1 : 5.629844964e-06 0.0002842556278 and volume-weighted sum 15753.87598 Time integration of scalars at level 1 from 158 to 160 with dt = 2 using RHS created at 158 Making slow rhs at time 160 for fast variables advancing from 158 to 160 No-substepping time integration at level 1 to 160 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.014030755e-05 0.000789873593 and volume-weighted sum 15753.89551 Subtracting 5.128221346e-06 from rhs in subdomain 0 Sum after subtraction -0.03667082638 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.526851161e-05 MLMG: Initial residual (resid0) = 8.526851161e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.179429091e-06, 0.01383194141 MLMG: Timers: Solve = 0.001156657 Iter = 0.000852603 Bottom = 5.2899e-05 Time in solve 0.001474507 Max/L2 norm of divergence after solve at level 1 : 5.631707609e-06 0.000284255424 and volume-weighted sum 15753.875 Time integration of scalars at level 1 from 158 to 160 with dt = 2 using RHS created at 160 Done with advance_dycore at level 1 [Level 1 step 80] Advanced 3072 cells Coarse STEP 80 ends. TIME = 160 DT = 2 Timestep time = 0.016398038 seconds. Coarse STEP 81 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.545319981 (terrain aware) 1.545319981 (terrain unaware) Anelastic dt at level 0 would be: 10.14543995 (terrain aware) 10.14543995 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2781204093 (terrain aware) 0.2781204093 (terrain unaware) Anelastic dt at level 1 would be: 4.993019626 (terrain aware) 4.993019626 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 81] ADVANCE from elapsed time = 160 to 162 with dt = 2 Making slow rhs at time 160 for fast variables advancing from 160 to 160.6666666667 Fast time integration at level 0 from 160 to 160.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 160 to 160.6666666667 with dt = 0.6666666666667 using RHS created at 160 Making slow rhs at time 160.6666666667 for fast variables advancing from 160 to 161 Fast time integration at level 0 from 160 to 160.5 with dt = 0.5 Fast time integration at level 0 from 160.5 to 161 with dt = 0.5 Time integration of scalars at level 0 from 160 to 161 with dt = 1 using RHS created at 160.6666666667 Making slow rhs at time 161 for fast variables advancing from 160 to 162 Fast time integration at level 0 from 160 to 160.5 with dt = 0.5 Fast time integration at level 0 from 160.5 to 161 with dt = 0.5 Fast time integration at level 0 from 161 to 161.5 with dt = 0.5 Fast time integration at level 0 from 161.5 to 162 with dt = 0.5 Time integration of scalars at level 0 from 160 to 162 with dt = 2 using RHS created at 161 Done with advance_dycore at level 0 [Level 0 step 81] Advanced 4096 cells [Level 1 step 81] ADVANCE from elapsed time = 160 to 162 with dt = 2 Making slow rhs at time 160 for fast variables advancing from 160 to 162 No-substepping time integration at level 1 to 162 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.238386363e-05 0.0008184001199 and volume-weighted sum 15911.42285 Subtracting 5.179499567e-06 from rhs in subdomain 0 Sum after subtraction -0.07066410035 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.722433995e-05 MLMG: Initial residual (resid0) = 8.722433995e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.191497176e-06, 0.01366014592 MLMG: Timers: Solve = 0.000731331 Iter = 0.00052534 Bottom = 5.7575e-05 Time in solve 0.00105153 Max/L2 norm of divergence after solve at level 1 : 5.691312253e-06 0.0002870986355 and volume-weighted sum 15911.42285 Time integration of scalars at level 1 from 160 to 162 with dt = 2 using RHS created at 160 Making slow rhs at time 162 for fast variables advancing from 160 to 162 No-substepping time integration at level 1 to 162 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.180178702e-05 0.0008082948043 and volume-weighted sum 15911.42285 Subtracting 5.179499567e-06 from rhs in subdomain 0 Sum after subtraction -0.04644971341 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.698127203e-05 MLMG: Initial residual (resid0) = 8.698127203e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.192041964e-06, 0.01370458212 MLMG: Timers: Solve = 0.000856386 Iter = 0.000570871 Bottom = 6.3755e-05 Time in solve 0.001176592 Max/L2 norm of divergence after solve at level 1 : 5.693174899e-06 0.0002870975004 and volume-weighted sum 15911.40918 Time integration of scalars at level 1 from 160 to 162 with dt = 2 using RHS created at 162 Done with advance_dycore at level 1 [Level 1 step 81] Advanced 3072 cells Coarse STEP 81 ends. TIME = 162 DT = 2 Timestep time = 0.017100877 seconds. Coarse STEP 82 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.541521824 (terrain aware) 1.541521824 (terrain unaware) Anelastic dt at level 0 would be: 10.12021765 (terrain aware) 10.12021765 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2778832759 (terrain aware) 0.2778832759 (terrain unaware) Anelastic dt at level 1 would be: 4.979900346 (terrain aware) 4.979900346 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 82] ADVANCE from elapsed time = 162 to 164 with dt = 2 Making slow rhs at time 162 for fast variables advancing from 162 to 162.6666666667 Fast time integration at level 0 from 162 to 162.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 162 to 162.6666666667 with dt = 0.6666666666667 using RHS created at 162 Making slow rhs at time 162.6666666667 for fast variables advancing from 162 to 163 Fast time integration at level 0 from 162 to 162.5 with dt = 0.5 Fast time integration at level 0 from 162.5 to 163 with dt = 0.5 Time integration of scalars at level 0 from 162 to 163 with dt = 1 using RHS created at 162.6666666667 Making slow rhs at time 163 for fast variables advancing from 162 to 164 Fast time integration at level 0 from 162 to 162.5 with dt = 0.5 Fast time integration at level 0 from 162.5 to 163 with dt = 0.5 Fast time integration at level 0 from 163 to 163.5 with dt = 0.5 Fast time integration at level 0 from 163.5 to 164 with dt = 0.5 Time integration of scalars at level 0 from 162 to 164 with dt = 2 using RHS created at 163 Done with advance_dycore at level 0 [Level 0 step 82] Advanced 4096 cells [Level 1 step 82] ADVANCE from elapsed time = 162 to 164 with dt = 2 Making slow rhs at time 162 for fast variables advancing from 162 to 164 No-substepping time integration at level 1 to 164 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.398480713e-05 0.0008324784576 and volume-weighted sum 15951.35938 Subtracting 5.192499884e-06 from rhs in subdomain 0 Sum after subtraction 0.003376044333 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.77318962e-05 MLMG: Initial residual (resid0) = 8.77318962e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.197472898e-06, 0.01364923082 MLMG: Timers: Solve = 0.000781183 Iter = 0.00058148 Bottom = 5.617e-05 Time in solve 0.001099011 Max/L2 norm of divergence after solve at level 1 : 5.71180135e-06 0.0002878190426 and volume-weighted sum 15951.37305 Time integration of scalars at level 1 from 162 to 164 with dt = 2 using RHS created at 162 Making slow rhs at time 164 for fast variables advancing from 162 to 164 No-substepping time integration at level 1 to 164 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.315593004e-05 0.0008262955234 and volume-weighted sum 15951.3916 Subtracting 5.192510343e-06 from rhs in subdomain 0 Sum after subtraction -0.01909211278 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.733142749e-05 MLMG: Initial residual (resid0) = 8.733142749e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.197966071e-06, 0.0137174679 MLMG: Timers: Solve = 0.000725063 Iter = 0.000518712 Bottom = 5.3063e-05 Time in solve 0.001138963 Max/L2 norm of divergence after solve at level 1 : 5.714595318e-06 0.0002878190426 and volume-weighted sum 15951.38965 Time integration of scalars at level 1 from 162 to 164 with dt = 2 using RHS created at 164 Done with advance_dycore at level 1 [Level 1 step 82] Advanced 3072 cells Coarse STEP 82 ends. TIME = 164 DT = 2 Timestep time = 0.016598726 seconds. Coarse STEP 83 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.537778206 (terrain aware) 1.537778206 (terrain unaware) Anelastic dt at level 0 would be: 10.118296 (terrain aware) 10.118296 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2776415418 (terrain aware) 0.2776415418 (terrain unaware) Anelastic dt at level 1 would be: 4.968944118 (terrain aware) 4.968944118 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 83] ADVANCE from elapsed time = 164 to 166 with dt = 2 Making slow rhs at time 164 for fast variables advancing from 164 to 164.6666666667 Fast time integration at level 0 from 164 to 164.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 164 to 164.6666666667 with dt = 0.6666666666667 using RHS created at 164 Making slow rhs at time 164.6666666667 for fast variables advancing from 164 to 165 Fast time integration at level 0 from 164 to 164.5 with dt = 0.5 Fast time integration at level 0 from 164.5 to 165 with dt = 0.5 Time integration of scalars at level 0 from 164 to 165 with dt = 1 using RHS created at 164.6666666667 Making slow rhs at time 165 for fast variables advancing from 164 to 166 Fast time integration at level 0 from 164 to 164.5 with dt = 0.5 Fast time integration at level 0 from 164.5 to 165 with dt = 0.5 Fast time integration at level 0 from 165 to 165.5 with dt = 0.5 Fast time integration at level 0 from 165.5 to 166 with dt = 0.5 Time integration of scalars at level 0 from 164 to 166 with dt = 2 using RHS created at 165 Done with advance_dycore at level 0 [Level 0 step 83] Advanced 4096 cells [Level 1 step 83] ADVANCE from elapsed time = 164 to 166 with dt = 2 Making slow rhs at time 164 for fast variables advancing from 164 to 166 No-substepping time integration at level 1 to 166 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.615851402e-05 0.0008554130327 and volume-weighted sum 16099.21484 Subtracting 5.240629889e-06 from rhs in subdomain 0 Sum after subtraction 0.03562308848 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.865920972e-05 MLMG: Initial residual (resid0) = 8.865920972e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.193933713e-06, 0.01346655004 MLMG: Timers: Solve = 0.000896972 Iter = 0.00054081 Bottom = 5.6092e-05 Time in solve 0.001239891 Max/L2 norm of divergence after solve at level 1 : 5.764886737e-06 0.0002904864377 and volume-weighted sum 16099.2334 Time integration of scalars at level 1 from 164 to 166 with dt = 2 using RHS created at 164 Making slow rhs at time 166 for fast variables advancing from 164 to 166 No-substepping time integration at level 1 to 166 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.533336222e-05 0.0008452165639 and volume-weighted sum 16099.22559 Subtracting 5.240633527e-06 from rhs in subdomain 0 Sum after subtraction 0.02200249583 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 8.865175187e-05 MLMG: Initial residual (resid0) = 8.865175187e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.196915036e-06, 0.01350131258 MLMG: Timers: Solve = 0.000743062 Iter = 0.00053015 Bottom = 5.4467e-05 Time in solve 0.001063482 Max/L2 norm of divergence after solve at level 1 : 5.764886737e-06 0.0002904863213 and volume-weighted sum 16099.24805 Time integration of scalars at level 1 from 164 to 166 with dt = 2 using RHS created at 166 Done with advance_dycore at level 1 [Level 1 step 83] Advanced 3072 cells Coarse STEP 83 ends. TIME = 166 DT = 2 Timestep time = 0.016562131 seconds. Coarse STEP 84 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.534150816 (terrain aware) 1.534150816 (terrain unaware) Anelastic dt at level 0 would be: 10.1271151 (terrain aware) 10.1271151 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2773948531 (terrain aware) 0.2773948531 (terrain unaware) Anelastic dt at level 1 would be: 4.959988222 (terrain aware) 4.959988222 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 84] ADVANCE from elapsed time = 166 to 168 with dt = 2 Making slow rhs at time 166 for fast variables advancing from 166 to 166.6666666667 Fast time integration at level 0 from 166 to 166.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 166 to 166.6666666667 with dt = 0.6666666666667 using RHS created at 166 Making slow rhs at time 166.6666666667 for fast variables advancing from 166 to 167 Fast time integration at level 0 from 166 to 166.5 with dt = 0.5 Fast time integration at level 0 from 166.5 to 167 with dt = 0.5 Time integration of scalars at level 0 from 166 to 167 with dt = 1 using RHS created at 166.6666666667 Making slow rhs at time 167 for fast variables advancing from 166 to 168 Fast time integration at level 0 from 166 to 166.5 with dt = 0.5 Fast time integration at level 0 from 166.5 to 167 with dt = 0.5 Fast time integration at level 0 from 167 to 167.5 with dt = 0.5 Fast time integration at level 0 from 167.5 to 168 with dt = 0.5 Time integration of scalars at level 0 from 166 to 168 with dt = 2 using RHS created at 167 Done with advance_dycore at level 0 [Level 0 step 84] Advanced 4096 cells [Level 1 step 84] ADVANCE from elapsed time = 166 to 168 with dt = 2 Making slow rhs at time 166 for fast variables advancing from 166 to 168 No-substepping time integration at level 1 to 168 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.040813893e-05 0.0008803668898 and volume-weighted sum 16480.97656 Subtracting 5.364901426e-06 from rhs in subdomain 0 Sum after subtraction 0.02636807039 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.333763592e-05 MLMG: Initial residual (resid0) = 9.333763592e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.183267159e-06, 0.01267727837 MLMG: Timers: Solve = 0.000734496 Iter = 0.00053108 Bottom = 5.6542e-05 Time in solve 0.001063505 Max/L2 norm of divergence after solve at level 1 : 5.89620322e-06 0.0002973747905 and volume-weighted sum 16480.97852 Time integration of scalars at level 1 from 166 to 168 with dt = 2 using RHS created at 166 Making slow rhs at time 168 for fast variables advancing from 166 to 168 No-substepping time integration at level 1 to 168 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 8.955970407e-05 0.0008658345323 and volume-weighted sum 16480.98047 Subtracting 5.364902336e-06 from rhs in subdomain 0 Sum after subtraction 0.02840533853 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.311598842e-05 MLMG: Initial residual (resid0) = 9.311598842e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.188833266e-06, 0.01276723016 MLMG: Timers: Solve = 0.000768047 Iter = 0.000563579 Bottom = 5.4563e-05 Time in solve 0.001088764 Max/L2 norm of divergence after solve at level 1 : 5.888752639e-06 0.0002973731607 and volume-weighted sum 16480.96875 Time integration of scalars at level 1 from 166 to 168 with dt = 2 using RHS created at 168 Done with advance_dycore at level 1 [Level 1 step 84] Advanced 3072 cells Coarse STEP 84 ends. TIME = 168 DT = 2 Timestep time = 0.01649501 seconds. Coarse STEP 85 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.530695833 (terrain aware) 1.530695833 (terrain unaware) Anelastic dt at level 0 would be: 10.13805136 (terrain aware) 10.13805136 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2771428559 (terrain aware) 0.2771428559 (terrain unaware) Anelastic dt at level 1 would be: 4.952889011 (terrain aware) 4.952889011 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 85] ADVANCE from elapsed time = 168 to 170 with dt = 2 Making slow rhs at time 168 for fast variables advancing from 168 to 168.6666666667 Fast time integration at level 0 from 168 to 168.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 168 to 168.6666666667 with dt = 0.6666666666667 using RHS created at 168 Making slow rhs at time 168.6666666667 for fast variables advancing from 168 to 169 Fast time integration at level 0 from 168 to 168.5 with dt = 0.5 Fast time integration at level 0 from 168.5 to 169 with dt = 0.5 Time integration of scalars at level 0 from 168 to 169 with dt = 1 using RHS created at 168.6666666667 Making slow rhs at time 169 for fast variables advancing from 168 to 170 Fast time integration at level 0 from 168 to 168.5 with dt = 0.5 Fast time integration at level 0 from 168.5 to 169 with dt = 0.5 Fast time integration at level 0 from 169 to 169.5 with dt = 0.5 Fast time integration at level 0 from 169.5 to 170 with dt = 0.5 Time integration of scalars at level 0 from 168 to 170 with dt = 2 using RHS created at 169 Done with advance_dycore at level 0 [Level 0 step 85] Advanced 4096 cells [Level 1 step 85] ADVANCE from elapsed time = 168 to 170 with dt = 2 Making slow rhs at time 168 for fast variables advancing from 168 to 170 No-substepping time integration at level 1 to 170 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.302608669e-05 0.0008987798938 and volume-weighted sum 17087.83203 Subtracting 5.562445494e-06 from rhs in subdomain 0 Sum after subtraction -0.04342291504 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.697360656e-05 MLMG: Initial residual (resid0) = 9.697360656e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.168609742e-06, 0.01205080189 MLMG: Timers: Solve = 0.000733058 Iter = 0.000529268 Bottom = 5.5161e-05 Time in solve 0.00106253 Max/L2 norm of divergence after solve at level 1 : 6.08433038e-06 0.0003083231277 and volume-weighted sum 17087.82227 Time integration of scalars at level 1 from 168 to 170 with dt = 2 using RHS created at 168 Making slow rhs at time 170 for fast variables advancing from 168 to 170 No-substepping time integration at level 1 to 170 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.214691818e-05 0.0008881766116 and volume-weighted sum 17087.83398 Subtracting 5.562445949e-06 from rhs in subdomain 0 Sum after subtraction -0.04458706826 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.659921488e-05 MLMG: Initial residual (resid0) = 9.659921488e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.173291821e-06, 0.01214597654 MLMG: Timers: Solve = 0.000741239 Iter = 0.000535657 Bottom = 5.6156e-05 Time in solve 0.001055918 Max/L2 norm of divergence after solve at level 1 : 6.087124348e-06 0.0003083214688 and volume-weighted sum 17087.83594 Time integration of scalars at level 1 from 168 to 170 with dt = 2 using RHS created at 170 Done with advance_dycore at level 1 [Level 1 step 85] Advanced 3072 cells Coarse STEP 85 ends. TIME = 170 DT = 2 Timestep time = 0.016612201 seconds. Coarse STEP 86 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.527438141 (terrain aware) 1.527438141 (terrain unaware) Anelastic dt at level 0 would be: 10.15108332 (terrain aware) 10.15108332 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2768855687 (terrain aware) 0.2768855687 (terrain unaware) Anelastic dt at level 1 would be: 4.947553203 (terrain aware) 4.947553203 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 86] ADVANCE from elapsed time = 170 to 172 with dt = 2 Making slow rhs at time 170 for fast variables advancing from 170 to 170.6666666667 Fast time integration at level 0 from 170 to 170.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 170 to 170.6666666667 with dt = 0.6666666666667 using RHS created at 170 Making slow rhs at time 170.6666666667 for fast variables advancing from 170 to 171 Fast time integration at level 0 from 170 to 170.5 with dt = 0.5 Fast time integration at level 0 from 170.5 to 171 with dt = 0.5 Time integration of scalars at level 0 from 170 to 171 with dt = 1 using RHS created at 170.6666666667 Making slow rhs at time 171 for fast variables advancing from 170 to 172 Fast time integration at level 0 from 170 to 170.5 with dt = 0.5 Fast time integration at level 0 from 170.5 to 171 with dt = 0.5 Fast time integration at level 0 from 171 to 171.5 with dt = 0.5 Fast time integration at level 0 from 171.5 to 172 with dt = 0.5 Time integration of scalars at level 0 from 170 to 172 with dt = 2 using RHS created at 171 Done with advance_dycore at level 0 [Level 0 step 86] Advanced 4096 cells [Level 1 step 86] ADVANCE from elapsed time = 170 to 172 with dt = 2 Making slow rhs at time 170 for fast variables advancing from 170 to 172 No-substepping time integration at level 1 to 172 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.461026639e-05 0.0009186887182 and volume-weighted sum 17702.1543 Subtracting 5.762420187e-06 from rhs in subdomain 0 Sum after subtraction 0.009196810424 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.936406423e-05 MLMG: Initial residual (resid0) = 9.936406423e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.149132004e-06, 0.01156486478 MLMG: Timers: Solve = 0.000731735 Iter = 0.00053613 Bottom = 5.5089e-05 Time in solve 0.001062164 Max/L2 norm of divergence after solve at level 1 : 6.287358701e-06 0.0003194059245 and volume-weighted sum 17702.16406 Time integration of scalars at level 1 from 170 to 172 with dt = 2 using RHS created at 170 Making slow rhs at time 172 for fast variables advancing from 170 to 172 No-substepping time integration at level 1 to 172 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.356811643e-05 0.0009108555969 and volume-weighted sum 17702.16602 Subtracting 5.762423825e-06 from rhs in subdomain 0 Sum after subtraction 0.0165309757 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.890773072e-05 MLMG: Initial residual (resid0) = 9.890773072e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.150947355e-06, 0.01163657662 MLMG: Timers: Solve = 0.000737492 Iter = 0.000532331 Bottom = 5.4342e-05 Time in solve 0.001116671 Max/L2 norm of divergence after solve at level 1 : 6.291083992e-06 0.0003194048477 and volume-weighted sum 17702.18555 Time integration of scalars at level 1 from 170 to 172 with dt = 2 using RHS created at 172 Done with advance_dycore at level 1 [Level 1 step 86] Advanced 3072 cells Coarse STEP 86 ends. TIME = 172 DT = 2 Timestep time = 0.016428293 seconds. Coarse STEP 87 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.524363882 (terrain aware) 1.524363882 (terrain unaware) Anelastic dt at level 0 would be: 10.16985759 (terrain aware) 10.16985759 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2766232524 (terrain aware) 0.2766232524 (terrain unaware) Anelastic dt at level 1 would be: 4.943963216 (terrain aware) 4.943963216 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 87] ADVANCE from elapsed time = 172 to 174 with dt = 2 Making slow rhs at time 172 for fast variables advancing from 172 to 172.6666666667 Fast time integration at level 0 from 172 to 172.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 172 to 172.6666666667 with dt = 0.6666666666667 using RHS created at 172 Making slow rhs at time 172.6666666667 for fast variables advancing from 172 to 173 Fast time integration at level 0 from 172 to 172.5 with dt = 0.5 Fast time integration at level 0 from 172.5 to 173 with dt = 0.5 Time integration of scalars at level 0 from 172 to 173 with dt = 1 using RHS created at 172.6666666667 Making slow rhs at time 173 for fast variables advancing from 172 to 174 Fast time integration at level 0 from 172 to 172.5 with dt = 0.5 Fast time integration at level 0 from 172.5 to 173 with dt = 0.5 Fast time integration at level 0 from 173 to 173.5 with dt = 0.5 Fast time integration at level 0 from 173.5 to 174 with dt = 0.5 Time integration of scalars at level 0 from 172 to 174 with dt = 2 using RHS created at 173 Done with advance_dycore at level 0 [Level 0 step 87] Advanced 4096 cells [Level 1 step 87] ADVANCE from elapsed time = 172 to 174 with dt = 2 Making slow rhs at time 172 for fast variables advancing from 172 to 174 No-substepping time integration at level 1 to 174 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001003164798 0.000944231695 and volume-weighted sum 18161.17969 Subtracting 5.911842436e-06 from rhs in subdomain 0 Sum after subtraction 0.04295725375 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.00010031071 MLMG: Initial residual (resid0) = 0.00010031071 MLMG: Final Iter. 2 resid, resid/bnorm = 1.121057721e-06, 0.01117585227 MLMG: Timers: Solve = 0.000739488 Iter = 0.000540495 Bottom = 5.5059e-05 Time in solve 0.001075151 Max/L2 norm of divergence after solve at level 1 : 6.461516023e-06 0.0003276863135 and volume-weighted sum 18161.14844 Time integration of scalars at level 1 from 172 to 174 with dt = 2 using RHS created at 172 Making slow rhs at time 174 for fast variables advancing from 172 to 174 No-substepping time integration at level 1 to 174 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 9.9144876e-05 0.0009327350999 and volume-weighted sum 18161.17188 Subtracting 5.911839708e-06 from rhs in subdomain 0 Sum after subtraction 0.01932494342 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.970906831e-05 MLMG: Initial residual (resid0) = 9.970906831e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.120431989e-06, 0.01123701222 MLMG: Timers: Solve = 0.000737771 Iter = 0.000537482 Bottom = 5.4595e-05 Time in solve 0.001061953 Max/L2 norm of divergence after solve at level 1 : 6.451271474e-06 0.0003276851785 and volume-weighted sum 18161.17383 Time integration of scalars at level 1 from 172 to 174 with dt = 2 using RHS created at 174 Done with advance_dycore at level 1 [Level 1 step 87] Advanced 3072 cells Coarse STEP 87 ends. TIME = 174 DT = 2 Timestep time = 0.016481634 seconds. Coarse STEP 88 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.521144636 (terrain aware) 1.521144636 (terrain unaware) Anelastic dt at level 0 would be: 10.19375547 (terrain aware) 10.19375547 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.276356205 (terrain aware) 0.276356205 (terrain unaware) Anelastic dt at level 1 would be: 4.942141102 (terrain aware) 4.942141102 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 88] ADVANCE from elapsed time = 174 to 176 with dt = 2 Making slow rhs at time 174 for fast variables advancing from 174 to 174.6666666667 Fast time integration at level 0 from 174 to 174.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 174 to 174.6666666667 with dt = 0.6666666666667 using RHS created at 174 Making slow rhs at time 174.6666666667 for fast variables advancing from 174 to 175 Fast time integration at level 0 from 174 to 174.5 with dt = 0.5 Fast time integration at level 0 from 174.5 to 175 with dt = 0.5 Time integration of scalars at level 0 from 174 to 175 with dt = 1 using RHS created at 174.6666666667 Making slow rhs at time 175 for fast variables advancing from 174 to 176 Fast time integration at level 0 from 174 to 174.5 with dt = 0.5 Fast time integration at level 0 from 174.5 to 175 with dt = 0.5 Fast time integration at level 0 from 175 to 175.5 with dt = 0.5 Fast time integration at level 0 from 175.5 to 176 with dt = 0.5 Time integration of scalars at level 0 from 174 to 176 with dt = 2 using RHS created at 175 Done with advance_dycore at level 0 [Level 0 step 88] Advanced 4096 cells [Level 1 step 88] ADVANCE from elapsed time = 174 to 176 with dt = 2 Making slow rhs at time 174 for fast variables advancing from 174 to 176 No-substepping time integration at level 1 to 176 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001039337367 0.0009772771737 and volume-weighted sum 18295.60352 Subtracting 5.955600045e-06 from rhs in subdomain 0 Sum after subtraction 0.03923196346 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.930952365e-05 MLMG: Initial residual (resid0) = 9.930952365e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.109387085e-06, 0.0111710038 MLMG: Timers: Solve = 0.000731982 Iter = 0.000532142 Bottom = 5.5946e-05 Time in solve 0.001058677 Max/L2 norm of divergence after solve at level 1 : 6.501562893e-06 0.00033011302 and volume-weighted sum 18295.5918 Time integration of scalars at level 1 from 174 to 176 with dt = 2 using RHS created at 174 Making slow rhs at time 176 for fast variables advancing from 174 to 176 No-substepping time integration at level 1 to 176 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001026531681 0.0009527784423 and volume-weighted sum 18295.59766 Subtracting 5.955598226e-06 from rhs in subdomain 0 Sum after subtraction 0.0293366611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 9.883826715e-05 MLMG: Initial residual (resid0) = 9.883826715e-05 MLMG: Final Iter. 2 resid, resid/bnorm = 1.113858161e-06, 0.01126950327 MLMG: Timers: Solve = 0.000743063 Iter = 0.000541803 Bottom = 5.4829e-05 Time in solve 0.001066656 Max/L2 norm of divergence after solve at level 1 : 6.509013474e-06 0.0003301100805 and volume-weighted sum 18295.5918 Time integration of scalars at level 1 from 174 to 176 with dt = 2 using RHS created at 176 Done with advance_dycore at level 1 [Level 1 step 88] Advanced 3072 cells Coarse STEP 88 ends. TIME = 176 DT = 2 Timestep time = 0.016352831 seconds. Coarse STEP 89 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.516924627 (terrain aware) 1.516924627 (terrain unaware) Anelastic dt at level 0 would be: 10.21714314 (terrain aware) 10.21714314 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2760847431 (terrain aware) 0.2760847431 (terrain unaware) Anelastic dt at level 1 would be: 4.941898213 (terrain aware) 4.941898213 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 89] ADVANCE from elapsed time = 176 to 178 with dt = 2 Making slow rhs at time 176 for fast variables advancing from 176 to 176.6666666667 Fast time integration at level 0 from 176 to 176.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 176 to 176.6666666667 with dt = 0.6666666666667 using RHS created at 176 Making slow rhs at time 176.6666666667 for fast variables advancing from 176 to 177 Fast time integration at level 0 from 176 to 176.5 with dt = 0.5 Fast time integration at level 0 from 176.5 to 177 with dt = 0.5 Time integration of scalars at level 0 from 176 to 177 with dt = 1 using RHS created at 176.6666666667 Making slow rhs at time 177 for fast variables advancing from 176 to 178 Fast time integration at level 0 from 176 to 176.5 with dt = 0.5 Fast time integration at level 0 from 176.5 to 177 with dt = 0.5 Fast time integration at level 0 from 177 to 177.5 with dt = 0.5 Fast time integration at level 0 from 177.5 to 178 with dt = 0.5 Time integration of scalars at level 0 from 176 to 178 with dt = 2 using RHS created at 177 Done with advance_dycore at level 0 [Level 0 step 89] Advanced 4096 cells [Level 1 step 89] ADVANCE from elapsed time = 176 to 178 with dt = 2 Making slow rhs at time 176 for fast variables advancing from 176 to 178 No-substepping time integration at level 1 to 178 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001053260639 0.001019327785 and volume-weighted sum 18092.79297 Subtracting 5.889581189e-06 from rhs in subdomain 0 Sum after subtraction -0.06658956409 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001014078662 MLMG: Initial residual (resid0) = 0.0001014078662 MLMG: Final Iter. 2 resid, resid/bnorm = 1.10140536e-06, 0.01086114347 MLMG: Timers: Solve = 0.000758851 Iter = 0.000556818 Bottom = 5.6199e-05 Time in solve 0.001089368 Max/L2 norm of divergence after solve at level 1 : 6.440095603e-06 0.0003264560073 and volume-weighted sum 18092.77734 Time integration of scalars at level 1 from 176 to 178 with dt = 2 using RHS created at 176 Making slow rhs at time 178 for fast variables advancing from 176 to 178 No-substepping time integration at level 1 to 178 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001040445641 0.0009709860897 and volume-weighted sum 18092.78711 Subtracting 5.889578915e-06 from rhs in subdomain 0 Sum after subtraction -0.04097819328 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001013296423 MLMG: Initial residual (resid0) = 0.0001013296423 MLMG: Final Iter. 2 resid, resid/bnorm = 1.109314326e-06, 0.01094757952 MLMG: Timers: Solve = 0.000732138 Iter = 0.000527544 Bottom = 5.4661e-05 Time in solve 0.001067747 Max/L2 norm of divergence after solve at level 1 : 6.458722055e-06 0.0003264512343 and volume-weighted sum 18092.78516 Time integration of scalars at level 1 from 176 to 178 with dt = 2 using RHS created at 178 Done with advance_dycore at level 1 [Level 1 step 89] Advanced 3072 cells Coarse STEP 89 ends. TIME = 178 DT = 2 Timestep time = 0.016480987 seconds. Coarse STEP 90 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.512668855 (terrain aware) 1.512668855 (terrain unaware) Anelastic dt at level 0 would be: 10.23612365 (terrain aware) 10.23612365 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2758088853 (terrain aware) 0.2758088853 (terrain unaware) Anelastic dt at level 1 would be: 4.942800031 (terrain aware) 4.942800031 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 90] ADVANCE from elapsed time = 178 to 180 with dt = 2 Making slow rhs at time 178 for fast variables advancing from 178 to 178.6666666667 Fast time integration at level 0 from 178 to 178.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 178 to 178.6666666667 with dt = 0.6666666666667 using RHS created at 178 Making slow rhs at time 178.6666666667 for fast variables advancing from 178 to 179 Fast time integration at level 0 from 178 to 178.5 with dt = 0.5 Fast time integration at level 0 from 178.5 to 179 with dt = 0.5 Time integration of scalars at level 0 from 178 to 179 with dt = 1 using RHS created at 178.6666666667 Making slow rhs at time 179 for fast variables advancing from 178 to 180 Fast time integration at level 0 from 178 to 178.5 with dt = 0.5 Fast time integration at level 0 from 178.5 to 179 with dt = 0.5 Fast time integration at level 0 from 179 to 179.5 with dt = 0.5 Fast time integration at level 0 from 179.5 to 180 with dt = 0.5 Time integration of scalars at level 0 from 178 to 180 with dt = 2 using RHS created at 179 Done with advance_dycore at level 0 [Level 0 step 90] Advanced 4096 cells [Level 1 step 90] ADVANCE from elapsed time = 178 to 180 with dt = 2 Making slow rhs at time 178 for fast variables advancing from 178 to 180 No-substepping time integration at level 1 to 180 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000105583109 0.001049412531 and volume-weighted sum 17580.30469 Subtracting 5.722755304e-06 from rhs in subdomain 0 Sum after subtraction 0.002677552402 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001060112991 MLMG: Initial residual (resid0) = 0.0001060112991 MLMG: Final Iter. 2 resid, resid/bnorm = 1.086786142e-06, 0.01025160681 MLMG: Timers: Solve = 0.000742164 Iter = 0.000535575 Bottom = 5.5492e-05 Time in solve 0.001094861 Max/L2 norm of divergence after solve at level 1 : 6.277114153e-06 0.0003172114666 and volume-weighted sum 17580.33008 Time integration of scalars at level 1 from 178 to 180 with dt = 2 using RHS created at 178 Making slow rhs at time 180 for fast variables advancing from 178 to 180 No-substepping time integration at level 1 to 180 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001042578369 0.0009875947144 and volume-weighted sum 17580.32227 Subtracting 5.722761216e-06 from rhs in subdomain 0 Sum after subtraction 0.02549495548 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001056965193 MLMG: Initial residual (resid0) = 0.0001056965193 MLMG: Final Iter. 2 resid, resid/bnorm = 1.096654159e-06, 0.01037549973 MLMG: Timers: Solve = 0.000743255 Iter = 0.00053804 Bottom = 5.4609e-05 Time in solve 0.001068097 Max/L2 norm of divergence after solve at level 1 : 6.289221346e-06 0.0003172056749 and volume-weighted sum 17580.32617 Time integration of scalars at level 1 from 178 to 180 with dt = 2 using RHS created at 180 Done with advance_dycore at level 1 [Level 1 step 90] Advanced 3072 cells Coarse STEP 90 ends. TIME = 180 DT = 2 Timestep time = 0.01640621 seconds. Coarse STEP 91 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.508432306 (terrain aware) 1.508432306 (terrain unaware) Anelastic dt at level 0 would be: 10.25199875 (terrain aware) 10.25199875 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2755286131 (terrain aware) 0.2755286131 (terrain unaware) Anelastic dt at level 1 would be: 4.944488631 (terrain aware) 4.944488631 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 91] ADVANCE from elapsed time = 180 to 182 with dt = 2 Making slow rhs at time 180 for fast variables advancing from 180 to 180.6666666667 Fast time integration at level 0 from 180 to 180.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 180 to 180.6666666667 with dt = 0.6666666666667 using RHS created at 180 Making slow rhs at time 180.6666666667 for fast variables advancing from 180 to 181 Fast time integration at level 0 from 180 to 180.5 with dt = 0.5 Fast time integration at level 0 from 180.5 to 181 with dt = 0.5 Time integration of scalars at level 0 from 180 to 181 with dt = 1 using RHS created at 180.6666666667 Making slow rhs at time 181 for fast variables advancing from 180 to 182 Fast time integration at level 0 from 180 to 180.5 with dt = 0.5 Fast time integration at level 0 from 180.5 to 181 with dt = 0.5 Fast time integration at level 0 from 181 to 181.5 with dt = 0.5 Fast time integration at level 0 from 181.5 to 182 with dt = 0.5 Time integration of scalars at level 0 from 180 to 182 with dt = 2 using RHS created at 181 Done with advance_dycore at level 0 [Level 0 step 91] Advanced 4096 cells [Level 1 step 91] ADVANCE from elapsed time = 180 to 182 with dt = 2 Making slow rhs at time 180 for fast variables advancing from 180 to 182 No-substepping time integration at level 1 to 182 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001110611483 0.001043637283 and volume-weighted sum 16910.60547 Subtracting 5.504754427e-06 from rhs in subdomain 0 Sum after subtraction 0.03282912076 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001092466482 MLMG: Initial residual (resid0) = 0.0001092466482 MLMG: Final Iter. 2 resid, resid/bnorm = 1.068331812e-06, 0.009779080749 MLMG: Timers: Solve = 0.00074038 Iter = 0.000540062 Bottom = 5.7408e-05 Time in solve 0.001079415 Max/L2 norm of divergence after solve at level 1 : 6.060115993e-06 0.000305127207 and volume-weighted sum 16910.63281 Time integration of scalars at level 1 from 180 to 182 with dt = 2 using RHS created at 180 Making slow rhs at time 182 for fast variables advancing from 180 to 182 No-substepping time integration at level 1 to 182 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001097191125 0.001003677724 and volume-weighted sum 16910.61914 Subtracting 5.504758974e-06 from rhs in subdomain 0 Sum after subtraction -0.08346978575 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001086803677 MLMG: Initial residual (resid0) = 0.0001086803677 MLMG: Final Iter. 2 resid, resid/bnorm = 1.075930982e-06, 0.009899957106 MLMG: Timers: Solve = 0.000751261 Iter = 0.000526447 Bottom = 5.3568e-05 Time in solve 0.001086257 Max/L2 norm of divergence after solve at level 1 : 6.070360541e-06 0.0003051226377 and volume-weighted sum 16910.62305 Time integration of scalars at level 1 from 180 to 182 with dt = 2 using RHS created at 182 Done with advance_dycore at level 1 [Level 1 step 91] Advanced 3072 cells Coarse STEP 91 ends. TIME = 182 DT = 2 Timestep time = 0.017183353 seconds. Coarse STEP 92 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.504286207 (terrain aware) 1.504286207 (terrain unaware) Anelastic dt at level 0 would be: 10.26491627 (terrain aware) 10.26491627 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2752437588 (terrain aware) 0.2752437588 (terrain unaware) Anelastic dt at level 1 would be: 4.945633636 (terrain aware) 4.945633636 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 92] ADVANCE from elapsed time = 182 to 184 with dt = 2 Making slow rhs at time 182 for fast variables advancing from 182 to 182.6666666667 Fast time integration at level 0 from 182 to 182.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 182 to 182.6666666667 with dt = 0.6666666666667 using RHS created at 182 Making slow rhs at time 182.6666666667 for fast variables advancing from 182 to 183 Fast time integration at level 0 from 182 to 182.5 with dt = 0.5 Fast time integration at level 0 from 182.5 to 183 with dt = 0.5 Time integration of scalars at level 0 from 182 to 183 with dt = 1 using RHS created at 182.6666666667 Making slow rhs at time 183 for fast variables advancing from 182 to 184 Fast time integration at level 0 from 182 to 182.5 with dt = 0.5 Fast time integration at level 0 from 182.5 to 183 with dt = 0.5 Fast time integration at level 0 from 183 to 183.5 with dt = 0.5 Fast time integration at level 0 from 183.5 to 184 with dt = 0.5 Time integration of scalars at level 0 from 182 to 184 with dt = 2 using RHS created at 183 Done with advance_dycore at level 0 [Level 0 step 92] Advanced 4096 cells [Level 1 step 92] ADVANCE from elapsed time = 182 to 184 with dt = 2 Making slow rhs at time 182 for fast variables advancing from 182 to 184 No-substepping time integration at level 1 to 184 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001143906265 0.001037264592 and volume-weighted sum 16157.13379 Subtracting 5.259483714e-06 from rhs in subdomain 0 Sum after subtraction -0.03271270543 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000110744797 MLMG: Initial residual (resid0) = 0.000110744797 MLMG: Final Iter. 2 resid, resid/bnorm = 1.043908924e-06, 0.009426256642 MLMG: Timers: Solve = 0.000738853 Iter = 0.000529406 Bottom = 5.6884e-05 Time in solve 0.00113676 Max/L2 norm of divergence after solve at level 1 : 5.815178156e-06 0.0002915307123 and volume-weighted sum 16157.11719 Time integration of scalars at level 1 from 182 to 184 with dt = 2 using RHS created at 182 Making slow rhs at time 184 for fast variables advancing from 182 to 184 No-substepping time integration at level 1 to 184 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001130225137 0.001019719755 and volume-weighted sum 16157.11133 Subtracting 5.259476438e-06 from rhs in subdomain 0 Sum after subtraction -0.03515742719 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001099941364 MLMG: Initial residual (resid0) = 0.0001099941364 MLMG: Final Iter. 2 resid, resid/bnorm = 1.047355909e-06, 0.009521924891 MLMG: Timers: Solve = 0.000739315 Iter = 0.000524956 Bottom = 5.3733e-05 Time in solve 0.001053239 Max/L2 norm of divergence after solve at level 1 : 5.821697414e-06 0.0002915281802 and volume-weighted sum 16157.13184 Time integration of scalars at level 1 from 182 to 184 with dt = 2 using RHS created at 184 Done with advance_dycore at level 1 [Level 1 step 92] Advanced 3072 cells Coarse STEP 92 ends. TIME = 184 DT = 2 Timestep time = 0.016520571 seconds. Coarse STEP 93 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.500295527 (terrain aware) 1.500295527 (terrain unaware) Anelastic dt at level 0 would be: 10.267912 (terrain aware) 10.267912 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2749543037 (terrain aware) 0.2749543037 (terrain unaware) Anelastic dt at level 1 would be: 4.94532846 (terrain aware) 4.94532846 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 93] ADVANCE from elapsed time = 184 to 186 with dt = 2 Making slow rhs at time 184 for fast variables advancing from 184 to 184.6666666667 Fast time integration at level 0 from 184 to 184.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 184 to 184.6666666667 with dt = 0.6666666666667 using RHS created at 184 Making slow rhs at time 184.6666666667 for fast variables advancing from 184 to 185 Fast time integration at level 0 from 184 to 184.5 with dt = 0.5 Fast time integration at level 0 from 184.5 to 185 with dt = 0.5 Time integration of scalars at level 0 from 184 to 185 with dt = 1 using RHS created at 184.6666666667 Making slow rhs at time 185 for fast variables advancing from 184 to 186 Fast time integration at level 0 from 184 to 184.5 with dt = 0.5 Fast time integration at level 0 from 184.5 to 185 with dt = 0.5 Fast time integration at level 0 from 185 to 185.5 with dt = 0.5 Fast time integration at level 0 from 185.5 to 186 with dt = 0.5 Time integration of scalars at level 0 from 184 to 186 with dt = 2 using RHS created at 185 Done with advance_dycore at level 0 [Level 0 step 93] Advanced 4096 cells [Level 1 step 93] ADVANCE from elapsed time = 184 to 186 with dt = 2 Making slow rhs at time 184 for fast variables advancing from 184 to 186 No-substepping time integration at level 1 to 186 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001153377816 0.00104557327 and volume-weighted sum 15423.99121 Subtracting 5.020830486e-06 from rhs in subdomain 0 Sum after subtraction -0.02491287887 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001109550431 MLMG: Initial residual (resid0) = 0.0001109550431 MLMG: Final Iter. 2 resid, resid/bnorm = 1.010645065e-06, 0.009108599275 MLMG: Timers: Solve = 0.000727813 Iter = 0.000519789 Bottom = 5.2702e-05 Time in solve 0.001062163 Max/L2 norm of divergence after solve at level 1 : 5.58141619e-06 0.0002783026139 and volume-weighted sum 15423.97461 Time integration of scalars at level 1 from 184 to 186 with dt = 2 using RHS created at 184 Making slow rhs at time 186 for fast variables advancing from 184 to 186 No-substepping time integration at level 1 to 186 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001140525565 0.001036183909 and volume-weighted sum 15423.9834 Subtracting 5.020827757e-06 from rhs in subdomain 0 Sum after subtraction -0.02270098776 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001103534014 MLMG: Initial residual (resid0) = 0.0001103534014 MLMG: Final Iter. 2 resid, resid/bnorm = 1.011154382e-06, 0.009162874892 MLMG: Timers: Solve = 0.000729877 Iter = 0.000528306 Bottom = 5.4639e-05 Time in solve 0.001042252 Max/L2 norm of divergence after solve at level 1 : 5.58141619e-06 0.0002783009841 and volume-weighted sum 15423.98242 Time integration of scalars at level 1 from 184 to 186 with dt = 2 using RHS created at 186 Done with advance_dycore at level 1 [Level 1 step 93] Advanced 3072 cells Coarse STEP 93 ends. TIME = 186 DT = 2 Timestep time = 0.016428419 seconds. Coarse STEP 94 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.49650497 (terrain aware) 1.49650497 (terrain unaware) Anelastic dt at level 0 would be: 10.25369033 (terrain aware) 10.25369033 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2746600989 (terrain aware) 0.2746600989 (terrain unaware) Anelastic dt at level 1 would be: 4.920048938 (terrain aware) 4.920048938 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 94] ADVANCE from elapsed time = 186 to 188 with dt = 2 Making slow rhs at time 186 for fast variables advancing from 186 to 186.6666666667 Fast time integration at level 0 from 186 to 186.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 186 to 186.6666666667 with dt = 0.6666666666667 using RHS created at 186 Making slow rhs at time 186.6666666667 for fast variables advancing from 186 to 187 Fast time integration at level 0 from 186 to 186.5 with dt = 0.5 Fast time integration at level 0 from 186.5 to 187 with dt = 0.5 Time integration of scalars at level 0 from 186 to 187 with dt = 1 using RHS created at 186.6666666667 Making slow rhs at time 187 for fast variables advancing from 186 to 188 Fast time integration at level 0 from 186 to 186.5 with dt = 0.5 Fast time integration at level 0 from 186.5 to 187 with dt = 0.5 Fast time integration at level 0 from 187 to 187.5 with dt = 0.5 Fast time integration at level 0 from 187.5 to 188 with dt = 0.5 Time integration of scalars at level 0 from 186 to 188 with dt = 2 using RHS created at 187 Done with advance_dycore at level 0 [Level 0 step 94] Advanced 4096 cells [Level 1 step 94] ADVANCE from elapsed time = 186 to 188 with dt = 2 Making slow rhs at time 186 for fast variables advancing from 186 to 188 No-substepping time integration at level 1 to 188 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001148935407 0.001058158348 and volume-weighted sum 14784.96387 Subtracting 4.812813586e-06 from rhs in subdomain 0 Sum after subtraction -0.04016328603 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001123023249 MLMG: Initial residual (resid0) = 0.0001123023249 MLMG: Final Iter. 2 resid, resid/bnorm = 9.675095498e-07, 0.00861522276 MLMG: Timers: Solve = 0.00072966 Iter = 0.00053154 Bottom = 5.5398e-05 Time in solve 0.001052623 Max/L2 norm of divergence after solve at level 1 : 5.383044481e-06 0.0002667733934 and volume-weighted sum 14784.97852 Time integration of scalars at level 1 from 186 to 188 with dt = 2 using RHS created at 186 Making slow rhs at time 188 for fast variables advancing from 186 to 188 No-substepping time integration at level 1 to 188 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001135207713 0.001053497894 and volume-weighted sum 14785.00684 Subtracting 4.812827683e-06 from rhs in subdomain 0 Sum after subtraction -0.01571606845 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001117398278 MLMG: Initial residual (resid0) = 0.0001117398278 MLMG: Final Iter. 2 resid, resid/bnorm = 9.677714843e-07, 0.008660935797 MLMG: Timers: Solve = 0.000723015 Iter = 0.000521227 Bottom = 5.3826e-05 Time in solve 0.001104027 Max/L2 norm of divergence after solve at level 1 : 5.381181836e-06 0.0002667723456 and volume-weighted sum 14784.98242 Time integration of scalars at level 1 from 186 to 188 with dt = 2 using RHS created at 188 Done with advance_dycore at level 1 [Level 1 step 94] Advanced 3072 cells Coarse STEP 94 ends. TIME = 188 DT = 2 Timestep time = 0.01651914 seconds. Coarse STEP 95 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.492932715 (terrain aware) 1.492932715 (terrain unaware) Anelastic dt at level 0 would be: 10.15413031 (terrain aware) 10.15413031 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2743609954 (terrain aware) 0.2743609954 (terrain unaware) Anelastic dt at level 1 would be: 4.834610748 (terrain aware) 4.834610748 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 95] ADVANCE from elapsed time = 188 to 190 with dt = 2 Making slow rhs at time 188 for fast variables advancing from 188 to 188.6666666667 Fast time integration at level 0 from 188 to 188.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 188 to 188.6666666667 with dt = 0.6666666666667 using RHS created at 188 Making slow rhs at time 188.6666666667 for fast variables advancing from 188 to 189 Fast time integration at level 0 from 188 to 188.5 with dt = 0.5 Fast time integration at level 0 from 188.5 to 189 with dt = 0.5 Time integration of scalars at level 0 from 188 to 189 with dt = 1 using RHS created at 188.6666666667 Making slow rhs at time 189 for fast variables advancing from 188 to 190 Fast time integration at level 0 from 188 to 188.5 with dt = 0.5 Fast time integration at level 0 from 188.5 to 189 with dt = 0.5 Fast time integration at level 0 from 189 to 189.5 with dt = 0.5 Fast time integration at level 0 from 189.5 to 190 with dt = 0.5 Time integration of scalars at level 0 from 188 to 190 with dt = 2 using RHS created at 189 Done with advance_dycore at level 0 [Level 0 step 95] Advanced 4096 cells [Level 1 step 95] ADVANCE from elapsed time = 188 to 190 with dt = 2 Making slow rhs at time 188 for fast variables advancing from 188 to 190 No-substepping time integration at level 1 to 190 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001212665811 0.001079797396 and volume-weighted sum 14276.56055 Subtracting 4.647317837e-06 from rhs in subdomain 0 Sum after subtraction 0.0239815563 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001166192596 MLMG: Initial residual (resid0) = 0.0001166192596 MLMG: Final Iter. 2 resid, resid/bnorm = 9.333016351e-07, 0.008002980612 MLMG: Timers: Solve = 0.000718432 Iter = 0.000520938 Bottom = 5.6997e-05 Time in solve 0.00105014 Max/L2 norm of divergence after solve at level 1 : 5.223788321e-06 0.0002576010593 and volume-weighted sum 14276.56348 Time integration of scalars at level 1 from 188 to 190 with dt = 2 using RHS created at 188 Making slow rhs at time 190 for fast variables advancing from 188 to 190 No-substepping time integration at level 1 to 190 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001198397949 0.001071698614 and volume-weighted sum 14276.55469 Subtracting 4.647316018e-06 from rhs in subdomain 0 Sum after subtraction 0.02130400389 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001151924735 MLMG: Initial residual (resid0) = 0.0001151924735 MLMG: Final Iter. 2 resid, resid/bnorm = 9.337018128e-07, 0.008105579764 MLMG: Timers: Solve = 0.000729182 Iter = 0.000526425 Bottom = 5.4277e-05 Time in solve 0.001041375 Max/L2 norm of divergence after solve at level 1 : 5.228444934e-06 0.0002575991384 and volume-weighted sum 14276.53906 Time integration of scalars at level 1 from 188 to 190 with dt = 2 using RHS created at 190 Done with advance_dycore at level 1 [Level 1 step 95] Advanced 3072 cells Coarse STEP 95 ends. TIME = 190 DT = 2 Timestep time = 0.016289575 seconds. Coarse STEP 96 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.489581444 (terrain aware) 1.489581444 (terrain unaware) Anelastic dt at level 0 would be: 9.982087463 (terrain aware) 9.982087463 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2740568813 (terrain aware) 0.2740568813 (terrain unaware) Anelastic dt at level 1 would be: 4.750060368 (terrain aware) 4.750060368 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 96] ADVANCE from elapsed time = 190 to 192 with dt = 2 Making slow rhs at time 190 for fast variables advancing from 190 to 190.6666666667 Fast time integration at level 0 from 190 to 190.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 190 to 190.6666666667 with dt = 0.6666666666667 using RHS created at 190 Making slow rhs at time 190.6666666667 for fast variables advancing from 190 to 191 Fast time integration at level 0 from 190 to 190.5 with dt = 0.5 Fast time integration at level 0 from 190.5 to 191 with dt = 0.5 Time integration of scalars at level 0 from 190 to 191 with dt = 1 using RHS created at 190.6666666667 Making slow rhs at time 191 for fast variables advancing from 190 to 192 Fast time integration at level 0 from 190 to 190.5 with dt = 0.5 Fast time integration at level 0 from 190.5 to 191 with dt = 0.5 Fast time integration at level 0 from 191 to 191.5 with dt = 0.5 Fast time integration at level 0 from 191.5 to 192 with dt = 0.5 Time integration of scalars at level 0 from 190 to 192 with dt = 2 using RHS created at 191 Done with advance_dycore at level 0 [Level 0 step 96] Advanced 4096 cells [Level 1 step 96] ADVANCE from elapsed time = 190 to 192 with dt = 2 Making slow rhs at time 190 for fast variables advancing from 190 to 192 No-substepping time integration at level 1 to 192 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000125002116 0.001109980629 and volume-weighted sum 13986.68262 Subtracting 4.552956398e-06 from rhs in subdomain 0 Sum after subtraction -0.04062894732 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001204491709 MLMG: Initial residual (resid0) = 0.0001204491709 MLMG: Final Iter. 2 resid, resid/bnorm = 9.132563719e-07, 0.007582089398 MLMG: Timers: Solve = 0.000746824 Iter = 0.000547677 Bottom = 5.8411e-05 Time in solve 0.001076047 Max/L2 norm of divergence after solve at level 1 : 5.137175322e-06 0.0002523729054 and volume-weighted sum 13986.67676 Time integration of scalars at level 1 from 190 to 192 with dt = 2 using RHS created at 190 Making slow rhs at time 192 for fast variables advancing from 190 to 192 No-substepping time integration at level 1 to 192 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001236042008 0.001090983045 and volume-weighted sum 13986.69043 Subtracting 4.552959126e-06 from rhs in subdomain 0 Sum after subtraction -0.04679895937 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001190512558 MLMG: Initial residual (resid0) = 0.0001190512558 MLMG: Final Iter. 2 resid, resid/bnorm = 9.143695934e-07, 0.007680470124 MLMG: Timers: Solve = 0.00073219 Iter = 0.000529613 Bottom = 5.5451e-05 Time in solve 0.001050752 Max/L2 norm of divergence after solve at level 1 : 5.133450031e-06 0.0002523693256 and volume-weighted sum 13986.68555 Time integration of scalars at level 1 from 190 to 192 with dt = 2 using RHS created at 192 Done with advance_dycore at level 1 [Level 1 step 96] Advanced 3072 cells Coarse STEP 96 ends. TIME = 192 DT = 2 Timestep time = 0.016480233 seconds. Coarse STEP 97 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.486453541 (terrain aware) 1.486453541 (terrain unaware) Anelastic dt at level 0 would be: 9.822765442 (terrain aware) 9.822765442 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2737477008 (terrain aware) 0.2737477008 (terrain unaware) Anelastic dt at level 1 would be: 4.672456612 (terrain aware) 4.672456612 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 97] ADVANCE from elapsed time = 192 to 194 with dt = 2 Making slow rhs at time 192 for fast variables advancing from 192 to 192.6666666667 Fast time integration at level 0 from 192 to 192.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 192 to 192.6666666667 with dt = 0.6666666666667 using RHS created at 192 Making slow rhs at time 192.6666666667 for fast variables advancing from 192 to 193 Fast time integration at level 0 from 192 to 192.5 with dt = 0.5 Fast time integration at level 0 from 192.5 to 193 with dt = 0.5 Time integration of scalars at level 0 from 192 to 193 with dt = 1 using RHS created at 192.6666666667 Making slow rhs at time 193 for fast variables advancing from 192 to 194 Fast time integration at level 0 from 192 to 192.5 with dt = 0.5 Fast time integration at level 0 from 192.5 to 193 with dt = 0.5 Fast time integration at level 0 from 193 to 193.5 with dt = 0.5 Fast time integration at level 0 from 193.5 to 194 with dt = 0.5 Time integration of scalars at level 0 from 192 to 194 with dt = 2 using RHS created at 193 Done with advance_dycore at level 0 [Level 0 step 97] Advanced 4096 cells [Level 1 step 97] ADVANCE from elapsed time = 192 to 194 with dt = 2 Making slow rhs at time 192 for fast variables advancing from 192 to 194 No-substepping time integration at level 1 to 194 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001262901351 0.001136828098 and volume-weighted sum 13917.64551 Subtracting 4.530483693e-06 from rhs in subdomain 0 Sum after subtraction 0.02980232239 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001217596437 MLMG: Initial residual (resid0) = 0.0001217596437 MLMG: Final Iter. 2 resid, resid/bnorm = 8.862116374e-07, 0.007278369274 MLMG: Timers: Solve = 0.000742126 Iter = 0.000542016 Bottom = 5.8427e-05 Time in solve 0.001058715 Max/L2 norm of divergence after solve at level 1 : 5.116686225e-06 0.0002511284547 and volume-weighted sum 13917.64062 Time integration of scalars at level 1 from 192 to 194 with dt = 2 using RHS created at 192 Making slow rhs at time 194 for fast variables advancing from 192 to 194 No-substepping time integration at level 1 to 194 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001248614863 0.001111393096 and volume-weighted sum 13917.65527 Subtracting 4.530486876e-06 from rhs in subdomain 0 Sum after subtraction 0.01222360879 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001203309948 MLMG: Initial residual (resid0) = 0.0001203309948 MLMG: Final Iter. 2 resid, resid/bnorm = 8.878487279e-07, 0.007378387731 MLMG: Timers: Solve = 0.000736405 Iter = 0.000527246 Bottom = 5.4116e-05 Time in solve 0.001051548 Max/L2 norm of divergence after solve at level 1 : 5.113892257e-06 0.0002511231869 and volume-weighted sum 13917.63965 Time integration of scalars at level 1 from 192 to 194 with dt = 2 using RHS created at 194 Done with advance_dycore at level 1 [Level 1 step 97] Advanced 3072 cells Coarse STEP 97 ends. TIME = 194 DT = 2 Timestep time = 0.01641416 seconds. Coarse STEP 98 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.483285107 (terrain aware) 1.483285107 (terrain unaware) Anelastic dt at level 0 would be: 9.675468658 (terrain aware) 9.675468658 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2734335657 (terrain aware) 0.2734335657 (terrain unaware) Anelastic dt at level 1 would be: 4.602412811 (terrain aware) 4.602412811 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 98] ADVANCE from elapsed time = 194 to 196 with dt = 2 Making slow rhs at time 194 for fast variables advancing from 194 to 194.6666666667 Fast time integration at level 0 from 194 to 194.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 194 to 194.6666666667 with dt = 0.6666666666667 using RHS created at 194 Making slow rhs at time 194.6666666667 for fast variables advancing from 194 to 195 Fast time integration at level 0 from 194 to 194.5 with dt = 0.5 Fast time integration at level 0 from 194.5 to 195 with dt = 0.5 Time integration of scalars at level 0 from 194 to 195 with dt = 1 using RHS created at 194.6666666667 Making slow rhs at time 195 for fast variables advancing from 194 to 196 Fast time integration at level 0 from 194 to 194.5 with dt = 0.5 Fast time integration at level 0 from 194.5 to 195 with dt = 0.5 Fast time integration at level 0 from 195 to 195.5 with dt = 0.5 Fast time integration at level 0 from 195.5 to 196 with dt = 0.5 Time integration of scalars at level 0 from 194 to 196 with dt = 2 using RHS created at 195 Done with advance_dycore at level 0 [Level 0 step 98] Advanced 4096 cells [Level 1 step 98] ADVANCE from elapsed time = 194 to 196 with dt = 2 Making slow rhs at time 194 for fast variables advancing from 194 to 196 No-substepping time integration at level 1 to 196 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001251362264 0.001157668419 and volume-weighted sum 14076.06543 Subtracting 4.582052497e-06 from rhs in subdomain 0 Sum after subtraction -0.07287599146 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001205541994 MLMG: Initial residual (resid0) = 0.0001205541994 MLMG: Final Iter. 2 resid, resid/bnorm = 8.528295439e-07, 0.007074241526 MLMG: Timers: Solve = 0.00074099 Iter = 0.000533098 Bottom = 5.8764e-05 Time in solve 0.001069698 Max/L2 norm of divergence after solve at level 1 : 5.161389709e-06 0.0002539870038 and volume-weighted sum 14076.07617 Time integration of scalars at level 1 from 194 to 196 with dt = 2 using RHS created at 194 Making slow rhs at time 196 for fast variables advancing from 194 to 196 No-substepping time integration at level 1 to 196 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001237988472 0.001132924575 and volume-weighted sum 14076.05664 Subtracting 4.582049769e-06 from rhs in subdomain 0 Sum after subtraction -0.1064036041 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001192168347 MLMG: Initial residual (resid0) = 0.0001192168347 MLMG: Final Iter. 2 resid, resid/bnorm = 8.541683201e-07, 0.007164829876 MLMG: Timers: Solve = 0.000741731 Iter = 0.000530058 Bottom = 5.3569e-05 Time in solve 0.001065958 Max/L2 norm of divergence after solve at level 1 : 5.156733096e-06 0.0002539810084 and volume-weighted sum 14076.07324 Time integration of scalars at level 1 from 194 to 196 with dt = 2 using RHS created at 196 Done with advance_dycore at level 1 [Level 1 step 98] Advanced 3072 cells Coarse STEP 98 ends. TIME = 196 DT = 2 Timestep time = 0.016588946 seconds. Coarse STEP 99 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.478615083 (terrain aware) 1.478615083 (terrain unaware) Anelastic dt at level 0 would be: 9.539947368 (terrain aware) 9.539947368 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2731146809 (terrain aware) 0.2731146809 (terrain unaware) Anelastic dt at level 1 would be: 4.526305727 (terrain aware) 4.526305727 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 99] ADVANCE from elapsed time = 196 to 198 with dt = 2 Making slow rhs at time 196 for fast variables advancing from 196 to 196.6666666667 Fast time integration at level 0 from 196 to 196.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 196 to 196.6666666667 with dt = 0.6666666666667 using RHS created at 196 Making slow rhs at time 196.6666666667 for fast variables advancing from 196 to 197 Fast time integration at level 0 from 196 to 196.5 with dt = 0.5 Fast time integration at level 0 from 196.5 to 197 with dt = 0.5 Time integration of scalars at level 0 from 196 to 197 with dt = 1 using RHS created at 196.6666666667 Making slow rhs at time 197 for fast variables advancing from 196 to 198 Fast time integration at level 0 from 196 to 196.5 with dt = 0.5 Fast time integration at level 0 from 196.5 to 197 with dt = 0.5 Fast time integration at level 0 from 197 to 197.5 with dt = 0.5 Fast time integration at level 0 from 197.5 to 198 with dt = 0.5 Time integration of scalars at level 0 from 196 to 198 with dt = 2 using RHS created at 197 Done with advance_dycore at level 0 [Level 0 step 99] Advanced 4096 cells [Level 1 step 99] ADVANCE from elapsed time = 196 to 198 with dt = 2 Making slow rhs at time 196 for fast variables advancing from 196 to 198 No-substepping time integration at level 1 to 198 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001254314557 0.001173143275 and volume-weighted sum 14462.14648 Subtracting 4.707730113e-06 from rhs in subdomain 0 Sum after subtraction -0.08405186236 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000120723751 MLMG: Initial residual (resid0) = 0.000120723751 MLMG: Final Iter. 2 resid, resid/bnorm = 8.127972251e-07, 0.006732703652 MLMG: Timers: Solve = 0.000740371 Iter = 0.000528536 Bottom = 5.9017e-05 Time in solve 0.001062324 Max/L2 norm of divergence after solve at level 1 : 5.278736353e-06 0.0002609510266 and volume-weighted sum 14462.17285 Time integration of scalars at level 1 from 196 to 198 with dt = 2 using RHS created at 196 Making slow rhs at time 198 for fast variables advancing from 196 to 198 No-substepping time integration at level 1 to 198 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001239869744 0.001155518112 and volume-weighted sum 14462.15625 Subtracting 4.707733297e-06 from rhs in subdomain 0 Sum after subtraction -0.06961636245 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001192792624 MLMG: Initial residual (resid0) = 0.0001192792624 MLMG: Final Iter. 2 resid, resid/bnorm = 8.135066309e-07, 0.00682018511 MLMG: Timers: Solve = 0.000740267 Iter = 0.000539385 Bottom = 5.6149e-05 Time in solve 0.001055562 Max/L2 norm of divergence after solve at level 1 : 5.273148417e-06 0.0002609455551 and volume-weighted sum 14462.15332 Time integration of scalars at level 1 from 196 to 198 with dt = 2 using RHS created at 198 Done with advance_dycore at level 1 [Level 1 step 99] Advanced 3072 cells Coarse STEP 99 ends. TIME = 198 DT = 2 Timestep time = 0.016356804 seconds. Coarse STEP 100 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.47396607 (terrain aware) 1.47396607 (terrain unaware) Anelastic dt at level 0 would be: 9.396093348 (terrain aware) 9.396093348 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.272791512 (terrain aware) 0.272791512 (terrain unaware) Anelastic dt at level 1 would be: 4.445236557 (terrain aware) 4.445236557 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 100] ADVANCE from elapsed time = 198 to 200 with dt = 2 Making slow rhs at time 198 for fast variables advancing from 198 to 198.6666666667 Fast time integration at level 0 from 198 to 198.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 198 to 198.6666666667 with dt = 0.6666666666667 using RHS created at 198 Making slow rhs at time 198.6666666667 for fast variables advancing from 198 to 199 Fast time integration at level 0 from 198 to 198.5 with dt = 0.5 Fast time integration at level 0 from 198.5 to 199 with dt = 0.5 Time integration of scalars at level 0 from 198 to 199 with dt = 1 using RHS created at 198.6666666667 Making slow rhs at time 199 for fast variables advancing from 198 to 200 Fast time integration at level 0 from 198 to 198.5 with dt = 0.5 Fast time integration at level 0 from 198.5 to 199 with dt = 0.5 Fast time integration at level 0 from 199 to 199.5 with dt = 0.5 Fast time integration at level 0 from 199.5 to 200 with dt = 0.5 Time integration of scalars at level 0 from 198 to 200 with dt = 2 using RHS created at 199 Done with advance_dycore at level 0 [Level 0 step 100] Advanced 4096 cells [Level 1 step 100] ADVANCE from elapsed time = 198 to 200 with dt = 2 Making slow rhs at time 198 for fast variables advancing from 198 to 200 No-substepping time integration at level 1 to 200 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000131547451 0.00119116134 and volume-weighted sum 15051.11523 Subtracting 4.899451596e-06 from rhs in subdomain 0 Sum after subtraction 0.02607703209 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001266479812 MLMG: Initial residual (resid0) = 0.0001266479812 MLMG: Final Iter. 2 resid, resid/bnorm = 7.660892152e-07, 0.006048965268 MLMG: Timers: Solve = 0.000773371 Iter = 0.000573721 Bottom = 5.8678e-05 Time in solve 0.001100118 Max/L2 norm of divergence after solve at level 1 : 5.459412932e-06 0.0002715753508 and volume-weighted sum 15051.1416 Time integration of scalars at level 1 from 198 to 200 with dt = 2 using RHS created at 198 Making slow rhs at time 200 for fast variables advancing from 198 to 200 No-substepping time integration at level 1 to 200 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001300405711 0.001179184881 and volume-weighted sum 15051.14648 Subtracting 4.899461601e-06 from rhs in subdomain 0 Sum after subtraction -0.0357395038 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001251411304 MLMG: Initial residual (resid0) = 0.0001251411304 MLMG: Final Iter. 2 resid, resid/bnorm = 7.66809535e-07, 0.006127558183 MLMG: Timers: Solve = 0.000727685 Iter = 0.000526196 Bottom = 5.5416e-05 Time in solve 0.001041896 Max/L2 norm of divergence after solve at level 1 : 5.451031029e-06 0.0002715709852 and volume-weighted sum 15051.12598 Time integration of scalars at level 1 from 198 to 200 with dt = 2 using RHS created at 200 Done with advance_dycore at level 1 [Level 1 step 100] Advanced 3072 cells Coarse STEP 100 ends. TIME = 200 DT = 2 Timestep time = 0.016663685 seconds. 3DPlotfile write time = 0.002913321 seconds. Coarse STEP 101 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.469375916 (terrain aware) 1.469375916 (terrain unaware) Anelastic dt at level 0 would be: 9.232331377 (terrain aware) 9.232331377 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2724644501 (terrain aware) 0.2724644501 (terrain unaware) Anelastic dt at level 1 would be: 4.371670717 (terrain aware) 4.371670717 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 101] ADVANCE from elapsed time = 200 to 202 with dt = 2 Making slow rhs at time 200 for fast variables advancing from 200 to 200.6666666667 Fast time integration at level 0 from 200 to 200.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 200 to 200.6666666667 with dt = 0.6666666666667 using RHS created at 200 Making slow rhs at time 200.6666666667 for fast variables advancing from 200 to 201 Fast time integration at level 0 from 200 to 200.5 with dt = 0.5 Fast time integration at level 0 from 200.5 to 201 with dt = 0.5 Time integration of scalars at level 0 from 200 to 201 with dt = 1 using RHS created at 200.6666666667 Making slow rhs at time 201 for fast variables advancing from 200 to 202 Fast time integration at level 0 from 200 to 200.5 with dt = 0.5 Fast time integration at level 0 from 200.5 to 201 with dt = 0.5 Fast time integration at level 0 from 201 to 201.5 with dt = 0.5 Fast time integration at level 0 from 201.5 to 202 with dt = 0.5 Time integration of scalars at level 0 from 200 to 202 with dt = 2 using RHS created at 201 Done with advance_dycore at level 0 [Level 0 step 101] Advanced 4096 cells [Level 1 step 101] ADVANCE from elapsed time = 200 to 202 with dt = 2 Making slow rhs at time 200 for fast variables advancing from 200 to 202 No-substepping time integration at level 1 to 202 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001350902021 0.001207498484 and volume-weighted sum 15789.49023 Subtracting 5.139807854e-06 from rhs in subdomain 0 Sum after subtraction -0.006635673344 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001299503929 MLMG: Initial residual (resid0) = 0.0001299503929 MLMG: Final Iter. 2 resid, resid/bnorm = 7.124144759e-07, 0.005482203327 MLMG: Timers: Solve = 0.000731352 Iter = 0.000527264 Bottom = 5.7218e-05 Time in solve 0.001062143 Max/L2 norm of divergence after solve at level 1 : 5.681067705e-06 0.0002848927106 and volume-weighted sum 15789.47559 Time integration of scalars at level 1 from 200 to 202 with dt = 2 using RHS created at 200 Making slow rhs at time 202 for fast variables advancing from 200 to 202 No-substepping time integration at level 1 to 202 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001335572451 0.001203749445 and volume-weighted sum 15789.5127 Subtracting 5.13981513e-06 from rhs in subdomain 0 Sum after subtraction -0.006868503988 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001284174359 MLMG: Initial residual (resid0) = 0.0001284174359 MLMG: Final Iter. 2 resid, resid/bnorm = 7.143971743e-07, 0.005563085433 MLMG: Timers: Solve = 0.000732388 Iter = 0.000531527 Bottom = 5.577e-05 Time in solve 0.001044832 Max/L2 norm of divergence after solve at level 1 : 5.676411092e-06 0.0002848916338 and volume-weighted sum 15789.49805 Time integration of scalars at level 1 from 200 to 202 with dt = 2 using RHS created at 202 Done with advance_dycore at level 1 [Level 1 step 101] Advanced 3072 cells Coarse STEP 101 ends. TIME = 202 DT = 2 Timestep time = 0.017126169 seconds. Coarse STEP 102 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.4648932 (terrain aware) 1.4648932 (terrain unaware) Anelastic dt at level 0 would be: 9.078953131 (terrain aware) 9.078953131 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2721342404 (terrain aware) 0.2721342404 (terrain unaware) Anelastic dt at level 1 would be: 4.30645519 (terrain aware) 4.30645519 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 102] ADVANCE from elapsed time = 202 to 204 with dt = 2 Making slow rhs at time 202 for fast variables advancing from 202 to 202.6666666667 Fast time integration at level 0 from 202 to 202.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 202 to 202.6666666667 with dt = 0.6666666666667 using RHS created at 202 Making slow rhs at time 202.6666666667 for fast variables advancing from 202 to 203 Fast time integration at level 0 from 202 to 202.5 with dt = 0.5 Fast time integration at level 0 from 202.5 to 203 with dt = 0.5 Time integration of scalars at level 0 from 202 to 203 with dt = 1 using RHS created at 202.6666666667 Making slow rhs at time 203 for fast variables advancing from 202 to 204 Fast time integration at level 0 from 202 to 202.5 with dt = 0.5 Fast time integration at level 0 from 202.5 to 203 with dt = 0.5 Fast time integration at level 0 from 203 to 203.5 with dt = 0.5 Fast time integration at level 0 from 203.5 to 204 with dt = 0.5 Time integration of scalars at level 0 from 202 to 204 with dt = 2 using RHS created at 203 Done with advance_dycore at level 0 [Level 0 step 102] Advanced 4096 cells [Level 1 step 102] ADVANCE from elapsed time = 202 to 204 with dt = 2 Making slow rhs at time 202 for fast variables advancing from 202 to 204 No-substepping time integration at level 1 to 204 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001364713535 0.001229275251 and volume-weighted sum 16566.49414 Subtracting 5.392738785e-06 from rhs in subdomain 0 Sum after subtraction -0.05064066499 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000131078632 MLMG: Initial residual (resid0) = 0.000131078632 MLMG: Final Iter. 2 resid, resid/bnorm = 6.52215931e-07, 0.004975760821 MLMG: Timers: Solve = 0.000738897 Iter = 0.000530586 Bottom = 5.7768e-05 Time in solve 0.001065889 Max/L2 norm of divergence after solve at level 1 : 5.918787792e-06 0.0002989086497 and volume-weighted sum 16566.46484 Time integration of scalars at level 1 from 202 to 204 with dt = 2 using RHS created at 202 Making slow rhs at time 204 for fast variables advancing from 202 to 204 No-substepping time integration at level 1 to 204 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001349663362 0.001228863606 and volume-weighted sum 16566.46484 Subtracting 5.392729236e-06 from rhs in subdomain 0 Sum after subtraction -0.05320180207 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001295736147 MLMG: Initial residual (resid0) = 0.0001295736147 MLMG: Final Iter. 2 resid, resid/bnorm = 6.568284334e-07, 0.005069152452 MLMG: Timers: Solve = 0.001018247 Iter = 0.000553295 Bottom = 5.6138e-05 Time in solve 0.00135335 Max/L2 norm of divergence after solve at level 1 : 5.919719115e-06 0.0002989093191 and volume-weighted sum 16566.47461 Time integration of scalars at level 1 from 202 to 204 with dt = 2 using RHS created at 204 Done with advance_dycore at level 1 [Level 1 step 102] Advanced 3072 cells Coarse STEP 102 ends. TIME = 204 DT = 2 Timestep time = 0.016766878 seconds. Coarse STEP 103 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.460598238 (terrain aware) 1.460598238 (terrain unaware) Anelastic dt at level 0 would be: 8.938092456 (terrain aware) 8.938092456 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2718015906 (terrain aware) 0.2718015906 (terrain unaware) Anelastic dt at level 1 would be: 4.235200521 (terrain aware) 4.235200521 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 103] ADVANCE from elapsed time = 204 to 206 with dt = 2 Making slow rhs at time 204 for fast variables advancing from 204 to 204.6666666667 Fast time integration at level 0 from 204 to 204.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 204 to 204.6666666667 with dt = 0.6666666666667 using RHS created at 204 Making slow rhs at time 204.6666666667 for fast variables advancing from 204 to 205 Fast time integration at level 0 from 204 to 204.5 with dt = 0.5 Fast time integration at level 0 from 204.5 to 205 with dt = 0.5 Time integration of scalars at level 0 from 204 to 205 with dt = 1 using RHS created at 204.6666666667 Making slow rhs at time 205 for fast variables advancing from 204 to 206 Fast time integration at level 0 from 204 to 204.5 with dt = 0.5 Fast time integration at level 0 from 204.5 to 205 with dt = 0.5 Fast time integration at level 0 from 205 to 205.5 with dt = 0.5 Fast time integration at level 0 from 205.5 to 206 with dt = 0.5 Time integration of scalars at level 0 from 204 to 206 with dt = 2 using RHS created at 205 Done with advance_dycore at level 0 [Level 0 step 103] Advanced 4096 cells [Level 1 step 103] ADVANCE from elapsed time = 204 to 206 with dt = 2 Making slow rhs at time 204 for fast variables advancing from 204 to 206 No-substepping time integration at level 1 to 206 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001355912536 0.001259238343 and volume-weighted sum 17273.63086 Subtracting 5.622926892e-06 from rhs in subdomain 0 Sum after subtraction 0.03166496754 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000132327521 MLMG: Initial residual (resid0) = 0.000132327521 MLMG: Final Iter. 2 resid, resid/bnorm = 5.873171176e-07, 0.004438359756 MLMG: Timers: Solve = 0.000745041 Iter = 0.000546404 Bottom = 5.548e-05 Time in solve 0.001061813 Max/L2 norm of divergence after solve at level 1 : 6.150687113e-06 0.0003116667212 and volume-weighted sum 17273.65039 Time integration of scalars at level 1 from 204 to 206 with dt = 2 using RHS created at 204 Making slow rhs at time 206 for fast variables advancing from 204 to 206 No-substepping time integration at level 1 to 206 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001341868192 0.001253997092 and volume-weighted sum 17273.62695 Subtracting 5.622925528e-06 from rhs in subdomain 0 Sum after subtraction 0.0004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001325230696 MLMG: Initial residual (resid0) = 0.0001325230696 MLMG: Final Iter. 2 resid, resid/bnorm = 5.950823834e-07, 0.004490405787 MLMG: Timers: Solve = 0.00074622 Iter = 0.000530608 Bottom = 5.4957e-05 Time in solve 0.001060264 Max/L2 norm of divergence after solve at level 1 : 6.146728992e-06 0.0003116672742 and volume-weighted sum 17273.63477 Time integration of scalars at level 1 from 204 to 206 with dt = 2 using RHS created at 206 Done with advance_dycore at level 1 [Level 1 step 103] Advanced 3072 cells Coarse STEP 103 ends. TIME = 206 DT = 2 Timestep time = 0.01626997 seconds. Coarse STEP 104 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.45659832 (terrain aware) 1.45659832 (terrain unaware) Anelastic dt at level 0 would be: 8.8121544 (terrain aware) 8.8121544 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2714675066 (terrain aware) 0.2714675066 (terrain unaware) Anelastic dt at level 1 would be: 4.169664619 (terrain aware) 4.169664619 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 104] ADVANCE from elapsed time = 206 to 208 with dt = 2 Making slow rhs at time 206 for fast variables advancing from 206 to 206.6666666667 Fast time integration at level 0 from 206 to 206.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 206 to 206.6666666667 with dt = 0.6666666666667 using RHS created at 206 Making slow rhs at time 206.6666666667 for fast variables advancing from 206 to 207 Fast time integration at level 0 from 206 to 206.5 with dt = 0.5 Fast time integration at level 0 from 206.5 to 207 with dt = 0.5 Time integration of scalars at level 0 from 206 to 207 with dt = 1 using RHS created at 206.6666666667 Making slow rhs at time 207 for fast variables advancing from 206 to 208 Fast time integration at level 0 from 206 to 206.5 with dt = 0.5 Fast time integration at level 0 from 206.5 to 207 with dt = 0.5 Fast time integration at level 0 from 207 to 207.5 with dt = 0.5 Fast time integration at level 0 from 207.5 to 208 with dt = 0.5 Time integration of scalars at level 0 from 206 to 208 with dt = 2 using RHS created at 207 Done with advance_dycore at level 0 [Level 0 step 104] Advanced 4096 cells [Level 1 step 104] ADVANCE from elapsed time = 206 to 208 with dt = 2 Making slow rhs at time 206 for fast variables advancing from 206 to 208 No-substepping time integration at level 1 to 208 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001340387389 0.001294893329 and volume-weighted sum 17736.48828 Subtracting 5.773596513e-06 from rhs in subdomain 0 Sum after subtraction 0.06286427379 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001355208224 MLMG: Initial residual (resid0) = 0.0001355208224 MLMG: Final Iter. 2 resid, resid/bnorm = 5.307556421e-07, 0.003916413989 MLMG: Timers: Solve = 0.000735656 Iter = 0.000536573 Bottom = 5.446e-05 Time in solve 0.001057336 Max/L2 norm of divergence after solve at level 1 : 6.302958354e-06 0.0003200205392 and volume-weighted sum 17736.52344 Time integration of scalars at level 1 from 206 to 208 with dt = 2 using RHS created at 206 Making slow rhs at time 208 for fast variables advancing from 206 to 208 No-substepping time integration at level 1 to 208 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001326324418 0.001278470503 and volume-weighted sum 17736.49023 Subtracting 5.773596968e-06 from rhs in subdomain 0 Sum after subtraction 0.002910383046 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001359883317 MLMG: Initial residual (resid0) = 0.0001359883317 MLMG: Final Iter. 2 resid, resid/bnorm = 5.486899681e-07, 0.004034831189 MLMG: Timers: Solve = 0.000917828 Iter = 0.000535223 Bottom = 5.7241e-05 Time in solve 0.001231461 Max/L2 norm of divergence after solve at level 1 : 6.320886314e-06 0.000320017949 and volume-weighted sum 17736.49414 Time integration of scalars at level 1 from 206 to 208 with dt = 2 using RHS created at 208 Done with advance_dycore at level 1 [Level 1 step 104] Advanced 3072 cells Coarse STEP 104 ends. TIME = 208 DT = 2 Timestep time = 0.016706433 seconds. Coarse STEP 105 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.452696004 (terrain aware) 1.452696004 (terrain unaware) Anelastic dt at level 0 would be: 8.689874877 (terrain aware) 8.689874877 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.27113305 (terrain aware) 0.27113305 (terrain unaware) Anelastic dt at level 1 would be: 4.102765857 (terrain aware) 4.102765857 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 105] ADVANCE from elapsed time = 208 to 210 with dt = 2 Making slow rhs at time 208 for fast variables advancing from 208 to 208.6666666667 Fast time integration at level 0 from 208 to 208.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 208 to 208.6666666667 with dt = 0.6666666666667 using RHS created at 208 Making slow rhs at time 208.6666666667 for fast variables advancing from 208 to 209 Fast time integration at level 0 from 208 to 208.5 with dt = 0.5 Fast time integration at level 0 from 208.5 to 209 with dt = 0.5 Time integration of scalars at level 0 from 208 to 209 with dt = 1 using RHS created at 208.6666666667 Making slow rhs at time 209 for fast variables advancing from 208 to 210 Fast time integration at level 0 from 208 to 208.5 with dt = 0.5 Fast time integration at level 0 from 208.5 to 209 with dt = 0.5 Fast time integration at level 0 from 209 to 209.5 with dt = 0.5 Fast time integration at level 0 from 209.5 to 210 with dt = 0.5 Time integration of scalars at level 0 from 208 to 210 with dt = 2 using RHS created at 209 Done with advance_dycore at level 0 [Level 0 step 105] Advanced 4096 cells [Level 1 step 105] ADVANCE from elapsed time = 208 to 210 with dt = 2 Making slow rhs at time 208 for fast variables advancing from 208 to 210 No-substepping time integration at level 1 to 210 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001354143023 0.001335227047 and volume-weighted sum 17830.82227 Subtracting 5.804304237e-06 from rhs in subdomain 0 Sum after subtraction -0.04819594324 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001382160117 MLMG: Initial residual (resid0) = 0.0001382160117 MLMG: Final Iter. 2 resid, resid/bnorm = 5.312367648e-07, 0.003843525425 MLMG: Timers: Solve = 0.000733863 Iter = 0.000530007 Bottom = 5.4413e-05 Time in solve 0.001051575 Max/L2 norm of divergence after solve at level 1 : 6.345333531e-06 0.0003217271005 and volume-weighted sum 17830.82617 Time integration of scalars at level 1 from 208 to 210 with dt = 2 using RHS created at 208 Making slow rhs at time 210 for fast variables advancing from 208 to 210 No-substepping time integration at level 1 to 210 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001338664442 0.001301732729 and volume-weighted sum 17830.83008 Subtracting 5.804306511e-06 from rhs in subdomain 0 Sum after subtraction -0.04307366908 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001386704971 MLMG: Initial residual (resid0) = 0.0001386704971 MLMG: Final Iter. 2 resid, resid/bnorm = 5.639922165e-07, 0.004067139234 MLMG: Timers: Solve = 0.000767228 Iter = 0.000538477 Bottom = 5.6695e-05 Time in solve 0.00108988 Max/L2 norm of divergence after solve at level 1 : 6.37746416e-06 0.0003217196791 and volume-weighted sum 17830.82227 Time integration of scalars at level 1 from 208 to 210 with dt = 2 using RHS created at 210 Done with advance_dycore at level 1 [Level 1 step 105] Advanced 3072 cells Coarse STEP 105 ends. TIME = 210 DT = 2 Timestep time = 0.016210226 seconds. Coarse STEP 106 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.448052951 (terrain aware) 1.448052951 (terrain unaware) Anelastic dt at level 0 would be: 8.556610814 (terrain aware) 8.556610814 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2707852197 (terrain aware) 0.2707852197 (terrain unaware) Anelastic dt at level 1 would be: 4.032700598 (terrain aware) 4.032700598 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 106] ADVANCE from elapsed time = 210 to 212 with dt = 2 Making slow rhs at time 210 for fast variables advancing from 210 to 210.6666666667 Fast time integration at level 0 from 210 to 210.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 210 to 210.6666666667 with dt = 0.6666666666667 using RHS created at 210 Making slow rhs at time 210.6666666667 for fast variables advancing from 210 to 211 Fast time integration at level 0 from 210 to 210.5 with dt = 0.5 Fast time integration at level 0 from 210.5 to 211 with dt = 0.5 Time integration of scalars at level 0 from 210 to 211 with dt = 1 using RHS created at 210.6666666667 Making slow rhs at time 211 for fast variables advancing from 210 to 212 Fast time integration at level 0 from 210 to 210.5 with dt = 0.5 Fast time integration at level 0 from 210.5 to 211 with dt = 0.5 Fast time integration at level 0 from 211 to 211.5 with dt = 0.5 Fast time integration at level 0 from 211.5 to 212 with dt = 0.5 Time integration of scalars at level 0 from 210 to 212 with dt = 2 using RHS created at 211 Done with advance_dycore at level 0 [Level 0 step 106] Advanced 4096 cells [Level 1 step 106] ADVANCE from elapsed time = 210 to 212 with dt = 2 Making slow rhs at time 210 for fast variables advancing from 210 to 212 No-substepping time integration at level 1 to 212 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000139310956 0.001373630599 and volume-weighted sum 17496.20898 Subtracting 5.695380423e-06 from rhs in subdomain 0 Sum after subtraction 0.05052424967 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001412680285 MLMG: Initial residual (resid0) = 0.0001412680285 MLMG: Final Iter. 2 resid, resid/bnorm = 6.90237357e-07, 0.004886012524 MLMG: Timers: Solve = 0.000802045 Iter = 0.000532983 Bottom = 5.4205e-05 Time in solve 0.00113283 Max/L2 norm of divergence after solve at level 1 : 6.384914741e-06 0.000315695419 and volume-weighted sum 17496.19336 Time integration of scalars at level 1 from 210 to 212 with dt = 2 using RHS created at 210 Making slow rhs at time 212 for fast variables advancing from 210 to 212 No-substepping time integration at level 1 to 212 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001377901062 0.001323637203 and volume-weighted sum 17496.20508 Subtracting 5.695379059e-06 from rhs in subdomain 0 Sum after subtraction 0.07380731404 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001419516193 MLMG: Initial residual (resid0) = 0.0001419516193 MLMG: Final Iter. 2 resid, resid/bnorm = 5.781830623e-07, 0.004073099233 MLMG: Timers: Solve = 0.000869612 Iter = 0.000540487 Bottom = 5.7613e-05 Time in solve 0.001213548 Max/L2 norm of divergence after solve at level 1 : 6.280606613e-06 0.0003156827297 and volume-weighted sum 17496.22266 Time integration of scalars at level 1 from 210 to 212 with dt = 2 using RHS created at 212 Done with advance_dycore at level 1 [Level 1 step 106] Advanced 3072 cells Coarse STEP 106 ends. TIME = 212 DT = 2 Timestep time = 0.016990709 seconds. Coarse STEP 107 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.443752774 (terrain aware) 1.443752774 (terrain unaware) Anelastic dt at level 0 would be: 8.396617049 (terrain aware) 8.396617049 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2704367746 (terrain aware) 0.2704367746 (terrain unaware) Anelastic dt at level 1 would be: 3.967415035 (terrain aware) 3.967415035 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 107] ADVANCE from elapsed time = 212 to 214 with dt = 2 Making slow rhs at time 212 for fast variables advancing from 212 to 212.6666666667 Fast time integration at level 0 from 212 to 212.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 212 to 212.6666666667 with dt = 0.6666666666667 using RHS created at 212 Making slow rhs at time 212.6666666667 for fast variables advancing from 212 to 213 Fast time integration at level 0 from 212 to 212.5 with dt = 0.5 Fast time integration at level 0 from 212.5 to 213 with dt = 0.5 Time integration of scalars at level 0 from 212 to 213 with dt = 1 using RHS created at 212.6666666667 Making slow rhs at time 213 for fast variables advancing from 212 to 214 Fast time integration at level 0 from 212 to 212.5 with dt = 0.5 Fast time integration at level 0 from 212.5 to 213 with dt = 0.5 Fast time integration at level 0 from 213 to 213.5 with dt = 0.5 Fast time integration at level 0 from 213.5 to 214 with dt = 0.5 Time integration of scalars at level 0 from 212 to 214 with dt = 2 using RHS created at 213 Done with advance_dycore at level 0 [Level 0 step 107] Advanced 4096 cells [Level 1 step 107] ADVANCE from elapsed time = 212 to 214 with dt = 2 Making slow rhs at time 212 for fast variables advancing from 212 to 214 No-substepping time integration at level 1 to 214 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001407824457 0.001390531193 and volume-weighted sum 16747.81445 Subtracting 5.451762718e-06 from rhs in subdomain 0 Sum after subtraction -0.01816079021 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001441135828 MLMG: Initial residual (resid0) = 0.0001441135828 MLMG: Final Iter. 1 resid, resid/bnorm = 9.619237971e-06, 0.06674761325 MLMG: Timers: Solve = 0.000521646 Iter = 0.000321454 Bottom = 2.9154e-05 Time in solve 0.000844189 Max/L2 norm of divergence after solve at level 1 : 1.506879926e-05 0.0003094907443 and volume-weighted sum 16747.8457 Time integration of scalars at level 1 from 212 to 214 with dt = 2 using RHS created at 212 Making slow rhs at time 214 for fast variables advancing from 212 to 214 No-substepping time integration at level 1 to 214 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001382185146 0.001314650406 and volume-weighted sum 16747.83984 Subtracting 5.451770903e-06 from rhs in subdomain 0 Sum after subtraction 0.01210719347 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001408921526 MLMG: Initial residual (resid0) = 0.0001408921526 MLMG: Final Iter. 1 resid, resid/bnorm = 9.164577932e-06, 0.06504675746 MLMG: Timers: Solve = 0.000545454 Iter = 0.000342179 Bottom = 3.0776e-05 Time in solve 0.000856825 Max/L2 norm of divergence after solve at level 1 : 1.461990178e-05 0.0003074310371 and volume-weighted sum 16747.82031 Time integration of scalars at level 1 from 212 to 214 with dt = 2 using RHS created at 214 Done with advance_dycore at level 1 [Level 1 step 107] Advanced 3072 cells Coarse STEP 107 ends. TIME = 214 DT = 2 Timestep time = 0.015752683 seconds. Coarse STEP 108 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.43982751 (terrain aware) 1.43982751 (terrain unaware) Anelastic dt at level 0 would be: 8.251008268 (terrain aware) 8.251008268 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2700889443 (terrain aware) 0.2700889443 (terrain unaware) Anelastic dt at level 1 would be: 3.911650719 (terrain aware) 3.911650719 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 108] ADVANCE from elapsed time = 214 to 216 with dt = 2 Making slow rhs at time 214 for fast variables advancing from 214 to 214.6666666667 Fast time integration at level 0 from 214 to 214.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 214 to 214.6666666667 with dt = 0.6666666666667 using RHS created at 214 Making slow rhs at time 214.6666666667 for fast variables advancing from 214 to 215 Fast time integration at level 0 from 214 to 214.5 with dt = 0.5 Fast time integration at level 0 from 214.5 to 215 with dt = 0.5 Time integration of scalars at level 0 from 214 to 215 with dt = 1 using RHS created at 214.6666666667 Making slow rhs at time 215 for fast variables advancing from 214 to 216 Fast time integration at level 0 from 214 to 214.5 with dt = 0.5 Fast time integration at level 0 from 214.5 to 215 with dt = 0.5 Fast time integration at level 0 from 215 to 215.5 with dt = 0.5 Fast time integration at level 0 from 215.5 to 216 with dt = 0.5 Time integration of scalars at level 0 from 214 to 216 with dt = 2 using RHS created at 215 Done with advance_dycore at level 0 [Level 0 step 108] Advanced 4096 cells [Level 1 step 108] ADVANCE from elapsed time = 214 to 216 with dt = 2 Making slow rhs at time 214 for fast variables advancing from 214 to 216 No-substepping time integration at level 1 to 216 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001396797597 0.001332682441 and volume-weighted sum 15787.2998 Subtracting 5.13909481e-06 from rhs in subdomain 0 Sum after subtraction 0.1003500074 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001445236558 MLMG: Initial residual (resid0) = 0.0001445236558 MLMG: Final Iter. 1 resid, resid/bnorm = 8.395341865e-06, 0.05808974057 MLMG: Timers: Solve = 0.00052588 Iter = 0.000317278 Bottom = 3.0194e-05 Time in solve 0.00084609 Max/L2 norm of divergence after solve at level 1 : 1.296028495e-05 0.0002910275653 and volume-weighted sum 15787.30566 Time integration of scalars at level 1 from 214 to 216 with dt = 2 using RHS created at 214 Making slow rhs at time 216 for fast variables advancing from 214 to 216 No-substepping time integration at level 1 to 216 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001418283209 0.001336914604 and volume-weighted sum 15787.2998 Subtracting 5.13909481e-06 from rhs in subdomain 0 Sum after subtraction 0.09150244296 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001469674462 MLMG: Initial residual (resid0) = 0.0001469674462 MLMG: Final Iter. 1 resid, resid/bnorm = 8.813666682e-06, 0.05997019634 MLMG: Timers: Solve = 0.000529893 Iter = 0.000319516 Bottom = 3.0332e-05 Time in solve 0.000961302 Max/L2 norm of divergence after solve at level 1 : 1.395121217e-05 0.0002905273868 and volume-weighted sum 15787.32617 Time integration of scalars at level 1 from 214 to 216 with dt = 2 using RHS created at 216 Done with advance_dycore at level 1 [Level 1 step 108] Advanced 3072 cells Coarse STEP 108 ends. TIME = 216 DT = 2 Timestep time = 0.016231549 seconds. Coarse STEP 109 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.436310836 (terrain aware) 1.436310836 (terrain unaware) Anelastic dt at level 0 would be: 8.119717715 (terrain aware) 8.119717715 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2697433491 (terrain aware) 0.2697433491 (terrain unaware) Anelastic dt at level 1 would be: 3.855785372 (terrain aware) 3.855785372 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 109] ADVANCE from elapsed time = 216 to 218 with dt = 2 Making slow rhs at time 216 for fast variables advancing from 216 to 216.6666666667 Fast time integration at level 0 from 216 to 216.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 216 to 216.6666666667 with dt = 0.6666666666667 using RHS created at 216 Making slow rhs at time 216.6666666667 for fast variables advancing from 216 to 217 Fast time integration at level 0 from 216 to 216.5 with dt = 0.5 Fast time integration at level 0 from 216.5 to 217 with dt = 0.5 Time integration of scalars at level 0 from 216 to 217 with dt = 1 using RHS created at 216.6666666667 Making slow rhs at time 217 for fast variables advancing from 216 to 218 Fast time integration at level 0 from 216 to 216.5 with dt = 0.5 Fast time integration at level 0 from 216.5 to 217 with dt = 0.5 Fast time integration at level 0 from 217 to 217.5 with dt = 0.5 Fast time integration at level 0 from 217.5 to 218 with dt = 0.5 Time integration of scalars at level 0 from 216 to 218 with dt = 2 using RHS created at 217 Done with advance_dycore at level 0 [Level 0 step 109] Advanced 4096 cells [Level 1 step 109] ADVANCE from elapsed time = 216 to 218 with dt = 2 Making slow rhs at time 216 for fast variables advancing from 216 to 218 No-substepping time integration at level 1 to 218 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001423144713 0.001368210767 and volume-weighted sum 14777.74023 Subtracting 4.810462542e-06 from rhs in subdomain 0 Sum after subtraction -0.04353933036 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001471249125 MLMG: Initial residual (resid0) = 0.0001471249125 MLMG: Final Iter. 1 resid, resid/bnorm = 9.044324543e-06, 0.06147377938 MLMG: Timers: Solve = 0.000684515 Iter = 0.00031653 Bottom = 3.1743e-05 Time in solve 0.001003615 Max/L2 norm of divergence after solve at level 1 : 1.320429146e-05 0.0002731797867 and volume-weighted sum 14777.71484 Time integration of scalars at level 1 from 216 to 218 with dt = 2 using RHS created at 216 Making slow rhs at time 218 for fast variables advancing from 216 to 218 No-substepping time integration at level 1 to 218 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001437021419 0.001356953406 and volume-weighted sum 14777.74609 Subtracting 4.810464361e-06 from rhs in subdomain 0 Sum after subtraction -0.02537854016 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001485125977 MLMG: Initial residual (resid0) = 0.0001485125977 MLMG: Final Iter. 1 resid, resid/bnorm = 9.066829989e-06, 0.06105091423 MLMG: Timers: Solve = 0.000518858 Iter = 0.000313184 Bottom = 3.0047e-05 Time in solve 0.000848022 Max/L2 norm of divergence after solve at level 1 : 1.388182864e-05 0.0002727738174 and volume-weighted sum 14777.75293 Time integration of scalars at level 1 from 216 to 218 with dt = 2 using RHS created at 218 Done with advance_dycore at level 1 [Level 1 step 109] Advanced 3072 cells Coarse STEP 109 ends. TIME = 218 DT = 2 Timestep time = 0.015867668 seconds. Coarse STEP 110 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.433254459 (terrain aware) 1.433254459 (terrain unaware) Anelastic dt at level 0 would be: 8.00297904 (terrain aware) 8.00297904 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2694003989 (terrain aware) 0.2694003989 (terrain unaware) Anelastic dt at level 1 would be: 3.794186953 (terrain aware) 3.794186953 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 110] ADVANCE from elapsed time = 218 to 220 with dt = 2 Making slow rhs at time 218 for fast variables advancing from 218 to 218.6666666667 Fast time integration at level 0 from 218 to 218.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 218 to 218.6666666667 with dt = 0.6666666666667 using RHS created at 218 Making slow rhs at time 218.6666666667 for fast variables advancing from 218 to 219 Fast time integration at level 0 from 218 to 218.5 with dt = 0.5 Fast time integration at level 0 from 218.5 to 219 with dt = 0.5 Time integration of scalars at level 0 from 218 to 219 with dt = 1 using RHS created at 218.6666666667 Making slow rhs at time 219 for fast variables advancing from 218 to 220 Fast time integration at level 0 from 218 to 218.5 with dt = 0.5 Fast time integration at level 0 from 218.5 to 219 with dt = 0.5 Fast time integration at level 0 from 219 to 219.5 with dt = 0.5 Fast time integration at level 0 from 219.5 to 220 with dt = 0.5 Time integration of scalars at level 0 from 218 to 220 with dt = 2 using RHS created at 219 Done with advance_dycore at level 0 [Level 0 step 110] Advanced 4096 cells [Level 1 step 110] ADVANCE from elapsed time = 218 to 220 with dt = 2 Making slow rhs at time 218 for fast variables advancing from 218 to 220 No-substepping time integration at level 1 to 220 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001402497292 0.001386599382 and volume-weighted sum 13904.47852 Subtracting 4.526197245e-06 from rhs in subdomain 0 Sum after subtraction -0.02840533853 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001447759132 MLMG: Initial residual (resid0) = 0.0001447759132 MLMG: Final Iter. 1 resid, resid/bnorm = 9.601701095e-06, 0.06632111967 MLMG: Timers: Solve = 0.000883391 Iter = 0.000646264 Bottom = 8.0393e-05 Time in solve 0.001264743 Max/L2 norm of divergence after solve at level 1 : 1.385714859e-05 0.0002581249282 and volume-weighted sum 13904.4707 Time integration of scalars at level 1 from 218 to 220 with dt = 2 using RHS created at 218 Making slow rhs at time 220 for fast variables advancing from 218 to 220 No-substepping time integration at level 1 to 220 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001420781482 0.001379671274 and volume-weighted sum 13904.47266 Subtracting 4.526195426e-06 from rhs in subdomain 0 Sum after subtraction -0.02840533853 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001465528767 MLMG: Initial residual (resid0) = 0.0001465528767 MLMG: Final Iter. 1 resid, resid/bnorm = 9.363860954e-06, 0.06389407814 MLMG: Timers: Solve = 0.00052716 Iter = 0.000327654 Bottom = 3.1473e-05 Time in solve 0.000846715 Max/L2 norm of divergence after solve at level 1 : 1.386553049e-05 0.0002575031831 and volume-weighted sum 13904.50488 Time integration of scalars at level 1 from 218 to 220 with dt = 2 using RHS created at 220 Done with advance_dycore at level 1 [Level 1 step 110] Advanced 3072 cells Coarse STEP 110 ends. TIME = 220 DT = 2 Timestep time = 0.016421473 seconds. Coarse STEP 111 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.428879776 (terrain aware) 1.428879776 (terrain unaware) Anelastic dt at level 0 would be: 7.901062252 (terrain aware) 7.901062252 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2690612671 (terrain aware) 0.2690612671 (terrain unaware) Anelastic dt at level 1 would be: 3.738737349 (terrain aware) 3.738737349 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 111] ADVANCE from elapsed time = 220 to 222 with dt = 2 Making slow rhs at time 220 for fast variables advancing from 220 to 220.6666666667 Fast time integration at level 0 from 220 to 220.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 220 to 220.6666666667 with dt = 0.6666666666667 using RHS created at 220 Making slow rhs at time 220.6666666667 for fast variables advancing from 220 to 221 Fast time integration at level 0 from 220 to 220.5 with dt = 0.5 Fast time integration at level 0 from 220.5 to 221 with dt = 0.5 Time integration of scalars at level 0 from 220 to 221 with dt = 1 using RHS created at 220.6666666667 Making slow rhs at time 221 for fast variables advancing from 220 to 222 Fast time integration at level 0 from 220 to 220.5 with dt = 0.5 Fast time integration at level 0 from 220.5 to 221 with dt = 0.5 Fast time integration at level 0 from 221 to 221.5 with dt = 0.5 Fast time integration at level 0 from 221.5 to 222 with dt = 0.5 Time integration of scalars at level 0 from 220 to 222 with dt = 2 using RHS created at 221 Done with advance_dycore at level 0 [Level 0 step 111] Advanced 4096 cells [Level 1 step 111] ADVANCE from elapsed time = 220 to 222 with dt = 2 Making slow rhs at time 220 for fast variables advancing from 220 to 222 No-substepping time integration at level 1 to 222 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001452255528 0.001406281255 and volume-weighted sum 13268.54199 Subtracting 4.319186701e-06 from rhs in subdomain 0 Sum after subtraction -0.05215406418 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001495402976 MLMG: Initial residual (resid0) = 0.0001495402976 MLMG: Final Iter. 2 resid, resid/bnorm = 6.318969099e-07, 0.00422559632 MLMG: Timers: Solve = 0.000890521 Iter = 0.000536353 Bottom = 5.8034e-05 Time in solve 0.001221167 Max/L2 norm of divergence after solve at level 1 : 4.94485721e-06 0.0002394134353 and volume-weighted sum 13268.54883 Time integration of scalars at level 1 from 220 to 222 with dt = 2 using RHS created at 220 Making slow rhs at time 222 for fast variables advancing from 220 to 222 No-substepping time integration at level 1 to 222 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001534842886 0.001435876824 and volume-weighted sum 13268.5625 Subtracting 4.319193522e-06 from rhs in subdomain 0 Sum after subtraction -0.02817250788 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001526630367 MLMG: Initial residual (resid0) = 0.0001526630367 MLMG: Final Iter. 2 resid, resid/bnorm = 6.36952791e-07, 0.004172279034 MLMG: Timers: Solve = 0.000735899 Iter = 0.000531185 Bottom = 5.6316e-05 Time in solve 0.00104983 Max/L2 norm of divergence after solve at level 1 : 4.962552339e-06 0.0002394124749 and volume-weighted sum 13268.55078 Time integration of scalars at level 1 from 220 to 222 with dt = 2 using RHS created at 222 Done with advance_dycore at level 1 [Level 1 step 111] Advanced 3072 cells Coarse STEP 111 ends. TIME = 222 DT = 2 Timestep time = 0.017042654 seconds. Coarse STEP 112 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.424058058 (terrain aware) 1.424058058 (terrain unaware) Anelastic dt at level 0 would be: 7.814083579 (terrain aware) 7.814083579 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2687131946 (terrain aware) 0.2687131946 (terrain unaware) Anelastic dt at level 1 would be: 3.67902482 (terrain aware) 3.67902482 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 112] ADVANCE from elapsed time = 222 to 224 with dt = 2 Making slow rhs at time 222 for fast variables advancing from 222 to 222.6666666667 Fast time integration at level 0 from 222 to 222.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 222 to 222.6666666667 with dt = 0.6666666666667 using RHS created at 222 Making slow rhs at time 222.6666666667 for fast variables advancing from 222 to 223 Fast time integration at level 0 from 222 to 222.5 with dt = 0.5 Fast time integration at level 0 from 222.5 to 223 with dt = 0.5 Time integration of scalars at level 0 from 222 to 223 with dt = 1 using RHS created at 222.6666666667 Making slow rhs at time 223 for fast variables advancing from 222 to 224 Fast time integration at level 0 from 222 to 222.5 with dt = 0.5 Fast time integration at level 0 from 222.5 to 223 with dt = 0.5 Fast time integration at level 0 from 223 to 223.5 with dt = 0.5 Fast time integration at level 0 from 223.5 to 224 with dt = 0.5 Time integration of scalars at level 0 from 222 to 224 with dt = 2 using RHS created at 223 Done with advance_dycore at level 0 [Level 0 step 112] Advanced 4096 cells [Level 1 step 112] ADVANCE from elapsed time = 222 to 224 with dt = 2 Making slow rhs at time 222 for fast variables advancing from 222 to 224 No-substepping time integration at level 1 to 224 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001607420854 0.001504941727 and volume-weighted sum 12920.76367 Subtracting 4.205977802e-06 from rhs in subdomain 0 Sum after subtraction 0 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001584059937 MLMG: Initial residual (resid0) = 0.0001584059937 MLMG: Final Iter. 2 resid, resid/bnorm = 6.909999684e-07, 0.004362208303 MLMG: Timers: Solve = 0.000911718 Iter = 0.000531904 Bottom = 5.8041e-05 Time in solve 0.001278477 Max/L2 norm of divergence after solve at level 1 : 4.892237484e-06 0.0002331491851 and volume-weighted sum 12920.72852 Time integration of scalars at level 1 from 222 to 224 with dt = 2 using RHS created at 222 Making slow rhs at time 224 for fast variables advancing from 222 to 224 No-substepping time integration at level 1 to 224 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001639463007 0.001462954562 and volume-weighted sum 12920.74707 Subtracting 4.205972346e-06 from rhs in subdomain 0 Sum after subtraction -0.0533182174 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001597403461 MLMG: Initial residual (resid0) = 0.0001597403461 MLMG: Final Iter. 2 resid, resid/bnorm = 6.522668627e-07, 0.004083294421 MLMG: Timers: Solve = 0.000937012 Iter = 0.000737094 Bottom = 9.9492e-05 Time in solve 0.001255359 Max/L2 norm of divergence after solve at level 1 : 4.856847227e-06 0.0002331382129 and volume-weighted sum 12920.7373 Time integration of scalars at level 1 from 222 to 224 with dt = 2 using RHS created at 224 Done with advance_dycore at level 1 [Level 1 step 112] Advanced 3072 cells Coarse STEP 112 ends. TIME = 224 DT = 2 Timestep time = 0.016712623 seconds. Coarse STEP 113 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.419416794 (terrain aware) 1.419416794 (terrain unaware) Anelastic dt at level 0 would be: 7.740143422 (terrain aware) 7.740143422 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2683527914 (terrain aware) 0.2683527914 (terrain unaware) Anelastic dt at level 1 would be: 3.624683863 (terrain aware) 3.624683863 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 113] ADVANCE from elapsed time = 224 to 226 with dt = 2 Making slow rhs at time 224 for fast variables advancing from 224 to 224.6666666667 Fast time integration at level 0 from 224 to 224.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 224 to 224.6666666667 with dt = 0.6666666666667 using RHS created at 224 Making slow rhs at time 224.6666666667 for fast variables advancing from 224 to 225 Fast time integration at level 0 from 224 to 224.5 with dt = 0.5 Fast time integration at level 0 from 224.5 to 225 with dt = 0.5 Time integration of scalars at level 0 from 224 to 225 with dt = 1 using RHS created at 224.6666666667 Making slow rhs at time 225 for fast variables advancing from 224 to 226 Fast time integration at level 0 from 224 to 224.5 with dt = 0.5 Fast time integration at level 0 from 224.5 to 225 with dt = 0.5 Fast time integration at level 0 from 225 to 225.5 with dt = 0.5 Fast time integration at level 0 from 225.5 to 226 with dt = 0.5 Time integration of scalars at level 0 from 224 to 226 with dt = 2 using RHS created at 225 Done with advance_dycore at level 0 [Level 0 step 113] Advanced 4096 cells [Level 1 step 113] ADVANCE from elapsed time = 224 to 226 with dt = 2 Making slow rhs at time 224 for fast variables advancing from 224 to 226 No-substepping time integration at level 1 to 226 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001684664749 0.001516384771 and volume-weighted sum 12917.10352 Subtracting 4.204786364e-06 from rhs in subdomain 0 Sum after subtraction -0.03934837878 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000164261699 MLMG: Initial residual (resid0) = 0.000164261699 MLMG: Final Iter. 2 resid, resid/bnorm = 6.822747309e-07, 0.004153583664 MLMG: Timers: Solve = 0.000862337 Iter = 0.000587802 Bottom = 5.9487e-05 Time in solve 0.001284693 Max/L2 norm of divergence after solve at level 1 : 4.887580872e-06 0.0002330892603 and volume-weighted sum 12917.07715 Time integration of scalars at level 1 from 224 to 226 with dt = 2 using RHS created at 224 Making slow rhs at time 226 for fast variables advancing from 224 to 226 No-substepping time integration at level 1 to 226 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001729391515 0.001493554679 and volume-weighted sum 12917.08887 Subtracting 4.204781362e-06 from rhs in subdomain 0 Sum after subtraction 0.01071020961 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001687343756 MLMG: Initial residual (resid0) = 0.0001687343756 MLMG: Final Iter. 2 resid, resid/bnorm = 6.668269634e-07, 0.003951933235 MLMG: Timers: Solve = 0.000743353 Iter = 0.000540296 Bottom = 5.5443e-05 Time in solve 0.001119044 Max/L2 norm of divergence after solve at level 1 : 4.872214049e-06 0.0002330731368 and volume-weighted sum 12917.09766 Time integration of scalars at level 1 from 224 to 226 with dt = 2 using RHS created at 226 Done with advance_dycore at level 1 [Level 1 step 113] Advanced 3072 cells Coarse STEP 113 ends. TIME = 226 DT = 2 Timestep time = 0.016460813 seconds. Coarse STEP 114 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.415003964 (terrain aware) 1.415003964 (terrain unaware) Anelastic dt at level 0 would be: 7.619164473 (terrain aware) 7.619164473 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2679977526 (terrain aware) 0.2679977526 (terrain unaware) Anelastic dt at level 1 would be: 3.580777592 (terrain aware) 3.580777592 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 114] ADVANCE from elapsed time = 226 to 228 with dt = 2 Making slow rhs at time 226 for fast variables advancing from 226 to 226.6666666667 Fast time integration at level 0 from 226 to 226.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 226 to 226.6666666667 with dt = 0.6666666666667 using RHS created at 226 Making slow rhs at time 226.6666666667 for fast variables advancing from 226 to 227 Fast time integration at level 0 from 226 to 226.5 with dt = 0.5 Fast time integration at level 0 from 226.5 to 227 with dt = 0.5 Time integration of scalars at level 0 from 226 to 227 with dt = 1 using RHS created at 226.6666666667 Making slow rhs at time 227 for fast variables advancing from 226 to 228 Fast time integration at level 0 from 226 to 226.5 with dt = 0.5 Fast time integration at level 0 from 226.5 to 227 with dt = 0.5 Fast time integration at level 0 from 227 to 227.5 with dt = 0.5 Fast time integration at level 0 from 227.5 to 228 with dt = 0.5 Time integration of scalars at level 0 from 226 to 228 with dt = 2 using RHS created at 227 Done with advance_dycore at level 0 [Level 0 step 114] Advanced 4096 cells [Level 1 step 114] ADVANCE from elapsed time = 226 to 228 with dt = 2 Making slow rhs at time 226 for fast variables advancing from 226 to 228 No-substepping time integration at level 1 to 228 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001758288126 0.00154773274 and volume-weighted sum 13228.87598 Subtracting 4.306274604e-06 from rhs in subdomain 0 Sum after subtraction -0.07380731404 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001715225662 MLMG: Initial residual (resid0) = 0.0001715225662 MLMG: Final Iter. 2 resid, resid/bnorm = 6.961972758e-07, 0.004058925435 MLMG: Timers: Solve = 0.000736089 Iter = 0.000539384 Bottom = 5.9579e-05 Time in solve 0.001055169 Max/L2 norm of divergence after solve at level 1 : 4.998873919e-06 0.0002387149871 and volume-weighted sum 13228.90918 Time integration of scalars at level 1 from 226 to 228 with dt = 2 using RHS created at 226 Making slow rhs at time 228 for fast variables advancing from 226 to 228 No-substepping time integration at level 1 to 228 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001816749573 0.001526832697 and volume-weighted sum 13228.90137 Subtracting 4.30628279e-06 from rhs in subdomain 0 Sum after subtraction 0.0002328306437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001773686672 MLMG: Initial residual (resid0) = 0.0001773686672 MLMG: Final Iter. 2 resid, resid/bnorm = 6.782602213e-07, 0.003824013751 MLMG: Timers: Solve = 0.000902233 Iter = 0.000695622 Bottom = 5.6442e-05 Time in solve 0.001230196 Max/L2 norm of divergence after solve at level 1 : 4.979781806e-06 0.0002386988344 and volume-weighted sum 13228.88574 Time integration of scalars at level 1 from 226 to 228 with dt = 2 using RHS created at 228 Done with advance_dycore at level 1 [Level 1 step 114] Advanced 3072 cells Coarse STEP 114 ends. TIME = 228 DT = 2 Timestep time = 0.016588425 seconds. Coarse STEP 115 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.410884687 (terrain aware) 1.410884687 (terrain unaware) Anelastic dt at level 0 would be: 7.498817928 (terrain aware) 7.498817928 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2676504811 (terrain aware) 0.2676504811 (terrain unaware) Anelastic dt at level 1 would be: 3.528006918 (terrain aware) 3.528006918 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 115] ADVANCE from elapsed time = 228 to 230 with dt = 2 Making slow rhs at time 228 for fast variables advancing from 228 to 228.6666666667 Fast time integration at level 0 from 228 to 228.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 228 to 228.6666666667 with dt = 0.6666666666667 using RHS created at 228 Making slow rhs at time 228.6666666667 for fast variables advancing from 228 to 229 Fast time integration at level 0 from 228 to 228.5 with dt = 0.5 Fast time integration at level 0 from 228.5 to 229 with dt = 0.5 Time integration of scalars at level 0 from 228 to 229 with dt = 1 using RHS created at 228.6666666667 Making slow rhs at time 229 for fast variables advancing from 228 to 230 Fast time integration at level 0 from 228 to 228.5 with dt = 0.5 Fast time integration at level 0 from 228.5 to 229 with dt = 0.5 Fast time integration at level 0 from 229 to 229.5 with dt = 0.5 Fast time integration at level 0 from 229.5 to 230 with dt = 0.5 Time integration of scalars at level 0 from 228 to 230 with dt = 2 using RHS created at 229 Done with advance_dycore at level 0 [Level 0 step 115] Advanced 4096 cells [Level 1 step 115] ADVANCE from elapsed time = 228 to 230 with dt = 2 Making slow rhs at time 228 for fast variables advancing from 228 to 230 No-substepping time integration at level 1 to 230 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001881598728 0.001574814902 and volume-weighted sum 13825.24902 Subtracting 4.500406703e-06 from rhs in subdomain 0 Sum after subtraction -0.02444721758 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001836594747 MLMG: Initial residual (resid0) = 0.0001836594747 MLMG: Final Iter. 2 resid, resid/bnorm = 7.098624337e-07, 0.003865101142 MLMG: Timers: Solve = 0.000746183 Iter = 0.00054566 Bottom = 7.0022e-05 Time in solve 0.001071067 Max/L2 norm of divergence after solve at level 1 : 5.21633774e-06 0.0002494684013 and volume-weighted sum 13825.25293 Time integration of scalars at level 1 from 228 to 230 with dt = 2 using RHS created at 228 Making slow rhs at time 230 for fast variables advancing from 228 to 230 No-substepping time integration at level 1 to 230 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0001949596917 0.001563042635 and volume-weighted sum 13825.26172 Subtracting 4.500410796e-06 from rhs in subdomain 0 Sum after subtraction -0.02468004823 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001904592937 MLMG: Initial residual (resid0) = 0.0001904592937 MLMG: Final Iter. 2 resid, resid/bnorm = 6.868713172e-07, 0.003606394399 MLMG: Timers: Solve = 0.000734054 Iter = 0.000534455 Bottom = 5.5712e-05 Time in solve 0.001044806 Max/L2 norm of divergence after solve at level 1 : 5.193520337e-06 0.0002494583023 and volume-weighted sum 13825.25098 Time integration of scalars at level 1 from 228 to 230 with dt = 2 using RHS created at 230 Done with advance_dycore at level 1 [Level 1 step 115] Advanced 3072 cells Coarse STEP 115 ends. TIME = 230 DT = 2 Timestep time = 0.016304544 seconds. Coarse STEP 116 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.407141516 (terrain aware) 1.407141516 (terrain unaware) Anelastic dt at level 0 would be: 7.382324228 (terrain aware) 7.382324228 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2673123178 (terrain aware) 0.2673123178 (terrain unaware) Anelastic dt at level 1 would be: 3.477429696 (terrain aware) 3.477429696 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 116] ADVANCE from elapsed time = 230 to 232 with dt = 2 Making slow rhs at time 230 for fast variables advancing from 230 to 230.6666666667 Fast time integration at level 0 from 230 to 230.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 230 to 230.6666666667 with dt = 0.6666666666667 using RHS created at 230 Making slow rhs at time 230.6666666667 for fast variables advancing from 230 to 231 Fast time integration at level 0 from 230 to 230.5 with dt = 0.5 Fast time integration at level 0 from 230.5 to 231 with dt = 0.5 Time integration of scalars at level 0 from 230 to 231 with dt = 1 using RHS created at 230.6666666667 Making slow rhs at time 231 for fast variables advancing from 230 to 232 Fast time integration at level 0 from 230 to 230.5 with dt = 0.5 Fast time integration at level 0 from 230.5 to 231 with dt = 0.5 Fast time integration at level 0 from 231 to 231.5 with dt = 0.5 Fast time integration at level 0 from 231.5 to 232 with dt = 0.5 Time integration of scalars at level 0 from 230 to 232 with dt = 2 using RHS created at 231 Done with advance_dycore at level 0 [Level 0 step 116] Advanced 4096 cells [Level 1 step 116] ADVANCE from elapsed time = 230 to 232 with dt = 2 Making slow rhs at time 230 for fast variables advancing from 230 to 232 No-substepping time integration at level 1 to 232 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002005766146 0.001609517843 and volume-weighted sum 14593.44727 Subtracting 4.750470907e-06 from rhs in subdomain 0 Sum after subtraction -0.0239815563 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0001958261564 MLMG: Initial residual (resid0) = 0.0001958261564 MLMG: Final Iter. 2 resid, resid/bnorm = 7.170192475e-07, 0.003661509138 MLMG: Timers: Solve = 0.000739121 Iter = 0.000531306 Bottom = 5.6821e-05 Time in solve 0.001125001 Max/L2 norm of divergence after solve at level 1 : 5.465000868e-06 0.0002633221739 and volume-weighted sum 14593.4541 Time integration of scalars at level 1 from 230 to 232 with dt = 2 using RHS created at 230 Making slow rhs at time 232 for fast variables advancing from 230 to 232 No-substepping time integration at level 1 to 232 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002054690849 0.001602150267 and volume-weighted sum 14593.4375 Subtracting 4.750467724e-06 from rhs in subdomain 0 Sum after subtraction -0.02793967724 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002007186267 MLMG: Initial residual (resid0) = 0.0002007186267 MLMG: Final Iter. 2 resid, resid/bnorm = 6.928266885e-07, 0.003451730823 MLMG: Timers: Solve = 0.000985333 Iter = 0.000584791 Bottom = 5.3891e-05 Time in solve 0.001306574 Max/L2 norm of divergence after solve at level 1 : 5.451031029e-06 0.0002633181866 and volume-weighted sum 14593.45605 Time integration of scalars at level 1 from 230 to 232 with dt = 2 using RHS created at 232 Done with advance_dycore at level 1 [Level 1 step 116] Advanced 3072 cells Coarse STEP 116 ends. TIME = 232 DT = 2 Timestep time = 0.016858638 seconds. Coarse STEP 117 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.40387235 (terrain aware) 1.40387235 (terrain unaware) Anelastic dt at level 0 would be: 7.279136668 (terrain aware) 7.279136668 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2669438494 (terrain aware) 0.2669438494 (terrain unaware) Anelastic dt at level 1 would be: 3.425944993 (terrain aware) 3.425944993 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 117] ADVANCE from elapsed time = 232 to 234 with dt = 2 Making slow rhs at time 232 for fast variables advancing from 232 to 232.6666666667 Fast time integration at level 0 from 232 to 232.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 232 to 232.6666666667 with dt = 0.6666666666667 using RHS created at 232 Making slow rhs at time 232.6666666667 for fast variables advancing from 232 to 233 Fast time integration at level 0 from 232 to 232.5 with dt = 0.5 Fast time integration at level 0 from 232.5 to 233 with dt = 0.5 Time integration of scalars at level 0 from 232 to 233 with dt = 1 using RHS created at 232.6666666667 Making slow rhs at time 233 for fast variables advancing from 232 to 234 Fast time integration at level 0 from 232 to 232.5 with dt = 0.5 Fast time integration at level 0 from 232.5 to 233 with dt = 0.5 Fast time integration at level 0 from 233 to 233.5 with dt = 0.5 Fast time integration at level 0 from 233.5 to 234 with dt = 0.5 Time integration of scalars at level 0 from 232 to 234 with dt = 2 using RHS created at 233 Done with advance_dycore at level 0 [Level 0 step 117] Advanced 4096 cells [Level 1 step 117] ADVANCE from elapsed time = 232 to 234 with dt = 2 Making slow rhs at time 232 for fast variables advancing from 232 to 234 No-substepping time integration at level 1 to 234 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002124214079 0.001643852214 and volume-weighted sum 15342.71387 Subtracting 4.99437283e-06 from rhs in subdomain 0 Sum after subtraction 0.002095475793 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002074270305 MLMG: Initial residual (resid0) = 0.0002074270305 MLMG: Final Iter. 2 resid, resid/bnorm = 7.142007235e-07, 0.003443141934 MLMG: Timers: Solve = 0.000733264 Iter = 0.000527753 Bottom = 5.5145e-05 Time in solve 0.001054025 Max/L2 norm of divergence after solve at level 1 : 5.712267011e-06 0.0002768363629 and volume-weighted sum 15342.72168 Time integration of scalars at level 1 from 232 to 234 with dt = 2 using RHS created at 232 Making slow rhs at time 234 for fast variables advancing from 232 to 234 No-substepping time integration at level 1 to 234 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002187347272 0.001643789234 and volume-weighted sum 15342.71387 Subtracting 4.99437283e-06 from rhs in subdomain 0 Sum after subtraction 0.01396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002137403499 MLMG: Initial residual (resid0) = 0.0002137403499 MLMG: Final Iter. 2 resid, resid/bnorm = 6.964128261e-07, 0.003258218756 MLMG: Timers: Solve = 0.000726756 Iter = 0.000525247 Bottom = 5.3495e-05 Time in solve 0.001042806 Max/L2 norm of divergence after solve at level 1 : 5.69736585e-06 0.0002768360719 and volume-weighted sum 15342.69629 Time integration of scalars at level 1 from 232 to 234 with dt = 2 using RHS created at 234 Done with advance_dycore at level 1 [Level 1 step 117] Advanced 3072 cells Coarse STEP 117 ends. TIME = 234 DT = 2 Timestep time = 0.01628065 seconds. Coarse STEP 118 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.398998031 (terrain aware) 1.398998031 (terrain unaware) Anelastic dt at level 0 would be: 7.177733076 (terrain aware) 7.177733076 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2665877116 (terrain aware) 0.2665877116 (terrain unaware) Anelastic dt at level 1 would be: 3.375584433 (terrain aware) 3.375584433 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 118] ADVANCE from elapsed time = 234 to 236 with dt = 2 Making slow rhs at time 234 for fast variables advancing from 234 to 234.6666666667 Fast time integration at level 0 from 234 to 234.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 234 to 234.6666666667 with dt = 0.6666666666667 using RHS created at 234 Making slow rhs at time 234.6666666667 for fast variables advancing from 234 to 235 Fast time integration at level 0 from 234 to 234.5 with dt = 0.5 Fast time integration at level 0 from 234.5 to 235 with dt = 0.5 Time integration of scalars at level 0 from 234 to 235 with dt = 1 using RHS created at 234.6666666667 Making slow rhs at time 235 for fast variables advancing from 234 to 236 Fast time integration at level 0 from 234 to 234.5 with dt = 0.5 Fast time integration at level 0 from 234.5 to 235 with dt = 0.5 Fast time integration at level 0 from 235 to 235.5 with dt = 0.5 Fast time integration at level 0 from 235.5 to 236 with dt = 0.5 Time integration of scalars at level 0 from 234 to 236 with dt = 2 using RHS created at 235 Done with advance_dycore at level 0 [Level 0 step 118] Advanced 4096 cells [Level 1 step 118] ADVANCE from elapsed time = 234 to 236 with dt = 2 Making slow rhs at time 234 for fast variables advancing from 234 to 236 No-substepping time integration at level 1 to 236 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000222320552 0.00167963712 and volume-weighted sum 15925.82617 Subtracting 5.184188012e-06 from rhs in subdomain 0 Sum after subtraction 0.01513399184 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002171363594 MLMG: Initial residual (resid0) = 0.0002171363594 MLMG: Final Iter. 2 resid, resid/bnorm = 7.039589036e-07, 0.003242013045 MLMG: Timers: Solve = 0.000738931 Iter = 0.000540108 Bottom = 5.913e-05 Time in solve 0.001064959 Max/L2 norm of divergence after solve at level 1 : 5.885958672e-06 0.0002873565245 and volume-weighted sum 15925.84473 Time integration of scalars at level 1 from 234 to 236 with dt = 2 using RHS created at 234 Making slow rhs at time 236 for fast variables advancing from 234 to 236 No-substepping time integration at level 1 to 236 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000230131147 0.001687616226 and volume-weighted sum 15925.83203 Subtracting 5.184190286e-06 from rhs in subdomain 0 Sum after subtraction 0.006752088666 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002249469544 MLMG: Initial residual (resid0) = 0.0002249469544 MLMG: Final Iter. 2 resid, resid/bnorm = 6.978152669e-07, 0.003102132585 MLMG: Timers: Solve = 0.000954349 Iter = 0.000536626 Bottom = 5.4847e-05 Time in solve 0.001287522 Max/L2 norm of divergence after solve at level 1 : 5.88549301e-06 0.0002873568155 and volume-weighted sum 15925.83594 Time integration of scalars at level 1 from 234 to 236 with dt = 2 using RHS created at 236 Done with advance_dycore at level 1 [Level 1 step 118] Advanced 3072 cells Coarse STEP 118 ends. TIME = 236 DT = 2 Timestep time = 0.016904014 seconds. Coarse STEP 119 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.39448283 (terrain aware) 1.39448283 (terrain unaware) Anelastic dt at level 0 would be: 7.050601139 (terrain aware) 7.050601139 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2662486543 (terrain aware) 0.2662486543 (terrain unaware) Anelastic dt at level 1 would be: 3.336038242 (terrain aware) 3.336038242 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 119] ADVANCE from elapsed time = 236 to 238 with dt = 2 Making slow rhs at time 236 for fast variables advancing from 236 to 236.6666666667 Fast time integration at level 0 from 236 to 236.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 236 to 236.6666666667 with dt = 0.6666666666667 using RHS created at 236 Making slow rhs at time 236.6666666667 for fast variables advancing from 236 to 237 Fast time integration at level 0 from 236 to 236.5 with dt = 0.5 Fast time integration at level 0 from 236.5 to 237 with dt = 0.5 Time integration of scalars at level 0 from 236 to 237 with dt = 1 using RHS created at 236.6666666667 Making slow rhs at time 237 for fast variables advancing from 236 to 238 Fast time integration at level 0 from 236 to 236.5 with dt = 0.5 Fast time integration at level 0 from 236.5 to 237 with dt = 0.5 Fast time integration at level 0 from 237 to 237.5 with dt = 0.5 Fast time integration at level 0 from 237.5 to 238 with dt = 0.5 Time integration of scalars at level 0 from 236 to 238 with dt = 2 using RHS created at 237 Done with advance_dycore at level 0 [Level 0 step 119] Advanced 4096 cells [Level 1 step 119] ADVANCE from elapsed time = 236 to 238 with dt = 2 Making slow rhs at time 236 for fast variables advancing from 236 to 238 No-substepping time integration at level 1 to 238 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002366733388 0.001728222473 and volume-weighted sum 16211.24316 Subtracting 5.277097443e-06 from rhs in subdomain 0 Sum after subtraction 0.1383014023 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002313962032 MLMG: Initial residual (resid0) = 0.0002313962032 MLMG: Final Iter. 2 resid, resid/bnorm = 6.883237802e-07, 0.002974654548 MLMG: Timers: Solve = 0.000740779 Iter = 0.000540722 Bottom = 5.8135e-05 Time in solve 0.001059607 Max/L2 norm of divergence after solve at level 1 : 5.962327123e-06 0.0002925112494 and volume-weighted sum 16211.25684 Time integration of scalars at level 1 from 236 to 238 with dt = 2 using RHS created at 236 Making slow rhs at time 238 for fast variables advancing from 236 to 238 No-substepping time integration at level 1 to 238 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002447414445 0.001733378158 and volume-weighted sum 16211.24902 Subtracting 5.277099262e-06 from rhs in subdomain 0 Sum after subtraction 0.08544884622 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002394643088 MLMG: Initial residual (resid0) = 0.0002394643088 MLMG: Final Iter. 2 resid, resid/bnorm = 6.970785762e-07, 0.002910991432 MLMG: Timers: Solve = 0.000735231 Iter = 0.00052639 Bottom = 5.3178e-05 Time in solve 0.001047494 Max/L2 norm of divergence after solve at level 1 : 5.968846381e-06 0.0002925068547 and volume-weighted sum 16211.24121 Time integration of scalars at level 1 from 236 to 238 with dt = 2 using RHS created at 238 Done with advance_dycore at level 1 [Level 1 step 119] Advanced 3072 cells Coarse STEP 119 ends. TIME = 238 DT = 2 Timestep time = 0.016258145 seconds. Coarse STEP 120 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.390539387 (terrain aware) 1.390539387 (terrain unaware) Anelastic dt at level 0 would be: 6.938404934 (terrain aware) 6.938404934 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659064305 (terrain aware) 0.2659064305 (terrain unaware) Anelastic dt at level 1 would be: 3.288790237 (terrain aware) 3.288790237 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 120] ADVANCE from elapsed time = 238 to 240 with dt = 2 Making slow rhs at time 238 for fast variables advancing from 238 to 238.6666666667 Fast time integration at level 0 from 238 to 238.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 238 to 238.6666666667 with dt = 0.6666666666667 using RHS created at 238 Making slow rhs at time 238.6666666667 for fast variables advancing from 238 to 239 Fast time integration at level 0 from 238 to 238.5 with dt = 0.5 Fast time integration at level 0 from 238.5 to 239 with dt = 0.5 Time integration of scalars at level 0 from 238 to 239 with dt = 1 using RHS created at 238.6666666667 Making slow rhs at time 239 for fast variables advancing from 238 to 240 Fast time integration at level 0 from 238 to 238.5 with dt = 0.5 Fast time integration at level 0 from 238.5 to 239 with dt = 0.5 Fast time integration at level 0 from 239 to 239.5 with dt = 0.5 Fast time integration at level 0 from 239.5 to 240 with dt = 0.5 Time integration of scalars at level 0 from 238 to 240 with dt = 2 using RHS created at 239 Done with advance_dycore at level 0 [Level 0 step 120] Advanced 4096 cells [Level 1 step 120] ADVANCE from elapsed time = 238 to 240 with dt = 2 Making slow rhs at time 238 for fast variables advancing from 238 to 240 No-substepping time integration at level 1 to 240 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002535247477 0.001790587441 and volume-weighted sum 16134.05859 Subtracting 5.251972198e-06 from rhs in subdomain 0 Sum after subtraction -0.1403968781 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002482728451 MLMG: Initial residual (resid0) = 0.0002482728451 MLMG: Final Iter. 2 resid, resid/bnorm = 6.754453352e-07, 0.002720576711 MLMG: Timers: Solve = 0.000715974 Iter = 0.000529608 Bottom = 5.5157e-05 Time in solve 0.001064332 Max/L2 norm of divergence after solve at level 1 : 5.929730833e-06 0.0002911270713 and volume-weighted sum 16134.06641 Time integration of scalars at level 1 from 238 to 240 with dt = 2 using RHS created at 238 Making slow rhs at time 240 for fast variables advancing from 238 to 240 No-substepping time integration at level 1 to 240 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002598476713 0.001781004248 and volume-weighted sum 16134.10156 Subtracting 5.251986295e-06 from rhs in subdomain 0 Sum after subtraction -0.04027970135 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002545956813 MLMG: Initial residual (resid0) = 0.0002545956813 MLMG: Final Iter. 2 resid, resid/bnorm = 6.946411304e-07, 0.002728408901 MLMG: Timers: Solve = 0.000910488 Iter = 0.000541301 Bottom = 6.6462e-05 Time in solve 0.001233243 Max/L2 norm of divergence after solve at level 1 : 5.947891623e-06 0.000291115779 and volume-weighted sum 16134.09961 Time integration of scalars at level 1 from 238 to 240 with dt = 2 using RHS created at 240 Done with advance_dycore at level 1 [Level 1 step 120] Advanced 3072 cells Coarse STEP 120 ends. TIME = 240 DT = 2 Timestep time = 0.016576535 seconds. Coarse STEP 121 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.387050876 (terrain aware) 1.387050876 (terrain unaware) Anelastic dt at level 0 would be: 6.84240927 (terrain aware) 6.84240927 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655515221 (terrain aware) 0.2655515221 (terrain unaware) Anelastic dt at level 1 would be: 3.25191642 (terrain aware) 3.25191642 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(3) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(3) m_ref->m_hash_sig(0) ((0,0,0) (15,0,63) (0,0,0)) ((16,0,0) (31,0,63) (0,0,0)) ((32,0,0) (47,0,63) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (47,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.002735807793 0.01293670572 and volume-weighted sum -22577.67383 Subtracting -9.799337931e-06 from rhs in subdomain 0 Sum after subtraction -0.05774199963 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.002745607169 MLMG: Initial residual (resid0) = 0.002745607169 MLMG: Final Iter. 3 resid, resid/bnorm = 9.306240827e-07, 0.0003389501944 MLMG: Timers: Solve = 0.000862979 Iter = 0.000659195 Bottom = 7.7859e-05 Time in solve 0.001173436 Max/L2 norm of divergence after solve at level 1 : 1.072883606e-05 0.0004703844024 and volume-weighted sum -22577.64844 [Level 0 step 121] ADVANCE from elapsed time = 240 to 242 with dt = 2 Making slow rhs at time 240 for fast variables advancing from 240 to 240.6666666667 Fast time integration at level 0 from 240 to 240.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 240 to 240.6666666667 with dt = 0.6666666666667 using RHS created at 240 Making slow rhs at time 240.6666666667 for fast variables advancing from 240 to 241 Fast time integration at level 0 from 240 to 240.5 with dt = 0.5 Fast time integration at level 0 from 240.5 to 241 with dt = 0.5 Time integration of scalars at level 0 from 240 to 241 with dt = 1 using RHS created at 240.6666666667 Making slow rhs at time 241 for fast variables advancing from 240 to 242 Fast time integration at level 0 from 240 to 240.5 with dt = 0.5 Fast time integration at level 0 from 240.5 to 241 with dt = 0.5 Fast time integration at level 0 from 241 to 241.5 with dt = 0.5 Fast time integration at level 0 from 241.5 to 242 with dt = 0.5 Time integration of scalars at level 0 from 240 to 242 with dt = 2 using RHS created at 241 Done with advance_dycore at level 0 [Level 0 step 121] Advanced 4096 cells [Level 1 step 121] ADVANCE from elapsed time = 240 to 242 with dt = 2 Making slow rhs at time 240 for fast variables advancing from 240 to 242 No-substepping time integration at level 1 to 242 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00601412775 0.05718160421 and volume-weighted sum -32700.43359 Subtracting -1.419289674e-05 from rhs in subdomain 0 Sum after subtraction 0.6109476089 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.005999935325 MLMG: Initial residual (resid0) = 0.005999935325 MLMG: Final Iter. 3 resid, resid/bnorm = 4.281755537e-06, 0.0007136336062 MLMG: Timers: Solve = 0.000850212 Iter = 0.000649057 Bottom = 6.5092e-05 Time in solve 0.001167056 Max/L2 norm of divergence after solve at level 1 : 1.847278327e-05 0.0006814827211 and volume-weighted sum -32700.24023 Time integration of scalars at level 1 from 240 to 242 with dt = 2 using RHS created at 240 Making slow rhs at time 242 for fast variables advancing from 240 to 242 No-substepping time integration at level 1 to 242 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000252790458 0.001931392355 and volume-weighted sum -32700.26367 Subtracting -1.419282307e-05 from rhs in subdomain 0 Sum after subtraction 0.05163019523 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002669832611 MLMG: Initial residual (resid0) = 0.0002669832611 MLMG: Final Iter. 2 resid, resid/bnorm = 7.09257165e-07, 0.002656560391 MLMG: Timers: Solve = 0.000657148 Iter = 0.000456691 Bottom = 4.5658e-05 Time in solve 0.000964847 Max/L2 norm of divergence after solve at level 1 : 1.478823833e-05 0.000681264617 and volume-weighted sum -32700.24023 Time integration of scalars at level 1 from 240 to 242 with dt = 2 using RHS created at 242 Done with advance_dycore at level 1 [Level 1 step 121] Advanced 2304 cells Coarse STEP 121 ends. TIME = 242 DT = 2 Timestep time = 0.021087219 seconds. Coarse STEP 122 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.382019052 (terrain aware) 1.382019052 (terrain unaware) Anelastic dt at level 0 would be: 6.763629216 (terrain aware) 6.763629216 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652075102 (terrain aware) 0.2652075102 (terrain unaware) Anelastic dt at level 1 would be: 3.206451189 (terrain aware) 3.206451189 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 122] ADVANCE from elapsed time = 242 to 244 with dt = 2 Making slow rhs at time 242 for fast variables advancing from 242 to 242.6666666667 Fast time integration at level 0 from 242 to 242.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 242 to 242.6666666667 with dt = 0.6666666666667 using RHS created at 242 Making slow rhs at time 242.6666666667 for fast variables advancing from 242 to 243 Fast time integration at level 0 from 242 to 242.5 with dt = 0.5 Fast time integration at level 0 from 242.5 to 243 with dt = 0.5 Time integration of scalars at level 0 from 242 to 243 with dt = 1 using RHS created at 242.6666666667 Making slow rhs at time 243 for fast variables advancing from 242 to 244 Fast time integration at level 0 from 242 to 242.5 with dt = 0.5 Fast time integration at level 0 from 242.5 to 243 with dt = 0.5 Fast time integration at level 0 from 243 to 243.5 with dt = 0.5 Fast time integration at level 0 from 243.5 to 244 with dt = 0.5 Time integration of scalars at level 0 from 242 to 244 with dt = 2 using RHS created at 243 Done with advance_dycore at level 0 [Level 0 step 122] Advanced 4096 cells [Level 1 step 122] ADVANCE from elapsed time = 242 to 244 with dt = 2 Making slow rhs at time 242 for fast variables advancing from 242 to 244 No-substepping time integration at level 1 to 244 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002555941464 0.002098474884 and volume-weighted sum -40519.55469 Subtracting -1.758661165e-05 from rhs in subdomain 0 Sum after subtraction -0.002270098776 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002731807472 MLMG: Initial residual (resid0) = 0.0002731807472 MLMG: Final Iter. 2 resid, resid/bnorm = 6.811824278e-07, 0.002493522828 MLMG: Timers: Solve = 0.00094561 Iter = 0.000582168 Bottom = 4.5518e-05 Time in solve 0.001264191 Max/L2 norm of divergence after solve at level 1 : 1.82390213e-05 0.0008441744139 and volume-weighted sum -40519.54297 Time integration of scalars at level 1 from 242 to 244 with dt = 2 using RHS created at 242 Making slow rhs at time 244 for fast variables advancing from 242 to 244 No-substepping time integration at level 1 to 244 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002669621026 0.002045531292 and volume-weighted sum -40519.53906 Subtracting -1.758660619e-05 from rhs in subdomain 0 Sum after subtraction -0.002764863893 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002845487033 MLMG: Initial residual (resid0) = 0.0002845487033 MLMG: Final Iter. 2 resid, resid/bnorm = 7.108210411e-07, 0.002498064656 MLMG: Timers: Solve = 0.000698338 Iter = 0.000498557 Bottom = 4.8444e-05 Time in solve 0.00100578 Max/L2 norm of divergence after solve at level 1 : 1.819524914e-05 0.0008441653335 and volume-weighted sum -40519.53906 Time integration of scalars at level 1 from 242 to 244 with dt = 2 using RHS created at 244 Done with advance_dycore at level 1 [Level 1 step 122] Advanced 2304 cells Coarse STEP 122 ends. TIME = 244 DT = 2 Timestep time = 0.015229714 seconds. Coarse STEP 123 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.377355734 (terrain aware) 1.377355734 (terrain unaware) Anelastic dt at level 0 would be: 6.702738304 (terrain aware) 6.702738304 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648797592 (terrain aware) 0.2648797592 (terrain unaware) Anelastic dt at level 1 would be: 3.165064705 (terrain aware) 3.165064705 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 123] ADVANCE from elapsed time = 244 to 246 with dt = 2 Making slow rhs at time 244 for fast variables advancing from 244 to 244.6666666667 Fast time integration at level 0 from 244 to 244.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 244 to 244.6666666667 with dt = 0.6666666666667 using RHS created at 244 Making slow rhs at time 244.6666666667 for fast variables advancing from 244 to 245 Fast time integration at level 0 from 244 to 244.5 with dt = 0.5 Fast time integration at level 0 from 244.5 to 245 with dt = 0.5 Time integration of scalars at level 0 from 244 to 245 with dt = 1 using RHS created at 244.6666666667 Making slow rhs at time 245 for fast variables advancing from 244 to 246 Fast time integration at level 0 from 244 to 244.5 with dt = 0.5 Fast time integration at level 0 from 244.5 to 245 with dt = 0.5 Fast time integration at level 0 from 245 to 245.5 with dt = 0.5 Fast time integration at level 0 from 245.5 to 246 with dt = 0.5 Time integration of scalars at level 0 from 244 to 246 with dt = 2 using RHS created at 245 Done with advance_dycore at level 0 [Level 0 step 123] Advanced 4096 cells [Level 1 step 123] ADVANCE from elapsed time = 244 to 246 with dt = 2 Making slow rhs at time 244 for fast variables advancing from 244 to 246 No-substepping time integration at level 1 to 246 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002711963898 0.002512316452 and volume-weighted sum -39133.90625 Subtracting -1.698520282e-05 from rhs in subdomain 0 Sum after subtraction -0.02130400389 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000288181589 MLMG: Initial residual (resid0) = 0.000288181589 MLMG: Final Iter. 2 resid, resid/bnorm = 2.290719976e-06, 0.00794887729 MLMG: Timers: Solve = 0.000671737 Iter = 0.000455071 Bottom = 4.1962e-05 Time in solve 0.000980126 Max/L2 norm of divergence after solve at level 1 : 1.926720142e-05 0.0008153503877 and volume-weighted sum -39133.88281 Time integration of scalars at level 1 from 244 to 246 with dt = 2 using RHS created at 244 Making slow rhs at time 246 for fast variables advancing from 244 to 246 No-substepping time integration at level 1 to 246 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002823257819 0.002086771186 and volume-weighted sum -39133.89062 Subtracting -1.698519554e-05 from rhs in subdomain 0 Sum after subtraction -0.08668576181 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002993110102 MLMG: Initial residual (resid0) = 0.0002993110102 MLMG: Final Iter. 2 resid, resid/bnorm = 7.106709745e-07, 0.00237435638 MLMG: Timers: Solve = 0.00066636 Iter = 0.000467553 Bottom = 4.8491e-05 Time in solve 0.000968988 Max/L2 norm of divergence after solve at level 1 : 1.759408042e-05 0.0008152982919 and volume-weighted sum -39133.89844 Time integration of scalars at level 1 from 244 to 246 with dt = 2 using RHS created at 246 Done with advance_dycore at level 1 [Level 1 step 123] Advanced 2304 cells Coarse STEP 123 ends. TIME = 246 DT = 2 Timestep time = 0.014984929 seconds. Coarse STEP 124 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.37314854 (terrain aware) 1.37314854 (terrain unaware) Anelastic dt at level 0 would be: 6.623839637 (terrain aware) 6.623839637 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645307926 (terrain aware) 0.2645307926 (terrain unaware) Anelastic dt at level 1 would be: 3.126502587 (terrain aware) 3.126502587 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 124] ADVANCE from elapsed time = 246 to 248 with dt = 2 Making slow rhs at time 246 for fast variables advancing from 246 to 246.6666666667 Fast time integration at level 0 from 246 to 246.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 246 to 246.6666666667 with dt = 0.6666666666667 using RHS created at 246 Making slow rhs at time 246.6666666667 for fast variables advancing from 246 to 247 Fast time integration at level 0 from 246 to 246.5 with dt = 0.5 Fast time integration at level 0 from 246.5 to 247 with dt = 0.5 Time integration of scalars at level 0 from 246 to 247 with dt = 1 using RHS created at 246.6666666667 Making slow rhs at time 247 for fast variables advancing from 246 to 248 Fast time integration at level 0 from 246 to 246.5 with dt = 0.5 Fast time integration at level 0 from 246.5 to 247 with dt = 0.5 Fast time integration at level 0 from 247 to 247.5 with dt = 0.5 Fast time integration at level 0 from 247.5 to 248 with dt = 0.5 Time integration of scalars at level 0 from 246 to 248 with dt = 2 using RHS created at 247 Done with advance_dycore at level 0 [Level 0 step 124] Advanced 4096 cells [Level 1 step 124] ADVANCE from elapsed time = 246 to 248 with dt = 2 Making slow rhs at time 246 for fast variables advancing from 246 to 248 No-substepping time integration at level 1 to 248 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002926540037 0.002676590113 and volume-weighted sum -25921.19727 Subtracting -1.125051949e-05 from rhs in subdomain 0 Sum after subtraction 0.02223532647 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003039045259 MLMG: Initial residual (resid0) = 0.0003039045259 MLMG: Final Iter. 2 resid, resid/bnorm = 2.83868394e-06, 0.009340710007 MLMG: Timers: Solve = 0.000655777 Iter = 0.000454829 Bottom = 4.4206e-05 Time in solve 0.000989268 Max/L2 norm of divergence after solve at level 1 : 1.408113167e-05 0.0005401460221 and volume-weighted sum -25921.20898 Time integration of scalars at level 1 from 246 to 248 with dt = 2 using RHS created at 246 Making slow rhs at time 248 for fast variables advancing from 246 to 248 No-substepping time integration at level 1 to 248 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003039836301 0.002054298762 and volume-weighted sum -25921.23438 Subtracting -1.125053586e-05 from rhs in subdomain 0 Sum after subtraction -0.03964669257 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003152341815 MLMG: Initial residual (resid0) = 0.0003152341815 MLMG: Final Iter. 2 resid, resid/bnorm = 7.085418474e-07, 0.002247668104 MLMG: Timers: Solve = 0.00066928 Iter = 0.000460679 Bottom = 4.8297e-05 Time in solve 0.000975765 Max/L2 norm of divergence after solve at level 1 : 1.185410656e-05 0.0005400382797 and volume-weighted sum -25921.17383 Time integration of scalars at level 1 from 246 to 248 with dt = 2 using RHS created at 248 Done with advance_dycore at level 1 [Level 1 step 124] Advanced 2304 cells Coarse STEP 124 ends. TIME = 248 DT = 2 Timestep time = 0.01511925 seconds. Coarse STEP 125 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369486729 (terrain aware) 1.369486729 (terrain unaware) Anelastic dt at level 0 would be: 6.533834241 (terrain aware) 6.533834241 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2642211837 (terrain aware) 0.2642211837 (terrain unaware) Anelastic dt at level 1 would be: 3.08781649 (terrain aware) 3.08781649 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 125] ADVANCE from elapsed time = 248 to 250 with dt = 2 Making slow rhs at time 248 for fast variables advancing from 248 to 248.6666666667 Fast time integration at level 0 from 248 to 248.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 248 to 248.6666666667 with dt = 0.6666666666667 using RHS created at 248 Making slow rhs at time 248.6666666667 for fast variables advancing from 248 to 249 Fast time integration at level 0 from 248 to 248.5 with dt = 0.5 Fast time integration at level 0 from 248.5 to 249 with dt = 0.5 Time integration of scalars at level 0 from 248 to 249 with dt = 1 using RHS created at 248.6666666667 Making slow rhs at time 249 for fast variables advancing from 248 to 250 Fast time integration at level 0 from 248 to 248.5 with dt = 0.5 Fast time integration at level 0 from 248.5 to 249 with dt = 0.5 Fast time integration at level 0 from 249 to 249.5 with dt = 0.5 Fast time integration at level 0 from 249.5 to 250 with dt = 0.5 Time integration of scalars at level 0 from 248 to 250 with dt = 2 using RHS created at 249 Done with advance_dycore at level 0 [Level 0 step 125] Advanced 4096 cells [Level 1 step 125] ADVANCE from elapsed time = 248 to 250 with dt = 2 Making slow rhs at time 248 for fast variables advancing from 248 to 250 No-substepping time integration at level 1 to 250 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003163719084 0.002351288451 and volume-weighted sum -4092.332031 Subtracting -1.776185741e-06 from rhs in subdomain 0 Sum after subtraction 0.0007566995919 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003181480861 MLMG: Initial residual (resid0) = 0.0003181480861 MLMG: Final Iter. 2 resid, resid/bnorm = 1.96252654e-06, 0.006168594584 MLMG: Timers: Solve = 0.000655885 Iter = 0.000455662 Bottom = 4.4143e-05 Time in solve 0.000974627 Max/L2 norm of divergence after solve at level 1 : 3.737397492e-06 8.562937001e-05 and volume-weighted sum -4092.3479 Time integration of scalars at level 1 from 248 to 250 with dt = 2 using RHS created at 248 Making slow rhs at time 250 for fast variables advancing from 248 to 250 No-substepping time integration at level 1 to 250 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003312111367 0.002048656577 and volume-weighted sum -4092.342773 Subtracting -1.776190402e-06 from rhs in subdomain 0 Sum after subtraction -0.02059823647 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003329873143 MLMG: Initial residual (resid0) = 0.0003329873143 MLMG: Final Iter. 2 resid, resid/bnorm = 6.971031326e-07, 0.00209348253 MLMG: Timers: Solve = 0.000675252 Iter = 0.000467037 Bottom = 4.9084e-05 Time in solve 0.000980725 Max/L2 norm of divergence after solve at level 1 : 2.40735244e-06 8.534504013e-05 and volume-weighted sum -4092.338379 Time integration of scalars at level 1 from 248 to 250 with dt = 2 using RHS created at 250 Done with advance_dycore at level 1 [Level 1 step 125] Advanced 2304 cells Coarse STEP 125 ends. TIME = 250 DT = 2 Timestep time = 0.014694277 seconds. Coarse STEP 126 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366438398 (terrain aware) 1.366438398 (terrain unaware) Anelastic dt at level 0 would be: 6.461375259 (terrain aware) 6.461375259 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639071231 (terrain aware) 0.2639071231 (terrain unaware) Anelastic dt at level 1 would be: 3.058756544 (terrain aware) 3.058756544 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 126] ADVANCE from elapsed time = 250 to 252 with dt = 2 Making slow rhs at time 250 for fast variables advancing from 250 to 250.6666666667 Fast time integration at level 0 from 250 to 250.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 250 to 250.6666666667 with dt = 0.6666666666667 using RHS created at 250 Making slow rhs at time 250.6666666667 for fast variables advancing from 250 to 251 Fast time integration at level 0 from 250 to 250.5 with dt = 0.5 Fast time integration at level 0 from 250.5 to 251 with dt = 0.5 Time integration of scalars at level 0 from 250 to 251 with dt = 1 using RHS created at 250.6666666667 Making slow rhs at time 251 for fast variables advancing from 250 to 252 Fast time integration at level 0 from 250 to 250.5 with dt = 0.5 Fast time integration at level 0 from 250.5 to 251 with dt = 0.5 Fast time integration at level 0 from 251 to 251.5 with dt = 0.5 Fast time integration at level 0 from 251.5 to 252 with dt = 0.5 Time integration of scalars at level 0 from 250 to 252 with dt = 2 using RHS created at 251 Done with advance_dycore at level 0 [Level 0 step 126] Advanced 4096 cells [Level 1 step 126] ADVANCE from elapsed time = 250 to 252 with dt = 2 Making slow rhs at time 250 for fast variables advancing from 250 to 252 No-substepping time integration at level 1 to 252 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000350742368 0.002144277794 and volume-weighted sum 20396.49805 Subtracting 8.852646715e-06 from rhs in subdomain 0 Sum after subtraction -0.05694528297 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003418897395 MLMG: Initial residual (resid0) = 0.0003418897395 MLMG: Final Iter. 2 resid, resid/bnorm = 6.896498235e-07, 0.002017170191 MLMG: Timers: Solve = 0.000667218 Iter = 0.000458633 Bottom = 4.4808e-05 Time in solve 0.000977843 Max/L2 norm of divergence after solve at level 1 : 9.483192116e-06 0.0004249436897 and volume-weighted sum 20396.50586 Time integration of scalars at level 1 from 250 to 252 with dt = 2 using RHS created at 250 Making slow rhs at time 252 for fast variables advancing from 250 to 252 No-substepping time integration at level 1 to 252 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003629589919 0.002157932846 and volume-weighted sum 20396.48438 Subtracting 8.852640349e-06 from rhs in subdomain 0 Sum after subtraction -0.0491454564 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003541063925 MLMG: Initial residual (resid0) = 0.0003541063925 MLMG: Final Iter. 2 resid, resid/bnorm = 6.783379831e-07, 0.001915633213 MLMG: Timers: Solve = 0.000616565 Iter = 0.000459177 Bottom = 4.7615e-05 Time in solve 0.000978678 Max/L2 norm of divergence after solve at level 1 : 9.533949196e-06 0.0004249450576 and volume-weighted sum 20396.49219 Time integration of scalars at level 1 from 250 to 252 with dt = 2 using RHS created at 252 Done with advance_dycore at level 1 [Level 1 step 126] Advanced 2304 cells Coarse STEP 126 ends. TIME = 252 DT = 2 Timestep time = 0.014891677 seconds. Coarse STEP 127 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.362018118 (terrain aware) 1.362018118 (terrain unaware) Anelastic dt at level 0 would be: 6.391155028 (terrain aware) 6.391155028 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2635983525 (terrain aware) 0.2635983525 (terrain unaware) Anelastic dt at level 1 would be: 3.022809282 (terrain aware) 3.022809282 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 127] ADVANCE from elapsed time = 252 to 254 with dt = 2 Making slow rhs at time 252 for fast variables advancing from 252 to 252.6666666667 Fast time integration at level 0 from 252 to 252.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 252 to 252.6666666667 with dt = 0.6666666666667 using RHS created at 252 Making slow rhs at time 252.6666666667 for fast variables advancing from 252 to 253 Fast time integration at level 0 from 252 to 252.5 with dt = 0.5 Fast time integration at level 0 from 252.5 to 253 with dt = 0.5 Time integration of scalars at level 0 from 252 to 253 with dt = 1 using RHS created at 252.6666666667 Making slow rhs at time 253 for fast variables advancing from 252 to 254 Fast time integration at level 0 from 252 to 252.5 with dt = 0.5 Fast time integration at level 0 from 252.5 to 253 with dt = 0.5 Fast time integration at level 0 from 253 to 253.5 with dt = 0.5 Fast time integration at level 0 from 253.5 to 254 with dt = 0.5 Time integration of scalars at level 0 from 252 to 254 with dt = 2 using RHS created at 253 Done with advance_dycore at level 0 [Level 0 step 127] Advanced 4096 cells [Level 1 step 127] ADVANCE from elapsed time = 252 to 254 with dt = 2 Making slow rhs at time 252 for fast variables advancing from 252 to 254 No-substepping time integration at level 1 to 254 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003757858649 0.00239405944 and volume-weighted sum 42839.76953 Subtracting 1.859364966e-05 from rhs in subdomain 0 Sum after subtraction 0.02002343535 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003571922134 MLMG: Initial residual (resid0) = 0.0003571922134 MLMG: Final Iter. 2 resid, resid/bnorm = 8.036076906e-07, 0.002249790588 MLMG: Timers: Solve = 0.000689018 Iter = 0.000456985 Bottom = 4.2847e-05 Time in solve 0.001017696 Max/L2 norm of divergence after solve at level 1 : 1.937430352e-05 0.0008925125003 and volume-weighted sum 42839.74609 Time integration of scalars at level 1 from 252 to 254 with dt = 2 using RHS created at 252 Making slow rhs at time 254 for fast variables advancing from 252 to 254 No-substepping time integration at level 1 to 254 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003858280834 0.002363290405 and volume-weighted sum 42839.74609 Subtracting 1.859364056e-05 from rhs in subdomain 0 Sum after subtraction 0.00384170562 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003672344319 MLMG: Initial residual (resid0) = 0.0003672344319 MLMG: Final Iter. 2 resid, resid/bnorm = 6.579543879e-07, 0.00179164682 MLMG: Timers: Solve = 0.000668056 Iter = 0.00046371 Bottom = 4.7362e-05 Time in solve 0.00098179 Max/L2 norm of divergence after solve at level 1 : 1.925695688e-05 0.0008925035945 and volume-weighted sum 42839.74219 Time integration of scalars at level 1 from 252 to 254 with dt = 2 using RHS created at 254 Done with advance_dycore at level 1 [Level 1 step 127] Advanced 2304 cells Coarse STEP 127 ends. TIME = 254 DT = 2 Timestep time = 0.014963859 seconds. Coarse STEP 128 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357611547 (terrain aware) 1.357611547 (terrain unaware) Anelastic dt at level 0 would be: 6.291105057 (terrain aware) 6.291105057 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2633432632 (terrain aware) 0.2633432632 (terrain unaware) Anelastic dt at level 1 would be: 2.995250478 (terrain aware) 2.995250478 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 128] ADVANCE from elapsed time = 254 to 256 with dt = 2 Making slow rhs at time 254 for fast variables advancing from 254 to 254.6666666667 Fast time integration at level 0 from 254 to 254.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 254 to 254.6666666667 with dt = 0.6666666666667 using RHS created at 254 Making slow rhs at time 254.6666666667 for fast variables advancing from 254 to 255 Fast time integration at level 0 from 254 to 254.5 with dt = 0.5 Fast time integration at level 0 from 254.5 to 255 with dt = 0.5 Time integration of scalars at level 0 from 254 to 255 with dt = 1 using RHS created at 254.6666666667 Making slow rhs at time 255 for fast variables advancing from 254 to 256 Fast time integration at level 0 from 254 to 254.5 with dt = 0.5 Fast time integration at level 0 from 254.5 to 255 with dt = 0.5 Fast time integration at level 0 from 255 to 255.5 with dt = 0.5 Fast time integration at level 0 from 255.5 to 256 with dt = 0.5 Time integration of scalars at level 0 from 254 to 256 with dt = 2 using RHS created at 255 Done with advance_dycore at level 0 [Level 0 step 128] Advanced 4096 cells [Level 1 step 128] ADVANCE from elapsed time = 254 to 256 with dt = 2 Making slow rhs at time 254 for fast variables advancing from 254 to 256 No-substepping time integration at level 1 to 256 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004003527574 0.002707608277 and volume-weighted sum 61179.82812 Subtracting 2.655374556e-05 from rhs in subdomain 0 Sum after subtraction 0.06149639189 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003737989755 MLMG: Initial residual (resid0) = 0.0003737989755 MLMG: Final Iter. 2 resid, resid/bnorm = 1.21057144e-06, 0.003238562727 MLMG: Timers: Solve = 0.000659009 Iter = 0.000457857 Bottom = 4.4842e-05 Time in solve 0.000978004 Max/L2 norm of divergence after solve at level 1 : 2.776831388e-05 0.001274601207 and volume-weighted sum 61179.85547 Time integration of scalars at level 1 from 254 to 256 with dt = 2 using RHS created at 254 Making slow rhs at time 256 for fast variables advancing from 254 to 256 No-substepping time integration at level 1 to 256 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004092790186 0.002598491963 and volume-weighted sum 61179.83203 Subtracting 2.655374738e-05 from rhs in subdomain 0 Sum after subtraction 0.1312000751 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003827252076 MLMG: Initial residual (resid0) = 0.0003827252076 MLMG: Final Iter. 2 resid, resid/bnorm = 6.611977597e-07, 0.001727604424 MLMG: Timers: Solve = 0.001077389 Iter = 0.000762381 Bottom = 9.0163e-05 Time in solve 0.001380534 Max/L2 norm of divergence after solve at level 1 : 2.721324563e-05 0.001274585491 and volume-weighted sum 61179.83203 Time integration of scalars at level 1 from 254 to 256 with dt = 2 using RHS created at 256 Done with advance_dycore at level 1 [Level 1 step 128] Advanced 2304 cells Coarse STEP 128 ends. TIME = 256 DT = 2 Timestep time = 0.015013877 seconds. Coarse STEP 129 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353767494 (terrain aware) 1.353767494 (terrain unaware) Anelastic dt at level 0 would be: 6.204124597 (terrain aware) 6.204124597 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2630372679 (terrain aware) 0.2630372679 (terrain unaware) Anelastic dt at level 1 would be: 2.960390702 (terrain aware) 2.960390702 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 129] ADVANCE from elapsed time = 256 to 258 with dt = 2 Making slow rhs at time 256 for fast variables advancing from 256 to 256.6666666667 Fast time integration at level 0 from 256 to 256.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 256 to 256.6666666667 with dt = 0.6666666666667 using RHS created at 256 Making slow rhs at time 256.6666666667 for fast variables advancing from 256 to 257 Fast time integration at level 0 from 256 to 256.5 with dt = 0.5 Fast time integration at level 0 from 256.5 to 257 with dt = 0.5 Time integration of scalars at level 0 from 256 to 257 with dt = 1 using RHS created at 256.6666666667 Making slow rhs at time 257 for fast variables advancing from 256 to 258 Fast time integration at level 0 from 256 to 256.5 with dt = 0.5 Fast time integration at level 0 from 256.5 to 257 with dt = 0.5 Fast time integration at level 0 from 257 to 257.5 with dt = 0.5 Fast time integration at level 0 from 257.5 to 258 with dt = 0.5 Time integration of scalars at level 0 from 256 to 258 with dt = 2 using RHS created at 257 Done with advance_dycore at level 0 [Level 0 step 129] Advanced 4096 cells [Level 1 step 129] ADVANCE from elapsed time = 256 to 258 with dt = 2 Making slow rhs at time 256 for fast variables advancing from 256 to 258 No-substepping time integration at level 1 to 258 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004342938773 0.002933455398 and volume-weighted sum 74982.64062 Subtracting 3.254454714e-05 from rhs in subdomain 0 Sum after subtraction -0.08963979781 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004017493629 MLMG: Initial residual (resid0) = 0.0004017493629 MLMG: Final Iter. 2 resid, resid/bnorm = 1.150869139e-06, 0.00286464463 MLMG: Timers: Solve = 0.000670888 Iter = 0.000471897 Bottom = 4.8021e-05 Time in solve 0.000984163 Max/L2 norm of divergence after solve at level 1 : 3.369804472e-05 0.001562157413 and volume-weighted sum 74982.625 Time integration of scalars at level 1 from 256 to 258 with dt = 2 using RHS created at 256 Making slow rhs at time 258 for fast variables advancing from 256 to 258 No-substepping time integration at level 1 to 258 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004402068444 0.002816650784 and volume-weighted sum 74982.61719 Subtracting 3.254453986e-05 from rhs in subdomain 0 Sum after subtraction 0.008847564459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004076623009 MLMG: Initial residual (resid0) = 0.0004076623009 MLMG: Final Iter. 2 resid, resid/bnorm = 6.971331459e-07, 0.00171007507 MLMG: Timers: Solve = 0.000669955 Iter = 0.000470806 Bottom = 4.6765e-05 Time in solve 0.000969827 Max/L2 norm of divergence after solve at level 1 : 3.324029967e-05 0.001562142745 and volume-weighted sum 74982.60156 Time integration of scalars at level 1 from 256 to 258 with dt = 2 using RHS created at 258 Done with advance_dycore at level 1 [Level 1 step 129] Advanced 2304 cells Coarse STEP 129 ends. TIME = 258 DT = 2 Timestep time = 0.014933632 seconds. Coarse STEP 130 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.350603382 (terrain aware) 1.350603382 (terrain unaware) Anelastic dt at level 0 would be: 6.13165429 (terrain aware) 6.13165429 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2627982905 (terrain aware) 0.2627982905 (terrain unaware) Anelastic dt at level 1 would be: 2.931228832 (terrain aware) 2.931228832 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 130] ADVANCE from elapsed time = 258 to 260 with dt = 2 Making slow rhs at time 258 for fast variables advancing from 258 to 258.6666666667 Fast time integration at level 0 from 258 to 258.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 258 to 258.6666666667 with dt = 0.6666666666667 using RHS created at 258 Making slow rhs at time 258.6666666667 for fast variables advancing from 258 to 259 Fast time integration at level 0 from 258 to 258.5 with dt = 0.5 Fast time integration at level 0 from 258.5 to 259 with dt = 0.5 Time integration of scalars at level 0 from 258 to 259 with dt = 1 using RHS created at 258.6666666667 Making slow rhs at time 259 for fast variables advancing from 258 to 260 Fast time integration at level 0 from 258 to 258.5 with dt = 0.5 Fast time integration at level 0 from 258.5 to 259 with dt = 0.5 Fast time integration at level 0 from 259 to 259.5 with dt = 0.5 Fast time integration at level 0 from 259.5 to 260 with dt = 0.5 Time integration of scalars at level 0 from 258 to 260 with dt = 2 using RHS created at 259 Done with advance_dycore at level 0 [Level 0 step 130] Advanced 4096 cells [Level 1 step 130] ADVANCE from elapsed time = 258 to 260 with dt = 2 Making slow rhs at time 258 for fast variables advancing from 258 to 260 No-substepping time integration at level 1 to 260 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004564856645 0.003107832279 and volume-weighted sum 83453.78906 Subtracting 3.622126314e-05 from rhs in subdomain 0 Sum after subtraction 0.05797483027 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004202643759 MLMG: Initial residual (resid0) = 0.0004202643759 MLMG: Final Iter. 2 resid, resid/bnorm = 1.106690434e-06, 0.002633319702 MLMG: Timers: Solve = 0.0006745 Iter = 0.0004759 Bottom = 4.7151e-05 Time in solve 0.000991013 Max/L2 norm of divergence after solve at level 1 : 3.733159974e-05 0.001738640247 and volume-weighted sum 83453.85156 Time integration of scalars at level 1 from 258 to 260 with dt = 2 using RHS created at 258 Making slow rhs at time 260 for fast variables advancing from 258 to 260 No-substepping time integration at level 1 to 260 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004592321347 0.002984552644 and volume-weighted sum 83453.80469 Subtracting 3.622127042e-05 from rhs in subdomain 0 Sum after subtraction -0.001935404725 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004230108752 MLMG: Initial residual (resid0) = 0.0004230108752 MLMG: Final Iter. 2 resid, resid/bnorm = 7.330654626e-07, 0.001732970704 MLMG: Timers: Solve = 0.000664227 Iter = 0.000460696 Bottom = 4.7696e-05 Time in solve 0.000976735 Max/L2 norm of divergence after solve at level 1 : 3.695487976e-05 0.001738626626 and volume-weighted sum 83453.86719 Time integration of scalars at level 1 from 258 to 260 with dt = 2 using RHS created at 260 Done with advance_dycore at level 1 [Level 1 step 130] Advanced 2304 cells Coarse STEP 130 ends. TIME = 260 DT = 2 Timestep time = 0.014656803 seconds. Coarse STEP 131 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.348248849 (terrain aware) 1.348248849 (terrain unaware) Anelastic dt at level 0 would be: 6.075347571 (terrain aware) 6.075347571 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2625348752 (terrain aware) 0.2625348752 (terrain unaware) Anelastic dt at level 1 would be: 2.898884074 (terrain aware) 2.898884074 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 131] ADVANCE from elapsed time = 260 to 262 with dt = 2 Making slow rhs at time 260 for fast variables advancing from 260 to 260.6666666667 Fast time integration at level 0 from 260 to 260.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 260 to 260.6666666667 with dt = 0.6666666666667 using RHS created at 260 Making slow rhs at time 260.6666666667 for fast variables advancing from 260 to 261 Fast time integration at level 0 from 260 to 260.5 with dt = 0.5 Fast time integration at level 0 from 260.5 to 261 with dt = 0.5 Time integration of scalars at level 0 from 260 to 261 with dt = 1 using RHS created at 260.6666666667 Making slow rhs at time 261 for fast variables advancing from 260 to 262 Fast time integration at level 0 from 260 to 260.5 with dt = 0.5 Fast time integration at level 0 from 260.5 to 261 with dt = 0.5 Fast time integration at level 0 from 261 to 261.5 with dt = 0.5 Fast time integration at level 0 from 261.5 to 262 with dt = 0.5 Time integration of scalars at level 0 from 260 to 262 with dt = 2 using RHS created at 261 Done with advance_dycore at level 0 [Level 0 step 131] Advanced 4096 cells [Level 1 step 131] ADVANCE from elapsed time = 260 to 262 with dt = 2 Making slow rhs at time 260 for fast variables advancing from 260 to 262 No-substepping time integration at level 1 to 262 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004703141749 0.003229087684 and volume-weighted sum 84883.27344 Subtracting 3.68416986e-05 from rhs in subdomain 0 Sum after subtraction -0.0549480319 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000433472509 MLMG: Initial residual (resid0) = 0.000433472509 MLMG: Final Iter. 2 resid, resid/bnorm = 1.304891839e-06, 0.003010322107 MLMG: Timers: Solve = 0.000674546 Iter = 0.000474404 Bottom = 4.6217e-05 Time in solve 0.000985833 Max/L2 norm of divergence after solve at level 1 : 3.814557567e-05 0.001768420683 and volume-weighted sum 84883.25 Time integration of scalars at level 1 from 260 to 262 with dt = 2 using RHS created at 260 Making slow rhs at time 262 for fast variables advancing from 260 to 262 No-substepping time integration at level 1 to 262 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00048101414 0.003070871113 and volume-weighted sum 84883.28125 Subtracting 3.684170224e-05 from rhs in subdomain 0 Sum after subtraction -0.05183392018 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004441724741 MLMG: Initial residual (resid0) = 0.0004441724741 MLMG: Final Iter. 2 resid, resid/bnorm = 7.645594451e-07, 0.001721312059 MLMG: Timers: Solve = 0.000673464 Iter = 0.00047208 Bottom = 4.6827e-05 Time in solve 0.00098026 Max/L2 norm of divergence after solve at level 1 : 3.761285916e-05 0.001768405549 and volume-weighted sum 84883.25 Time integration of scalars at level 1 from 260 to 262 with dt = 2 using RHS created at 262 Done with advance_dycore at level 1 [Level 1 step 131] Advanced 2304 cells Coarse STEP 131 ends. TIME = 262 DT = 2 Timestep time = 0.015845161 seconds. Coarse STEP 132 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.344217191 (terrain aware) 1.344217191 (terrain unaware) Anelastic dt at level 0 would be: 6.005141646 (terrain aware) 6.005141646 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2623132577 (terrain aware) 0.2623132577 (terrain unaware) Anelastic dt at level 1 would be: 2.876248913 (terrain aware) 2.876248913 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 132] ADVANCE from elapsed time = 262 to 264 with dt = 2 Making slow rhs at time 262 for fast variables advancing from 262 to 262.6666666667 Fast time integration at level 0 from 262 to 262.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 262 to 262.6666666667 with dt = 0.6666666666667 using RHS created at 262 Making slow rhs at time 262.6666666667 for fast variables advancing from 262 to 263 Fast time integration at level 0 from 262 to 262.5 with dt = 0.5 Fast time integration at level 0 from 262.5 to 263 with dt = 0.5 Time integration of scalars at level 0 from 262 to 263 with dt = 1 using RHS created at 262.6666666667 Making slow rhs at time 263 for fast variables advancing from 262 to 264 Fast time integration at level 0 from 262 to 262.5 with dt = 0.5 Fast time integration at level 0 from 262.5 to 263 with dt = 0.5 Fast time integration at level 0 from 263 to 263.5 with dt = 0.5 Fast time integration at level 0 from 263.5 to 264 with dt = 0.5 Time integration of scalars at level 0 from 262 to 264 with dt = 2 using RHS created at 263 Done with advance_dycore at level 0 [Level 0 step 132] Advanced 4096 cells [Level 1 step 132] ADVANCE from elapsed time = 262 to 264 with dt = 2 Making slow rhs at time 262 for fast variables advancing from 262 to 264 No-substepping time integration at level 1 to 264 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000497026369 0.003267292632 and volume-weighted sum 77459.63281 Subtracting 3.361963172e-05 from rhs in subdomain 0 Sum after subtraction 0.03923196346 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004634067009 MLMG: Initial residual (resid0) = 0.0004634067009 MLMG: Final Iter. 2 resid, resid/bnorm = 1.646807505e-06, 0.003553698072 MLMG: Timers: Solve = 0.00069291 Iter = 0.00049363 Bottom = 4.4011e-05 Time in solve 0.001058425 Max/L2 norm of divergence after solve at level 1 : 3.526685759e-05 0.001613768167 and volume-weighted sum 77459.63281 Time integration of scalars at level 1 from 262 to 264 with dt = 2 using RHS created at 262 Making slow rhs at time 264 for fast variables advancing from 262 to 264 No-substepping time integration at level 1 to 264 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005033398047 0.003057479626 and volume-weighted sum 77459.61719 Subtracting 3.361962445e-05 from rhs in subdomain 0 Sum after subtraction 0.0850559473 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004697201366 MLMG: Initial residual (resid0) = 0.0004697201366 MLMG: Final Iter. 2 resid, resid/bnorm = 7.900925993e-07, 0.001682049711 MLMG: Timers: Solve = 0.000685828 Iter = 0.000485665 Bottom = 4.5027e-05 Time in solve 0.000993272 Max/L2 norm of divergence after solve at level 1 : 3.441330045e-05 0.001613749191 and volume-weighted sum 77459.69531 Time integration of scalars at level 1 from 262 to 264 with dt = 2 using RHS created at 264 Done with advance_dycore at level 1 [Level 1 step 132] Advanced 2304 cells Coarse STEP 132 ends. TIME = 264 DT = 2 Timestep time = 0.015027784 seconds. Coarse STEP 133 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.34036986 (terrain aware) 1.34036986 (terrain unaware) Anelastic dt at level 0 would be: 5.921553881 (terrain aware) 5.921553881 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2620923666 (terrain aware) 0.2620923666 (terrain unaware) Anelastic dt at level 1 would be: 2.847000616 (terrain aware) 2.847000616 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 133] ADVANCE from elapsed time = 264 to 266 with dt = 2 Making slow rhs at time 264 for fast variables advancing from 264 to 264.6666666667 Fast time integration at level 0 from 264 to 264.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 264 to 264.6666666667 with dt = 0.6666666666667 using RHS created at 264 Making slow rhs at time 264.6666666667 for fast variables advancing from 264 to 265 Fast time integration at level 0 from 264 to 264.5 with dt = 0.5 Fast time integration at level 0 from 264.5 to 265 with dt = 0.5 Time integration of scalars at level 0 from 264 to 265 with dt = 1 using RHS created at 264.6666666667 Making slow rhs at time 265 for fast variables advancing from 264 to 266 Fast time integration at level 0 from 264 to 264.5 with dt = 0.5 Fast time integration at level 0 from 264.5 to 265 with dt = 0.5 Fast time integration at level 0 from 265 to 265.5 with dt = 0.5 Fast time integration at level 0 from 265.5 to 266 with dt = 0.5 Time integration of scalars at level 0 from 264 to 266 with dt = 2 using RHS created at 265 Done with advance_dycore at level 0 [Level 0 step 133] Advanced 4096 cells [Level 1 step 133] ADVANCE from elapsed time = 264 to 266 with dt = 2 Making slow rhs at time 264 for fast variables advancing from 264 to 266 No-substepping time integration at level 1 to 266 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005043218844 0.003172392724 and volume-weighted sum 61053.46484 Subtracting 2.649889939e-05 from rhs in subdomain 0 Sum after subtraction -0.002299202606 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004778229923 MLMG: Initial residual (resid0) = 0.0004778229923 MLMG: Final Iter. 2 resid, resid/bnorm = 1.727228891e-06, 0.003614788176 MLMG: Timers: Solve = 0.000662843 Iter = 0.00046121 Bottom = 4.5119e-05 Time in solve 0.000984634 Max/L2 norm of divergence after solve at level 1 : 2.821953967e-05 0.001271973946 and volume-weighted sum 61053.48047 Time integration of scalars at level 1 from 264 to 266 with dt = 2 using RHS created at 264 Making slow rhs at time 266 for fast variables advancing from 264 to 266 No-substepping time integration at level 1 to 266 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005063819699 0.002970569534 and volume-weighted sum 61053.47266 Subtracting 2.649890303e-05 from rhs in subdomain 0 Sum after subtraction 0.0251602605 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004798830778 MLMG: Initial residual (resid0) = 0.0004798830778 MLMG: Final Iter. 2 resid, resid/bnorm = 8.081333362e-07, 0.001684021321 MLMG: Timers: Solve = 0.000686103 Iter = 0.000461686 Bottom = 4.3563e-05 Time in solve 0.00101094 Max/L2 norm of divergence after solve at level 1 : 2.730870619e-05 0.001271954738 and volume-weighted sum 61053.44922 Time integration of scalars at level 1 from 264 to 266 with dt = 2 using RHS created at 266 Done with advance_dycore at level 1 [Level 1 step 133] Advanced 2304 cells Coarse STEP 133 ends. TIME = 266 DT = 2 Timestep time = 0.015300287 seconds. Coarse STEP 134 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.337461154 (terrain aware) 1.337461154 (terrain unaware) Anelastic dt at level 0 would be: 5.856134208 (terrain aware) 5.856134208 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2618941439 (terrain aware) 0.2618941439 (terrain unaware) Anelastic dt at level 1 would be: 2.828371781 (terrain aware) 2.828371781 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 134] ADVANCE from elapsed time = 266 to 268 with dt = 2 Making slow rhs at time 266 for fast variables advancing from 266 to 266.6666666667 Fast time integration at level 0 from 266 to 266.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 266 to 266.6666666667 with dt = 0.6666666666667 using RHS created at 266 Making slow rhs at time 266.6666666667 for fast variables advancing from 266 to 267 Fast time integration at level 0 from 266 to 266.5 with dt = 0.5 Fast time integration at level 0 from 266.5 to 267 with dt = 0.5 Time integration of scalars at level 0 from 266 to 267 with dt = 1 using RHS created at 266.6666666667 Making slow rhs at time 267 for fast variables advancing from 266 to 268 Fast time integration at level 0 from 266 to 266.5 with dt = 0.5 Fast time integration at level 0 from 266.5 to 267 with dt = 0.5 Fast time integration at level 0 from 267 to 267.5 with dt = 0.5 Fast time integration at level 0 from 267.5 to 268 with dt = 0.5 Time integration of scalars at level 0 from 266 to 268 with dt = 2 using RHS created at 267 Done with advance_dycore at level 0 [Level 0 step 134] Advanced 4096 cells [Level 1 step 134] ADVANCE from elapsed time = 266 to 268 with dt = 2 Making slow rhs at time 266 for fast variables advancing from 266 to 268 No-substepping time integration at level 1 to 268 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005113980733 0.002973814262 and volume-weighted sum 38594.89062 Subtracting 1.675125532e-05 from rhs in subdomain 0 Sum after subtraction -0.02620799839 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004946468398 MLMG: Initial residual (resid0) = 0.0004946468398 MLMG: Final Iter. 2 resid, resid/bnorm = 1.161131877e-06, 0.002347395755 MLMG: Timers: Solve = 0.00066294 Iter = 0.000463197 Bottom = 4.5649e-05 Time in solve 0.000973371 Max/L2 norm of divergence after solve at level 1 : 1.79130584e-05 0.000804082898 and volume-weighted sum 38594.88281 Time integration of scalars at level 1 from 266 to 268 with dt = 2 using RHS created at 266 Making slow rhs at time 268 for fast variables advancing from 266 to 268 No-substepping time integration at level 1 to 268 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005224989727 0.002886917908 and volume-weighted sum 38594.84766 Subtracting 1.675123531e-05 from rhs in subdomain 0 Sum after subtraction -0.03831519186 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005057477392 MLMG: Initial residual (resid0) = 0.0005057477392 MLMG: Final Iter. 2 resid, resid/bnorm = 8.177485142e-07, 0.001616909867 MLMG: Timers: Solve = 0.00065688 Iter = 0.000456485 Bottom = 4.4334e-05 Time in solve 0.000977992 Max/L2 norm of divergence after solve at level 1 : 1.757126302e-05 0.0008040730027 and volume-weighted sum 38594.85938 Time integration of scalars at level 1 from 266 to 268 with dt = 2 using RHS created at 268 Done with advance_dycore at level 1 [Level 1 step 134] Advanced 2304 cells Coarse STEP 134 ends. TIME = 268 DT = 2 Timestep time = 0.014823912 seconds. Coarse STEP 135 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.335563938 (terrain aware) 1.335563938 (terrain unaware) Anelastic dt at level 0 would be: 5.809463176 (terrain aware) 5.809463176 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2617081029 (terrain aware) 0.2617081029 (terrain unaware) Anelastic dt at level 1 would be: 2.804511148 (terrain aware) 2.804511148 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 135] ADVANCE from elapsed time = 268 to 270 with dt = 2 Making slow rhs at time 268 for fast variables advancing from 268 to 268.6666666667 Fast time integration at level 0 from 268 to 268.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 268 to 268.6666666667 with dt = 0.6666666666667 using RHS created at 268 Making slow rhs at time 268.6666666667 for fast variables advancing from 268 to 269 Fast time integration at level 0 from 268 to 268.5 with dt = 0.5 Fast time integration at level 0 from 268.5 to 269 with dt = 0.5 Time integration of scalars at level 0 from 268 to 269 with dt = 1 using RHS created at 268.6666666667 Making slow rhs at time 269 for fast variables advancing from 268 to 270 Fast time integration at level 0 from 268 to 268.5 with dt = 0.5 Fast time integration at level 0 from 268.5 to 269 with dt = 0.5 Fast time integration at level 0 from 269 to 269.5 with dt = 0.5 Fast time integration at level 0 from 269.5 to 270 with dt = 0.5 Time integration of scalars at level 0 from 268 to 270 with dt = 2 using RHS created at 269 Done with advance_dycore at level 0 [Level 0 step 135] Advanced 4096 cells [Level 1 step 135] ADVANCE from elapsed time = 268 to 270 with dt = 2 Making slow rhs at time 268 for fast variables advancing from 268 to 270 No-substepping time integration at level 1 to 270 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005236342549 0.002897742903 and volume-weighted sum 15467.4502 Subtracting 6.71330281e-06 from rhs in subdomain 0 Sum after subtraction -0.02691376768 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005169209326 MLMG: Initial residual (resid0) = 0.0005169209326 MLMG: Final Iter. 2 resid, resid/bnorm = 7.009512046e-07, 0.001356012421 MLMG: Timers: Solve = 0.000675097 Iter = 0.000473518 Bottom = 4.6275e-05 Time in solve 0.000989037 Max/L2 norm of divergence after solve at level 1 : 7.4300915e-06 0.0003222792875 and volume-weighted sum 15467.4541 Time integration of scalars at level 1 from 268 to 270 with dt = 2 using RHS created at 268 Making slow rhs at time 270 for fast variables advancing from 268 to 270 No-substepping time integration at level 1 to 270 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005337907933 0.002879334847 and volume-weighted sum 15467.43164 Subtracting 6.713295079e-06 from rhs in subdomain 0 Sum after subtraction 0.0367872417 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005270774709 MLMG: Initial residual (resid0) = 0.0005270774709 MLMG: Final Iter. 2 resid, resid/bnorm = 8.203824109e-07, 0.001556474017 MLMG: Timers: Solve = 0.000671427 Iter = 0.000472245 Bottom = 4.4112e-05 Time in solve 0.000981862 Max/L2 norm of divergence after solve at level 1 : 7.529277354e-06 0.0003222702362 and volume-weighted sum 15467.42773 Time integration of scalars at level 1 from 268 to 270 with dt = 2 using RHS created at 270 Done with advance_dycore at level 1 [Level 1 step 135] Advanced 2304 cells Coarse STEP 135 ends. TIME = 270 DT = 2 Timestep time = 0.015218809 seconds. Coarse STEP 136 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.333742569 (terrain aware) 1.333742569 (terrain unaware) Anelastic dt at level 0 would be: 5.781847152 (terrain aware) 5.781847152 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2615405953 (terrain aware) 0.2615405953 (terrain unaware) Anelastic dt at level 1 would be: 2.779914397 (terrain aware) 2.779914397 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 136] ADVANCE from elapsed time = 270 to 272 with dt = 2 Making slow rhs at time 270 for fast variables advancing from 270 to 270.6666666667 Fast time integration at level 0 from 270 to 270.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 270 to 270.6666666667 with dt = 0.6666666666667 using RHS created at 270 Making slow rhs at time 270.6666666667 for fast variables advancing from 270 to 271 Fast time integration at level 0 from 270 to 270.5 with dt = 0.5 Fast time integration at level 0 from 270.5 to 271 with dt = 0.5 Time integration of scalars at level 0 from 270 to 271 with dt = 1 using RHS created at 270.6666666667 Making slow rhs at time 271 for fast variables advancing from 270 to 272 Fast time integration at level 0 from 270 to 270.5 with dt = 0.5 Fast time integration at level 0 from 270.5 to 271 with dt = 0.5 Fast time integration at level 0 from 271 to 271.5 with dt = 0.5 Fast time integration at level 0 from 271.5 to 272 with dt = 0.5 Time integration of scalars at level 0 from 270 to 272 with dt = 2 using RHS created at 271 Done with advance_dycore at level 0 [Level 0 step 136] Advanced 4096 cells [Level 1 step 136] ADVANCE from elapsed time = 270 to 272 with dt = 2 Making slow rhs at time 270 for fast variables advancing from 270 to 272 No-substepping time integration at level 1 to 272 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005201245658 0.003059337614 and volume-weighted sum -3621.04541 Subtracting -1.571634243e-06 from rhs in subdomain 0 Sum after subtraction 0.1188600436 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005216961144 MLMG: Initial residual (resid0) = 0.0005216961144 MLMG: Final Iter. 2 resid, resid/bnorm = 1.0213721e-06, 0.001957791159 MLMG: Timers: Solve = 0.000675478 Iter = 0.000463585 Bottom = 4.5039e-05 Time in solve 0.000986884 Max/L2 norm of divergence after solve at level 1 : 2.595596015e-06 7.579231169e-05 and volume-weighted sum -3621.025391 Time integration of scalars at level 1 from 270 to 272 with dt = 2 using RHS created at 270 Making slow rhs at time 272 for fast variables advancing from 270 to 272 No-substepping time integration at level 1 to 272 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005289083347 0.002951656934 and volume-weighted sum -3621.044922 Subtracting -1.57163413e-06 from rhs in subdomain 0 Sum after subtraction 0.1707812846 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005304798833 MLMG: Initial residual (resid0) = 0.0005304798833 MLMG: Final Iter. 2 resid, resid/bnorm = 8.198185242e-07, 0.001545428066 MLMG: Timers: Solve = 0.000694615 Iter = 0.00049478 Bottom = 6.1166e-05 Time in solve 0.000996381 Max/L2 norm of divergence after solve at level 1 : 2.271495759e-06 7.558024663e-05 and volume-weighted sum -3621.029053 Time integration of scalars at level 1 from 270 to 272 with dt = 2 using RHS created at 272 Done with advance_dycore at level 1 [Level 1 step 136] Advanced 2304 cells Coarse STEP 136 ends. TIME = 272 DT = 2 Timestep time = 0.014856143 seconds. Coarse STEP 137 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.330039779 (terrain aware) 1.330039779 (terrain unaware) Anelastic dt at level 0 would be: 5.711935077 (terrain aware) 5.711935077 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2613852507 (terrain aware) 0.2613852507 (terrain unaware) Anelastic dt at level 1 would be: 2.763620276 (terrain aware) 2.763620276 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 137] ADVANCE from elapsed time = 272 to 274 with dt = 2 Making slow rhs at time 272 for fast variables advancing from 272 to 272.6666666667 Fast time integration at level 0 from 272 to 272.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 272 to 272.6666666667 with dt = 0.6666666666667 using RHS created at 272 Making slow rhs at time 272.6666666667 for fast variables advancing from 272 to 273 Fast time integration at level 0 from 272 to 272.5 with dt = 0.5 Fast time integration at level 0 from 272.5 to 273 with dt = 0.5 Time integration of scalars at level 0 from 272 to 273 with dt = 1 using RHS created at 272.6666666667 Making slow rhs at time 273 for fast variables advancing from 272 to 274 Fast time integration at level 0 from 272 to 272.5 with dt = 0.5 Fast time integration at level 0 from 272.5 to 273 with dt = 0.5 Fast time integration at level 0 from 273 to 273.5 with dt = 0.5 Fast time integration at level 0 from 273.5 to 274 with dt = 0.5 Time integration of scalars at level 0 from 272 to 274 with dt = 2 using RHS created at 273 Done with advance_dycore at level 0 [Level 0 step 137] Advanced 4096 cells [Level 1 step 137] ADVANCE from elapsed time = 272 to 274 with dt = 2 Making slow rhs at time 272 for fast variables advancing from 272 to 274 No-substepping time integration at level 1 to 274 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005499459803 0.003199871862 and volume-weighted sum -17548.34375 Subtracting -7.616468793e-06 from rhs in subdomain 0 Sum after subtraction -0.01245643944 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005575624527 MLMG: Initial residual (resid0) = 0.0005575624527 MLMG: Final Iter. 2 resid, resid/bnorm = 1.330873829e-06, 0.002386950189 MLMG: Timers: Solve = 0.001032761 Iter = 0.000458666 Bottom = 4.3644e-05 Time in solve 0.001344772 Max/L2 norm of divergence after solve at level 1 : 8.947681636e-06 0.0003656685294 and volume-weighted sum -17548.33398 Time integration of scalars at level 1 from 272 to 274 with dt = 2 using RHS created at 272 Making slow rhs at time 274 for fast variables advancing from 272 to 274 No-substepping time integration at level 1 to 274 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005584331229 0.003062544391 and volume-weighted sum -17548.33398 Subtracting -7.616464245e-06 from rhs in subdomain 0 Sum after subtraction -0.01006992534 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005660495954 MLMG: Initial residual (resid0) = 0.0005660495954 MLMG: Final Iter. 2 resid, resid/bnorm = 8.204697224e-07, 0.001449466101 MLMG: Timers: Solve = 0.00066113 Iter = 0.000454757 Bottom = 4.4767e-05 Time in solve 0.000963158 Max/L2 norm of divergence after solve at level 1 : 8.303206414e-06 0.0003656197805 and volume-weighted sum -17548.30859 Time integration of scalars at level 1 from 272 to 274 with dt = 2 using RHS created at 274 Done with advance_dycore at level 1 [Level 1 step 137] Advanced 2304 cells Coarse STEP 137 ends. TIME = 274 DT = 2 Timestep time = 0.015008938 seconds. Coarse STEP 138 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.327446083 (terrain aware) 1.327446083 (terrain unaware) Anelastic dt at level 0 would be: 5.653899228 (terrain aware) 5.653899228 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2612603603 (terrain aware) 0.2612603603 (terrain unaware) Anelastic dt at level 1 would be: 2.740041871 (terrain aware) 2.740041871 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 138] ADVANCE from elapsed time = 274 to 276 with dt = 2 Making slow rhs at time 274 for fast variables advancing from 274 to 274.6666666667 Fast time integration at level 0 from 274 to 274.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 274 to 274.6666666667 with dt = 0.6666666666667 using RHS created at 274 Making slow rhs at time 274.6666666667 for fast variables advancing from 274 to 275 Fast time integration at level 0 from 274 to 274.5 with dt = 0.5 Fast time integration at level 0 from 274.5 to 275 with dt = 0.5 Time integration of scalars at level 0 from 274 to 275 with dt = 1 using RHS created at 274.6666666667 Making slow rhs at time 275 for fast variables advancing from 274 to 276 Fast time integration at level 0 from 274 to 274.5 with dt = 0.5 Fast time integration at level 0 from 274.5 to 275 with dt = 0.5 Fast time integration at level 0 from 275 to 275.5 with dt = 0.5 Fast time integration at level 0 from 275.5 to 276 with dt = 0.5 Time integration of scalars at level 0 from 274 to 276 with dt = 2 using RHS created at 275 Done with advance_dycore at level 0 [Level 0 step 138] Advanced 4096 cells [Level 1 step 138] ADVANCE from elapsed time = 274 to 276 with dt = 2 Making slow rhs at time 274 for fast variables advancing from 274 to 276 No-substepping time integration at level 1 to 276 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005614566617 0.003244160675 and volume-weighted sum -28838.28516 Subtracting -1.251661706e-05 from rhs in subdomain 0 Sum after subtraction 0.08818461001 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005739732296 MLMG: Initial residual (resid0) = 0.0005739732296 MLMG: Final Iter. 2 resid, resid/bnorm = 8.447436812e-07, 0.001471747528 MLMG: Timers: Solve = 0.000672105 Iter = 0.000460184 Bottom = 4.6736e-05 Time in solve 0.000982551 Max/L2 norm of divergence after solve at level 1 : 1.336308196e-05 0.0006008207565 and volume-weighted sum -28838.25391 Time integration of scalars at level 1 from 274 to 276 with dt = 2 using RHS created at 274 Making slow rhs at time 276 for fast variables advancing from 274 to 276 No-substepping time integration at level 1 to 276 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005633160472 0.003188260365 and volume-weighted sum -28838.26758 Subtracting -1.251660888e-05 from rhs in subdomain 0 Sum after subtraction 0.1069565788 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005758326151 MLMG: Initial residual (resid0) = 0.0005758326151 MLMG: Final Iter. 2 resid, resid/bnorm = 8.23802111e-07, 0.001430627774 MLMG: Timers: Solve = 0.00066253 Iter = 0.000456773 Bottom = 4.4464e-05 Time in solve 0.000968241 Max/L2 norm of divergence after solve at level 1 : 1.323642209e-05 0.0006008154596 and volume-weighted sum -28838.23633 Time integration of scalars at level 1 from 274 to 276 with dt = 2 using RHS created at 276 Done with advance_dycore at level 1 [Level 1 step 138] Advanced 2304 cells Coarse STEP 138 ends. TIME = 276 DT = 2 Timestep time = 0.014744408 seconds. Coarse STEP 139 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.326067726 (terrain aware) 1.326067726 (terrain unaware) Anelastic dt at level 0 would be: 5.617143428 (terrain aware) 5.617143428 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2611337749 (terrain aware) 0.2611337749 (terrain unaware) Anelastic dt at level 1 would be: 2.728107829 (terrain aware) 2.728107829 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 139] ADVANCE from elapsed time = 276 to 278 with dt = 2 Making slow rhs at time 276 for fast variables advancing from 276 to 276.6666666667 Fast time integration at level 0 from 276 to 276.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 276 to 276.6666666667 with dt = 0.6666666666667 using RHS created at 276 Making slow rhs at time 276.6666666667 for fast variables advancing from 276 to 277 Fast time integration at level 0 from 276 to 276.5 with dt = 0.5 Fast time integration at level 0 from 276.5 to 277 with dt = 0.5 Time integration of scalars at level 0 from 276 to 277 with dt = 1 using RHS created at 276.6666666667 Making slow rhs at time 277 for fast variables advancing from 276 to 278 Fast time integration at level 0 from 276 to 276.5 with dt = 0.5 Fast time integration at level 0 from 276.5 to 277 with dt = 0.5 Fast time integration at level 0 from 277 to 277.5 with dt = 0.5 Fast time integration at level 0 from 277.5 to 278 with dt = 0.5 Time integration of scalars at level 0 from 276 to 278 with dt = 2 using RHS created at 277 Done with advance_dycore at level 0 [Level 0 step 139] Advanced 4096 cells [Level 1 step 139] ADVANCE from elapsed time = 276 to 278 with dt = 2 Making slow rhs at time 276 for fast variables advancing from 276 to 278 No-substepping time integration at level 1 to 278 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005717091262 0.003354746383 and volume-weighted sum -40658.57031 Subtracting -1.764694935e-05 from rhs in subdomain 0 Sum after subtraction 0.01228181645 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005893560592 MLMG: Initial residual (resid0) = 0.0005893560592 MLMG: Final Iter. 2 resid, resid/bnorm = 7.54786015e-07, 0.001280696131 MLMG: Timers: Solve = 0.000668942 Iter = 0.000458113 Bottom = 4.5719e-05 Time in solve 0.000979425 Max/L2 norm of divergence after solve at level 1 : 1.830636756e-05 0.0008470651228 and volume-weighted sum -40658.57031 Time integration of scalars at level 1 from 276 to 278 with dt = 2 using RHS created at 276 Making slow rhs at time 278 for fast variables advancing from 276 to 278 No-substepping time integration at level 1 to 278 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005826186389 0.003330546897 and volume-weighted sum -40658.54688 Subtracting -1.764693843e-05 from rhs in subdomain 0 Sum after subtraction -0.001396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006002655718 MLMG: Initial residual (resid0) = 0.0006002655718 MLMG: Final Iter. 2 resid, resid/bnorm = 8.277711459e-07, 0.001379008172 MLMG: Timers: Solve = 0.000672297 Iter = 0.000462002 Bottom = 4.5046e-05 Time in solve 0.000972737 Max/L2 norm of divergence after solve at level 1 : 1.835444709e-05 0.0008470669272 and volume-weighted sum -40658.54297 Time integration of scalars at level 1 from 276 to 278 with dt = 2 using RHS created at 278 Done with advance_dycore at level 1 [Level 1 step 139] Advanced 2304 cells Coarse STEP 139 ends. TIME = 278 DT = 2 Timestep time = 0.014880534 seconds. Coarse STEP 140 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.325947623 (terrain aware) 1.325947623 (terrain unaware) Anelastic dt at level 0 would be: 5.601900732 (terrain aware) 5.601900732 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.261064112 (terrain aware) 0.261064112 (terrain unaware) Anelastic dt at level 1 would be: 2.708680887 (terrain aware) 2.708680887 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 140] ADVANCE from elapsed time = 278 to 280 with dt = 2 Making slow rhs at time 278 for fast variables advancing from 278 to 278.6666666667 Fast time integration at level 0 from 278 to 278.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 278 to 278.6666666667 with dt = 0.6666666666667 using RHS created at 278 Making slow rhs at time 278.6666666667 for fast variables advancing from 278 to 279 Fast time integration at level 0 from 278 to 278.5 with dt = 0.5 Fast time integration at level 0 from 278.5 to 279 with dt = 0.5 Time integration of scalars at level 0 from 278 to 279 with dt = 1 using RHS created at 278.6666666667 Making slow rhs at time 279 for fast variables advancing from 278 to 280 Fast time integration at level 0 from 278 to 278.5 with dt = 0.5 Fast time integration at level 0 from 278.5 to 279 with dt = 0.5 Fast time integration at level 0 from 279 to 279.5 with dt = 0.5 Fast time integration at level 0 from 279.5 to 280 with dt = 0.5 Time integration of scalars at level 0 from 278 to 280 with dt = 2 using RHS created at 279 Done with advance_dycore at level 0 [Level 0 step 140] Advanced 4096 cells [Level 1 step 140] ADVANCE from elapsed time = 278 to 280 with dt = 2 Making slow rhs at time 278 for fast variables advancing from 278 to 280 No-substepping time integration at level 1 to 280 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005984976888 0.003518342273 and volume-weighted sum -53445.67578 Subtracting -2.319690793e-05 from rhs in subdomain 0 Sum after subtraction -0.1476146281 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000621694664 MLMG: Initial residual (resid0) = 0.000621694664 MLMG: Final Iter. 2 resid, resid/bnorm = 7.018534234e-07, 0.001128935954 MLMG: Timers: Solve = 0.000660906 Iter = 0.000461374 Bottom = 4.6414e-05 Time in solve 0.000975311 Max/L2 norm of divergence after solve at level 1 : 2.389168367e-05 0.001113460981 and volume-weighted sum -53445.66016 Time integration of scalars at level 1 from 278 to 280 with dt = 2 using RHS created at 278 Making slow rhs at time 280 for fast variables advancing from 278 to 280 No-substepping time integration at level 1 to 280 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005967710167 0.003491868731 and volume-weighted sum -53445.64453 Subtracting -2.31968952e-05 from rhs in subdomain 0 Sum after subtraction -0.1740700155 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000619967992 MLMG: Initial residual (resid0) = 0.000619967992 MLMG: Final Iter. 2 resid, resid/bnorm = 8.362185326e-07, 0.001348809223 MLMG: Timers: Solve = 0.000664854 Iter = 0.00046641 Bottom = 4.5803e-05 Time in solve 0.000968187 Max/L2 norm of divergence after solve at level 1 : 2.391450107e-05 0.001113461913 and volume-weighted sum -53445.64844 Time integration of scalars at level 1 from 278 to 280 with dt = 2 using RHS created at 280 Done with advance_dycore at level 1 [Level 1 step 140] Advanced 2304 cells Coarse STEP 140 ends. TIME = 280 DT = 2 Timestep time = 0.014901894 seconds. Coarse STEP 141 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.32267652 (terrain aware) 1.32267652 (terrain unaware) Anelastic dt at level 0 would be: 5.565459645 (terrain aware) 5.565459645 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2609630263 (terrain aware) 0.2609630263 (terrain unaware) Anelastic dt at level 1 would be: 2.700391074 (terrain aware) 2.700391074 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(3) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (63,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006828354672 0.004381830804 and volume-weighted sum -70688.15625 Subtracting -2.301046698e-05 from rhs in subdomain 0 Sum after subtraction -0.01623993739 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006598249893 MLMG: Initial residual (resid0) = 0.0006598249893 MLMG: Final Iter. 2 resid, resid/bnorm = 6.141239282e-06, 0.009307376109 MLMG: Timers: Solve = 0.000650196 Iter = 0.000512336 Bottom = 5.3527e-05 Time in solve 0.001068643 Max/L2 norm of divergence after solve at level 1 : 2.426639549e-05 0.001275725779 and volume-weighted sum -70688.17969 [Level 0 step 141] ADVANCE from elapsed time = 280 to 282 with dt = 2 Making slow rhs at time 280 for fast variables advancing from 280 to 280.6666666667 Fast time integration at level 0 from 280 to 280.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 280 to 280.6666666667 with dt = 0.6666666666667 using RHS created at 280 Making slow rhs at time 280.6666666667 for fast variables advancing from 280 to 281 Fast time integration at level 0 from 280 to 280.5 with dt = 0.5 Fast time integration at level 0 from 280.5 to 281 with dt = 0.5 Time integration of scalars at level 0 from 280 to 281 with dt = 1 using RHS created at 280.6666666667 Making slow rhs at time 281 for fast variables advancing from 280 to 282 Fast time integration at level 0 from 280 to 280.5 with dt = 0.5 Fast time integration at level 0 from 280.5 to 281 with dt = 0.5 Fast time integration at level 0 from 281 to 281.5 with dt = 0.5 Fast time integration at level 0 from 281.5 to 282 with dt = 0.5 Time integration of scalars at level 0 from 280 to 282 with dt = 2 using RHS created at 281 Done with advance_dycore at level 0 [Level 0 step 141] Advanced 4096 cells [Level 1 step 141] ADVANCE from elapsed time = 280 to 282 with dt = 2 Making slow rhs at time 280 for fast variables advancing from 280 to 282 No-substepping time integration at level 1 to 282 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00622038357 0.06845598668 and volume-weighted sum -81190.39062 Subtracting -2.642916297e-05 from rhs in subdomain 0 Sum after subtraction 0.2384185791 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.006246812642 MLMG: Initial residual (resid0) = 0.006246812642 MLMG: Final Iter. 3 resid, resid/bnorm = 2.144253813e-06, 0.0003432556696 MLMG: Timers: Solve = 0.000845586 Iter = 0.000717794 Bottom = 7.6455e-05 Time in solve 0.001262503 Max/L2 norm of divergence after solve at level 1 : 2.857437357e-05 0.001464918954 and volume-weighted sum -81190.58594 Time integration of scalars at level 1 from 280 to 282 with dt = 2 using RHS created at 280 Making slow rhs at time 282 for fast variables advancing from 280 to 282 No-substepping time integration at level 1 to 282 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005956077948 0.003685696516 and volume-weighted sum -81190.60156 Subtracting -2.642923209e-05 from rhs in subdomain 0 Sum after subtraction -0.04749745131 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006220370415 MLMG: Initial residual (resid0) = 0.0006220370415 MLMG: Final Iter. 2 resid, resid/bnorm = 8.235838322e-07, 0.001324010896 MLMG: Timers: Solve = 0.000779866 Iter = 0.000654619 Bottom = 0.000108287 Time in solve 0.001183923 Max/L2 norm of divergence after solve at level 1 : 2.725282684e-05 0.001464861562 and volume-weighted sum -81190.61719 Time integration of scalars at level 1 from 280 to 282 with dt = 2 using RHS created at 282 Done with advance_dycore at level 1 [Level 1 step 141] Advanced 3072 cells Coarse STEP 141 ends. TIME = 282 DT = 2 Timestep time = 0.022877507 seconds. Coarse STEP 142 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.320613305 (terrain aware) 1.320613305 (terrain unaware) Anelastic dt at level 0 would be: 5.516253032 (terrain aware) 5.516253032 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2609590961 (terrain aware) 0.2609590961 (terrain unaware) Anelastic dt at level 1 would be: 2.685760816 (terrain aware) 2.685760816 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 142] ADVANCE from elapsed time = 282 to 284 with dt = 2 Making slow rhs at time 282 for fast variables advancing from 282 to 282.6666666667 Fast time integration at level 0 from 282 to 282.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 282 to 282.6666666667 with dt = 0.6666666666667 using RHS created at 282 Making slow rhs at time 282.6666666667 for fast variables advancing from 282 to 283 Fast time integration at level 0 from 282 to 282.5 with dt = 0.5 Fast time integration at level 0 from 282.5 to 283 with dt = 0.5 Time integration of scalars at level 0 from 282 to 283 with dt = 1 using RHS created at 282.6666666667 Making slow rhs at time 283 for fast variables advancing from 282 to 284 Fast time integration at level 0 from 282 to 282.5 with dt = 0.5 Fast time integration at level 0 from 282.5 to 283 with dt = 0.5 Fast time integration at level 0 from 283 to 283.5 with dt = 0.5 Fast time integration at level 0 from 283.5 to 284 with dt = 0.5 Time integration of scalars at level 0 from 282 to 284 with dt = 2 using RHS created at 283 Done with advance_dycore at level 0 [Level 0 step 142] Advanced 4096 cells [Level 1 step 142] ADVANCE from elapsed time = 282 to 284 with dt = 2 Making slow rhs at time 282 for fast variables advancing from 282 to 284 No-substepping time integration at level 1 to 284 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006289770827 0.003988438286 and volume-weighted sum -80655.33594 Subtracting -2.625499292e-05 from rhs in subdomain 0 Sum after subtraction -0.0330619514 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006552320556 MLMG: Initial residual (resid0) = 0.0006552320556 MLMG: Final Iter. 2 resid, resid/bnorm = 1.790136366e-06, 0.002732064808 MLMG: Timers: Solve = 0.000645321 Iter = 0.000509468 Bottom = 5.5482e-05 Time in solve 0.001061671 Max/L2 norm of divergence after solve at level 1 : 2.804631367e-05 0.001455221092 and volume-weighted sum -80655.32031 Time integration of scalars at level 1 from 282 to 284 with dt = 2 using RHS created at 282 Making slow rhs at time 284 for fast variables advancing from 282 to 284 No-substepping time integration at level 1 to 284 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006331829354 0.003762132023 and volume-weighted sum -80655.33594 Subtracting -2.625499292e-05 from rhs in subdomain 0 Sum after subtraction 0.01350417733 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006594379083 MLMG: Initial residual (resid0) = 0.0006594379083 MLMG: Final Iter. 2 resid, resid/bnorm = 8.684874047e-07, 0.001317011658 MLMG: Timers: Solve = 0.000639621 Iter = 0.000509643 Bottom = 5.8059e-05 Time in solve 0.001062441 Max/L2 norm of divergence after solve at level 1 : 2.710847184e-05 0.001455204911 and volume-weighted sum -80655.32031 Time integration of scalars at level 1 from 282 to 284 with dt = 2 using RHS created at 284 Done with advance_dycore at level 1 [Level 1 step 142] Advanced 3072 cells Coarse STEP 142 ends. TIME = 284 DT = 2 Timestep time = 0.016313956 seconds. Coarse STEP 143 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.319877486 (terrain aware) 1.319877486 (terrain unaware) Anelastic dt at level 0 would be: 5.489358224 (terrain aware) 5.489358224 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2608722782 (terrain aware) 0.2608722782 (terrain unaware) Anelastic dt at level 1 would be: 2.679629882 (terrain aware) 2.679629882 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 143] ADVANCE from elapsed time = 284 to 286 with dt = 2 Making slow rhs at time 284 for fast variables advancing from 284 to 284.6666666667 Fast time integration at level 0 from 284 to 284.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 284 to 284.6666666667 with dt = 0.6666666666667 using RHS created at 284 Making slow rhs at time 284.6666666667 for fast variables advancing from 284 to 285 Fast time integration at level 0 from 284 to 284.5 with dt = 0.5 Fast time integration at level 0 from 284.5 to 285 with dt = 0.5 Time integration of scalars at level 0 from 284 to 285 with dt = 1 using RHS created at 284.6666666667 Making slow rhs at time 285 for fast variables advancing from 284 to 286 Fast time integration at level 0 from 284 to 284.5 with dt = 0.5 Fast time integration at level 0 from 284.5 to 285 with dt = 0.5 Fast time integration at level 0 from 285 to 285.5 with dt = 0.5 Fast time integration at level 0 from 285.5 to 286 with dt = 0.5 Time integration of scalars at level 0 from 284 to 286 with dt = 2 using RHS created at 285 Done with advance_dycore at level 0 [Level 0 step 143] Advanced 4096 cells [Level 1 step 143] ADVANCE from elapsed time = 284 to 286 with dt = 2 Making slow rhs at time 284 for fast variables advancing from 284 to 286 No-substepping time integration at level 1 to 286 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006386376917 0.004236941226 and volume-weighted sum -63124.77734 Subtracting -2.054843026e-05 from rhs in subdomain 0 Sum after subtraction -0.05448237062 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000659186102 MLMG: Initial residual (resid0) = 0.000659186102 MLMG: Final Iter. 2 resid, resid/bnorm = 2.744563062e-06, 0.004163563251 MLMG: Timers: Solve = 0.000644911 Iter = 0.000518314 Bottom = 5.5189e-05 Time in solve 0.001056241 Max/L2 norm of divergence after solve at level 1 : 2.329517156e-05 0.001138969557 and volume-weighted sum -63124.78516 Time integration of scalars at level 1 from 284 to 286 with dt = 2 using RHS created at 284 Making slow rhs at time 286 for fast variables advancing from 284 to 286 No-substepping time integration at level 1 to 286 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006337836385 0.00373115926 and volume-weighted sum -63124.76172 Subtracting -2.05484248e-05 from rhs in subdomain 0 Sum after subtraction -0.1331791282 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006543321069 MLMG: Initial residual (resid0) = 0.0006543321069 MLMG: Final Iter. 2 resid, resid/bnorm = 8.708739188e-07, 0.001330935629 MLMG: Timers: Solve = 0.000784457 Iter = 0.000653015 Bottom = 0.000103958 Time in solve 0.001193551 Max/L2 norm of divergence after solve at level 1 : 2.144323662e-05 0.001138917287 and volume-weighted sum -63124.78906 Time integration of scalars at level 1 from 284 to 286 with dt = 2 using RHS created at 286 Done with advance_dycore at level 1 [Level 1 step 143] Advanced 3072 cells Coarse STEP 143 ends. TIME = 286 DT = 2 Timestep time = 0.016682458 seconds. Coarse STEP 144 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.320484708 (terrain aware) 1.320484708 (terrain unaware) Anelastic dt at level 0 would be: 5.484719791 (terrain aware) 5.484719791 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2608932702 (terrain aware) 0.2608932702 (terrain unaware) Anelastic dt at level 1 would be: 2.668952902 (terrain aware) 2.668952902 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 144] ADVANCE from elapsed time = 286 to 288 with dt = 2 Making slow rhs at time 286 for fast variables advancing from 286 to 286.6666666667 Fast time integration at level 0 from 286 to 286.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 286 to 286.6666666667 with dt = 0.6666666666667 using RHS created at 286 Making slow rhs at time 286.6666666667 for fast variables advancing from 286 to 287 Fast time integration at level 0 from 286 to 286.5 with dt = 0.5 Fast time integration at level 0 from 286.5 to 287 with dt = 0.5 Time integration of scalars at level 0 from 286 to 287 with dt = 1 using RHS created at 286.6666666667 Making slow rhs at time 287 for fast variables advancing from 286 to 288 Fast time integration at level 0 from 286 to 286.5 with dt = 0.5 Fast time integration at level 0 from 286.5 to 287 with dt = 0.5 Fast time integration at level 0 from 287 to 287.5 with dt = 0.5 Fast time integration at level 0 from 287.5 to 288 with dt = 0.5 Time integration of scalars at level 0 from 286 to 288 with dt = 2 using RHS created at 287 Done with advance_dycore at level 0 [Level 0 step 144] Advanced 4096 cells [Level 1 step 144] ADVANCE from elapsed time = 286 to 288 with dt = 2 Making slow rhs at time 286 for fast variables advancing from 286 to 288 No-substepping time integration at level 1 to 288 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006727408618 0.004161681049 and volume-weighted sum -29282.41992 Subtracting -9.532037438e-06 from rhs in subdomain 0 Sum after subtraction 0.05727633834 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006822728901 MLMG: Initial residual (resid0) = 0.0006822728901 MLMG: Final Iter. 2 resid, resid/bnorm = 2.684778792e-06, 0.003935051151 MLMG: Timers: Solve = 0.000649245 Iter = 0.000520145 Bottom = 5.2564e-05 Time in solve 0.001056349 Max/L2 norm of divergence after solve at level 1 : 1.220963895e-05 0.000528438366 and volume-weighted sum -29282.43164 Time integration of scalars at level 1 from 286 to 288 with dt = 2 using RHS created at 286 Making slow rhs at time 288 for fast variables advancing from 286 to 288 No-substepping time integration at level 1 to 288 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006836699322 0.003673318774 and volume-weighted sum -29282.43164 Subtracting -9.532041986e-06 from rhs in subdomain 0 Sum after subtraction 0.02607703209 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006932019605 MLMG: Initial residual (resid0) = 0.0006932019605 MLMG: Final Iter. 2 resid, resid/bnorm = 8.281494956e-07, 0.001194672775 MLMG: Timers: Solve = 0.000677499 Iter = 0.00054655 Bottom = 7.0015e-05 Time in solve 0.001079084 Max/L2 norm of divergence after solve at level 1 : 1.037027687e-05 0.0005283359205 and volume-weighted sum -29282.45898 Time integration of scalars at level 1 from 286 to 288 with dt = 2 using RHS created at 288 Done with advance_dycore at level 1 [Level 1 step 144] Advanced 3072 cells Coarse STEP 144 ends. TIME = 288 DT = 2 Timestep time = 0.01628355 seconds. Coarse STEP 145 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.31802542 (terrain aware) 1.31802542 (terrain unaware) Anelastic dt at level 0 would be: 5.467441001 (terrain aware) 5.467441001 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2608659638 (terrain aware) 0.2608659638 (terrain unaware) Anelastic dt at level 1 would be: 2.665104826 (terrain aware) 2.665104826 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 145] ADVANCE from elapsed time = 288 to 290 with dt = 2 Making slow rhs at time 288 for fast variables advancing from 288 to 288.6666666667 Fast time integration at level 0 from 288 to 288.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 288 to 288.6666666667 with dt = 0.6666666666667 using RHS created at 288 Making slow rhs at time 288.6666666667 for fast variables advancing from 288 to 289 Fast time integration at level 0 from 288 to 288.5 with dt = 0.5 Fast time integration at level 0 from 288.5 to 289 with dt = 0.5 Time integration of scalars at level 0 from 288 to 289 with dt = 1 using RHS created at 288.6666666667 Making slow rhs at time 289 for fast variables advancing from 288 to 290 Fast time integration at level 0 from 288 to 288.5 with dt = 0.5 Fast time integration at level 0 from 288.5 to 289 with dt = 0.5 Fast time integration at level 0 from 289 to 289.5 with dt = 0.5 Fast time integration at level 0 from 289.5 to 290 with dt = 0.5 Time integration of scalars at level 0 from 288 to 290 with dt = 2 using RHS created at 289 Done with advance_dycore at level 0 [Level 0 step 145] Advanced 4096 cells [Level 1 step 145] ADVANCE from elapsed time = 288 to 290 with dt = 2 Making slow rhs at time 288 for fast variables advancing from 288 to 290 No-substepping time integration at level 1 to 290 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007062908262 0.003922212403 and volume-weighted sum 13513.3418 Subtracting 4.398874353e-06 from rhs in subdomain 0 Sum after subtraction -0.07217749953 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007018919569 MLMG: Initial residual (resid0) = 0.0007018919569 MLMG: Final Iter. 2 resid, resid/bnorm = 1.589376211e-06, 0.002264417242 MLMG: Timers: Solve = 0.000642821 Iter = 0.00050347 Bottom = 5.2083e-05 Time in solve 0.001052573 Max/L2 norm of divergence after solve at level 1 : 5.498062819e-06 0.0002439106756 and volume-weighted sum 13513.35059 Time integration of scalars at level 1 from 288 to 290 with dt = 2 using RHS created at 288 Making slow rhs at time 290 for fast variables advancing from 288 to 290 No-substepping time integration at level 1 to 290 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007034298033 0.003722883761 and volume-weighted sum 13513.33398 Subtracting 4.398871624e-06 from rhs in subdomain 0 Sum after subtraction -0.1224689186 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006990309921 MLMG: Initial residual (resid0) = 0.0006990309921 MLMG: Final Iter. 2 resid, resid/bnorm = 7.822018233e-07, 0.001118980232 MLMG: Timers: Solve = 0.000788694 Iter = 0.000658921 Bottom = 8.6905e-05 Time in solve 0.00119965 Max/L2 norm of divergence after solve at level 1 : 5.111098289e-06 0.0002438452357 and volume-weighted sum 13513.3252 Time integration of scalars at level 1 from 288 to 290 with dt = 2 using RHS created at 290 Done with advance_dycore at level 1 [Level 1 step 145] Advanced 3072 cells Coarse STEP 145 ends. TIME = 290 DT = 2 Timestep time = 0.016523533 seconds. Coarse STEP 146 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.316521893 (terrain aware) 1.316521893 (terrain unaware) Anelastic dt at level 0 would be: 5.425653973 (terrain aware) 5.425653973 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2609074077 (terrain aware) 0.2609074077 (terrain unaware) Anelastic dt at level 1 would be: 2.659887334 (terrain aware) 2.659887334 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 146] ADVANCE from elapsed time = 290 to 292 with dt = 2 Making slow rhs at time 290 for fast variables advancing from 290 to 290.6666666667 Fast time integration at level 0 from 290 to 290.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 290 to 290.6666666667 with dt = 0.6666666666667 using RHS created at 290 Making slow rhs at time 290.6666666667 for fast variables advancing from 290 to 291 Fast time integration at level 0 from 290 to 290.5 with dt = 0.5 Fast time integration at level 0 from 290.5 to 291 with dt = 0.5 Time integration of scalars at level 0 from 290 to 291 with dt = 1 using RHS created at 290.6666666667 Making slow rhs at time 291 for fast variables advancing from 290 to 292 Fast time integration at level 0 from 290 to 290.5 with dt = 0.5 Fast time integration at level 0 from 290.5 to 291 with dt = 0.5 Fast time integration at level 0 from 291 to 291.5 with dt = 0.5 Fast time integration at level 0 from 291.5 to 292 with dt = 0.5 Time integration of scalars at level 0 from 290 to 292 with dt = 2 using RHS created at 291 Done with advance_dycore at level 0 [Level 0 step 146] Advanced 4096 cells [Level 1 step 146] ADVANCE from elapsed time = 290 to 292 with dt = 2 Making slow rhs at time 290 for fast variables advancing from 290 to 292 No-substepping time integration at level 1 to 292 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007244497538 0.004010509234 and volume-weighted sum 55760.38281 Subtracting 1.815116593e-05 from rhs in subdomain 0 Sum after subtraction 0.04563480616 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007062985678 MLMG: Initial residual (resid0) = 0.0007062985678 MLMG: Final Iter. 2 resid, resid/bnorm = 9.161813068e-07, 0.001297158655 MLMG: Timers: Solve = 0.000641311 Iter = 0.000513997 Bottom = 5.0691e-05 Time in solve 0.001052178 Max/L2 norm of divergence after solve at level 1 : 1.888163388e-05 0.001006052713 and volume-weighted sum 55760.41797 Time integration of scalars at level 1 from 290 to 292 with dt = 2 using RHS created at 290 Making slow rhs at time 292 for fast variables advancing from 290 to 292 No-substepping time integration at level 1 to 292 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007371045649 0.003922661766 and volume-weighted sum 55760.40625 Subtracting 1.815117321e-05 from rhs in subdomain 0 Sum after subtraction 0.07823109627 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000718953379 MLMG: Initial residual (resid0) = 0.000718953379 MLMG: Final Iter. 2 resid, resid/bnorm = 8.581118891e-07, 0.001193557051 MLMG: Timers: Solve = 0.000637437 Iter = 0.000510818 Bottom = 5.4239e-05 Time in solve 0.00104036 Max/L2 norm of divergence after solve at level 1 : 1.885928214e-05 0.001006048871 and volume-weighted sum 55760.41016 Time integration of scalars at level 1 from 290 to 292 with dt = 2 using RHS created at 292 Done with advance_dycore at level 1 [Level 1 step 146] Advanced 3072 cells Coarse STEP 146 ends. TIME = 292 DT = 2 Timestep time = 0.016262397 seconds. Coarse STEP 147 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.316537688 (terrain aware) 1.316537688 (terrain unaware) Anelastic dt at level 0 would be: 5.409019509 (terrain aware) 5.409019509 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2609655408 (terrain aware) 0.2609655408 (terrain unaware) Anelastic dt at level 1 would be: 2.657966276 (terrain aware) 2.657966276 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 147] ADVANCE from elapsed time = 292 to 294 with dt = 2 Making slow rhs at time 292 for fast variables advancing from 292 to 292.6666666667 Fast time integration at level 0 from 292 to 292.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 292 to 292.6666666667 with dt = 0.6666666666667 using RHS created at 292 Making slow rhs at time 292.6666666667 for fast variables advancing from 292 to 293 Fast time integration at level 0 from 292 to 292.5 with dt = 0.5 Fast time integration at level 0 from 292.5 to 293 with dt = 0.5 Time integration of scalars at level 0 from 292 to 293 with dt = 1 using RHS created at 292.6666666667 Making slow rhs at time 293 for fast variables advancing from 292 to 294 Fast time integration at level 0 from 292 to 292.5 with dt = 0.5 Fast time integration at level 0 from 292.5 to 293 with dt = 0.5 Fast time integration at level 0 from 293 to 293.5 with dt = 0.5 Fast time integration at level 0 from 293.5 to 294 with dt = 0.5 Time integration of scalars at level 0 from 292 to 294 with dt = 2 using RHS created at 293 Done with advance_dycore at level 0 [Level 0 step 147] Advanced 4096 cells [Level 1 step 147] ADVANCE from elapsed time = 292 to 294 with dt = 2 Making slow rhs at time 292 for fast variables advancing from 292 to 294 No-substepping time integration at level 1 to 294 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007718466222 0.004378996789 and volume-weighted sum 90290.57031 Subtracting 2.939146179e-05 from rhs in subdomain 0 Sum after subtraction -0.06193295121 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007424551877 MLMG: Initial residual (resid0) = 0.0007424551877 MLMG: Final Iter. 2 resid, resid/bnorm = 1.054519089e-06, 0.001420313492 MLMG: Timers: Solve = 0.000629461 Iter = 0.000502495 Bottom = 5.3265e-05 Time in solve 0.001047231 Max/L2 norm of divergence after solve at level 1 : 3.040209413e-05 0.001629057107 and volume-weighted sum 90290.59375 Time integration of scalars at level 1 from 292 to 294 with dt = 2 using RHS created at 292 Making slow rhs at time 294 for fast variables advancing from 292 to 294 No-substepping time integration at level 1 to 294 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007663536817 0.004192930181 and volume-weighted sum 90290.58594 Subtracting 2.939146725e-05 from rhs in subdomain 0 Sum after subtraction -0.03119930625 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000736962189 MLMG: Initial residual (resid0) = 0.000736962189 MLMG: Final Iter. 2 resid, resid/bnorm = 8.847855497e-07, 0.001200584695 MLMG: Timers: Solve = 0.000781345 Iter = 0.000653943 Bottom = 9.7347e-05 Time in solve 0.001187023 Max/L2 norm of divergence after solve at level 1 : 3.010779619e-05 0.001629045233 and volume-weighted sum 90290.60938 Time integration of scalars at level 1 from 292 to 294 with dt = 2 using RHS created at 294 Done with advance_dycore at level 1 [Level 1 step 147] Advanced 3072 cells Coarse STEP 147 ends. TIME = 294 DT = 2 Timestep time = 0.016498661 seconds. Coarse STEP 148 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.318042408 (terrain aware) 1.318042408 (terrain unaware) Anelastic dt at level 0 would be: 5.41717104 (terrain aware) 5.41717104 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2610255553 (terrain aware) 0.2610255553 (terrain unaware) Anelastic dt at level 1 would be: 2.658533116 (terrain aware) 2.658533116 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 148] ADVANCE from elapsed time = 294 to 296 with dt = 2 Making slow rhs at time 294 for fast variables advancing from 294 to 294.6666666667 Fast time integration at level 0 from 294 to 294.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 294 to 294.6666666667 with dt = 0.6666666666667 using RHS created at 294 Making slow rhs at time 294.6666666667 for fast variables advancing from 294 to 295 Fast time integration at level 0 from 294 to 294.5 with dt = 0.5 Fast time integration at level 0 from 294.5 to 295 with dt = 0.5 Time integration of scalars at level 0 from 294 to 295 with dt = 1 using RHS created at 294.6666666667 Making slow rhs at time 295 for fast variables advancing from 294 to 296 Fast time integration at level 0 from 294 to 294.5 with dt = 0.5 Fast time integration at level 0 from 294.5 to 295 with dt = 0.5 Fast time integration at level 0 from 295 to 295.5 with dt = 0.5 Fast time integration at level 0 from 295.5 to 296 with dt = 0.5 Time integration of scalars at level 0 from 294 to 296 with dt = 2 using RHS created at 295 Done with advance_dycore at level 0 [Level 0 step 148] Advanced 4096 cells [Level 1 step 148] ADVANCE from elapsed time = 294 to 296 with dt = 2 Making slow rhs at time 294 for fast variables advancing from 294 to 296 No-substepping time integration at level 1 to 296 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007569305599 0.00469268579 and volume-weighted sum 113846.125 Subtracting 3.705928611e-05 from rhs in subdomain 0 Sum after subtraction 0.02235174179 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007198712556 MLMG: Initial residual (resid0) = 0.0007198712556 MLMG: Final Iter. 2 resid, resid/bnorm = 1.573654117e-06, 0.002186021535 MLMG: Timers: Solve = 0.000705575 Iter = 0.000538164 Bottom = 5.6318e-05 Time in solve 0.001162179 Max/L2 norm of divergence after solve at level 1 : 3.863312304e-05 0.002054050798 and volume-weighted sum 113846.1094 Time integration of scalars at level 1 from 294 to 296 with dt = 2 using RHS created at 294 Making slow rhs at time 296 for fast variables advancing from 294 to 296 No-substepping time integration at level 1 to 296 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007753372192 0.004434638657 and volume-weighted sum 113846.1172 Subtracting 3.705928248e-05 from rhs in subdomain 0 Sum after subtraction 0.0367872417 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007382779149 MLMG: Initial residual (resid0) = 0.0007382779149 MLMG: Final Iter. 2 resid, resid/bnorm = 8.506758604e-07, 0.001152243465 MLMG: Timers: Solve = 0.000660827 Iter = 0.000526245 Bottom = 5.5951e-05 Time in solve 0.001072938 Max/L2 norm of divergence after solve at level 1 : 3.777444363e-05 0.002054037293 and volume-weighted sum 113846.0938 Time integration of scalars at level 1 from 294 to 296 with dt = 2 using RHS created at 296 Done with advance_dycore at level 1 [Level 1 step 148] Advanced 3072 cells Coarse STEP 148 ends. TIME = 296 DT = 2 Timestep time = 0.016336403 seconds. Coarse STEP 149 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.316087077 (terrain aware) 1.316087077 (terrain unaware) Anelastic dt at level 0 would be: 5.411844769 (terrain aware) 5.411844769 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2611691093 (terrain aware) 0.2611691093 (terrain unaware) Anelastic dt at level 1 would be: 2.658123036 (terrain aware) 2.658123036 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 149] ADVANCE from elapsed time = 296 to 298 with dt = 2 Making slow rhs at time 296 for fast variables advancing from 296 to 296.6666666667 Fast time integration at level 0 from 296 to 296.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 296 to 296.6666666667 with dt = 0.6666666666667 using RHS created at 296 Making slow rhs at time 296.6666666667 for fast variables advancing from 296 to 297 Fast time integration at level 0 from 296 to 296.5 with dt = 0.5 Fast time integration at level 0 from 296.5 to 297 with dt = 0.5 Time integration of scalars at level 0 from 296 to 297 with dt = 1 using RHS created at 296.6666666667 Making slow rhs at time 297 for fast variables advancing from 296 to 298 Fast time integration at level 0 from 296 to 296.5 with dt = 0.5 Fast time integration at level 0 from 296.5 to 297 with dt = 0.5 Fast time integration at level 0 from 297 to 297.5 with dt = 0.5 Fast time integration at level 0 from 297.5 to 298 with dt = 0.5 Time integration of scalars at level 0 from 296 to 298 with dt = 2 using RHS created at 297 Done with advance_dycore at level 0 [Level 0 step 149] Advanced 4096 cells [Level 1 step 149] ADVANCE from elapsed time = 296 to 298 with dt = 2 Making slow rhs at time 296 for fast variables advancing from 296 to 298 No-substepping time integration at level 1 to 298 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008131591603 0.004861442372 and volume-weighted sum 125430.8516 Subtracting 4.083035674e-05 from rhs in subdomain 0 Sum after subtraction -0.07380731404 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007723288145 MLMG: Initial residual (resid0) = 0.0007723288145 MLMG: Final Iter. 2 resid, resid/bnorm = 1.802088718e-06, 0.002333317883 MLMG: Timers: Solve = 0.000646219 Iter = 0.000518235 Bottom = 5.6816e-05 Time in solve 0.001059922 Max/L2 norm of divergence after solve at level 1 : 4.263781011e-05 0.002263064263 and volume-weighted sum 125430.8359 Time integration of scalars at level 1 from 296 to 298 with dt = 2 using RHS created at 296 Making slow rhs at time 298 for fast variables advancing from 296 to 298 No-substepping time integration at level 1 to 298 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00081116613 0.004588219803 and volume-weighted sum 125430.8516 Subtracting 4.083035674e-05 from rhs in subdomain 0 Sum after subtraction -0.07799826562 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007703357842 MLMG: Initial residual (resid0) = 0.0007703357842 MLMG: Final Iter. 2 resid, resid/bnorm = 7.56845111e-07, 0.000982487225 MLMG: Timers: Solve = 0.000855315 Iter = 0.000726791 Bottom = 7.109e-05 Time in solve 0.001258283 Max/L2 norm of divergence after solve at level 1 : 4.154630005e-05 0.002263052156 and volume-weighted sum 125430.8516 Time integration of scalars at level 1 from 296 to 298 with dt = 2 using RHS created at 298 Done with advance_dycore at level 1 [Level 1 step 149] Advanced 3072 cells Coarse STEP 149 ends. TIME = 298 DT = 2 Timestep time = 0.016703318 seconds. Coarse STEP 150 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.315402071 (terrain aware) 1.315402071 (terrain unaware) Anelastic dt at level 0 would be: 5.381939927 (terrain aware) 5.381939927 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2612398526 (terrain aware) 0.2612398526 (terrain unaware) Anelastic dt at level 1 would be: 2.664502819 (terrain aware) 2.664502819 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 150] ADVANCE from elapsed time = 298 to 300 with dt = 2 Making slow rhs at time 298 for fast variables advancing from 298 to 298.6666666667 Fast time integration at level 0 from 298 to 298.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 298 to 298.6666666667 with dt = 0.6666666666667 using RHS created at 298 Making slow rhs at time 298.6666666667 for fast variables advancing from 298 to 299 Fast time integration at level 0 from 298 to 298.5 with dt = 0.5 Fast time integration at level 0 from 298.5 to 299 with dt = 0.5 Time integration of scalars at level 0 from 298 to 299 with dt = 1 using RHS created at 298.6666666667 Making slow rhs at time 299 for fast variables advancing from 298 to 300 Fast time integration at level 0 from 298 to 298.5 with dt = 0.5 Fast time integration at level 0 from 298.5 to 299 with dt = 0.5 Fast time integration at level 0 from 299 to 299.5 with dt = 0.5 Fast time integration at level 0 from 299.5 to 300 with dt = 0.5 Time integration of scalars at level 0 from 298 to 300 with dt = 2 using RHS created at 299 Done with advance_dycore at level 0 [Level 0 step 150] Advanced 4096 cells [Level 1 step 150] ADVANCE from elapsed time = 298 to 300 with dt = 2 Making slow rhs at time 298 for fast variables advancing from 298 to 300 No-substepping time integration at level 1 to 300 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007844734937 0.00491849985 and volume-weighted sum 124565.1953 Subtracting 4.054856618e-05 from rhs in subdomain 0 Sum after subtraction 0.0002328306437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007439249312 MLMG: Initial residual (resid0) = 0.0007439249312 MLMG: Final Iter. 2 resid, resid/bnorm = 1.963450813e-06, 0.002639312996 MLMG: Timers: Solve = 0.000634495 Iter = 0.00050798 Bottom = 5.6507e-05 Time in solve 0.001048295 Max/L2 norm of divergence after solve at level 1 : 4.251953214e-05 0.002247446915 and volume-weighted sum 124565.1875 Time integration of scalars at level 1 from 298 to 300 with dt = 2 using RHS created at 298 Making slow rhs at time 300 for fast variables advancing from 298 to 300 No-substepping time integration at level 1 to 300 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007926188409 0.004628486 and volume-weighted sum 124565.2578 Subtracting 4.0548588e-05 from rhs in subdomain 0 Sum after subtraction -0.0293366611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007520702784 MLMG: Initial residual (resid0) = 0.0007520702784 MLMG: Final Iter. 2 resid, resid/bnorm = 8.086499292e-07, 0.001075231819 MLMG: Timers: Solve = 0.000647819 Iter = 0.000518442 Bottom = 5.6224e-05 Time in solve 0.00105222 Max/L2 norm of divergence after solve at level 1 : 4.12221998e-05 0.002247433877 and volume-weighted sum 124565.1328 Time integration of scalars at level 1 from 298 to 300 with dt = 2 using RHS created at 300 Done with advance_dycore at level 1 [Level 1 step 150] Advanced 3072 cells Coarse STEP 150 ends. TIME = 300 DT = 2 Timestep time = 0.016352329 seconds. 3DPlotfile write time = 0.006282182 seconds. Coarse STEP 151 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.316360812 (terrain aware) 1.316360812 (terrain unaware) Anelastic dt at level 0 would be: 5.379474083 (terrain aware) 5.379474083 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2614147736 (terrain aware) 0.2614147736 (terrain unaware) Anelastic dt at level 1 would be: 2.665143271 (terrain aware) 2.665143271 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 151] ADVANCE from elapsed time = 300 to 302 with dt = 2 Making slow rhs at time 300 for fast variables advancing from 300 to 300.6666666667 Fast time integration at level 0 from 300 to 300.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 300 to 300.6666666667 with dt = 0.6666666666667 using RHS created at 300 Making slow rhs at time 300.6666666667 for fast variables advancing from 300 to 301 Fast time integration at level 0 from 300 to 300.5 with dt = 0.5 Fast time integration at level 0 from 300.5 to 301 with dt = 0.5 Time integration of scalars at level 0 from 300 to 301 with dt = 1 using RHS created at 300.6666666667 Making slow rhs at time 301 for fast variables advancing from 300 to 302 Fast time integration at level 0 from 300 to 300.5 with dt = 0.5 Fast time integration at level 0 from 300.5 to 301 with dt = 0.5 Fast time integration at level 0 from 301 to 301.5 with dt = 0.5 Fast time integration at level 0 from 301.5 to 302 with dt = 0.5 Time integration of scalars at level 0 from 300 to 302 with dt = 2 using RHS created at 301 Done with advance_dycore at level 0 [Level 0 step 151] Advanced 4096 cells [Level 1 step 151] ADVANCE from elapsed time = 300 to 302 with dt = 2 Making slow rhs at time 300 for fast variables advancing from 300 to 302 No-substepping time integration at level 1 to 302 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008345600218 0.004877648782 and volume-weighted sum 110855.5234 Subtracting 3.608578118e-05 from rhs in subdomain 0 Sum after subtraction 0.03050081432 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007984742406 MLMG: Initial residual (resid0) = 0.0007984742406 MLMG: Final Iter. 2 resid, resid/bnorm = 2.089438567e-06, 0.002616788959 MLMG: Timers: Solve = 0.000637777 Iter = 0.000512126 Bottom = 5.6308e-05 Time in solve 0.001071194 Max/L2 norm of divergence after solve at level 1 : 3.817910329e-05 0.002000096953 and volume-weighted sum 110855.5234 Time integration of scalars at level 1 from 300 to 302 with dt = 2 using RHS created at 300 Making slow rhs at time 302 for fast variables advancing from 300 to 302 No-substepping time integration at level 1 to 302 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008324049413 0.004557736218 and volume-weighted sum 110855.5312 Subtracting 3.608578481e-05 from rhs in subdomain 0 Sum after subtraction -0.05506444722 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007963191601 MLMG: Initial residual (resid0) = 0.0007963191601 MLMG: Final Iter. 2 resid, resid/bnorm = 8.466013242e-07, 0.001063143252 MLMG: Timers: Solve = 0.000654268 Iter = 0.000524288 Bottom = 5.7006e-05 Time in solve 0.001066197 Max/L2 norm of divergence after solve at level 1 : 3.676488996e-05 0.002000082517 and volume-weighted sum 110855.5312 Time integration of scalars at level 1 from 300 to 302 with dt = 2 using RHS created at 302 Done with advance_dycore at level 1 [Level 1 step 151] Advanced 3072 cells Coarse STEP 151 ends. TIME = 302 DT = 2 Timestep time = 0.017543218 seconds. Coarse STEP 152 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.318591217 (terrain aware) 1.318591217 (terrain unaware) Anelastic dt at level 0 would be: 5.403484622 (terrain aware) 5.403484622 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2615338897 (terrain aware) 0.2615338897 (terrain unaware) Anelastic dt at level 1 would be: 2.675980886 (terrain aware) 2.675980886 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 152] ADVANCE from elapsed time = 302 to 304 with dt = 2 Making slow rhs at time 302 for fast variables advancing from 302 to 302.6666666667 Fast time integration at level 0 from 302 to 302.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 302 to 302.6666666667 with dt = 0.6666666666667 using RHS created at 302 Making slow rhs at time 302.6666666667 for fast variables advancing from 302 to 303 Fast time integration at level 0 from 302 to 302.5 with dt = 0.5 Fast time integration at level 0 from 302.5 to 303 with dt = 0.5 Time integration of scalars at level 0 from 302 to 303 with dt = 1 using RHS created at 302.6666666667 Making slow rhs at time 303 for fast variables advancing from 302 to 304 Fast time integration at level 0 from 302 to 302.5 with dt = 0.5 Fast time integration at level 0 from 302.5 to 303 with dt = 0.5 Fast time integration at level 0 from 303 to 303.5 with dt = 0.5 Fast time integration at level 0 from 303.5 to 304 with dt = 0.5 Time integration of scalars at level 0 from 302 to 304 with dt = 2 using RHS created at 303 Done with advance_dycore at level 0 [Level 0 step 152] Advanced 4096 cells [Level 1 step 152] ADVANCE from elapsed time = 302 to 304 with dt = 2 Making slow rhs at time 302 for fast variables advancing from 302 to 304 No-substepping time integration at level 1 to 304 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00079945568 0.004732527304 and volume-weighted sum 84941.32031 Subtracting 2.76501687e-05 from rhs in subdomain 0 Sum after subtraction 0.04563480616 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007718055276 MLMG: Initial residual (resid0) = 0.0007718055276 MLMG: Final Iter. 2 resid, resid/bnorm = 1.995859293e-06, 0.002585961483 MLMG: Timers: Solve = 0.000646709 Iter = 0.00051714 Bottom = 5.5885e-05 Time in solve 0.001050555 Max/L2 norm of divergence after solve at level 1 : 2.963887528e-05 0.001532550668 and volume-weighted sum 84941.26562 Time integration of scalars at level 1 from 302 to 304 with dt = 2 using RHS created at 302 Making slow rhs at time 304 for fast variables advancing from 302 to 304 No-substepping time integration at level 1 to 304 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007864776999 0.004412998445 and volume-weighted sum 84941.34375 Subtracting 2.76501778e-05 from rhs in subdomain 0 Sum after subtraction -0.01129228622 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007588275475 MLMG: Initial residual (resid0) = 0.0007588275475 MLMG: Final Iter. 2 resid, resid/bnorm = 8.201168384e-07, 0.001080768416 MLMG: Timers: Solve = 0.000644345 Iter = 0.000508257 Bottom = 5.5642e-05 Time in solve 0.001055403 Max/L2 norm of divergence after solve at level 1 : 2.836436033e-05 0.001532533905 and volume-weighted sum 84941.35938 Time integration of scalars at level 1 from 302 to 304 with dt = 2 using RHS created at 304 Done with advance_dycore at level 1 [Level 1 step 152] Advanced 3072 cells Coarse STEP 152 ends. TIME = 304 DT = 2 Timestep time = 0.016325564 seconds. Coarse STEP 153 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.317118983 (terrain aware) 1.317118983 (terrain unaware) Anelastic dt at level 0 would be: 5.403496543 (terrain aware) 5.403496543 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2617016954 (terrain aware) 0.2617016954 (terrain unaware) Anelastic dt at level 1 would be: 2.678414245 (terrain aware) 2.678414245 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 153] ADVANCE from elapsed time = 304 to 306 with dt = 2 Making slow rhs at time 304 for fast variables advancing from 304 to 304.6666666667 Fast time integration at level 0 from 304 to 304.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 304 to 304.6666666667 with dt = 0.6666666666667 using RHS created at 304 Making slow rhs at time 304.6666666667 for fast variables advancing from 304 to 305 Fast time integration at level 0 from 304 to 304.5 with dt = 0.5 Fast time integration at level 0 from 304.5 to 305 with dt = 0.5 Time integration of scalars at level 0 from 304 to 305 with dt = 1 using RHS created at 304.6666666667 Making slow rhs at time 305 for fast variables advancing from 304 to 306 Fast time integration at level 0 from 304 to 304.5 with dt = 0.5 Fast time integration at level 0 from 304.5 to 305 with dt = 0.5 Fast time integration at level 0 from 305 to 305.5 with dt = 0.5 Fast time integration at level 0 from 305.5 to 306 with dt = 0.5 Time integration of scalars at level 0 from 304 to 306 with dt = 2 using RHS created at 305 Done with advance_dycore at level 0 [Level 0 step 153] Advanced 4096 cells [Level 1 step 153] ADVANCE from elapsed time = 304 to 306 with dt = 2 Making slow rhs at time 304 for fast variables advancing from 304 to 306 No-substepping time integration at level 1 to 306 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008351895958 0.00451208977 and volume-weighted sum 49950.92188 Subtracting 1.626006633e-05 from rhs in subdomain 0 Sum after subtraction 0.05774199963 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008189295186 MLMG: Initial residual (resid0) = 0.0008189295186 MLMG: Final Iter. 2 resid, resid/bnorm = 1.433540547e-06, 0.001750505413 MLMG: Timers: Solve = 0.00064931 Iter = 0.000517125 Bottom = 5.6161e-05 Time in solve 0.001064677 Max/L2 norm of divergence after solve at level 1 : 1.769140363e-05 0.0009012487135 and volume-weighted sum 49950.89062 Time integration of scalars at level 1 from 304 to 306 with dt = 2 using RHS created at 304 Making slow rhs at time 306 for fast variables advancing from 304 to 306 No-substepping time integration at level 1 to 306 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008344464004 0.004271756392 and volume-weighted sum 49950.88672 Subtracting 1.62600536e-05 from rhs in subdomain 0 Sum after subtraction 0.07369089872 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008181863232 MLMG: Initial residual (resid0) = 0.0008181863232 MLMG: Final Iter. 2 resid, resid/bnorm = 7.539783837e-07, 0.0009215240716 MLMG: Timers: Solve = 0.000650865 Iter = 0.000516831 Bottom = 5.5742e-05 Time in solve 0.001058992 Max/L2 norm of divergence after solve at level 1 : 1.702364534e-05 0.0009012340452 and volume-weighted sum 49950.89844 Time integration of scalars at level 1 from 304 to 306 with dt = 2 using RHS created at 306 Done with advance_dycore at level 1 [Level 1 step 153] Advanced 3072 cells Coarse STEP 153 ends. TIME = 306 DT = 2 Timestep time = 0.01656051 seconds. Coarse STEP 154 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.317403595 (terrain aware) 1.317403595 (terrain unaware) Anelastic dt at level 0 would be: 5.388280073 (terrain aware) 5.388280073 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2618880717 (terrain aware) 0.2618880717 (terrain unaware) Anelastic dt at level 1 would be: 2.689294775 (terrain aware) 2.689294775 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 154] ADVANCE from elapsed time = 306 to 308 with dt = 2 Making slow rhs at time 306 for fast variables advancing from 306 to 306.6666666667 Fast time integration at level 0 from 306 to 306.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 306 to 306.6666666667 with dt = 0.6666666666667 using RHS created at 306 Making slow rhs at time 306.6666666667 for fast variables advancing from 306 to 307 Fast time integration at level 0 from 306 to 306.5 with dt = 0.5 Fast time integration at level 0 from 306.5 to 307 with dt = 0.5 Time integration of scalars at level 0 from 306 to 307 with dt = 1 using RHS created at 306.6666666667 Making slow rhs at time 307 for fast variables advancing from 306 to 308 Fast time integration at level 0 from 306 to 306.5 with dt = 0.5 Fast time integration at level 0 from 306.5 to 307 with dt = 0.5 Fast time integration at level 0 from 307 to 307.5 with dt = 0.5 Fast time integration at level 0 from 307.5 to 308 with dt = 0.5 Time integration of scalars at level 0 from 306 to 308 with dt = 2 using RHS created at 307 Done with advance_dycore at level 0 [Level 0 step 154] Advanced 4096 cells [Level 1 step 154] ADVANCE from elapsed time = 306 to 308 with dt = 2 Making slow rhs at time 306 for fast variables advancing from 306 to 308 No-substepping time integration at level 1 to 308 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000791054219 0.004358418286 and volume-weighted sum 11735.09863 Subtracting 3.820019174e-06 from rhs in subdomain 0 Sum after subtraction 0.04470348358 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007872342248 MLMG: Initial residual (resid0) = 0.0007872342248 MLMG: Final Iter. 2 resid, resid/bnorm = 9.41377948e-07, 0.0011958041 MLMG: Timers: Solve = 0.000633669 Iter = 0.000508111 Bottom = 5.6729e-05 Time in solve 0.001065405 Max/L2 norm of divergence after solve at level 1 : 4.74601984e-06 0.0002117730619 and volume-weighted sum 11735.07227 Time integration of scalars at level 1 from 306 to 308 with dt = 2 using RHS created at 306 Making slow rhs at time 308 for fast variables advancing from 306 to 308 No-substepping time integration at level 1 to 308 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000764714554 0.004212919157 and volume-weighted sum 11735.04785 Subtracting 3.820002348e-06 from rhs in subdomain 0 Sum after subtraction 0.01874286681 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007608945598 MLMG: Initial residual (resid0) = 0.0007608945598 MLMG: Final Iter. 2 resid, resid/bnorm = 8.427887224e-07, 0.001107628806 MLMG: Timers: Solve = 0.000645308 Iter = 0.000515459 Bottom = 5.2551e-05 Time in solve 0.001047914 Max/L2 norm of divergence after solve at level 1 : 4.577450454e-06 0.0002117676922 and volume-weighted sum 11735.11133 Time integration of scalars at level 1 from 306 to 308 with dt = 2 using RHS created at 308 Done with advance_dycore at level 1 [Level 1 step 154] Advanced 3072 cells Coarse STEP 154 ends. TIME = 308 DT = 2 Timestep time = 0.016312208 seconds. Coarse STEP 155 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.319359968 (terrain aware) 1.319359968 (terrain unaware) Anelastic dt at level 0 would be: 5.401947418 (terrain aware) 5.401947418 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.262042336 (terrain aware) 0.262042336 (terrain unaware) Anelastic dt at level 1 would be: 2.697386701 (terrain aware) 2.697386701 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 155] ADVANCE from elapsed time = 308 to 310 with dt = 2 Making slow rhs at time 308 for fast variables advancing from 308 to 308.6666666667 Fast time integration at level 0 from 308 to 308.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 308 to 308.6666666667 with dt = 0.6666666666667 using RHS created at 308 Making slow rhs at time 308.6666666667 for fast variables advancing from 308 to 309 Fast time integration at level 0 from 308 to 308.5 with dt = 0.5 Fast time integration at level 0 from 308.5 to 309 with dt = 0.5 Time integration of scalars at level 0 from 308 to 309 with dt = 1 using RHS created at 308.6666666667 Making slow rhs at time 309 for fast variables advancing from 308 to 310 Fast time integration at level 0 from 308 to 308.5 with dt = 0.5 Fast time integration at level 0 from 308.5 to 309 with dt = 0.5 Fast time integration at level 0 from 309 to 309.5 with dt = 0.5 Fast time integration at level 0 from 309.5 to 310 with dt = 0.5 Time integration of scalars at level 0 from 308 to 310 with dt = 2 using RHS created at 309 Done with advance_dycore at level 0 [Level 0 step 155] Advanced 4096 cells [Level 1 step 155] ADVANCE from elapsed time = 308 to 310 with dt = 2 Making slow rhs at time 308 for fast variables advancing from 308 to 310 No-substepping time integration at level 1 to 310 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008221045136 0.00442762766 and volume-weighted sum -22893.54883 Subtracting -7.452327281e-06 from rhs in subdomain 0 Sum after subtraction 0.1097796485 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008295567823 MLMG: Initial residual (resid0) = 0.0008295567823 MLMG: Final Iter. 2 resid, resid/bnorm = 1.063774107e-06, 0.001282340265 MLMG: Timers: Solve = 0.000650154 Iter = 0.000521684 Bottom = 5.9066e-05 Time in solve 0.001065025 Max/L2 norm of divergence after solve at level 1 : 8.396338671e-06 0.0004130900197 and volume-weighted sum -22893.58789 Time integration of scalars at level 1 from 308 to 310 with dt = 2 using RHS created at 308 Making slow rhs at time 310 for fast variables advancing from 308 to 310 No-substepping time integration at level 1 to 310 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008258428425 0.004255258478 and volume-weighted sum -22893.55078 Subtracting -7.452327736e-06 from rhs in subdomain 0 Sum after subtraction 0.1144362614 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008332951111 MLMG: Initial residual (resid0) = 0.0008332951111 MLMG: Final Iter. 2 resid, resid/bnorm = 8.561182767e-07, 0.00102738908 MLMG: Timers: Solve = 0.0006536 Iter = 0.000504618 Bottom = 5.3134e-05 Time in solve 0.001131226 Max/L2 norm of divergence after solve at level 1 : 8.285976946e-06 0.0004130699381 and volume-weighted sum -22893.52148 Time integration of scalars at level 1 from 308 to 310 with dt = 2 using RHS created at 310 Done with advance_dycore at level 1 [Level 1 step 155] Advanced 3072 cells Coarse STEP 155 ends. TIME = 310 DT = 2 Timestep time = 0.016696774 seconds. Coarse STEP 156 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.321531962 (terrain aware) 1.321531962 (terrain unaware) Anelastic dt at level 0 would be: 5.442655005 (terrain aware) 5.442655005 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2622865846 (terrain aware) 0.2622865846 (terrain unaware) Anelastic dt at level 1 would be: 2.708065171 (terrain aware) 2.708065171 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 156] ADVANCE from elapsed time = 310 to 312 with dt = 2 Making slow rhs at time 310 for fast variables advancing from 310 to 310.6666666667 Fast time integration at level 0 from 310 to 310.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 310 to 310.6666666667 with dt = 0.6666666666667 using RHS created at 310 Making slow rhs at time 310.6666666667 for fast variables advancing from 310 to 311 Fast time integration at level 0 from 310 to 310.5 with dt = 0.5 Fast time integration at level 0 from 310.5 to 311 with dt = 0.5 Time integration of scalars at level 0 from 310 to 311 with dt = 1 using RHS created at 310.6666666667 Making slow rhs at time 311 for fast variables advancing from 310 to 312 Fast time integration at level 0 from 310 to 310.5 with dt = 0.5 Fast time integration at level 0 from 310.5 to 311 with dt = 0.5 Fast time integration at level 0 from 311 to 311.5 with dt = 0.5 Fast time integration at level 0 from 311.5 to 312 with dt = 0.5 Time integration of scalars at level 0 from 310 to 312 with dt = 2 using RHS created at 311 Done with advance_dycore at level 0 [Level 0 step 156] Advanced 4096 cells [Level 1 step 156] ADVANCE from elapsed time = 310 to 312 with dt = 2 Making slow rhs at time 310 for fast variables advancing from 310 to 312 No-substepping time integration at level 1 to 312 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007796864957 0.004623665474 and volume-weighted sum -49127.61719 Subtracting -1.599206371e-05 from rhs in subdomain 0 Sum after subtraction -0.03387685865 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007956785848 MLMG: Initial residual (resid0) = 0.0007956785848 MLMG: Final Iter. 2 resid, resid/bnorm = 1.826822654e-06, 0.002295930404 MLMG: Timers: Solve = 0.000638996 Iter = 0.000513931 Bottom = 5.7121e-05 Time in solve 0.001048004 Max/L2 norm of divergence after solve at level 1 : 1.781713217e-05 0.0008864055853 and volume-weighted sum -49127.61719 Time integration of scalars at level 1 from 310 to 312 with dt = 2 using RHS created at 310 Making slow rhs at time 312 for fast variables advancing from 310 to 312 No-substepping time integration at level 1 to 312 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007508955896 0.004349544644 and volume-weighted sum -49127.60156 Subtracting -1.599205825e-05 from rhs in subdomain 0 Sum after subtraction -0.01303851604 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007668876206 MLMG: Initial residual (resid0) = 0.0007668876206 MLMG: Final Iter. 2 resid, resid/bnorm = 8.092320058e-07, 0.001055215951 MLMG: Timers: Solve = 0.000660163 Iter = 0.000532884 Bottom = 6.1786e-05 Time in solve 0.001061958 Max/L2 norm of divergence after solve at level 1 : 1.677451655e-05 0.0008863790426 and volume-weighted sum -49127.57812 Time integration of scalars at level 1 from 310 to 312 with dt = 2 using RHS created at 312 Done with advance_dycore at level 1 [Level 1 step 156] Advanced 3072 cells Coarse STEP 156 ends. TIME = 312 DT = 2 Timestep time = 0.016207817 seconds. Coarse STEP 157 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.320852618 (terrain aware) 1.320852618 (terrain unaware) Anelastic dt at level 0 would be: 5.440866866 (terrain aware) 5.440866866 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2624254448 (terrain aware) 0.2624254448 (terrain unaware) Anelastic dt at level 1 would be: 2.721607943 (terrain aware) 2.721607943 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 157] ADVANCE from elapsed time = 312 to 314 with dt = 2 Making slow rhs at time 312 for fast variables advancing from 312 to 312.6666666667 Fast time integration at level 0 from 312 to 312.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 312 to 312.6666666667 with dt = 0.6666666666667 using RHS created at 312 Making slow rhs at time 312.6666666667 for fast variables advancing from 312 to 313 Fast time integration at level 0 from 312 to 312.5 with dt = 0.5 Fast time integration at level 0 from 312.5 to 313 with dt = 0.5 Time integration of scalars at level 0 from 312 to 313 with dt = 1 using RHS created at 312.6666666667 Making slow rhs at time 313 for fast variables advancing from 312 to 314 Fast time integration at level 0 from 312 to 312.5 with dt = 0.5 Fast time integration at level 0 from 312.5 to 313 with dt = 0.5 Fast time integration at level 0 from 313 to 313.5 with dt = 0.5 Fast time integration at level 0 from 313.5 to 314 with dt = 0.5 Time integration of scalars at level 0 from 312 to 314 with dt = 2 using RHS created at 313 Done with advance_dycore at level 0 [Level 0 step 157] Advanced 4096 cells [Level 1 step 157] ADVANCE from elapsed time = 312 to 314 with dt = 2 Making slow rhs at time 312 for fast variables advancing from 312 to 314 No-substepping time integration at level 1 to 314 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008174423128 0.004723242484 and volume-weighted sum -66296.64062 Subtracting -2.158093776e-05 from rhs in subdomain 0 Sum after subtraction -0.05261972547 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008390232688 MLMG: Initial residual (resid0) = 0.0008390232688 MLMG: Final Iter. 2 resid, resid/bnorm = 1.849072191e-06, 0.0022038389 MLMG: Timers: Solve = 0.000637209 Iter = 0.000511168 Bottom = 5.7856e-05 Time in solve 0.001061018 Max/L2 norm of divergence after solve at level 1 : 2.342648804e-05 0.001196162892 and volume-weighted sum -66296.64062 Time integration of scalars at level 1 from 312 to 314 with dt = 2 using RHS created at 312 Making slow rhs at time 314 for fast variables advancing from 312 to 314 No-substepping time integration at level 1 to 314 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008237268776 0.004441479687 and volume-weighted sum -66296.64062 Subtracting -2.158093776e-05 from rhs in subdomain 0 Sum after subtraction -0.02654269338 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008453078335 MLMG: Initial residual (resid0) = 0.0008453078335 MLMG: Final Iter. 2 resid, resid/bnorm = 8.069619071e-07, 0.0009546367219 MLMG: Timers: Solve = 0.000653839 Iter = 0.000522502 Bottom = 5.6249e-05 Time in solve 0.001064775 Max/L2 norm of divergence after solve at level 1 : 2.225395292e-05 0.001196144149 and volume-weighted sum -66296.64844 Time integration of scalars at level 1 from 312 to 314 with dt = 2 using RHS created at 314 Done with advance_dycore at level 1 [Level 1 step 157] Advanced 3072 cells Coarse STEP 157 ends. TIME = 314 DT = 2 Timestep time = 0.01657491 seconds. Coarse STEP 158 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.321904491 (terrain aware) 1.321904491 (terrain unaware) Anelastic dt at level 0 would be: 5.438767591 (terrain aware) 5.438767591 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2626613861 (terrain aware) 0.2626613861 (terrain unaware) Anelastic dt at level 1 would be: 2.731827159 (terrain aware) 2.731827159 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 158] ADVANCE from elapsed time = 314 to 316 with dt = 2 Making slow rhs at time 314 for fast variables advancing from 314 to 314.6666666667 Fast time integration at level 0 from 314 to 314.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 314 to 314.6666666667 with dt = 0.6666666666667 using RHS created at 314 Making slow rhs at time 314.6666666667 for fast variables advancing from 314 to 315 Fast time integration at level 0 from 314 to 314.5 with dt = 0.5 Fast time integration at level 0 from 314.5 to 315 with dt = 0.5 Time integration of scalars at level 0 from 314 to 315 with dt = 1 using RHS created at 314.6666666667 Making slow rhs at time 315 for fast variables advancing from 314 to 316 Fast time integration at level 0 from 314 to 314.5 with dt = 0.5 Fast time integration at level 0 from 314.5 to 315 with dt = 0.5 Fast time integration at level 0 from 315 to 315.5 with dt = 0.5 Fast time integration at level 0 from 315.5 to 316 with dt = 0.5 Time integration of scalars at level 0 from 314 to 316 with dt = 2 using RHS created at 315 Done with advance_dycore at level 0 [Level 0 step 158] Advanced 4096 cells [Level 1 step 158] ADVANCE from elapsed time = 314 to 316 with dt = 2 Making slow rhs at time 314 for fast variables advancing from 314 to 316 No-substepping time integration at level 1 to 316 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007753837854 0.004721745849 and volume-weighted sum -76748.59375 Subtracting -2.498326648e-05 from rhs in subdomain 0 Sum after subtraction -0.02910383046 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008003670373 MLMG: Initial residual (resid0) = 0.0008003670373 MLMG: Final Iter. 2 resid, resid/bnorm = 1.219528599e-06, 0.001523711719 MLMG: Timers: Solve = 0.000652752 Iter = 0.000525273 Bottom = 5.9733e-05 Time in solve 0.001060741 Max/L2 norm of divergence after solve at level 1 : 2.620043233e-05 0.001384724746 and volume-weighted sum -76748.59375 Time integration of scalars at level 1 from 314 to 316 with dt = 2 using RHS created at 314 Making slow rhs at time 316 for fast variables advancing from 314 to 316 No-substepping time integration at level 1 to 316 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007483959198 0.00451089628 and volume-weighted sum -76748.57031 Subtracting -2.498325921e-05 from rhs in subdomain 0 Sum after subtraction -0.03492459655 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007733791717 MLMG: Initial residual (resid0) = 0.0007733791717 MLMG: Final Iter. 2 resid, resid/bnorm = 7.971248124e-07, 0.001030703774 MLMG: Timers: Solve = 0.000645789 Iter = 0.000506908 Bottom = 5.4993e-05 Time in solve 0.001053206 Max/L2 norm of divergence after solve at level 1 : 2.563651651e-05 0.001384718576 and volume-weighted sum -76748.61719 Time integration of scalars at level 1 from 314 to 316 with dt = 2 using RHS created at 316 Done with advance_dycore at level 1 [Level 1 step 158] Advanced 3072 cells Coarse STEP 158 ends. TIME = 316 DT = 2 Timestep time = 0.016376977 seconds. Coarse STEP 159 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.324574481 (terrain aware) 1.324574481 (terrain unaware) Anelastic dt at level 0 would be: 5.465670743 (terrain aware) 5.465670743 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2628438508 (terrain aware) 0.2628438508 (terrain unaware) Anelastic dt at level 1 would be: 2.750379402 (terrain aware) 2.750379402 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 159] ADVANCE from elapsed time = 316 to 318 with dt = 2 Making slow rhs at time 316 for fast variables advancing from 316 to 316.6666666667 Fast time integration at level 0 from 316 to 316.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 316 to 316.6666666667 with dt = 0.6666666666667 using RHS created at 316 Making slow rhs at time 316.6666666667 for fast variables advancing from 316 to 317 Fast time integration at level 0 from 316 to 316.5 with dt = 0.5 Fast time integration at level 0 from 316.5 to 317 with dt = 0.5 Time integration of scalars at level 0 from 316 to 317 with dt = 1 using RHS created at 316.6666666667 Making slow rhs at time 317 for fast variables advancing from 316 to 318 Fast time integration at level 0 from 316 to 316.5 with dt = 0.5 Fast time integration at level 0 from 316.5 to 317 with dt = 0.5 Fast time integration at level 0 from 317 to 317.5 with dt = 0.5 Fast time integration at level 0 from 317.5 to 318 with dt = 0.5 Time integration of scalars at level 0 from 316 to 318 with dt = 2 using RHS created at 317 Done with advance_dycore at level 0 [Level 0 step 159] Advanced 4096 cells [Level 1 step 159] ADVANCE from elapsed time = 316 to 318 with dt = 2 Making slow rhs at time 316 for fast variables advancing from 316 to 318 No-substepping time integration at level 1 to 318 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008192546666 0.004730592482 and volume-weighted sum -82799.39062 Subtracting -2.695292642e-05 from rhs in subdomain 0 Sum after subtraction -0.004190951586 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008462076075 MLMG: Initial residual (resid0) = 0.0008462076075 MLMG: Final Iter. 2 resid, resid/bnorm = 9.504728951e-07, 0.001123214839 MLMG: Timers: Solve = 0.000646716 Iter = 0.00051771 Bottom = 6.1121e-05 Time in solve 0.001063421 Max/L2 norm of divergence after solve at level 1 : 2.790708095e-05 0.001493888325 and volume-weighted sum -82799.3125 Time integration of scalars at level 1 from 316 to 318 with dt = 2 using RHS created at 316 Making slow rhs at time 318 for fast variables advancing from 316 to 318 No-substepping time integration at level 1 to 318 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008251108229 0.004557800014 and volume-weighted sum -82799.34375 Subtracting -2.695291187e-05 from rhs in subdomain 0 Sum after subtraction -0.02991873771 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008520637639 MLMG: Initial residual (resid0) = 0.0008520637639 MLMG: Final Iter. 2 resid, resid/bnorm = 8.47823685e-07, 0.0009950237582 MLMG: Timers: Solve = 0.000646147 Iter = 0.000516781 Bottom = 5.3858e-05 Time in solve 0.0010542 Max/L2 norm of divergence after solve at level 1 : 2.764025703e-05 0.001493885531 and volume-weighted sum -82799.25 Time integration of scalars at level 1 from 316 to 318 with dt = 2 using RHS created at 318 Done with advance_dycore at level 1 [Level 1 step 159] Advanced 3072 cells Coarse STEP 159 ends. TIME = 318 DT = 2 Timestep time = 0.016630758 seconds. Coarse STEP 160 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.326221208 (terrain aware) 1.326221208 (terrain unaware) Anelastic dt at level 0 would be: 5.519347705 (terrain aware) 5.519347705 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2630588187 (terrain aware) 0.2630588187 (terrain unaware) Anelastic dt at level 1 would be: 2.759709913 (terrain aware) 2.759709913 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 160] ADVANCE from elapsed time = 318 to 320 with dt = 2 Making slow rhs at time 318 for fast variables advancing from 318 to 318.6666666667 Fast time integration at level 0 from 318 to 318.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 318 to 318.6666666667 with dt = 0.6666666666667 using RHS created at 318 Making slow rhs at time 318.6666666667 for fast variables advancing from 318 to 319 Fast time integration at level 0 from 318 to 318.5 with dt = 0.5 Fast time integration at level 0 from 318.5 to 319 with dt = 0.5 Time integration of scalars at level 0 from 318 to 319 with dt = 1 using RHS created at 318.6666666667 Making slow rhs at time 319 for fast variables advancing from 318 to 320 Fast time integration at level 0 from 318 to 318.5 with dt = 0.5 Fast time integration at level 0 from 318.5 to 319 with dt = 0.5 Fast time integration at level 0 from 319 to 319.5 with dt = 0.5 Fast time integration at level 0 from 319.5 to 320 with dt = 0.5 Time integration of scalars at level 0 from 318 to 320 with dt = 2 using RHS created at 319 Done with advance_dycore at level 0 [Level 0 step 160] Advanced 4096 cells [Level 1 step 160] ADVANCE from elapsed time = 318 to 320 with dt = 2 Making slow rhs at time 318 for fast variables advancing from 318 to 320 No-substepping time integration at level 1 to 320 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007739923894 0.004754300695 and volume-weighted sum -84014.41406 Subtracting -2.734844202e-05 from rhs in subdomain 0 Sum after subtraction -0.01245643944 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008013408515 MLMG: Initial residual (resid0) = 0.0008013408515 MLMG: Final Iter. 2 resid, resid/bnorm = 9.540526662e-07, 0.001190570416 MLMG: Timers: Solve = 0.000636294 Iter = 0.000508422 Bottom = 5.4275e-05 Time in solve 0.001057801 Max/L2 norm of divergence after solve at level 1 : 2.828147262e-05 0.001515810844 and volume-weighted sum -84014.38281 Time integration of scalars at level 1 from 318 to 320 with dt = 2 using RHS created at 318 Making slow rhs at time 320 for fast variables advancing from 318 to 320 No-substepping time integration at level 1 to 320 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007499884814 0.004573951475 and volume-weighted sum -84014.35938 Subtracting -2.734842383e-05 from rhs in subdomain 0 Sum after subtraction -0.04842877388 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007773368852 MLMG: Initial residual (resid0) = 0.0007773368852 MLMG: Final Iter. 2 resid, resid/bnorm = 8.792849258e-07, 0.001131150406 MLMG: Timers: Solve = 0.000640843 Iter = 0.000514692 Bottom = 5.2729e-05 Time in solve 0.001049994 Max/L2 norm of divergence after solve at level 1 : 2.799695358e-05 0.001515808282 and volume-weighted sum -84014.38281 Time integration of scalars at level 1 from 318 to 320 with dt = 2 using RHS created at 320 Done with advance_dycore at level 1 [Level 1 step 160] Advanced 3072 cells Coarse STEP 160 ends. TIME = 320 DT = 2 Timestep time = 0.016332967 seconds. Coarse STEP 161 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.326120178 (terrain aware) 1.326120178 (terrain unaware) Anelastic dt at level 0 would be: 5.507363595 (terrain aware) 5.507363595 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2632886691 (terrain aware) 0.2632886691 (terrain unaware) Anelastic dt at level 1 would be: 2.779066521 (terrain aware) 2.779066521 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 161] ADVANCE from elapsed time = 320 to 322 with dt = 2 Making slow rhs at time 320 for fast variables advancing from 320 to 320.6666666667 Fast time integration at level 0 from 320 to 320.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 320 to 320.6666666667 with dt = 0.6666666666667 using RHS created at 320 Making slow rhs at time 320.6666666667 for fast variables advancing from 320 to 321 Fast time integration at level 0 from 320 to 320.5 with dt = 0.5 Fast time integration at level 0 from 320.5 to 321 with dt = 0.5 Time integration of scalars at level 0 from 320 to 321 with dt = 1 using RHS created at 320.6666666667 Making slow rhs at time 321 for fast variables advancing from 320 to 322 Fast time integration at level 0 from 320 to 320.5 with dt = 0.5 Fast time integration at level 0 from 320.5 to 321 with dt = 0.5 Fast time integration at level 0 from 321 to 321.5 with dt = 0.5 Fast time integration at level 0 from 321.5 to 322 with dt = 0.5 Time integration of scalars at level 0 from 320 to 322 with dt = 2 using RHS created at 321 Done with advance_dycore at level 0 [Level 0 step 161] Advanced 4096 cells [Level 1 step 161] ADVANCE from elapsed time = 320 to 322 with dt = 2 Making slow rhs at time 320 for fast variables advancing from 320 to 322 No-substepping time integration at level 1 to 322 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008235927671 0.004777805414 and volume-weighted sum -76995.08594 Subtracting -2.506350393e-05 from rhs in subdomain 0 Sum after subtraction -0.1334119588 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008486563456 MLMG: Initial residual (resid0) = 0.0008486563456 MLMG: Final Iter. 2 resid, resid/bnorm = 1.253818141e-06, 0.001477415673 MLMG: Timers: Solve = 0.000677032 Iter = 0.000543412 Bottom = 5.8411e-05 Time in solve 0.001085347 Max/L2 norm of divergence after solve at level 1 : 2.632010728e-05 0.001389172859 and volume-weighted sum -76995.0625 Time integration of scalars at level 1 from 320 to 322 with dt = 2 using RHS created at 320 Making slow rhs at time 322 for fast variables advancing from 320 to 322 No-substepping time integration at level 1 to 322 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008331499994 0.004539016634 and volume-weighted sum -76995.10156 Subtracting -2.506350938e-05 from rhs in subdomain 0 Sum after subtraction -0.07566995919 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008582135197 MLMG: Initial residual (resid0) = 0.0008582135197 MLMG: Final Iter. 2 resid, resid/bnorm = 8.798378985e-07, 0.00102519698 MLMG: Timers: Solve = 0.000632492 Iter = 0.000502162 Bottom = 5.26e-05 Time in solve 0.001055594 Max/L2 norm of divergence after solve at level 1 : 2.566352487e-05 0.001389165409 and volume-weighted sum -76995.0625 Time integration of scalars at level 1 from 320 to 322 with dt = 2 using RHS created at 322 Done with advance_dycore at level 1 [Level 1 step 161] Advanced 3072 cells Coarse STEP 161 ends. TIME = 322 DT = 2 Timestep time = 0.017508157 seconds. Coarse STEP 162 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.327738742 (terrain aware) 1.327738742 (terrain unaware) Anelastic dt at level 0 would be: 5.515279688 (terrain aware) 5.515279688 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2634827381 (terrain aware) 0.2634827381 (terrain unaware) Anelastic dt at level 1 would be: 2.790868539 (terrain aware) 2.790868539 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 162] ADVANCE from elapsed time = 322 to 324 with dt = 2 Making slow rhs at time 322 for fast variables advancing from 322 to 322.6666666667 Fast time integration at level 0 from 322 to 322.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 322 to 322.6666666667 with dt = 0.6666666666667 using RHS created at 322 Making slow rhs at time 322.6666666667 for fast variables advancing from 322 to 323 Fast time integration at level 0 from 322 to 322.5 with dt = 0.5 Fast time integration at level 0 from 322.5 to 323 with dt = 0.5 Time integration of scalars at level 0 from 322 to 323 with dt = 1 using RHS created at 322.6666666667 Making slow rhs at time 323 for fast variables advancing from 322 to 324 Fast time integration at level 0 from 322 to 322.5 with dt = 0.5 Fast time integration at level 0 from 322.5 to 323 with dt = 0.5 Fast time integration at level 0 from 323 to 323.5 with dt = 0.5 Fast time integration at level 0 from 323.5 to 324 with dt = 0.5 Time integration of scalars at level 0 from 322 to 324 with dt = 2 using RHS created at 323 Done with advance_dycore at level 0 [Level 0 step 162] Advanced 4096 cells [Level 1 step 162] ADVANCE from elapsed time = 322 to 324 with dt = 2 Making slow rhs at time 322 for fast variables advancing from 322 to 324 No-substepping time integration at level 1 to 324 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007751844823 0.004815130495 and volume-weighted sum -57777.25781 Subtracting -1.880770105e-05 from rhs in subdomain 0 Sum after subtraction -0.1018634066 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007939922507 MLMG: Initial residual (resid0) = 0.0007939922507 MLMG: Final Iter. 2 resid, resid/bnorm = 2.126970458e-06, 0.002678830177 MLMG: Timers: Solve = 0.000643977 Iter = 0.0005162 Bottom = 5.3544e-05 Time in solve 0.001112221 Max/L2 norm of divergence after solve at level 1 : 2.093287185e-05 0.00104246533 and volume-weighted sum -57777.25391 Time integration of scalars at level 1 from 322 to 324 with dt = 2 using RHS created at 322 Making slow rhs at time 324 for fast variables advancing from 322 to 324 No-substepping time integration at level 1 to 324 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007575619966 0.004449331667 and volume-weighted sum -57777.25 Subtracting -1.880769923e-05 from rhs in subdomain 0 Sum after subtraction -0.0004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007763697067 MLMG: Initial residual (resid0) = 0.0007763697067 MLMG: Final Iter. 2 resid, resid/bnorm = 8.810311556e-07, 0.001134808757 MLMG: Timers: Solve = 0.000663114 Iter = 0.000534299 Bottom = 5.4428e-05 Time in solve 0.001073922 Max/L2 norm of divergence after solve at level 1 : 1.946557313e-05 0.001042435877 and volume-weighted sum -57777.26172 Time integration of scalars at level 1 from 322 to 324 with dt = 2 using RHS created at 324 Done with advance_dycore at level 1 [Level 1 step 162] Advanced 3072 cells Coarse STEP 162 ends. TIME = 324 DT = 2 Timestep time = 0.016472055 seconds. Coarse STEP 163 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.33095486 (terrain aware) 1.33095486 (terrain unaware) Anelastic dt at level 0 would be: 5.552984393 (terrain aware) 5.552984393 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2637550195 (terrain aware) 0.2637550195 (terrain unaware) Anelastic dt at level 1 would be: 2.808657247 (terrain aware) 2.808657247 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 163] ADVANCE from elapsed time = 324 to 326 with dt = 2 Making slow rhs at time 324 for fast variables advancing from 324 to 324.6666666667 Fast time integration at level 0 from 324 to 324.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 324 to 324.6666666667 with dt = 0.6666666666667 using RHS created at 324 Making slow rhs at time 324.6666666667 for fast variables advancing from 324 to 325 Fast time integration at level 0 from 324 to 324.5 with dt = 0.5 Fast time integration at level 0 from 324.5 to 325 with dt = 0.5 Time integration of scalars at level 0 from 324 to 325 with dt = 1 using RHS created at 324.6666666667 Making slow rhs at time 325 for fast variables advancing from 324 to 326 Fast time integration at level 0 from 324 to 324.5 with dt = 0.5 Fast time integration at level 0 from 324.5 to 325 with dt = 0.5 Fast time integration at level 0 from 325 to 325.5 with dt = 0.5 Fast time integration at level 0 from 325.5 to 326 with dt = 0.5 Time integration of scalars at level 0 from 324 to 326 with dt = 2 using RHS created at 325 Done with advance_dycore at level 0 [Level 0 step 163] Advanced 4096 cells [Level 1 step 163] ADVANCE from elapsed time = 324 to 326 with dt = 2 Making slow rhs at time 324 for fast variables advancing from 324 to 326 No-substepping time integration at level 1 to 326 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008399486542 0.004787354264 and volume-weighted sum -25297.54883 Subtracting -8.234878806e-06 from rhs in subdomain 0 Sum after subtraction -0.01373700798 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008481835248 MLMG: Initial residual (resid0) = 0.0008481835248 MLMG: Final Iter. 2 resid, resid/bnorm = 2.478889428e-06, 0.002922586165 MLMG: Timers: Solve = 0.000635542 Iter = 0.000503611 Bottom = 5.5442e-05 Time in solve 0.00104716 Max/L2 norm of divergence after solve at level 1 : 1.071020961e-05 0.0004565313284 and volume-weighted sum -25297.50977 Time integration of scalars at level 1 from 324 to 326 with dt = 2 using RHS created at 324 Making slow rhs at time 326 for fast variables advancing from 324 to 326 No-substepping time integration at level 1 to 326 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008571911603 0.004351314623 and volume-weighted sum -25297.49219 Subtracting -8.234860616e-06 from rhs in subdomain 0 Sum after subtraction -0.05692709237 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008654260309 MLMG: Initial residual (resid0) = 0.0008654260309 MLMG: Final Iter. 2 resid, resid/bnorm = 9.321665857e-07, 0.001077118679 MLMG: Timers: Solve = 0.000638648 Iter = 0.000511792 Bottom = 5.4972e-05 Time in solve 0.001042743 Max/L2 norm of divergence after solve at level 1 : 8.889939636e-06 0.0004564383999 and volume-weighted sum -25297.51172 Time integration of scalars at level 1 from 324 to 326 with dt = 2 using RHS created at 326 Done with advance_dycore at level 1 [Level 1 step 163] Advanced 3072 cells Coarse STEP 163 ends. TIME = 326 DT = 2 Timestep time = 0.016395112 seconds. Coarse STEP 164 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.331876496 (terrain aware) 1.331876496 (terrain unaware) Anelastic dt at level 0 would be: 5.606150544 (terrain aware) 5.606150544 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639345227 (terrain aware) 0.2639345227 (terrain unaware) Anelastic dt at level 1 would be: 2.825123924 (terrain aware) 2.825123924 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 164] ADVANCE from elapsed time = 326 to 328 with dt = 2 Making slow rhs at time 326 for fast variables advancing from 326 to 326.6666666667 Fast time integration at level 0 from 326 to 326.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 326 to 326.6666666667 with dt = 0.6666666666667 using RHS created at 326 Making slow rhs at time 326.6666666667 for fast variables advancing from 326 to 327 Fast time integration at level 0 from 326 to 326.5 with dt = 0.5 Fast time integration at level 0 from 326.5 to 327 with dt = 0.5 Time integration of scalars at level 0 from 326 to 327 with dt = 1 using RHS created at 326.6666666667 Making slow rhs at time 327 for fast variables advancing from 326 to 328 Fast time integration at level 0 from 326 to 326.5 with dt = 0.5 Fast time integration at level 0 from 326.5 to 327 with dt = 0.5 Fast time integration at level 0 from 327 to 327.5 with dt = 0.5 Fast time integration at level 0 from 327.5 to 328 with dt = 0.5 Time integration of scalars at level 0 from 326 to 328 with dt = 2 using RHS created at 327 Done with advance_dycore at level 0 [Level 0 step 164] Advanced 4096 cells [Level 1 step 164] ADVANCE from elapsed time = 326 to 328 with dt = 2 Making slow rhs at time 326 for fast variables advancing from 326 to 328 No-substepping time integration at level 1 to 328 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000793799758 0.004650691058 and volume-weighted sum 16307.70801 Subtracting 5.308498658e-06 from rhs in subdomain 0 Sum after subtraction 0.0009313225746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007884912775 MLMG: Initial residual (resid0) = 0.0007884912775 MLMG: Final Iter. 2 resid, resid/bnorm = 1.836359161e-06, 0.002328953007 MLMG: Timers: Solve = 0.000673333 Iter = 0.000543748 Bottom = 5.7138e-05 Time in solve 0.001089713 Max/L2 norm of divergence after solve at level 1 : 6.541609764e-06 0.0002943293075 and volume-weighted sum 16307.67773 Time integration of scalars at level 1 from 326 to 328 with dt = 2 using RHS created at 326 Making slow rhs at time 328 for fast variables advancing from 326 to 328 No-substepping time integration at level 1 to 328 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007844734937 0.004335388541 and volume-weighted sum 16307.69531 Subtracting 5.308494565e-06 from rhs in subdomain 0 Sum after subtraction 0.04656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007791650132 MLMG: Initial residual (resid0) = 0.0007791650132 MLMG: Final Iter. 2 resid, resid/bnorm = 9.604264051e-07, 0.001232635463 MLMG: Timers: Solve = 0.000645712 Iter = 0.000508881 Bottom = 5.5808e-05 Time in solve 0.001055575 Max/L2 norm of divergence after solve at level 1 : 6.269663572e-06 0.0002942505234 and volume-weighted sum 16307.7041 Time integration of scalars at level 1 from 326 to 328 with dt = 2 using RHS created at 328 Done with advance_dycore at level 1 [Level 1 step 164] Advanced 3072 cells Coarse STEP 164 ends. TIME = 328 DT = 2 Timestep time = 0.01640551 seconds. Coarse STEP 165 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.332399229 (terrain aware) 1.332399229 (terrain unaware) Anelastic dt at level 0 would be: 5.59285394 (terrain aware) 5.59285394 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2642199917 (terrain aware) 0.2642199917 (terrain unaware) Anelastic dt at level 1 would be: 2.841522055 (terrain aware) 2.841522055 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 165] ADVANCE from elapsed time = 328 to 330 with dt = 2 Making slow rhs at time 328 for fast variables advancing from 328 to 328.6666666667 Fast time integration at level 0 from 328 to 328.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 328 to 328.6666666667 with dt = 0.6666666666667 using RHS created at 328 Making slow rhs at time 328.6666666667 for fast variables advancing from 328 to 329 Fast time integration at level 0 from 328 to 328.5 with dt = 0.5 Fast time integration at level 0 from 328.5 to 329 with dt = 0.5 Time integration of scalars at level 0 from 328 to 329 with dt = 1 using RHS created at 328.6666666667 Making slow rhs at time 329 for fast variables advancing from 328 to 330 Fast time integration at level 0 from 328 to 328.5 with dt = 0.5 Fast time integration at level 0 from 328.5 to 329 with dt = 0.5 Fast time integration at level 0 from 329 to 329.5 with dt = 0.5 Fast time integration at level 0 from 329.5 to 330 with dt = 0.5 Time integration of scalars at level 0 from 328 to 330 with dt = 2 using RHS created at 329 Done with advance_dycore at level 0 [Level 0 step 165] Advanced 4096 cells [Level 1 step 165] ADVANCE from elapsed time = 328 to 330 with dt = 2 Making slow rhs at time 328 for fast variables advancing from 328 to 330 No-substepping time integration at level 1 to 330 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008743293583 0.004624896683 and volume-weighted sum 59001.25391 Subtracting 1.920613795e-05 from rhs in subdomain 0 Sum after subtraction -0.03876630217 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008551232168 MLMG: Initial residual (resid0) = 0.0008551232168 MLMG: Final Iter. 2 resid, resid/bnorm = 1.081745722e-06, 0.001265017316 MLMG: Timers: Solve = 0.000641916 Iter = 0.000514257 Bottom = 5.7467e-05 Time in solve 0.001048136 Max/L2 norm of divergence after solve at level 1 : 2.030655742e-05 0.001064518932 and volume-weighted sum 59001.18359 Time integration of scalars at level 1 from 328 to 330 with dt = 2 using RHS created at 328 Making slow rhs at time 330 for fast variables advancing from 328 to 330 No-substepping time integration at level 1 to 330 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008873082697 0.00444951281 and volume-weighted sum 59001.25 Subtracting 1.920613613e-05 from rhs in subdomain 0 Sum after subtraction -0.02898741513 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008681021282 MLMG: Initial residual (resid0) = 0.0008681021282 MLMG: Final Iter. 2 resid, resid/bnorm = 9.520008462e-07, 0.001096646185 MLMG: Timers: Solve = 0.000665435 Iter = 0.000537768 Bottom = 5.7893e-05 Time in solve 0.001070354 Max/L2 norm of divergence after solve at level 1 : 2.016872168e-05 0.001064518117 and volume-weighted sum 59001.21875 Time integration of scalars at level 1 from 328 to 330 with dt = 2 using RHS created at 330 Done with advance_dycore at level 1 [Level 1 step 165] Advanced 3072 cells Coarse STEP 165 ends. TIME = 330 DT = 2 Timestep time = 0.016482167 seconds. Coarse STEP 166 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.334712187 (terrain aware) 1.334712187 (terrain unaware) Anelastic dt at level 0 would be: 5.613505757 (terrain aware) 5.613505757 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264419127 (terrain aware) 0.264419127 (terrain unaware) Anelastic dt at level 1 would be: 2.862538951 (terrain aware) 2.862538951 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 166] ADVANCE from elapsed time = 330 to 332 with dt = 2 Making slow rhs at time 330 for fast variables advancing from 330 to 330.6666666667 Fast time integration at level 0 from 330 to 330.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 330 to 330.6666666667 with dt = 0.6666666666667 using RHS created at 330 Making slow rhs at time 330.6666666667 for fast variables advancing from 330 to 331 Fast time integration at level 0 from 330 to 330.5 with dt = 0.5 Fast time integration at level 0 from 330.5 to 331 with dt = 0.5 Time integration of scalars at level 0 from 330 to 331 with dt = 1 using RHS created at 330.6666666667 Making slow rhs at time 331 for fast variables advancing from 330 to 332 Fast time integration at level 0 from 330 to 330.5 with dt = 0.5 Fast time integration at level 0 from 330.5 to 331 with dt = 0.5 Fast time integration at level 0 from 331 to 331.5 with dt = 0.5 Fast time integration at level 0 from 331.5 to 332 with dt = 0.5 Time integration of scalars at level 0 from 330 to 332 with dt = 2 using RHS created at 331 Done with advance_dycore at level 0 [Level 0 step 166] Advanced 4096 cells [Level 1 step 166] ADVANCE from elapsed time = 330 to 332 with dt = 2 Making slow rhs at time 330 for fast variables advancing from 330 to 332 No-substepping time integration at level 1 to 332 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008152779192 0.004861186724 and volume-weighted sum 94571.625 Subtracting 3.078503505e-05 from rhs in subdomain 0 Sum after subtraction 0.07112976164 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007844928768 MLMG: Initial residual (resid0) = 0.0007844928768 MLMG: Final Iter. 2 resid, resid/bnorm = 1.047749947e-06, 0.00133557606 MLMG: Timers: Solve = 0.000641037 Iter = 0.000507769 Bottom = 5.4206e-05 Time in solve 0.001051235 Max/L2 norm of divergence after solve at level 1 : 3.183679655e-05 0.001706289244 and volume-weighted sum 94571.60156 Time integration of scalars at level 1 from 330 to 332 with dt = 2 using RHS created at 330 Making slow rhs at time 332 for fast variables advancing from 330 to 332 No-substepping time integration at level 1 to 332 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008155070245 0.004636909347 and volume-weighted sum 94571.60156 Subtracting 3.078502777e-05 from rhs in subdomain 0 Sum after subtraction -0.05890615284 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007847219822 MLMG: Initial residual (resid0) = 0.0007847219822 MLMG: Final Iter. 2 resid, resid/bnorm = 8.979159247e-07, 0.001144247246 MLMG: Timers: Solve = 0.000638742 Iter = 0.000510241 Bottom = 5.6654e-05 Time in solve 0.001058682 Max/L2 norm of divergence after solve at level 1 : 3.168731928e-05 0.001706284354 and volume-weighted sum 94571.63281 Time integration of scalars at level 1 from 330 to 332 with dt = 2 using RHS created at 332 Done with advance_dycore at level 1 [Level 1 step 166] Advanced 3072 cells Coarse STEP 166 ends. TIME = 332 DT = 2 Timestep time = 0.016351657 seconds. Coarse STEP 167 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.338641326 (terrain aware) 1.338641326 (terrain unaware) Anelastic dt at level 0 would be: 5.66573671 (terrain aware) 5.66573671 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646963631 (terrain aware) 0.2646963631 (terrain unaware) Anelastic dt at level 1 would be: 2.87765439 (terrain aware) 2.87765439 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 167] ADVANCE from elapsed time = 332 to 334 with dt = 2 Making slow rhs at time 332 for fast variables advancing from 332 to 332.6666666667 Fast time integration at level 0 from 332 to 332.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 332 to 332.6666666667 with dt = 0.6666666666667 using RHS created at 332 Making slow rhs at time 332.6666666667 for fast variables advancing from 332 to 333 Fast time integration at level 0 from 332 to 332.5 with dt = 0.5 Fast time integration at level 0 from 332.5 to 333 with dt = 0.5 Time integration of scalars at level 0 from 332 to 333 with dt = 1 using RHS created at 332.6666666667 Making slow rhs at time 333 for fast variables advancing from 332 to 334 Fast time integration at level 0 from 332 to 332.5 with dt = 0.5 Fast time integration at level 0 from 332.5 to 333 with dt = 0.5 Fast time integration at level 0 from 333 to 333.5 with dt = 0.5 Fast time integration at level 0 from 333.5 to 334 with dt = 0.5 Time integration of scalars at level 0 from 332 to 334 with dt = 2 using RHS created at 333 Done with advance_dycore at level 0 [Level 0 step 167] Advanced 4096 cells [Level 1 step 167] ADVANCE from elapsed time = 332 to 334 with dt = 2 Making slow rhs at time 332 for fast variables advancing from 332 to 334 No-substepping time integration at level 1 to 334 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000895967707 0.005144346505 and volume-weighted sum 117824.3906 Subtracting 3.835429379e-05 from rhs in subdomain 0 Sum after subtraction 0.1401640475 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008576133405 MLMG: Initial residual (resid0) = 0.0008576133405 MLMG: Final Iter. 2 resid, resid/bnorm = 2.00005752e-06, 0.002332120435 MLMG: Timers: Solve = 0.000650161 Iter = 0.000521356 Bottom = 5.5871e-05 Time in solve 0.001066343 Max/L2 norm of divergence after solve at level 1 : 4.035746679e-05 0.002125827596 and volume-weighted sum 117824.4062 Time integration of scalars at level 1 from 332 to 334 with dt = 2 using RHS created at 332 Making slow rhs at time 334 for fast variables advancing from 332 to 334 No-substepping time integration at level 1 to 334 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0009045992047 0.004795144312 and volume-weighted sum 117824.4062 Subtracting 3.835429743e-05 from rhs in subdomain 0 Sum after subtraction 0.04097819328 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008662448963 MLMG: Initial residual (resid0) = 0.0008662448963 MLMG: Final Iter. 2 resid, resid/bnorm = 9.284703992e-07, 0.001071833656 MLMG: Timers: Solve = 0.000671081 Iter = 0.000511011 Bottom = 5.7659e-05 Time in solve 0.001152446 Max/L2 norm of divergence after solve at level 1 : 3.926455975e-05 0.002125814324 and volume-weighted sum 117824.4219 Time integration of scalars at level 1 from 332 to 334 with dt = 2 using RHS created at 334 Done with advance_dycore at level 1 [Level 1 step 167] Advanced 3072 cells Coarse STEP 167 ends. TIME = 334 DT = 2 Timestep time = 0.016801881 seconds. Coarse STEP 168 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.338998655 (terrain aware) 1.338998655 (terrain unaware) Anelastic dt at level 0 would be: 5.708115612 (terrain aware) 5.708115612 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264935266 (terrain aware) 0.264935266 (terrain unaware) Anelastic dt at level 1 would be: 2.90288146 (terrain aware) 2.90288146 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 168] ADVANCE from elapsed time = 334 to 336 with dt = 2 Making slow rhs at time 334 for fast variables advancing from 334 to 334.6666666667 Fast time integration at level 0 from 334 to 334.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 334 to 334.6666666667 with dt = 0.6666666666667 using RHS created at 334 Making slow rhs at time 334.6666666667 for fast variables advancing from 334 to 335 Fast time integration at level 0 from 334 to 334.5 with dt = 0.5 Fast time integration at level 0 from 334.5 to 335 with dt = 0.5 Time integration of scalars at level 0 from 334 to 335 with dt = 1 using RHS created at 334.6666666667 Making slow rhs at time 335 for fast variables advancing from 334 to 336 Fast time integration at level 0 from 334 to 334.5 with dt = 0.5 Fast time integration at level 0 from 334.5 to 335 with dt = 0.5 Fast time integration at level 0 from 335 to 335.5 with dt = 0.5 Fast time integration at level 0 from 335.5 to 336 with dt = 0.5 Time integration of scalars at level 0 from 334 to 336 with dt = 2 using RHS created at 335 Done with advance_dycore at level 0 [Level 0 step 168] Advanced 4096 cells [Level 1 step 168] ADVANCE from elapsed time = 334 to 336 with dt = 2 Making slow rhs at time 334 for fast variables advancing from 334 to 336 No-substepping time integration at level 1 to 336 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008179862052 0.005259226542 and volume-weighted sum 127105.0547 Subtracting 4.137534415e-05 from rhs in subdomain 0 Sum after subtraction -0.06053596735 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007766108611 MLMG: Initial residual (resid0) = 0.0007766108611 MLMG: Final Iter. 2 resid, resid/bnorm = 2.318176939e-06, 0.002984991763 MLMG: Timers: Solve = 0.00064835 Iter = 0.000519342 Bottom = 5.4655e-05 Time in solve 0.001061383 Max/L2 norm of divergence after solve at level 1 : 4.36976552e-05 0.002293272642 and volume-weighted sum 127105.0312 Time integration of scalars at level 1 from 334 to 336 with dt = 2 using RHS created at 334 Making slow rhs at time 336 for fast variables advancing from 334 to 336 No-substepping time integration at level 1 to 336 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008272267878 0.004857051652 and volume-weighted sum 127105.0859 Subtracting 4.137535507e-05 from rhs in subdomain 0 Sum after subtraction -0.04842877388 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007858514437 MLMG: Initial residual (resid0) = 0.0007858514437 MLMG: Final Iter. 2 resid, resid/bnorm = 9.558571037e-07, 0.001216333127 MLMG: Timers: Solve = 0.000647172 Iter = 0.000509616 Bottom = 5.5262e-05 Time in solve 0.001057391 Max/L2 norm of divergence after solve at level 1 : 4.233047366e-05 0.002293257276 and volume-weighted sum 127105.0312 Time integration of scalars at level 1 from 334 to 336 with dt = 2 using RHS created at 336 Done with advance_dycore at level 1 [Level 1 step 168] Advanced 3072 cells Coarse STEP 168 ends. TIME = 336 DT = 2 Timestep time = 0.016497517 seconds. Coarse STEP 169 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.340216974 (terrain aware) 1.340216974 (terrain unaware) Anelastic dt at level 0 would be: 5.707551156 (terrain aware) 5.707551156 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265192013 (terrain aware) 0.265192013 (terrain unaware) Anelastic dt at level 1 would be: 2.916969912 (terrain aware) 2.916969912 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 169] ADVANCE from elapsed time = 336 to 338 with dt = 2 Making slow rhs at time 336 for fast variables advancing from 336 to 336.6666666667 Fast time integration at level 0 from 336 to 336.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 336 to 336.6666666667 with dt = 0.6666666666667 using RHS created at 336 Making slow rhs at time 336.6666666667 for fast variables advancing from 336 to 337 Fast time integration at level 0 from 336 to 336.5 with dt = 0.5 Fast time integration at level 0 from 336.5 to 337 with dt = 0.5 Time integration of scalars at level 0 from 336 to 337 with dt = 1 using RHS created at 336.6666666667 Making slow rhs at time 337 for fast variables advancing from 336 to 338 Fast time integration at level 0 from 336 to 336.5 with dt = 0.5 Fast time integration at level 0 from 336.5 to 337 with dt = 0.5 Fast time integration at level 0 from 337 to 337.5 with dt = 0.5 Fast time integration at level 0 from 337.5 to 338 with dt = 0.5 Time integration of scalars at level 0 from 336 to 338 with dt = 2 using RHS created at 337 Done with advance_dycore at level 0 [Level 0 step 169] Advanced 4096 cells [Level 1 step 169] ADVANCE from elapsed time = 336 to 338 with dt = 2 Making slow rhs at time 336 for fast variables advancing from 336 to 338 No-substepping time integration at level 1 to 338 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008923914284 0.005194916856 and volume-weighted sum 122823.2969 Subtracting 3.998154352e-05 from rhs in subdomain 0 Sum after subtraction 0.005355104804 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008524098666 MLMG: Initial residual (resid0) = 0.0008524098666 MLMG: Final Iter. 2 resid, resid/bnorm = 2.246780241e-06, 0.002635797951 MLMG: Timers: Solve = 0.000632951 Iter = 0.000505673 Bottom = 5.4644e-05 Time in solve 0.001049742 Max/L2 norm of divergence after solve at level 1 : 4.222663119e-05 0.002216019435 and volume-weighted sum 122823.2656 Time integration of scalars at level 1 from 336 to 338 with dt = 2 using RHS created at 336 Making slow rhs at time 338 for fast variables advancing from 336 to 338 No-substepping time integration at level 1 to 338 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0009012985975 0.004804833326 and volume-weighted sum 122823.2734 Subtracting 3.998153261e-05 from rhs in subdomain 0 Sum after subtraction -0.07369089872 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008613170357 MLMG: Initial residual (resid0) = 0.0008613170357 MLMG: Final Iter. 2 resid, resid/bnorm = 9.52888513e-07, 0.001106315642 MLMG: Timers: Solve = 0.000647765 Iter = 0.000516901 Bottom = 5.5599e-05 Time in solve 0.001049698 Max/L2 norm of divergence after solve at level 1 : 4.093721509e-05 0.002216005465 and volume-weighted sum 122823.2656 Time integration of scalars at level 1 from 336 to 338 with dt = 2 using RHS created at 338 Done with advance_dycore at level 1 [Level 1 step 169] Advanced 3072 cells Coarse STEP 169 ends. TIME = 338 DT = 2 Timestep time = 0.016418017 seconds. Coarse STEP 170 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.343153397 (terrain aware) 1.343153397 (terrain unaware) Anelastic dt at level 0 would be: 5.741473351 (terrain aware) 5.741473351 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265458632 (terrain aware) 0.265458632 (terrain unaware) Anelastic dt at level 1 would be: 2.942892865 (terrain aware) 2.942892865 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 170] ADVANCE from elapsed time = 338 to 340 with dt = 2 Making slow rhs at time 338 for fast variables advancing from 338 to 338.6666666667 Fast time integration at level 0 from 338 to 338.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 338 to 338.6666666667 with dt = 0.6666666666667 using RHS created at 338 Making slow rhs at time 338.6666666667 for fast variables advancing from 338 to 339 Fast time integration at level 0 from 338 to 338.5 with dt = 0.5 Fast time integration at level 0 from 338.5 to 339 with dt = 0.5 Time integration of scalars at level 0 from 338 to 339 with dt = 1 using RHS created at 338.6666666667 Making slow rhs at time 339 for fast variables advancing from 338 to 340 Fast time integration at level 0 from 338 to 338.5 with dt = 0.5 Fast time integration at level 0 from 338.5 to 339 with dt = 0.5 Fast time integration at level 0 from 339 to 339.5 with dt = 0.5 Fast time integration at level 0 from 339.5 to 340 with dt = 0.5 Time integration of scalars at level 0 from 338 to 340 with dt = 2 using RHS created at 339 Done with advance_dycore at level 0 [Level 0 step 170] Advanced 4096 cells [Level 1 step 170] ADVANCE from elapsed time = 338 to 340 with dt = 2 Making slow rhs at time 338 for fast variables advancing from 338 to 340 No-substepping time integration at level 1 to 340 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008091442287 0.00501369359 and volume-weighted sum 106109.9453 Subtracting 3.454099715e-05 from rhs in subdomain 0 Sum after subtraction 0.05727633834 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007746032206 MLMG: Initial residual (resid0) = 0.0007746032206 MLMG: Final Iter. 2 resid, resid/bnorm = 2.010180197e-06, 0.002595109632 MLMG: Timers: Solve = 0.000648532 Iter = 0.000517098 Bottom = 5.5886e-05 Time in solve 0.001053009 Max/L2 norm of divergence after solve at level 1 : 3.655394539e-05 0.001914473367 and volume-weighted sum 106109.9844 Time integration of scalars at level 1 from 338 to 340 with dt = 2 using RHS created at 338 Making slow rhs at time 340 for fast variables advancing from 338 to 340 No-substepping time integration at level 1 to 340 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000820254907 0.004654122982 and volume-weighted sum 106109.9062 Subtracting 3.454098623e-05 from rhs in subdomain 0 Sum after subtraction 0.0512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007857138989 MLMG: Initial residual (resid0) = 0.0007857138989 MLMG: Final Iter. 2 resid, resid/bnorm = 9.092960909e-07, 0.001157286461 MLMG: Timers: Solve = 0.000638695 Iter = 0.000506024 Bottom = 5.6159e-05 Time in solve 0.001044854 Max/L2 norm of divergence after solve at level 1 : 3.547221422e-05 0.00191445963 and volume-weighted sum 106109.9531 Time integration of scalars at level 1 from 338 to 340 with dt = 2 using RHS created at 340 Done with advance_dycore at level 1 [Level 1 step 170] Advanced 3072 cells Coarse STEP 170 ends. TIME = 340 DT = 2 Timestep time = 0.016148831 seconds. Coarse STEP 171 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.347411702 (terrain aware) 1.347411702 (terrain unaware) Anelastic dt at level 0 would be: 5.807353768 (terrain aware) 5.807353768 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658460995 (terrain aware) 0.2658460995 (terrain unaware) Anelastic dt at level 1 would be: 2.95797284 (terrain aware) 2.95797284 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 171] ADVANCE from elapsed time = 340 to 342 with dt = 2 Making slow rhs at time 340 for fast variables advancing from 340 to 340.6666666667 Fast time integration at level 0 from 340 to 340.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 340 to 340.6666666667 with dt = 0.6666666666667 using RHS created at 340 Making slow rhs at time 340.6666666667 for fast variables advancing from 340 to 341 Fast time integration at level 0 from 340 to 340.5 with dt = 0.5 Fast time integration at level 0 from 340.5 to 341 with dt = 0.5 Time integration of scalars at level 0 from 340 to 341 with dt = 1 using RHS created at 340.6666666667 Making slow rhs at time 341 for fast variables advancing from 340 to 342 Fast time integration at level 0 from 340 to 340.5 with dt = 0.5 Fast time integration at level 0 from 340.5 to 341 with dt = 0.5 Fast time integration at level 0 from 341 to 341.5 with dt = 0.5 Fast time integration at level 0 from 341.5 to 342 with dt = 0.5 Time integration of scalars at level 0 from 340 to 342 with dt = 2 using RHS created at 341 Done with advance_dycore at level 0 [Level 0 step 171] Advanced 4096 cells [Level 1 step 171] ADVANCE from elapsed time = 340 to 342 with dt = 2 Making slow rhs at time 340 for fast variables advancing from 340 to 342 No-substepping time integration at level 1 to 342 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000872630626 0.004769033287 and volume-weighted sum 78481.14062 Subtracting 2.554724597e-05 from rhs in subdomain 0 Sum after subtraction 0.01443549991 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008470834 MLMG: Initial residual (resid0) = 0.0008470834 MLMG: Final Iter. 2 resid, resid/bnorm = 1.630864062e-06, 0.001925269724 MLMG: Timers: Solve = 0.000644003 Iter = 0.000507496 Bottom = 5.5933e-05 Time in solve 0.001049411 Max/L2 norm of divergence after solve at level 1 : 2.717645839e-05 0.001415990759 and volume-weighted sum 78481.09375 Time integration of scalars at level 1 from 340 to 342 with dt = 2 using RHS created at 340 Making slow rhs at time 342 for fast variables advancing from 340 to 342 No-substepping time integration at level 1 to 342 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008839238435 0.004449654371 and volume-weighted sum 78481.11719 Subtracting 2.554723869e-05 from rhs in subdomain 0 Sum after subtraction 0.05681067705 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008583766175 MLMG: Initial residual (resid0) = 0.0008583766175 MLMG: Final Iter. 2 resid, resid/bnorm = 9.525974747e-07, 0.001109766308 MLMG: Timers: Solve = 0.000638562 Iter = 0.000511737 Bottom = 5.5814e-05 Time in solve 0.001045814 Max/L2 norm of divergence after solve at level 1 : 2.649798989e-05 0.001415978651 and volume-weighted sum 78481.15625 Time integration of scalars at level 1 from 340 to 342 with dt = 2 using RHS created at 342 Done with advance_dycore at level 1 [Level 1 step 171] Advanced 3072 cells Coarse STEP 171 ends. TIME = 342 DT = 2 Timestep time = 0.017093377 seconds. Coarse STEP 172 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.347343306 (terrain aware) 1.347343306 (terrain unaware) Anelastic dt at level 0 would be: 5.837368282 (terrain aware) 5.837368282 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2661277687 (terrain aware) 0.2661277687 (terrain unaware) Anelastic dt at level 1 would be: 2.981384352 (terrain aware) 2.981384352 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 172] ADVANCE from elapsed time = 342 to 344 with dt = 2 Making slow rhs at time 342 for fast variables advancing from 342 to 342.6666666667 Fast time integration at level 0 from 342 to 342.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 342 to 342.6666666667 with dt = 0.6666666666667 using RHS created at 342 Making slow rhs at time 342.6666666667 for fast variables advancing from 342 to 343 Fast time integration at level 0 from 342 to 342.5 with dt = 0.5 Fast time integration at level 0 from 342.5 to 343 with dt = 0.5 Time integration of scalars at level 0 from 342 to 343 with dt = 1 using RHS created at 342.6666666667 Making slow rhs at time 343 for fast variables advancing from 342 to 344 Fast time integration at level 0 from 342 to 342.5 with dt = 0.5 Fast time integration at level 0 from 342.5 to 343 with dt = 0.5 Fast time integration at level 0 from 343 to 343.5 with dt = 0.5 Fast time integration at level 0 from 343.5 to 344 with dt = 0.5 Time integration of scalars at level 0 from 342 to 344 with dt = 2 using RHS created at 343 Done with advance_dycore at level 0 [Level 0 step 172] Advanced 4096 cells [Level 1 step 172] ADVANCE from elapsed time = 342 to 344 with dt = 2 Making slow rhs at time 342 for fast variables advancing from 342 to 344 No-substepping time integration at level 1 to 344 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007869824767 0.004520322196 and volume-weighted sum 42625.12891 Subtracting 1.387536759e-05 from rhs in subdomain 0 Sum after subtraction 0.05261972547 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007731071091 MLMG: Initial residual (resid0) = 0.0007731071091 MLMG: Final Iter. 2 resid, resid/bnorm = 1.201668056e-06, 0.001554335817 MLMG: Timers: Solve = 0.000713049 Iter = 0.000582673 Bottom = 5.5792e-05 Time in solve 0.001122879 Max/L2 norm of divergence after solve at level 1 : 1.508370042e-05 0.0007690730854 and volume-weighted sum 42625.09375 Time integration of scalars at level 1 from 342 to 344 with dt = 2 using RHS created at 342 Making slow rhs at time 344 for fast variables advancing from 342 to 344 No-substepping time integration at level 1 to 344 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007927995175 0.00426296331 and volume-weighted sum 42625.13281 Subtracting 1.38753685e-05 from rhs in subdomain 0 Sum after subtraction 0.0009313225746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007789241499 MLMG: Initial residual (resid0) = 0.0007789241499 MLMG: Final Iter. 2 resid, resid/bnorm = 9.915966075e-07, 0.001273033558 MLMG: Timers: Solve = 0.000663126 Iter = 0.000535215 Bottom = 5.4913e-05 Time in solve 0.001066354 Max/L2 norm of divergence after solve at level 1 : 1.485273242e-05 0.000769061211 and volume-weighted sum 42625.13672 Time integration of scalars at level 1 from 342 to 344 with dt = 2 using RHS created at 344 Done with advance_dycore at level 1 [Level 1 step 172] Advanced 3072 cells Coarse STEP 172 ends. TIME = 344 DT = 2 Timestep time = 0.016387063 seconds. Coarse STEP 173 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.349090467 (terrain aware) 1.349090467 (terrain unaware) Anelastic dt at level 0 would be: 5.848162087 (terrain aware) 5.848162087 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2663493303 (terrain aware) 0.2663493303 (terrain unaware) Anelastic dt at level 1 would be: 2.999775365 (terrain aware) 2.999775365 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 173] ADVANCE from elapsed time = 344 to 346 with dt = 2 Making slow rhs at time 344 for fast variables advancing from 344 to 344.6666666667 Fast time integration at level 0 from 344 to 344.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 344 to 344.6666666667 with dt = 0.6666666666667 using RHS created at 344 Making slow rhs at time 344.6666666667 for fast variables advancing from 344 to 345 Fast time integration at level 0 from 344 to 344.5 with dt = 0.5 Fast time integration at level 0 from 344.5 to 345 with dt = 0.5 Time integration of scalars at level 0 from 344 to 345 with dt = 1 using RHS created at 344.6666666667 Making slow rhs at time 345 for fast variables advancing from 344 to 346 Fast time integration at level 0 from 344 to 344.5 with dt = 0.5 Fast time integration at level 0 from 344.5 to 345 with dt = 0.5 Fast time integration at level 0 from 345 to 345.5 with dt = 0.5 Fast time integration at level 0 from 345.5 to 346 with dt = 0.5 Time integration of scalars at level 0 from 344 to 346 with dt = 2 using RHS created at 345 Done with advance_dycore at level 0 [Level 0 step 173] Advanced 4096 cells [Level 1 step 173] ADVANCE from elapsed time = 344 to 346 with dt = 2 Making slow rhs at time 344 for fast variables advancing from 344 to 346 No-substepping time integration at level 1 to 346 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008365251124 0.004356289282 and volume-weighted sum 3120.324463 Subtracting 1.015730618e-06 from rhs in subdomain 0 Sum after subtraction -0.01303851604 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008355093887 MLMG: Initial residual (resid0) = 0.0008355093887 MLMG: Final Iter. 2 resid, resid/bnorm = 1.169304596e-06, 0.001399511006 MLMG: Timers: Solve = 0.000632173 Iter = 0.000511468 Bottom = 5.863e-05 Time in solve 0.001060179 Max/L2 norm of divergence after solve at level 1 : 2.164393663e-06 5.647818034e-05 and volume-weighted sum 3120.279785 Time integration of scalars at level 1 from 344 to 346 with dt = 2 using RHS created at 344 Making slow rhs at time 346 for fast variables advancing from 344 to 346 No-substepping time integration at level 1 to 346 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008525457233 0.004165243357 and volume-weighted sum 3120.330322 Subtracting 1.015732551e-06 from rhs in subdomain 0 Sum after subtraction -0.02724118531 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008515299996 MLMG: Initial residual (resid0) = 0.0008515299996 MLMG: Final Iter. 2 resid, resid/bnorm = 1.005435479e-06, 0.001180739957 MLMG: Timers: Solve = 0.000640992 Iter = 0.000514546 Bottom = 6.1496e-05 Time in solve 0.001047122 Max/L2 norm of divergence after solve at level 1 : 2.015382051e-06 5.642460019e-05 and volume-weighted sum 3120.365723 Time integration of scalars at level 1 from 344 to 346 with dt = 2 using RHS created at 346 Done with advance_dycore at level 1 [Level 1 step 173] Advanced 3072 cells Coarse STEP 173 ends. TIME = 346 DT = 2 Timestep time = 0.01648388 seconds. Coarse STEP 174 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352487931 (terrain aware) 1.352487931 (terrain unaware) Anelastic dt at level 0 would be: 5.893986137 (terrain aware) 5.893986137 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2666364198 (terrain aware) 0.2666364198 (terrain unaware) Anelastic dt at level 1 would be: 3.022487417 (terrain aware) 3.022487417 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 174] ADVANCE from elapsed time = 346 to 348 with dt = 2 Making slow rhs at time 346 for fast variables advancing from 346 to 346.6666666667 Fast time integration at level 0 from 346 to 346.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 346 to 346.6666666667 with dt = 0.6666666666667 using RHS created at 346 Making slow rhs at time 346.6666666667 for fast variables advancing from 346 to 347 Fast time integration at level 0 from 346 to 346.5 with dt = 0.5 Fast time integration at level 0 from 346.5 to 347 with dt = 0.5 Time integration of scalars at level 0 from 346 to 347 with dt = 1 using RHS created at 346.6666666667 Making slow rhs at time 347 for fast variables advancing from 346 to 348 Fast time integration at level 0 from 346 to 346.5 with dt = 0.5 Fast time integration at level 0 from 346.5 to 347 with dt = 0.5 Fast time integration at level 0 from 347 to 347.5 with dt = 0.5 Fast time integration at level 0 from 347.5 to 348 with dt = 0.5 Time integration of scalars at level 0 from 346 to 348 with dt = 2 using RHS created at 347 Done with advance_dycore at level 0 [Level 0 step 174] Advanced 4096 cells [Level 1 step 174] ADVANCE from elapsed time = 346 to 348 with dt = 2 Making slow rhs at time 346 for fast variables advancing from 346 to 348 No-substepping time integration at level 1 to 348 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007589906454 0.004363446496 and volume-weighted sum -33929.46484 Subtracting -1.104474723e-05 from rhs in subdomain 0 Sum after subtraction -0.04004687071 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007700353744 MLMG: Initial residual (resid0) = 0.0007700353744 MLMG: Final Iter. 2 resid, resid/bnorm = 1.059293936e-06, 0.001375643187 MLMG: Timers: Solve = 0.000642187 Iter = 0.000510682 Bottom = 5.8424e-05 Time in solve 0.001070001 Max/L2 norm of divergence after solve at level 1 : 1.189671457e-05 0.0006121810875 and volume-weighted sum -33929.45312 Time integration of scalars at level 1 from 346 to 348 with dt = 2 using RHS created at 346 Making slow rhs at time 348 for fast variables advancing from 346 to 348 No-substepping time integration at level 1 to 348 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007576085627 0.00418058224 and volume-weighted sum -33929.46875 Subtracting -1.104474904e-05 from rhs in subdomain 0 Sum after subtraction -0.008381903172 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007686532917 MLMG: Initial residual (resid0) = 0.0007686532917 MLMG: Final Iter. 2 resid, resid/bnorm = 9.857112673e-07, 0.001282387413 MLMG: Timers: Solve = 0.000679239 Iter = 0.000549314 Bottom = 5.3934e-05 Time in solve 0.001089532 Max/L2 norm of divergence after solve at level 1 : 1.172535121e-05 0.0006121734041 and volume-weighted sum -33929.46484 Time integration of scalars at level 1 from 346 to 348 with dt = 2 using RHS created at 348 Done with advance_dycore at level 1 [Level 1 step 174] Advanced 3072 cells Coarse STEP 174 ends. TIME = 348 DT = 2 Timestep time = 0.01696618 seconds. Coarse STEP 175 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356157938 (terrain aware) 1.356157938 (terrain unaware) Anelastic dt at level 0 would be: 5.971549064 (terrain aware) 5.971549064 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2668414225 (terrain aware) 0.2668414225 (terrain unaware) Anelastic dt at level 1 would be: 3.043664648 (terrain aware) 3.043664648 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 175] ADVANCE from elapsed time = 348 to 350 with dt = 2 Making slow rhs at time 348 for fast variables advancing from 348 to 348.6666666667 Fast time integration at level 0 from 348 to 348.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 348 to 348.6666666667 with dt = 0.6666666666667 using RHS created at 348 Making slow rhs at time 348.6666666667 for fast variables advancing from 348 to 349 Fast time integration at level 0 from 348 to 348.5 with dt = 0.5 Fast time integration at level 0 from 348.5 to 349 with dt = 0.5 Time integration of scalars at level 0 from 348 to 349 with dt = 1 using RHS created at 348.6666666667 Making slow rhs at time 349 for fast variables advancing from 348 to 350 Fast time integration at level 0 from 348 to 348.5 with dt = 0.5 Fast time integration at level 0 from 348.5 to 349 with dt = 0.5 Fast time integration at level 0 from 349 to 349.5 with dt = 0.5 Fast time integration at level 0 from 349.5 to 350 with dt = 0.5 Time integration of scalars at level 0 from 348 to 350 with dt = 2 using RHS created at 349 Done with advance_dycore at level 0 [Level 0 step 175] Advanced 4096 cells [Level 1 step 175] ADVANCE from elapsed time = 348 to 350 with dt = 2 Making slow rhs at time 348 for fast variables advancing from 348 to 350 No-substepping time integration at level 1 to 350 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008016396314 0.004522919655 and volume-weighted sum -62589.94531 Subtracting -2.037433114e-05 from rhs in subdomain 0 Sum after subtraction -0.01746229827 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008220139425 MLMG: Initial residual (resid0) = 0.0008220139425 MLMG: Final Iter. 2 resid, resid/bnorm = 1.650831791e-06, 0.002008277224 MLMG: Timers: Solve = 0.000644725 Iter = 0.000517343 Bottom = 5.5801e-05 Time in solve 0.001067077 Max/L2 norm of divergence after solve at level 1 : 2.202531323e-05 0.001129281474 and volume-weighted sum -62589.98828 Time integration of scalars at level 1 from 348 to 350 with dt = 2 using RHS created at 348 Making slow rhs at time 350 for fast variables advancing from 348 to 350 No-substepping time integration at level 1 to 350 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008243378252 0.00425871741 and volume-weighted sum -62589.95703 Subtracting -2.037433478e-05 from rhs in subdomain 0 Sum after subtraction -0.03026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008447121363 MLMG: Initial residual (resid0) = 0.0008447121363 MLMG: Final Iter. 2 resid, resid/bnorm = 9.787327144e-07, 0.001158658299 MLMG: Timers: Solve = 0.000652671 Iter = 0.000523686 Bottom = 5.5133e-05 Time in solve 0.001069388 Max/L2 norm of divergence after solve at level 1 : 2.110004425e-05 0.001129266107 and volume-weighted sum -62589.98047 Time integration of scalars at level 1 from 348 to 350 with dt = 2 using RHS created at 350 Done with advance_dycore at level 1 [Level 1 step 175] Advanced 3072 cells Coarse STEP 175 ends. TIME = 350 DT = 2 Timestep time = 0.016997924 seconds. Coarse STEP 176 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356378624 (terrain aware) 1.356378624 (terrain unaware) Anelastic dt at level 0 would be: 5.988445193 (terrain aware) 5.988445193 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2671275807 (terrain aware) 0.2671275807 (terrain unaware) Anelastic dt at level 1 would be: 3.065275206 (terrain aware) 3.065275206 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 176] ADVANCE from elapsed time = 350 to 352 with dt = 2 Making slow rhs at time 350 for fast variables advancing from 350 to 350.6666666667 Fast time integration at level 0 from 350 to 350.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 350 to 350.6666666667 with dt = 0.6666666666667 using RHS created at 350 Making slow rhs at time 350.6666666667 for fast variables advancing from 350 to 351 Fast time integration at level 0 from 350 to 350.5 with dt = 0.5 Fast time integration at level 0 from 350.5 to 351 with dt = 0.5 Time integration of scalars at level 0 from 350 to 351 with dt = 1 using RHS created at 350.6666666667 Making slow rhs at time 351 for fast variables advancing from 350 to 352 Fast time integration at level 0 from 350 to 350.5 with dt = 0.5 Fast time integration at level 0 from 350.5 to 351 with dt = 0.5 Fast time integration at level 0 from 351 to 351.5 with dt = 0.5 Fast time integration at level 0 from 351.5 to 352 with dt = 0.5 Time integration of scalars at level 0 from 350 to 352 with dt = 2 using RHS created at 351 Done with advance_dycore at level 0 [Level 0 step 176] Advanced 4096 cells [Level 1 step 176] ADVANCE from elapsed time = 350 to 352 with dt = 2 Making slow rhs at time 350 for fast variables advancing from 350 to 352 No-substepping time integration at level 1 to 352 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007407758385 0.004659018945 and volume-weighted sum -79616.00781 Subtracting -2.591666998e-05 from rhs in subdomain 0 Sum after subtraction 0.004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007666925085 MLMG: Initial residual (resid0) = 0.0007666925085 MLMG: Final Iter. 2 resid, resid/bnorm = 1.916643441e-06, 0.002499885391 MLMG: Timers: Solve = 0.000638866 Iter = 0.000507662 Bottom = 5.5116e-05 Time in solve 0.001056923 Max/L2 norm of divergence after solve at level 1 : 2.783630043e-05 0.001436469727 and volume-weighted sum -79616.00781 Time integration of scalars at level 1 from 350 to 352 with dt = 2 using RHS created at 350 Making slow rhs at time 352 for fast variables advancing from 350 to 352 No-substepping time integration at level 1 to 352 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007276628166 0.004322030582 and volume-weighted sum -79615.96094 Subtracting -2.591665361e-05 from rhs in subdomain 0 Sum after subtraction -0.04190951586 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007535794866 MLMG: Initial residual (resid0) = 0.0007535794866 MLMG: Final Iter. 2 resid, resid/bnorm = 1.039064955e-06, 0.001378839253 MLMG: Timers: Solve = 0.000635165 Iter = 0.000507866 Bottom = 5.5328e-05 Time in solve 0.001054723 Max/L2 norm of divergence after solve at level 1 : 2.664513886e-05 0.001436451683 and volume-weighted sum -79616.00781 Time integration of scalars at level 1 from 350 to 352 with dt = 2 using RHS created at 352 Done with advance_dycore at level 1 [Level 1 step 176] Advanced 3072 cells Coarse STEP 176 ends. TIME = 352 DT = 2 Timestep time = 0.016583978 seconds. Coarse STEP 177 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.35826228 (terrain aware) 1.35826228 (terrain unaware) Anelastic dt at level 0 would be: 6.004567057 (terrain aware) 6.004567057 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.267307121 (terrain aware) 0.267307121 (terrain unaware) Anelastic dt at level 1 would be: 3.088453664 (terrain aware) 3.088453664 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 177] ADVANCE from elapsed time = 352 to 354 with dt = 2 Making slow rhs at time 352 for fast variables advancing from 352 to 352.6666666667 Fast time integration at level 0 from 352 to 352.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 352 to 352.6666666667 with dt = 0.6666666666667 using RHS created at 352 Making slow rhs at time 352.6666666667 for fast variables advancing from 352 to 353 Fast time integration at level 0 from 352 to 352.5 with dt = 0.5 Fast time integration at level 0 from 352.5 to 353 with dt = 0.5 Time integration of scalars at level 0 from 352 to 353 with dt = 1 using RHS created at 352.6666666667 Making slow rhs at time 353 for fast variables advancing from 352 to 354 Fast time integration at level 0 from 352 to 352.5 with dt = 0.5 Fast time integration at level 0 from 352.5 to 353 with dt = 0.5 Fast time integration at level 0 from 353 to 353.5 with dt = 0.5 Fast time integration at level 0 from 353.5 to 354 with dt = 0.5 Time integration of scalars at level 0 from 352 to 354 with dt = 2 using RHS created at 353 Done with advance_dycore at level 0 [Level 0 step 177] Advanced 4096 cells [Level 1 step 177] ADVANCE from elapsed time = 352 to 354 with dt = 2 Making slow rhs at time 352 for fast variables advancing from 352 to 354 No-substepping time integration at level 1 to 354 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000781012699 0.004636086058 and volume-weighted sum -85566.51562 Subtracting -2.78536827e-05 from rhs in subdomain 0 Sum after subtraction -0.002095475793 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008088664035 MLMG: Initial residual (resid0) = 0.0008088664035 MLMG: Final Iter. 2 resid, resid/bnorm = 1.605413217e-06, 0.001984769246 MLMG: Timers: Solve = 0.000645535 Iter = 0.000519864 Bottom = 5.7237e-05 Time in solve 0.001051817 Max/L2 norm of divergence after solve at level 1 : 2.945959568e-05 0.001543824212 and volume-weighted sum -85566.49219 Time integration of scalars at level 1 from 352 to 354 with dt = 2 using RHS created at 352 Making slow rhs at time 354 for fast variables advancing from 352 to 354 No-substepping time integration at level 1 to 354 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008080583066 0.004331289325 and volume-weighted sum -85566.53125 Subtracting -2.785368815e-05 from rhs in subdomain 0 Sum after subtraction 0.08102506399 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008359120111 MLMG: Initial residual (resid0) = 0.0008359120111 MLMG: Final Iter. 2 resid, resid/bnorm = 1.066917321e-06, 0.001276351279 MLMG: Timers: Solve = 0.000637306 Iter = 0.000509117 Bottom = 5.5289e-05 Time in solve 0.001048608 Max/L2 norm of divergence after solve at level 1 : 2.860091627e-05 0.001543812221 and volume-weighted sum -85566.51562 Time integration of scalars at level 1 from 352 to 354 with dt = 2 using RHS created at 354 Done with advance_dycore at level 1 [Level 1 step 177] Advanced 3072 cells Coarse STEP 177 ends. TIME = 354 DT = 2 Timestep time = 0.016301382 seconds. Coarse STEP 178 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361657659 (terrain aware) 1.361657659 (terrain unaware) Anelastic dt at level 0 would be: 6.054752379 (terrain aware) 6.054752379 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2675883805 (terrain aware) 0.2675883805 (terrain unaware) Anelastic dt at level 1 would be: 3.107618047 (terrain aware) 3.107618047 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 178] ADVANCE from elapsed time = 354 to 356 with dt = 2 Making slow rhs at time 354 for fast variables advancing from 354 to 354.6666666667 Fast time integration at level 0 from 354 to 354.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 354 to 354.6666666667 with dt = 0.6666666666667 using RHS created at 354 Making slow rhs at time 354.6666666667 for fast variables advancing from 354 to 355 Fast time integration at level 0 from 354 to 354.5 with dt = 0.5 Fast time integration at level 0 from 354.5 to 355 with dt = 0.5 Time integration of scalars at level 0 from 354 to 355 with dt = 1 using RHS created at 354.6666666667 Making slow rhs at time 355 for fast variables advancing from 354 to 356 Fast time integration at level 0 from 354 to 354.5 with dt = 0.5 Fast time integration at level 0 from 354.5 to 355 with dt = 0.5 Fast time integration at level 0 from 355 to 355.5 with dt = 0.5 Fast time integration at level 0 from 355.5 to 356 with dt = 0.5 Time integration of scalars at level 0 from 354 to 356 with dt = 2 using RHS created at 355 Done with advance_dycore at level 0 [Level 0 step 178] Advanced 4096 cells [Level 1 step 178] ADVANCE from elapsed time = 354 to 356 with dt = 2 Making slow rhs at time 354 for fast variables advancing from 354 to 356 No-substepping time integration at level 1 to 356 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007406622171 0.004510606173 and volume-weighted sum -83469.89062 Subtracting -2.717118878e-05 from rhs in subdomain 0 Sum after subtraction -0.03399327397 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007678333786 MLMG: Initial residual (resid0) = 0.0007678333786 MLMG: Final Iter. 2 resid, resid/bnorm = 1.060427621e-06, 0.001381064765 MLMG: Timers: Solve = 0.00063655 Iter = 0.000510595 Bottom = 5.8417e-05 Time in solve 0.001088674 Max/L2 norm of divergence after solve at level 1 : 2.82311812e-05 0.001505989349 and volume-weighted sum -83469.9375 Time integration of scalars at level 1 from 354 to 356 with dt = 2 using RHS created at 354 Making slow rhs at time 356 for fast variables advancing from 354 to 356 No-substepping time integration at level 1 to 356 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007320698351 0.004291791935 and volume-weighted sum -83469.89062 Subtracting -2.717118878e-05 from rhs in subdomain 0 Sum after subtraction -0.08731149137 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007592409966 MLMG: Initial residual (resid0) = 0.0007592409966 MLMG: Final Iter. 2 resid, resid/bnorm = 1.052304924e-06, 0.001385995885 MLMG: Timers: Solve = 0.000647259 Iter = 0.000515613 Bottom = 5.5154e-05 Time in solve 0.001056799 Max/L2 norm of divergence after solve at level 1 : 2.796575427e-05 0.001505984575 and volume-weighted sum -83469.9375 Time integration of scalars at level 1 from 354 to 356 with dt = 2 using RHS created at 356 Done with advance_dycore at level 1 [Level 1 step 178] Advanced 3072 cells Coarse STEP 178 ends. TIME = 356 DT = 2 Timestep time = 0.016526824 seconds. Coarse STEP 179 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364627758 (terrain aware) 1.364627758 (terrain unaware) Anelastic dt at level 0 would be: 6.136017946 (terrain aware) 6.136017946 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2677488846 (terrain aware) 0.2677488846 (terrain unaware) Anelastic dt at level 1 would be: 3.131923033 (terrain aware) 3.131923033 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 179] ADVANCE from elapsed time = 356 to 358 with dt = 2 Making slow rhs at time 356 for fast variables advancing from 356 to 356.6666666667 Fast time integration at level 0 from 356 to 356.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 356 to 356.6666666667 with dt = 0.6666666666667 using RHS created at 356 Making slow rhs at time 356.6666666667 for fast variables advancing from 356 to 357 Fast time integration at level 0 from 356 to 356.5 with dt = 0.5 Fast time integration at level 0 from 356.5 to 357 with dt = 0.5 Time integration of scalars at level 0 from 356 to 357 with dt = 1 using RHS created at 356.6666666667 Making slow rhs at time 357 for fast variables advancing from 356 to 358 Fast time integration at level 0 from 356 to 356.5 with dt = 0.5 Fast time integration at level 0 from 356.5 to 357 with dt = 0.5 Fast time integration at level 0 from 357 to 357.5 with dt = 0.5 Fast time integration at level 0 from 357.5 to 358 with dt = 0.5 Time integration of scalars at level 0 from 356 to 358 with dt = 2 using RHS created at 357 Done with advance_dycore at level 0 [Level 0 step 179] Advanced 4096 cells [Level 1 step 179] ADVANCE from elapsed time = 356 to 358 with dt = 2 Making slow rhs at time 356 for fast variables advancing from 356 to 358 No-substepping time integration at level 1 to 358 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007729716599 0.004391035531 and volume-weighted sum -76034.72656 Subtracting -2.475088695e-05 from rhs in subdomain 0 Sum after subtraction -0.08451752365 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007977225468 MLMG: Initial residual (resid0) = 0.0007977225468 MLMG: Final Iter. 2 resid, resid/bnorm = 8.296992746e-07, 0.001040084986 MLMG: Timers: Solve = 0.00063254 Iter = 0.000505119 Bottom = 5.4066e-05 Time in solve 0.001046678 Max/L2 norm of divergence after solve at level 1 : 2.559367567e-05 0.0013718392 and volume-weighted sum -76034.74219 Time integration of scalars at level 1 from 356 to 358 with dt = 2 using RHS created at 356 Making slow rhs at time 358 for fast variables advancing from 356 to 358 No-substepping time integration at level 1 to 358 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008019153029 0.004218901973 and volume-weighted sum -76034.77344 Subtracting -2.475090332e-05 from rhs in subdomain 0 Sum after subtraction -0.001629814506 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008266661898 MLMG: Initial residual (resid0) = 0.0008266661898 MLMG: Final Iter. 2 resid, resid/bnorm = 1.035688911e-06, 0.001252850168 MLMG: Timers: Solve = 0.000644396 Iter = 0.00051669 Bottom = 5.5689e-05 Time in solve 0.001047707 Max/L2 norm of divergence after solve at level 1 : 2.559274435e-05 0.00137183792 and volume-weighted sum -76034.77344 Time integration of scalars at level 1 from 356 to 358 with dt = 2 using RHS created at 358 Done with advance_dycore at level 1 [Level 1 step 179] Advanced 3072 cells Coarse STEP 179 ends. TIME = 358 DT = 2 Timestep time = 0.016400002 seconds. Coarse STEP 180 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364745775 (terrain aware) 1.364745775 (terrain unaware) Anelastic dt at level 0 would be: 6.137466339 (terrain aware) 6.137466339 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2680158389 (terrain aware) 0.2680158389 (terrain unaware) Anelastic dt at level 1 would be: 3.148893965 (terrain aware) 3.148893965 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 180] ADVANCE from elapsed time = 358 to 360 with dt = 2 Making slow rhs at time 358 for fast variables advancing from 358 to 358.6666666667 Fast time integration at level 0 from 358 to 358.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 358 to 358.6666666667 with dt = 0.6666666666667 using RHS created at 358 Making slow rhs at time 358.6666666667 for fast variables advancing from 358 to 359 Fast time integration at level 0 from 358 to 358.5 with dt = 0.5 Fast time integration at level 0 from 358.5 to 359 with dt = 0.5 Time integration of scalars at level 0 from 358 to 359 with dt = 1 using RHS created at 358.6666666667 Making slow rhs at time 359 for fast variables advancing from 358 to 360 Fast time integration at level 0 from 358 to 358.5 with dt = 0.5 Fast time integration at level 0 from 358.5 to 359 with dt = 0.5 Fast time integration at level 0 from 359 to 359.5 with dt = 0.5 Fast time integration at level 0 from 359.5 to 360 with dt = 0.5 Time integration of scalars at level 0 from 358 to 360 with dt = 2 using RHS created at 359 Done with advance_dycore at level 0 [Level 0 step 180] Advanced 4096 cells [Level 1 step 180] ADVANCE from elapsed time = 358 to 360 with dt = 2 Making slow rhs at time 358 for fast variables advancing from 358 to 360 No-substepping time integration at level 1 to 360 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007456671447 0.00429499615 and volume-weighted sum -63527.07812 Subtracting -2.067938658e-05 from rhs in subdomain 0 Sum after subtraction -0.03806781024 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007663465221 MLMG: Initial residual (resid0) = 0.0007663465221 MLMG: Final Iter. 2 resid, resid/bnorm = 8.963291975e-07, 0.001169613446 MLMG: Timers: Solve = 0.000653207 Iter = 0.000526386 Bottom = 5.9083e-05 Time in solve 0.001067051 Max/L2 norm of divergence after solve at level 1 : 2.15745531e-05 0.00114617683 and volume-weighted sum -63527.09375 Time integration of scalars at level 1 from 358 to 360 with dt = 2 using RHS created at 358 Making slow rhs at time 360 for fast variables advancing from 358 to 360 No-substepping time integration at level 1 to 360 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007418263704 0.004124451894 and volume-weighted sum -63527.10156 Subtracting -2.067939567e-05 from rhs in subdomain 0 Sum after subtraction 0.009895302355 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007625057478 MLMG: Initial residual (resid0) = 0.0007625057478 MLMG: Final Iter. 2 resid, resid/bnorm = 1.098756911e-06, 0.001440981752 MLMG: Timers: Solve = 0.000639321 Iter = 0.000504948 Bottom = 5.5118e-05 Time in solve 0.001051675 Max/L2 norm of divergence after solve at level 1 : 2.155825496e-05 0.001146174851 and volume-weighted sum -63527.08594 Time integration of scalars at level 1 from 358 to 360 with dt = 2 using RHS created at 360 Done with advance_dycore at level 1 [Level 1 step 180] Advanced 3072 cells Coarse STEP 180 ends. TIME = 360 DT = 2 Timestep time = 0.016519055 seconds. Coarse STEP 181 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366518567 (terrain aware) 1.366518567 (terrain unaware) Anelastic dt at level 0 would be: 6.153381375 (terrain aware) 6.153381375 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.268171854 (terrain aware) 0.268171854 (terrain unaware) Anelastic dt at level 1 would be: 3.17403133 (terrain aware) 3.17403133 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ((64,0,0) (79,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (79,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007170354947 0.004017880186 and volume-weighted sum -72898.50781 Subtracting -1.898398659e-05 from rhs in subdomain 0 Sum after subtraction -0.05727633834 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006980515318 MLMG: Initial residual (resid0) = 0.0006980515318 MLMG: Final Iter. 2 resid, resid/bnorm = 3.902569006e-06, 0.005590660498 MLMG: Timers: Solve = 0.00075106 Iter = 0.000598904 Bottom = 6.1615e-05 Time in solve 0.001194145 Max/L2 norm of divergence after solve at level 1 : 1.972794416e-05 0.001176558784 and volume-weighted sum -72898.55469 [Level 0 step 181] ADVANCE from elapsed time = 360 to 362 with dt = 2 Making slow rhs at time 360 for fast variables advancing from 360 to 360.6666666667 Fast time integration at level 0 from 360 to 360.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 360 to 360.6666666667 with dt = 0.6666666666667 using RHS created at 360 Making slow rhs at time 360.6666666667 for fast variables advancing from 360 to 361 Fast time integration at level 0 from 360 to 360.5 with dt = 0.5 Fast time integration at level 0 from 360.5 to 361 with dt = 0.5 Time integration of scalars at level 0 from 360 to 361 with dt = 1 using RHS created at 360.6666666667 Making slow rhs at time 361 for fast variables advancing from 360 to 362 Fast time integration at level 0 from 360 to 360.5 with dt = 0.5 Fast time integration at level 0 from 360.5 to 361 with dt = 0.5 Fast time integration at level 0 from 361 to 361.5 with dt = 0.5 Fast time integration at level 0 from 361.5 to 362 with dt = 0.5 Time integration of scalars at level 0 from 360 to 362 with dt = 2 using RHS created at 361 Done with advance_dycore at level 0 [Level 0 step 181] Advanced 4096 cells [Level 1 step 181] ADVANCE from elapsed time = 360 to 362 with dt = 2 Making slow rhs at time 360 for fast variables advancing from 360 to 362 No-substepping time integration at level 1 to 362 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.007721300237 0.08000303805 and volume-weighted sum -52981.44922 Subtracting -1.3797252e-05 from rhs in subdomain 0 Sum after subtraction -0.2235174179 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.007707503159 MLMG: Initial residual (resid0) = 0.007707503159 MLMG: Final Iter. 3 resid, resid/bnorm = 1.745356712e-06, 0.0002264490467 MLMG: Timers: Solve = 0.000986599 Iter = 0.000835869 Bottom = 8.2022e-05 Time in solve 0.001423961 Max/L2 norm of divergence after solve at level 1 : 1.554260962e-05 0.0008550687344 and volume-weighted sum -52981.51172 Time integration of scalars at level 1 from 360 to 362 with dt = 2 using RHS created at 360 Making slow rhs at time 362 for fast variables advancing from 360 to 362 No-substepping time integration at level 1 to 362 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008006002754 0.004014158156 and volume-weighted sum -52981.50391 Subtracting -1.379726655e-05 from rhs in subdomain 0 Sum after subtraction 0.02689193934 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0008143975283 MLMG: Initial residual (resid0) = 0.0008143975283 MLMG: Final Iter. 2 resid, resid/bnorm = 7.910275599e-07, 0.0009713039617 MLMG: Timers: Solve = 0.000756019 Iter = 0.000600773 Bottom = 5.9025e-05 Time in solve 0.001187489 Max/L2 norm of divergence after solve at level 1 : 1.426227391e-05 0.0008549907943 and volume-weighted sum -52981.50781 Time integration of scalars at level 1 from 360 to 362 with dt = 2 using RHS created at 362 Done with advance_dycore at level 1 [Level 1 step 181] Advanced 3840 cells Coarse STEP 181 ends. TIME = 362 DT = 2 Timestep time = 0.027144997 seconds. Coarse STEP 182 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36983333 (terrain aware) 1.36983333 (terrain unaware) Anelastic dt at level 0 would be: 6.205212977 (terrain aware) 6.205212977 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2684337606 (terrain aware) 0.2684337606 (terrain unaware) Anelastic dt at level 1 would be: 3.19007541 (terrain aware) 3.19007541 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 182] ADVANCE from elapsed time = 362 to 364 with dt = 2 Making slow rhs at time 362 for fast variables advancing from 362 to 362.6666666667 Fast time integration at level 0 from 362 to 362.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 362 to 362.6666666667 with dt = 0.6666666666667 using RHS created at 362 Making slow rhs at time 362.6666666667 for fast variables advancing from 362 to 363 Fast time integration at level 0 from 362 to 362.5 with dt = 0.5 Fast time integration at level 0 from 362.5 to 363 with dt = 0.5 Time integration of scalars at level 0 from 362 to 363 with dt = 1 using RHS created at 362.6666666667 Making slow rhs at time 363 for fast variables advancing from 362 to 364 Fast time integration at level 0 from 362 to 362.5 with dt = 0.5 Fast time integration at level 0 from 362.5 to 363 with dt = 0.5 Fast time integration at level 0 from 363 to 363.5 with dt = 0.5 Fast time integration at level 0 from 363.5 to 364 with dt = 0.5 Time integration of scalars at level 0 from 362 to 364 with dt = 2 using RHS created at 363 Done with advance_dycore at level 0 [Level 0 step 182] Advanced 4096 cells [Level 1 step 182] ADVANCE from elapsed time = 362 to 364 with dt = 2 Making slow rhs at time 362 for fast variables advancing from 362 to 364 No-substepping time integration at level 1 to 364 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007548704743 0.004185067955 and volume-weighted sum -23370.74219 Subtracting -6.086130725e-06 from rhs in subdomain 0 Sum after subtraction -0.02040178515 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007609566092 MLMG: Initial residual (resid0) = 0.0007609566092 MLMG: Final Iter. 2 resid, resid/bnorm = 1.571923008e-06, 0.002065719571 MLMG: Timers: Solve = 0.000796888 Iter = 0.000596231 Bottom = 6.1219e-05 Time in solve 0.001231402 Max/L2 norm of divergence after solve at level 1 : 7.661990821e-06 0.0003772015916 and volume-weighted sum -23370.69141 Time integration of scalars at level 1 from 362 to 364 with dt = 2 using RHS created at 362 Making slow rhs at time 364 for fast variables advancing from 362 to 364 No-substepping time integration at level 1 to 364 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007576178759 0.003909392748 and volume-weighted sum -23370.73828 Subtracting -6.086129815e-06 from rhs in subdomain 0 Sum after subtraction 0.01897569746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007637040108 MLMG: Initial residual (resid0) = 0.0007637040108 MLMG: Final Iter. 2 resid, resid/bnorm = 7.797971193e-07, 0.001021072385 MLMG: Timers: Solve = 0.000755322 Iter = 0.000598295 Bottom = 6.1265e-05 Time in solve 0.001190205 Max/L2 norm of divergence after solve at level 1 : 6.483867764e-06 0.0003771518823 and volume-weighted sum -23370.71289 Time integration of scalars at level 1 from 362 to 364 with dt = 2 using RHS created at 364 Done with advance_dycore at level 1 [Level 1 step 182] Advanced 3840 cells Coarse STEP 182 ends. TIME = 364 DT = 2 Timestep time = 0.018612682 seconds. Coarse STEP 183 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372495422 (terrain aware) 1.372495422 (terrain unaware) Anelastic dt at level 0 would be: 6.290226485 (terrain aware) 6.290226485 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2685926628 (terrain aware) 0.2685926628 (terrain unaware) Anelastic dt at level 1 would be: 3.216398906 (terrain aware) 3.216398906 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 183] ADVANCE from elapsed time = 364 to 366 with dt = 2 Making slow rhs at time 364 for fast variables advancing from 364 to 364.6666666667 Fast time integration at level 0 from 364 to 364.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 364 to 364.6666666667 with dt = 0.6666666666667 using RHS created at 364 Making slow rhs at time 364.6666666667 for fast variables advancing from 364 to 365 Fast time integration at level 0 from 364 to 364.5 with dt = 0.5 Fast time integration at level 0 from 364.5 to 365 with dt = 0.5 Time integration of scalars at level 0 from 364 to 365 with dt = 1 using RHS created at 364.6666666667 Making slow rhs at time 365 for fast variables advancing from 364 to 366 Fast time integration at level 0 from 364 to 364.5 with dt = 0.5 Fast time integration at level 0 from 364.5 to 365 with dt = 0.5 Fast time integration at level 0 from 365 to 365.5 with dt = 0.5 Fast time integration at level 0 from 365.5 to 366 with dt = 0.5 Time integration of scalars at level 0 from 364 to 366 with dt = 2 using RHS created at 365 Done with advance_dycore at level 0 [Level 0 step 183] Advanced 4096 cells [Level 1 step 183] ADVANCE from elapsed time = 364 to 366 with dt = 2 Making slow rhs at time 364 for fast variables advancing from 364 to 366 No-substepping time integration at level 1 to 366 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007660482079 0.004125909414 and volume-weighted sum 15105.88965 Subtracting 3.93382561e-06 from rhs in subdomain 0 Sum after subtraction -0.01874286681 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007621143595 MLMG: Initial residual (resid0) = 0.0007621143595 MLMG: Final Iter. 2 resid, resid/bnorm = 1.27919543e-06, 0.00167848228 MLMG: Timers: Solve = 0.000755067 Iter = 0.000601965 Bottom = 6.2539e-05 Time in solve 0.001187992 Max/L2 norm of divergence after solve at level 1 : 4.893168807e-06 0.000243851202 and volume-weighted sum 15105.89062 Time integration of scalars at level 1 from 364 to 366 with dt = 2 using RHS created at 364 Making slow rhs at time 366 for fast variables advancing from 364 to 366 No-substepping time integration at level 1 to 366 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008039288223 0.003867938882 and volume-weighted sum 15105.86914 Subtracting 3.933820153e-06 from rhs in subdomain 0 Sum after subtraction -0.06495974958 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007999949739 MLMG: Initial residual (resid0) = 0.0007999949739 MLMG: Final Iter. 2 resid, resid/bnorm = 7.249327609e-07, 0.0009061716264 MLMG: Timers: Solve = 0.000768018 Iter = 0.000603363 Bottom = 6.4056e-05 Time in solve 0.001199201 Max/L2 norm of divergence after solve at level 1 : 4.660338163e-06 0.00024378339 and volume-weighted sum 15105.86914 Time integration of scalars at level 1 from 364 to 366 with dt = 2 using RHS created at 366 Done with advance_dycore at level 1 [Level 1 step 183] Advanced 3840 cells Coarse STEP 183 ends. TIME = 366 DT = 2 Timestep time = 0.018431074 seconds. Coarse STEP 184 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372644881 (terrain aware) 1.372644881 (terrain unaware) Anelastic dt at level 0 would be: 6.284041907 (terrain aware) 6.284041907 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2688485903 (terrain aware) 0.2688485903 (terrain unaware) Anelastic dt at level 1 would be: 3.231109631 (terrain aware) 3.231109631 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 184] ADVANCE from elapsed time = 366 to 368 with dt = 2 Making slow rhs at time 366 for fast variables advancing from 366 to 366.6666666667 Fast time integration at level 0 from 366 to 366.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 366 to 366.6666666667 with dt = 0.6666666666667 using RHS created at 366 Making slow rhs at time 366.6666666667 for fast variables advancing from 366 to 367 Fast time integration at level 0 from 366 to 366.5 with dt = 0.5 Fast time integration at level 0 from 366.5 to 367 with dt = 0.5 Time integration of scalars at level 0 from 366 to 367 with dt = 1 using RHS created at 366.6666666667 Making slow rhs at time 367 for fast variables advancing from 366 to 368 Fast time integration at level 0 from 366 to 366.5 with dt = 0.5 Fast time integration at level 0 from 366.5 to 367 with dt = 0.5 Fast time integration at level 0 from 367 to 367.5 with dt = 0.5 Fast time integration at level 0 from 367.5 to 368 with dt = 0.5 Time integration of scalars at level 0 from 366 to 368 with dt = 2 using RHS created at 367 Done with advance_dycore at level 0 [Level 0 step 184] Advanced 4096 cells [Level 1 step 184] ADVANCE from elapsed time = 366 to 368 with dt = 2 Making slow rhs at time 366 for fast variables advancing from 366 to 368 No-substepping time integration at level 1 to 368 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007672216743 0.004102635663 and volume-weighted sum 56999.36328 Subtracting 1.484358381e-05 from rhs in subdomain 0 Sum after subtraction 0.002328306437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007523780805 MLMG: Initial residual (resid0) = 0.0007523780805 MLMG: Final Iter. 2 resid, resid/bnorm = 9.3554263e-07, 0.001243447536 MLMG: Timers: Solve = 0.000757593 Iter = 0.000602052 Bottom = 6.264e-05 Time in solve 0.001184545 Max/L2 norm of divergence after solve at level 1 : 1.578778028e-05 0.0009198351763 and volume-weighted sum 56999.36328 Time integration of scalars at level 1 from 366 to 368 with dt = 2 using RHS created at 366 Making slow rhs at time 368 for fast variables advancing from 366 to 368 No-substepping time integration at level 1 to 368 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007749460638 0.003938932437 and volume-weighted sum 56999.33984 Subtracting 1.484357836e-05 from rhs in subdomain 0 Sum after subtraction -0.0008149072528 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007601024699 MLMG: Initial residual (resid0) = 0.0007601024699 MLMG: Final Iter. 2 resid, resid/bnorm = 7.646449376e-07, 0.001005976112 MLMG: Timers: Solve = 0.00077502 Iter = 0.000616724 Bottom = 6.1198e-05 Time in solve 0.0011988 Max/L2 norm of divergence after solve at level 1 : 1.561269164e-05 0.0009198267944 and volume-weighted sum 56999.375 Time integration of scalars at level 1 from 366 to 368 with dt = 2 using RHS created at 368 Done with advance_dycore at level 1 [Level 1 step 184] Advanced 3840 cells Coarse STEP 184 ends. TIME = 368 DT = 2 Timestep time = 0.018783959 seconds. Coarse STEP 185 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374486813 (terrain aware) 1.374486813 (terrain unaware) Anelastic dt at level 0 would be: 6.302383448 (terrain aware) 6.302383448 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2690102865 (terrain aware) 0.2690102865 (terrain unaware) Anelastic dt at level 1 would be: 3.258214544 (terrain aware) 3.258214544 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 185] ADVANCE from elapsed time = 368 to 370 with dt = 2 Making slow rhs at time 368 for fast variables advancing from 368 to 368.6666666667 Fast time integration at level 0 from 368 to 368.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 368 to 368.6666666667 with dt = 0.6666666666667 using RHS created at 368 Making slow rhs at time 368.6666666667 for fast variables advancing from 368 to 369 Fast time integration at level 0 from 368 to 368.5 with dt = 0.5 Fast time integration at level 0 from 368.5 to 369 with dt = 0.5 Time integration of scalars at level 0 from 368 to 369 with dt = 1 using RHS created at 368.6666666667 Making slow rhs at time 369 for fast variables advancing from 368 to 370 Fast time integration at level 0 from 368 to 368.5 with dt = 0.5 Fast time integration at level 0 from 368.5 to 369 with dt = 0.5 Fast time integration at level 0 from 369 to 369.5 with dt = 0.5 Fast time integration at level 0 from 369.5 to 370 with dt = 0.5 Time integration of scalars at level 0 from 368 to 370 with dt = 2 using RHS created at 369 Done with advance_dycore at level 0 [Level 0 step 185] Advanced 4096 cells [Level 1 step 185] ADVANCE from elapsed time = 368 to 370 with dt = 2 Making slow rhs at time 368 for fast variables advancing from 368 to 370 No-substepping time integration at level 1 to 370 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007673464715 0.004258903209 and volume-weighted sum 94130.875 Subtracting 2.451324872e-05 from rhs in subdomain 0 Sum after subtraction -0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007428332465 MLMG: Initial residual (resid0) = 0.0007428332465 MLMG: Final Iter. 2 resid, resid/bnorm = 8.640636224e-07, 0.00116320001 MLMG: Timers: Solve = 0.000749143 Iter = 0.000590495 Bottom = 5.8587e-05 Time in solve 0.001214369 Max/L2 norm of divergence after solve at level 1 : 2.53804028e-05 0.001519039623 and volume-weighted sum 94130.94531 Time integration of scalars at level 1 from 368 to 370 with dt = 2 using RHS created at 368 Making slow rhs at time 370 for fast variables advancing from 368 to 370 No-substepping time integration at level 1 to 370 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0008061602712 0.004090944305 and volume-weighted sum 94130.89844 Subtracting 2.451325417e-05 from rhs in subdomain 0 Sum after subtraction -0.04156026989 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007816470461 MLMG: Initial residual (resid0) = 0.0007816470461 MLMG: Final Iter. 2 resid, resid/bnorm = 7.836497389e-07, 0.001002562116 MLMG: Timers: Solve = 0.001083583 Iter = 0.000602177 Bottom = 5.8929e-05 Time in solve 0.001584409 Max/L2 norm of divergence after solve at level 1 : 2.529844642e-05 0.001519033802 and volume-weighted sum 94130.92188 Time integration of scalars at level 1 from 368 to 370 with dt = 2 using RHS created at 370 Done with advance_dycore at level 1 [Level 1 step 185] Advanced 3840 cells Coarse STEP 185 ends. TIME = 370 DT = 2 Timestep time = 0.018543026 seconds. Coarse STEP 186 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.377894113 (terrain aware) 1.377894113 (terrain unaware) Anelastic dt at level 0 would be: 6.358528639 (terrain aware) 6.358528639 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2692677041 (terrain aware) 0.2692677041 (terrain unaware) Anelastic dt at level 1 would be: 3.272259485 (terrain aware) 3.272259485 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 186] ADVANCE from elapsed time = 370 to 372 with dt = 2 Making slow rhs at time 370 for fast variables advancing from 370 to 370.6666666667 Fast time integration at level 0 from 370 to 370.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 370 to 370.6666666667 with dt = 0.6666666666667 using RHS created at 370 Making slow rhs at time 370.6666666667 for fast variables advancing from 370 to 371 Fast time integration at level 0 from 370 to 370.5 with dt = 0.5 Fast time integration at level 0 from 370.5 to 371 with dt = 0.5 Time integration of scalars at level 0 from 370 to 371 with dt = 1 using RHS created at 370.6666666667 Making slow rhs at time 371 for fast variables advancing from 370 to 372 Fast time integration at level 0 from 370 to 370.5 with dt = 0.5 Fast time integration at level 0 from 370.5 to 371 with dt = 0.5 Fast time integration at level 0 from 371 to 371.5 with dt = 0.5 Fast time integration at level 0 from 371.5 to 372 with dt = 0.5 Time integration of scalars at level 0 from 370 to 372 with dt = 2 using RHS created at 371 Done with advance_dycore at level 0 [Level 0 step 186] Advanced 4096 cells [Level 1 step 186] ADVANCE from elapsed time = 370 to 372 with dt = 2 Making slow rhs at time 370 for fast variables advancing from 370 to 372 No-substepping time integration at level 1 to 372 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000773601234 0.004529485945 and volume-weighted sum 119414.8828 Subtracting 3.109762474e-05 from rhs in subdomain 0 Sum after subtraction 0.02840533853 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007425036165 MLMG: Initial residual (resid0) = 0.0007425036165 MLMG: Final Iter. 2 resid, resid/bnorm = 1.84321766e-06, 0.002482435899 MLMG: Timers: Solve = 0.000747401 Iter = 0.000589509 Bottom = 6.1247e-05 Time in solve 0.001181044 Max/L2 norm of divergence after solve at level 1 : 3.293901682e-05 0.001927062869 and volume-weighted sum 119414.8672 Time integration of scalars at level 1 from 370 to 372 with dt = 2 using RHS created at 370 Making slow rhs at time 372 for fast variables advancing from 370 to 372 No-substepping time integration at level 1 to 372 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007838252932 0.004231643397 and volume-weighted sum 119414.8984 Subtracting 3.109762838e-05 from rhs in subdomain 0 Sum after subtraction 0.05040783435 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007527276757 MLMG: Initial residual (resid0) = 0.0007527276757 MLMG: Final Iter. 2 resid, resid/bnorm = 7.686066965e-07, 0.001021095319 MLMG: Timers: Solve = 0.000930972 Iter = 0.000607707 Bottom = 6.5867e-05 Time in solve 0.001368115 Max/L2 norm of divergence after solve at level 1 : 3.185868263e-05 0.001927051344 and volume-weighted sum 119414.8672 Time integration of scalars at level 1 from 370 to 372 with dt = 2 using RHS created at 372 Done with advance_dycore at level 1 [Level 1 step 186] Advanced 3840 cells Coarse STEP 186 ends. TIME = 372 DT = 2 Timestep time = 0.018553062 seconds. Coarse STEP 187 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.380710581 (terrain aware) 1.380710581 (terrain unaware) Anelastic dt at level 0 would be: 6.449389362 (terrain aware) 6.449389362 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2694298101 (terrain aware) 0.2694298101 (terrain unaware) Anelastic dt at level 1 would be: 3.299697886 (terrain aware) 3.299697886 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 187] ADVANCE from elapsed time = 372 to 374 with dt = 2 Making slow rhs at time 372 for fast variables advancing from 372 to 372.6666666667 Fast time integration at level 0 from 372 to 372.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 372 to 372.6666666667 with dt = 0.6666666666667 using RHS created at 372 Making slow rhs at time 372.6666666667 for fast variables advancing from 372 to 373 Fast time integration at level 0 from 372 to 372.5 with dt = 0.5 Fast time integration at level 0 from 372.5 to 373 with dt = 0.5 Time integration of scalars at level 0 from 372 to 373 with dt = 1 using RHS created at 372.6666666667 Making slow rhs at time 373 for fast variables advancing from 372 to 374 Fast time integration at level 0 from 372 to 372.5 with dt = 0.5 Fast time integration at level 0 from 372.5 to 373 with dt = 0.5 Fast time integration at level 0 from 373 to 373.5 with dt = 0.5 Fast time integration at level 0 from 373.5 to 374 with dt = 0.5 Time integration of scalars at level 0 from 372 to 374 with dt = 2 using RHS created at 373 Done with advance_dycore at level 0 [Level 0 step 187] Advanced 4096 cells [Level 1 step 187] ADVANCE from elapsed time = 372 to 374 with dt = 2 Making slow rhs at time 372 for fast variables advancing from 372 to 374 No-substepping time integration at level 1 to 374 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007538236678 0.004670591559 and volume-weighted sum 129351.7969 Subtracting 3.368536272e-05 from rhs in subdomain 0 Sum after subtraction -0.06565824151 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007201383123 MLMG: Initial residual (resid0) = 0.0007201383123 MLMG: Final Iter. 2 resid, resid/bnorm = 2.251705155e-06, 0.003126767697 MLMG: Timers: Solve = 0.000777688 Iter = 0.000623756 Bottom = 6.105e-05 Time in solve 0.001328966 Max/L2 norm of divergence after solve at level 1 : 3.593717702e-05 0.002087423112 and volume-weighted sum 129351.7969 Time integration of scalars at level 1 from 372 to 374 with dt = 2 using RHS created at 372 Making slow rhs at time 374 for fast variables advancing from 372 to 374 No-substepping time integration at level 1 to 374 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007943902165 0.004279344808 and volume-weighted sum 129351.8672 Subtracting 3.368538091e-05 from rhs in subdomain 0 Sum after subtraction -0.04738103598 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000760704861 MLMG: Initial residual (resid0) = 0.000760704861 MLMG: Final Iter. 2 resid, resid/bnorm = 7.153576007e-07, 0.0009403878357 MLMG: Timers: Solve = 0.000760231 Iter = 0.000603292 Bottom = 6.6444e-05 Time in solve 0.001196464 Max/L2 norm of divergence after solve at level 1 : 3.441795707e-05 0.002087407047 and volume-weighted sum 129351.75 Time integration of scalars at level 1 from 372 to 374 with dt = 2 using RHS created at 374 Done with advance_dycore at level 1 [Level 1 step 187] Advanced 3840 cells Coarse STEP 187 ends. TIME = 374 DT = 2 Timestep time = 0.018443861 seconds. Coarse STEP 188 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.380930522 (terrain aware) 1.380930522 (terrain unaware) Anelastic dt at level 0 would be: 6.443943881 (terrain aware) 6.443943881 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2696867247 (terrain aware) 0.2696867247 (terrain unaware) Anelastic dt at level 1 would be: 3.313429902 (terrain aware) 3.313429902 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 188] ADVANCE from elapsed time = 374 to 376 with dt = 2 Making slow rhs at time 374 for fast variables advancing from 374 to 374.6666666667 Fast time integration at level 0 from 374 to 374.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 374 to 374.6666666667 with dt = 0.6666666666667 using RHS created at 374 Making slow rhs at time 374.6666666667 for fast variables advancing from 374 to 375 Fast time integration at level 0 from 374 to 374.5 with dt = 0.5 Fast time integration at level 0 from 374.5 to 375 with dt = 0.5 Time integration of scalars at level 0 from 374 to 375 with dt = 1 using RHS created at 374.6666666667 Making slow rhs at time 375 for fast variables advancing from 374 to 376 Fast time integration at level 0 from 374 to 374.5 with dt = 0.5 Fast time integration at level 0 from 374.5 to 375 with dt = 0.5 Fast time integration at level 0 from 375 to 375.5 with dt = 0.5 Fast time integration at level 0 from 375.5 to 376 with dt = 0.5 Time integration of scalars at level 0 from 374 to 376 with dt = 2 using RHS created at 375 Done with advance_dycore at level 0 [Level 0 step 188] Advanced 4096 cells [Level 1 step 188] ADVANCE from elapsed time = 374 to 376 with dt = 2 Making slow rhs at time 374 for fast variables advancing from 374 to 376 No-substepping time integration at level 1 to 376 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007687285542 0.004586085677 and volume-weighted sum 124134.2891 Subtracting 3.232663948e-05 from rhs in subdomain 0 Sum after subtraction -0.04726462066 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007364019402 MLMG: Initial residual (resid0) = 0.0007364019402 MLMG: Final Iter. 2 resid, resid/bnorm = 2.128471351e-06, 0.002890366362 MLMG: Timers: Solve = 0.000764616 Iter = 0.000603395 Bottom = 6.1083e-05 Time in solve 0.001190201 Max/L2 norm of divergence after solve at level 1 : 3.445823677e-05 0.002003225265 and volume-weighted sum 124134.2891 Time integration of scalars at level 1 from 374 to 376 with dt = 2 using RHS created at 374 Making slow rhs at time 376 for fast variables advancing from 374 to 376 No-substepping time integration at level 1 to 376 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007719416171 0.004210389685 and volume-weighted sum 124134.2734 Subtracting 3.232663221e-05 from rhs in subdomain 0 Sum after subtraction -0.03085006028 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007396150031 MLMG: Initial residual (resid0) = 0.0007396150031 MLMG: Final Iter. 2 resid, resid/bnorm = 7.345806807e-07, 0.00099319336 MLMG: Timers: Solve = 0.000756794 Iter = 0.000601666 Bottom = 6.46e-05 Time in solve 0.001180708 Max/L2 norm of divergence after solve at level 1 : 3.305077553e-05 0.002003210131 and volume-weighted sum 124134.2422 Time integration of scalars at level 1 from 374 to 376 with dt = 2 using RHS created at 376 Done with advance_dycore at level 1 [Level 1 step 188] Advanced 3840 cells Coarse STEP 188 ends. TIME = 376 DT = 2 Timestep time = 0.018449662 seconds. Coarse STEP 189 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.382767239 (terrain aware) 1.382767239 (terrain unaware) Anelastic dt at level 0 would be: 6.463577055 (terrain aware) 6.463577055 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2698438016 (terrain aware) 0.2698438016 (terrain unaware) Anelastic dt at level 1 would be: 3.340788732 (terrain aware) 3.340788732 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 189] ADVANCE from elapsed time = 376 to 378 with dt = 2 Making slow rhs at time 376 for fast variables advancing from 376 to 376.6666666667 Fast time integration at level 0 from 376 to 376.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 376 to 376.6666666667 with dt = 0.6666666666667 using RHS created at 376 Making slow rhs at time 376.6666666667 for fast variables advancing from 376 to 377 Fast time integration at level 0 from 376 to 376.5 with dt = 0.5 Fast time integration at level 0 from 376.5 to 377 with dt = 0.5 Time integration of scalars at level 0 from 376 to 377 with dt = 1 using RHS created at 376.6666666667 Making slow rhs at time 377 for fast variables advancing from 376 to 378 Fast time integration at level 0 from 376 to 376.5 with dt = 0.5 Fast time integration at level 0 from 376.5 to 377 with dt = 0.5 Fast time integration at level 0 from 377 to 377.5 with dt = 0.5 Fast time integration at level 0 from 377.5 to 378 with dt = 0.5 Time integration of scalars at level 0 from 376 to 378 with dt = 2 using RHS created at 377 Done with advance_dycore at level 0 [Level 0 step 189] Advanced 4096 cells [Level 1 step 189] ADVANCE from elapsed time = 376 to 378 with dt = 2 Making slow rhs at time 376 for fast variables advancing from 376 to 378 No-substepping time integration at level 1 to 378 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007206257433 0.004361418076 and volume-weighted sum 105613.5781 Subtracting 2.750353633e-05 from rhs in subdomain 0 Sum after subtraction -0.05215406418 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000693122216 MLMG: Initial residual (resid0) = 0.000693122216 MLMG: Final Iter. 2 resid, resid/bnorm = 1.713788151e-06, 0.002472562715 MLMG: Timers: Solve = 0.000758798 Iter = 0.000599055 Bottom = 6.105e-05 Time in solve 0.001191507 Max/L2 norm of divergence after solve at level 1 : 2.921884879e-05 0.001704348135 and volume-weighted sum 105613.5469 Time integration of scalars at level 1 from 376 to 378 with dt = 2 using RHS created at 376 Making slow rhs at time 378 for fast variables advancing from 376 to 378 No-substepping time integration at level 1 to 378 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007631871849 0.004046843853 and volume-weighted sum 105613.5703 Subtracting 2.750353451e-05 from rhs in subdomain 0 Sum after subtraction -0.0698491931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007356836577 MLMG: Initial residual (resid0) = 0.0007356836577 MLMG: Final Iter. 2 resid, resid/bnorm = 7.615599316e-07, 0.001035173074 MLMG: Timers: Solve = 0.000762192 Iter = 0.000606494 Bottom = 6.4937e-05 Time in solve 0.00119557 Max/L2 norm of divergence after solve at level 1 : 2.826750278e-05 0.001704335911 and volume-weighted sum 105613.5391 Time integration of scalars at level 1 from 376 to 378 with dt = 2 using RHS created at 378 Done with advance_dycore at level 1 [Level 1 step 189] Advanced 3840 cells Coarse STEP 189 ends. TIME = 378 DT = 2 Timestep time = 0.018469445 seconds. Coarse STEP 190 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.386095414 (terrain aware) 1.386095414 (terrain unaware) Anelastic dt at level 0 would be: 6.521423958 (terrain aware) 6.521423958 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2700963576 (terrain aware) 0.2700963576 (terrain unaware) Anelastic dt at level 1 would be: 3.354671846 (terrain aware) 3.354671846 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 190] ADVANCE from elapsed time = 378 to 380 with dt = 2 Making slow rhs at time 378 for fast variables advancing from 378 to 378.6666666667 Fast time integration at level 0 from 378 to 378.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 378 to 378.6666666667 with dt = 0.6666666666667 using RHS created at 378 Making slow rhs at time 378.6666666667 for fast variables advancing from 378 to 379 Fast time integration at level 0 from 378 to 378.5 with dt = 0.5 Fast time integration at level 0 from 378.5 to 379 with dt = 0.5 Time integration of scalars at level 0 from 378 to 379 with dt = 1 using RHS created at 378.6666666667 Making slow rhs at time 379 for fast variables advancing from 378 to 380 Fast time integration at level 0 from 378 to 378.5 with dt = 0.5 Fast time integration at level 0 from 378.5 to 379 with dt = 0.5 Fast time integration at level 0 from 379 to 379.5 with dt = 0.5 Fast time integration at level 0 from 379.5 to 380 with dt = 0.5 Time integration of scalars at level 0 from 378 to 380 with dt = 2 using RHS created at 379 Done with advance_dycore at level 0 [Level 0 step 190] Advanced 4096 cells [Level 1 step 190] ADVANCE from elapsed time = 378 to 380 with dt = 2 Making slow rhs at time 378 for fast variables advancing from 378 to 380 No-substepping time integration at level 1 to 380 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007477570325 0.004101843107 and volume-weighted sum 76189.28125 Subtracting 1.984095798e-05 from rhs in subdomain 0 Sum after subtraction -0.03934837878 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007279160782 MLMG: Initial residual (resid0) = 0.0007279160782 MLMG: Final Iter. 2 resid, resid/bnorm = 1.220751301e-06, 0.001677049557 MLMG: Timers: Solve = 0.000756589 Iter = 0.000596351 Bottom = 6.1172e-05 Time in solve 0.001188341 Max/L2 norm of divergence after solve at level 1 : 2.106279135e-05 0.001229514019 and volume-weighted sum 76189.21094 Time integration of scalars at level 1 from 378 to 380 with dt = 2 using RHS created at 378 Making slow rhs at time 380 for fast variables advancing from 378 to 380 No-substepping time integration at level 1 to 380 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007551759481 0.003839625046 and volume-weighted sum 76189.25 Subtracting 1.98409507e-05 from rhs in subdomain 0 Sum after subtraction 0.06088521332 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007353349938 MLMG: Initial residual (resid0) = 0.0007353349938 MLMG: Final Iter. 2 resid, resid/bnorm = 7.622147677e-07, 0.001036554459 MLMG: Timers: Solve = 0.000756998 Iter = 0.000601716 Bottom = 6.484e-05 Time in solve 0.001196267 Max/L2 norm of divergence after solve at level 1 : 2.060085535e-05 0.001229502028 and volume-weighted sum 76189.21875 Time integration of scalars at level 1 from 378 to 380 with dt = 2 using RHS created at 380 Done with advance_dycore at level 1 [Level 1 step 190] Advanced 3840 cells Coarse STEP 190 ends. TIME = 380 DT = 2 Timestep time = 0.018473399 seconds. Coarse STEP 191 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.389318982 (terrain aware) 1.389318982 (terrain unaware) Anelastic dt at level 0 would be: 6.614532372 (terrain aware) 6.614532372 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2700421919 (terrain aware) 0.2700421919 (terrain unaware) Anelastic dt at level 1 would be: 3.381467709 (terrain aware) 3.381467709 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 191] ADVANCE from elapsed time = 380 to 382 with dt = 2 Making slow rhs at time 380 for fast variables advancing from 380 to 380.6666666667 Fast time integration at level 0 from 380 to 380.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 380 to 380.6666666667 with dt = 0.6666666666667 using RHS created at 380 Making slow rhs at time 380.6666666667 for fast variables advancing from 380 to 381 Fast time integration at level 0 from 380 to 380.5 with dt = 0.5 Fast time integration at level 0 from 380.5 to 381 with dt = 0.5 Time integration of scalars at level 0 from 380 to 381 with dt = 1 using RHS created at 380.6666666667 Making slow rhs at time 381 for fast variables advancing from 380 to 382 Fast time integration at level 0 from 380 to 380.5 with dt = 0.5 Fast time integration at level 0 from 380.5 to 381 with dt = 0.5 Fast time integration at level 0 from 381 to 381.5 with dt = 0.5 Fast time integration at level 0 from 381.5 to 382 with dt = 0.5 Time integration of scalars at level 0 from 380 to 382 with dt = 2 using RHS created at 381 Done with advance_dycore at level 0 [Level 0 step 191] Advanced 4096 cells [Level 1 step 191] ADVANCE from elapsed time = 380 to 382 with dt = 2 Making slow rhs at time 380 for fast variables advancing from 380 to 382 No-substepping time integration at level 1 to 382 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006901733577 0.003870648332 and volume-weighted sum 38726.82812 Subtracting 1.008511117e-05 from rhs in subdomain 0 Sum after subtraction 0.08032657206 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006800882402 MLMG: Initial residual (resid0) = 0.0006800882402 MLMG: Final Iter. 2 resid, resid/bnorm = 7.279013516e-07, 0.001070304308 MLMG: Timers: Solve = 0.000754423 Iter = 0.000597108 Bottom = 5.997e-05 Time in solve 0.001184359 Max/L2 norm of divergence after solve at level 1 : 1.079402864e-05 0.0006249754806 and volume-weighted sum 38726.81641 Time integration of scalars at level 1 from 380 to 382 with dt = 2 using RHS created at 380 Making slow rhs at time 382 for fast variables advancing from 380 to 382 No-substepping time integration at level 1 to 382 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007182210684 0.003658592002 and volume-weighted sum 38726.84375 Subtracting 1.008511572e-05 from rhs in subdomain 0 Sum after subtraction 0.1025618985 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007081359508 MLMG: Initial residual (resid0) = 0.0007081359508 MLMG: Final Iter. 2 resid, resid/bnorm = 7.310923138e-07, 0.001032417989 MLMG: Timers: Solve = 0.000762472 Iter = 0.000605434 Bottom = 6.4299e-05 Time in solve 0.001189103 Max/L2 norm of divergence after solve at level 1 : 1.082010567e-05 0.0006249571452 and volume-weighted sum 38726.85547 Time integration of scalars at level 1 from 380 to 382 with dt = 2 using RHS created at 382 Done with advance_dycore at level 1 [Level 1 step 191] Advanced 3840 cells Coarse STEP 191 ends. TIME = 382 DT = 2 Timestep time = 0.019239917 seconds. Coarse STEP 192 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.389361599 (terrain aware) 1.389361599 (terrain unaware) Anelastic dt at level 0 would be: 6.616976759 (terrain aware) 6.616976759 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2699410689 (terrain aware) 0.2699410689 (terrain unaware) Anelastic dt at level 1 would be: 3.380569765 (terrain aware) 3.380569765 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 192] ADVANCE from elapsed time = 382 to 384 with dt = 2 Making slow rhs at time 382 for fast variables advancing from 382 to 382.6666666667 Fast time integration at level 0 from 382 to 382.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 382 to 382.6666666667 with dt = 0.6666666666667 using RHS created at 382 Making slow rhs at time 382.6666666667 for fast variables advancing from 382 to 383 Fast time integration at level 0 from 382 to 382.5 with dt = 0.5 Fast time integration at level 0 from 382.5 to 383 with dt = 0.5 Time integration of scalars at level 0 from 382 to 383 with dt = 1 using RHS created at 382.6666666667 Making slow rhs at time 383 for fast variables advancing from 382 to 384 Fast time integration at level 0 from 382 to 382.5 with dt = 0.5 Fast time integration at level 0 from 382.5 to 383 with dt = 0.5 Fast time integration at level 0 from 383 to 383.5 with dt = 0.5 Fast time integration at level 0 from 383.5 to 384 with dt = 0.5 Time integration of scalars at level 0 from 382 to 384 with dt = 2 using RHS created at 383 Done with advance_dycore at level 0 [Level 0 step 192] Advanced 4096 cells [Level 1 step 192] ADVANCE from elapsed time = 382 to 384 with dt = 2 Making slow rhs at time 382 for fast variables advancing from 382 to 384 No-substepping time integration at level 1 to 384 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007164292037 0.003716275329 and volume-weighted sum -2403.342041 Subtracting -6.258703138e-07 from rhs in subdomain 0 Sum after subtraction -0.01664739102 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007170550525 MLMG: Initial residual (resid0) = 0.0007170550525 MLMG: Final Iter. 2 resid, resid/bnorm = 7.163034752e-07, 0.0009989518439 MLMG: Timers: Solve = 0.000750903 Iter = 0.000592351 Bottom = 6.1291e-05 Time in solve 0.001182208 Max/L2 norm of divergence after solve at level 1 : 1.17556192e-06 3.904223922e-05 and volume-weighted sum -2403.324707 Time integration of scalars at level 1 from 382 to 384 with dt = 2 using RHS created at 382 Making slow rhs at time 384 for fast variables advancing from 382 to 384 No-substepping time integration at level 1 to 384 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007323659956 0.003573357128 and volume-weighted sum -2403.321045 Subtracting -6.258648568e-07 from rhs in subdomain 0 Sum after subtraction 0.01210719347 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007329918444 MLMG: Initial residual (resid0) = 0.0007329918444 MLMG: Final Iter. 2 resid, resid/bnorm = 7.005583029e-07, 0.0009557518642 MLMG: Timers: Solve = 0.000749855 Iter = 0.000596918 Bottom = 6.3392e-05 Time in solve 0.001189658 Max/L2 norm of divergence after solve at level 1 : 1.054257154e-06 3.886986087e-05 and volume-weighted sum -2403.362305 Time integration of scalars at level 1 from 382 to 384 with dt = 2 using RHS created at 384 Done with advance_dycore at level 1 [Level 1 step 192] Advanced 3840 cells Coarse STEP 192 ends. TIME = 384 DT = 2 Timestep time = 0.018607774 seconds. Coarse STEP 193 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.39094753 (terrain aware) 1.39094753 (terrain unaware) Anelastic dt at level 0 would be: 6.632160446 (terrain aware) 6.632160446 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2698379901 (terrain aware) 0.2698379901 (terrain unaware) Anelastic dt at level 1 would be: 3.371246705 (terrain aware) 3.371246705 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 193] ADVANCE from elapsed time = 384 to 386 with dt = 2 Making slow rhs at time 384 for fast variables advancing from 384 to 384.6666666667 Fast time integration at level 0 from 384 to 384.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 384 to 384.6666666667 with dt = 0.6666666666667 using RHS created at 384 Making slow rhs at time 384.6666666667 for fast variables advancing from 384 to 385 Fast time integration at level 0 from 384 to 384.5 with dt = 0.5 Fast time integration at level 0 from 384.5 to 385 with dt = 0.5 Time integration of scalars at level 0 from 384 to 385 with dt = 1 using RHS created at 384.6666666667 Making slow rhs at time 385 for fast variables advancing from 384 to 386 Fast time integration at level 0 from 384 to 384.5 with dt = 0.5 Fast time integration at level 0 from 384.5 to 385 with dt = 0.5 Fast time integration at level 0 from 385 to 385.5 with dt = 0.5 Fast time integration at level 0 from 385.5 to 386 with dt = 0.5 Time integration of scalars at level 0 from 384 to 386 with dt = 2 using RHS created at 385 Done with advance_dycore at level 0 [Level 0 step 193] Advanced 4096 cells [Level 1 step 193] ADVANCE from elapsed time = 384 to 386 with dt = 2 Making slow rhs at time 384 for fast variables advancing from 384 to 386 No-substepping time integration at level 1 to 386 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006688386202 0.003714105347 and volume-weighted sum -41235.29688 Subtracting -1.073835847e-05 from rhs in subdomain 0 Sum after subtraction 0.03864988685 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006795770023 MLMG: Initial residual (resid0) = 0.0006795770023 MLMG: Final Iter. 2 resid, resid/bnorm = 7.277703844e-07, 0.001070916769 MLMG: Timers: Solve = 0.000758448 Iter = 0.000594687 Bottom = 6.139e-05 Time in solve 0.001189409 Max/L2 norm of divergence after solve at level 1 : 1.127785072e-05 0.0006654408644 and volume-weighted sum -41235.24609 Time integration of scalars at level 1 from 384 to 386 with dt = 2 using RHS created at 384 Making slow rhs at time 386 for fast variables advancing from 384 to 386 No-substepping time integration at level 1 to 386 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006795693189 0.003603890771 and volume-weighted sum -41235.28125 Subtracting -1.073835483e-05 from rhs in subdomain 0 Sum after subtraction -0.02817250788 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000690307701 MLMG: Initial residual (resid0) = 0.000690307701 MLMG: Final Iter. 2 resid, resid/bnorm = 7.455819286e-07, 0.001080071903 MLMG: Timers: Solve = 0.000750148 Iter = 0.000593995 Bottom = 6.2408e-05 Time in solve 0.001198205 Max/L2 norm of divergence after solve at level 1 : 1.116842031e-05 0.0006654363242 and volume-weighted sum -41235.25781 Time integration of scalars at level 1 from 384 to 386 with dt = 2 using RHS created at 386 Done with advance_dycore at level 1 [Level 1 step 193] Advanced 3840 cells Coarse STEP 193 ends. TIME = 386 DT = 2 Timestep time = 0.018448368 seconds. Coarse STEP 194 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.393938193 (terrain aware) 1.393938193 (terrain unaware) Anelastic dt at level 0 would be: 6.685275932 (terrain aware) 6.685275932 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2697326762 (terrain aware) 0.2697326762 (terrain unaware) Anelastic dt at level 1 would be: 3.362008283 (terrain aware) 3.362008283 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 194] ADVANCE from elapsed time = 386 to 388 with dt = 2 Making slow rhs at time 386 for fast variables advancing from 386 to 386.6666666667 Fast time integration at level 0 from 386 to 386.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 386 to 386.6666666667 with dt = 0.6666666666667 using RHS created at 386 Making slow rhs at time 386.6666666667 for fast variables advancing from 386 to 387 Fast time integration at level 0 from 386 to 386.5 with dt = 0.5 Fast time integration at level 0 from 386.5 to 387 with dt = 0.5 Time integration of scalars at level 0 from 386 to 387 with dt = 1 using RHS created at 386.6666666667 Making slow rhs at time 387 for fast variables advancing from 386 to 388 Fast time integration at level 0 from 386 to 386.5 with dt = 0.5 Fast time integration at level 0 from 386.5 to 387 with dt = 0.5 Fast time integration at level 0 from 387 to 387.5 with dt = 0.5 Fast time integration at level 0 from 387.5 to 388 with dt = 0.5 Time integration of scalars at level 0 from 386 to 388 with dt = 2 using RHS created at 387 Done with advance_dycore at level 0 [Level 0 step 194] Advanced 4096 cells [Level 1 step 194] ADVANCE from elapsed time = 386 to 388 with dt = 2 Making slow rhs at time 386 for fast variables advancing from 386 to 388 No-substepping time integration at level 1 to 388 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006823651493 0.003881795797 and volume-weighted sum -71424.36719 Subtracting -1.860009615e-05 from rhs in subdomain 0 Sum after subtraction -0.02793967724 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007009652327 MLMG: Initial residual (resid0) = 0.0007009652327 MLMG: Final Iter. 2 resid, resid/bnorm = 1.184318876e-06, 0.001689554425 MLMG: Timers: Solve = 0.00076106 Iter = 0.000605609 Bottom = 6.2888e-05 Time in solve 0.001196247 Max/L2 norm of divergence after solve at level 1 : 1.978385262e-05 0.00115261774 and volume-weighted sum -71424.375 Time integration of scalars at level 1 from 386 to 388 with dt = 2 using RHS created at 386 Making slow rhs at time 388 for fast variables advancing from 386 to 388 No-substepping time integration at level 1 to 388 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0007082466036 0.003697337117 and volume-weighted sum -71424.39844 Subtracting -1.860010343e-05 from rhs in subdomain 0 Sum after subtraction -0.02351589501 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000726846687 MLMG: Initial residual (resid0) = 0.000726846687 MLMG: Final Iter. 2 resid, resid/bnorm = 7.68355676e-07, 0.001057108282 MLMG: Timers: Solve = 0.000748407 Iter = 0.000595172 Bottom = 6.1975e-05 Time in solve 0.00123664 Max/L2 norm of divergence after solve at level 1 : 1.901201904e-05 0.001152608544 and volume-weighted sum -71424.38281 Time integration of scalars at level 1 from 386 to 388 with dt = 2 using RHS created at 388 Done with advance_dycore at level 1 [Level 1 step 194] Advanced 3840 cells Coarse STEP 194 ends. TIME = 388 DT = 2 Timestep time = 0.018694927 seconds. Coarse STEP 195 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.397757956 (terrain aware) 1.397757956 (terrain unaware) Anelastic dt at level 0 would be: 6.772956747 (terrain aware) 6.772956747 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2696252015 (terrain aware) 0.2696252015 (terrain unaware) Anelastic dt at level 1 would be: 3.352836022 (terrain aware) 3.352836022 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 195] ADVANCE from elapsed time = 388 to 390 with dt = 2 Making slow rhs at time 388 for fast variables advancing from 388 to 388.6666666667 Fast time integration at level 0 from 388 to 388.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 388 to 388.6666666667 with dt = 0.6666666666667 using RHS created at 388 Making slow rhs at time 388.6666666667 for fast variables advancing from 388 to 389 Fast time integration at level 0 from 388 to 388.5 with dt = 0.5 Fast time integration at level 0 from 388.5 to 389 with dt = 0.5 Time integration of scalars at level 0 from 388 to 389 with dt = 1 using RHS created at 388.6666666667 Making slow rhs at time 389 for fast variables advancing from 388 to 390 Fast time integration at level 0 from 388 to 388.5 with dt = 0.5 Fast time integration at level 0 from 388.5 to 389 with dt = 0.5 Fast time integration at level 0 from 389 to 389.5 with dt = 0.5 Fast time integration at level 0 from 389.5 to 390 with dt = 0.5 Time integration of scalars at level 0 from 388 to 390 with dt = 2 using RHS created at 389 Done with advance_dycore at level 0 [Level 0 step 195] Advanced 4096 cells [Level 1 step 195] ADVANCE from elapsed time = 388 to 390 with dt = 2 Making slow rhs at time 388 for fast variables advancing from 388 to 390 No-substepping time integration at level 1 to 390 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000650787726 0.004069348332 and volume-weighted sum -88502.88281 Subtracting -2.304762529e-05 from rhs in subdomain 0 Sum after subtraction -0.03445893526 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006738353404 MLMG: Initial residual (resid0) = 0.0006738353404 MLMG: Final Iter. 2 resid, resid/bnorm = 1.65095048e-06, 0.00245007989 MLMG: Timers: Solve = 0.000967426 Iter = 0.000807961 Bottom = 0.000122771 Time in solve 0.001394854 Max/L2 norm of divergence after solve at level 1 : 2.469914034e-05 0.001428226824 and volume-weighted sum -88502.83594 Time integration of scalars at level 1 from 388 to 390 with dt = 2 using RHS created at 388 Making slow rhs at time 390 for fast variables advancing from 388 to 390 No-substepping time integration at level 1 to 390 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006624795496 0.003767054062 and volume-weighted sum -88502.86719 Subtracting -2.304762165e-05 from rhs in subdomain 0 Sum after subtraction -0.0256113708 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000685527164 MLMG: Initial residual (resid0) = 0.000685527164 MLMG: Final Iter. 2 resid, resid/bnorm = 7.604976417e-07, 0.001109361765 MLMG: Timers: Solve = 0.000759394 Iter = 0.000601085 Bottom = 6.095e-05 Time in solve 0.0011827 Max/L2 norm of divergence after solve at level 1 : 2.346001565e-05 0.001428209711 and volume-weighted sum -88502.88281 Time integration of scalars at level 1 from 388 to 390 with dt = 2 using RHS created at 390 Done with advance_dycore at level 1 [Level 1 step 195] Advanced 3840 cells Coarse STEP 195 ends. TIME = 390 DT = 2 Timestep time = 0.01839448 seconds. Coarse STEP 196 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.397252062 (terrain aware) 1.397252062 (terrain unaware) Anelastic dt at level 0 would be: 6.788729924 (terrain aware) 6.788729924 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2695166279 (terrain aware) 0.2695166279 (terrain unaware) Anelastic dt at level 1 would be: 3.343557964 (terrain aware) 3.343557964 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 196] ADVANCE from elapsed time = 390 to 392 with dt = 2 Making slow rhs at time 390 for fast variables advancing from 390 to 390.6666666667 Fast time integration at level 0 from 390 to 390.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 390 to 390.6666666667 with dt = 0.6666666666667 using RHS created at 390 Making slow rhs at time 390.6666666667 for fast variables advancing from 390 to 391 Fast time integration at level 0 from 390 to 390.5 with dt = 0.5 Fast time integration at level 0 from 390.5 to 391 with dt = 0.5 Time integration of scalars at level 0 from 390 to 391 with dt = 1 using RHS created at 390.6666666667 Making slow rhs at time 391 for fast variables advancing from 390 to 392 Fast time integration at level 0 from 390 to 390.5 with dt = 0.5 Fast time integration at level 0 from 390.5 to 391 with dt = 0.5 Fast time integration at level 0 from 391 to 391.5 with dt = 0.5 Fast time integration at level 0 from 391.5 to 392 with dt = 0.5 Time integration of scalars at level 0 from 390 to 392 with dt = 2 using RHS created at 391 Done with advance_dycore at level 0 [Level 0 step 196] Advanced 4096 cells [Level 1 step 196] ADVANCE from elapsed time = 390 to 392 with dt = 2 Making slow rhs at time 390 for fast variables advancing from 390 to 392 No-substepping time integration at level 1 to 392 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006597135216 0.004083493259 and volume-weighted sum -91988.82812 Subtracting -2.395542469e-05 from rhs in subdomain 0 Sum after subtraction 0.03282912076 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006836689427 MLMG: Initial residual (resid0) = 0.0006836689427 MLMG: Final Iter. 2 resid, resid/bnorm = 1.743695066e-06, 0.002550496254 MLMG: Timers: Solve = 0.000751877 Iter = 0.000594259 Bottom = 6.334e-05 Time in solve 0.001188714 Max/L2 norm of divergence after solve at level 1 : 2.569961362e-05 0.001484481152 and volume-weighted sum -91988.82812 Time integration of scalars at level 1 from 390 to 392 with dt = 2 using RHS created at 390 Making slow rhs at time 392 for fast variables advancing from 390 to 392 No-substepping time integration at level 1 to 392 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006932914257 0.003765134141 and volume-weighted sum -91988.80469 Subtracting -2.395541742e-05 from rhs in subdomain 0 Sum after subtraction 0.008149072528 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0007172468468 MLMG: Initial residual (resid0) = 0.0007172468468 MLMG: Final Iter. 2 resid, resid/bnorm = 7.202033885e-07, 0.001004122081 MLMG: Timers: Solve = 0.000766205 Iter = 0.000609609 Bottom = 6.3155e-05 Time in solve 0.001201867 Max/L2 norm of divergence after solve at level 1 : 2.438575029e-05 0.001484462293 and volume-weighted sum -91988.80469 Time integration of scalars at level 1 from 390 to 392 with dt = 2 using RHS created at 392 Done with advance_dycore at level 1 [Level 1 step 196] Advanced 3840 cells Coarse STEP 196 ends. TIME = 392 DT = 2 Timestep time = 0.018310085 seconds. Coarse STEP 197 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.398171911 (terrain aware) 1.398171911 (terrain unaware) Anelastic dt at level 0 would be: 6.789210934 (terrain aware) 6.789210934 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.26940852 (terrain aware) 0.26940852 (terrain unaware) Anelastic dt at level 1 would be: 3.33327348 (terrain aware) 3.33327348 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 197] ADVANCE from elapsed time = 392 to 394 with dt = 2 Making slow rhs at time 392 for fast variables advancing from 392 to 392.6666666667 Fast time integration at level 0 from 392 to 392.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 392 to 392.6666666667 with dt = 0.6666666666667 using RHS created at 392 Making slow rhs at time 392.6666666667 for fast variables advancing from 392 to 393 Fast time integration at level 0 from 392 to 392.5 with dt = 0.5 Fast time integration at level 0 from 392.5 to 393 with dt = 0.5 Time integration of scalars at level 0 from 392 to 393 with dt = 1 using RHS created at 392.6666666667 Making slow rhs at time 393 for fast variables advancing from 392 to 394 Fast time integration at level 0 from 392 to 392.5 with dt = 0.5 Fast time integration at level 0 from 392.5 to 393 with dt = 0.5 Fast time integration at level 0 from 393 to 393.5 with dt = 0.5 Fast time integration at level 0 from 393.5 to 394 with dt = 0.5 Time integration of scalars at level 0 from 392 to 394 with dt = 2 using RHS created at 393 Done with advance_dycore at level 0 [Level 0 step 197] Advanced 4096 cells [Level 1 step 197] ADVANCE from elapsed time = 392 to 394 with dt = 2 Making slow rhs at time 392 for fast variables advancing from 392 to 394 No-substepping time integration at level 1 to 394 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006426423788 0.0039184778 and volume-weighted sum -85232.61719 Subtracting -2.219599446e-05 from rhs in subdomain 0 Sum after subtraction 0.05029141903 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006648383569 MLMG: Initial residual (resid0) = 0.0006648383569 MLMG: Final Iter. 2 resid, resid/bnorm = 1.445876251e-06, 0.002174778609 MLMG: Timers: Solve = 0.000755053 Iter = 0.000599788 Bottom = 6.1594e-05 Time in solve 0.001180488 Max/L2 norm of divergence after solve at level 1 : 2.364069223e-05 0.001375450054 and volume-weighted sum -85232.65625 Time integration of scalars at level 1 from 392 to 394 with dt = 2 using RHS created at 392 Making slow rhs at time 394 for fast variables advancing from 392 to 394 No-substepping time integration at level 1 to 394 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006606020033 0.003700827248 and volume-weighted sum -85232.64844 Subtracting -2.219600174e-05 from rhs in subdomain 0 Sum after subtraction 0.08498318493 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006827979814 MLMG: Initial residual (resid0) = 0.0006827979814 MLMG: Final Iter. 2 resid, resid/bnorm = 7.734342944e-07, 0.001132742502 MLMG: Timers: Solve = 0.000755421 Iter = 0.000591009 Bottom = 6.0627e-05 Time in solve 0.001180902 Max/L2 norm of divergence after solve at level 1 : 2.265907824e-05 0.00137543946 and volume-weighted sum -85232.69531 Time integration of scalars at level 1 from 392 to 394 with dt = 2 using RHS created at 394 Done with advance_dycore at level 1 [Level 1 step 197] Advanced 3840 cells Coarse STEP 197 ends. TIME = 394 DT = 2 Timestep time = 0.018390772 seconds. Coarse STEP 198 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.400446722 (terrain aware) 1.400446722 (terrain unaware) Anelastic dt at level 0 would be: 6.827947992 (terrain aware) 6.827947992 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2693028522 (terrain aware) 0.2693028522 (terrain unaware) Anelastic dt at level 1 would be: 3.323218177 (terrain aware) 3.323218177 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 198] ADVANCE from elapsed time = 394 to 396 with dt = 2 Making slow rhs at time 394 for fast variables advancing from 394 to 394.6666666667 Fast time integration at level 0 from 394 to 394.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 394 to 394.6666666667 with dt = 0.6666666666667 using RHS created at 394 Making slow rhs at time 394.6666666667 for fast variables advancing from 394 to 395 Fast time integration at level 0 from 394 to 394.5 with dt = 0.5 Fast time integration at level 0 from 394.5 to 395 with dt = 0.5 Time integration of scalars at level 0 from 394 to 395 with dt = 1 using RHS created at 394.6666666667 Making slow rhs at time 395 for fast variables advancing from 394 to 396 Fast time integration at level 0 from 394 to 394.5 with dt = 0.5 Fast time integration at level 0 from 394.5 to 395 with dt = 0.5 Fast time integration at level 0 from 395 to 395.5 with dt = 0.5 Fast time integration at level 0 from 395.5 to 396 with dt = 0.5 Time integration of scalars at level 0 from 394 to 396 with dt = 2 using RHS created at 395 Done with advance_dycore at level 0 [Level 0 step 198] Advanced 4096 cells [Level 1 step 198] ADVANCE from elapsed time = 394 to 396 with dt = 2 Making slow rhs at time 394 for fast variables advancing from 394 to 396 No-substepping time integration at level 1 to 396 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006453692913 0.003737932071 and volume-weighted sum -72839.39062 Subtracting -1.896859067e-05 from rhs in subdomain 0 Sum after subtraction -0.10128133 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006643378874 MLMG: Initial residual (resid0) = 0.0006643378874 MLMG: Final Iter. 2 resid, resid/bnorm = 9.717330158e-07, 0.001462709042 MLMG: Timers: Solve = 0.000759835 Iter = 0.000600132 Bottom = 6.1393e-05 Time in solve 0.001180966 Max/L2 norm of divergence after solve at level 1 : 1.994008198e-05 0.001175450045 and volume-weighted sum -72839.38281 Time integration of scalars at level 1 from 394 to 396 with dt = 2 using RHS created at 394 Making slow rhs at time 396 for fast variables advancing from 394 to 396 No-substepping time integration at level 1 to 396 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006834212691 0.003609496169 and volume-weighted sum -72839.42188 Subtracting -1.896859976e-05 from rhs in subdomain 0 Sum after subtraction 0.2200249583 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000702389807 MLMG: Initial residual (resid0) = 0.000702389807 MLMG: Final Iter. 2 resid, resid/bnorm = 8.037750376e-07, 0.001144343289 MLMG: Timers: Solve = 0.000758616 Iter = 0.000603295 Bottom = 6.1695e-05 Time in solve 0.001191377 Max/L2 norm of divergence after solve at level 1 : 1.941248775e-05 0.001175444108 and volume-weighted sum -72839.39062 Time integration of scalars at level 1 from 394 to 396 with dt = 2 using RHS created at 396 Done with advance_dycore at level 1 [Level 1 step 198] Advanced 3840 cells Coarse STEP 198 ends. TIME = 396 DT = 2 Timestep time = 0.018605333 seconds. Coarse STEP 199 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.402957866 (terrain aware) 1.402957866 (terrain unaware) Anelastic dt at level 0 would be: 6.902762549 (terrain aware) 6.902762549 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2691982833 (terrain aware) 0.2691982833 (terrain unaware) Anelastic dt at level 1 would be: 3.313536595 (terrain aware) 3.313536595 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 199] ADVANCE from elapsed time = 396 to 398 with dt = 2 Making slow rhs at time 396 for fast variables advancing from 396 to 396.6666666667 Fast time integration at level 0 from 396 to 396.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 396 to 396.6666666667 with dt = 0.6666666666667 using RHS created at 396 Making slow rhs at time 396.6666666667 for fast variables advancing from 396 to 397 Fast time integration at level 0 from 396 to 396.5 with dt = 0.5 Fast time integration at level 0 from 396.5 to 397 with dt = 0.5 Time integration of scalars at level 0 from 396 to 397 with dt = 1 using RHS created at 396.6666666667 Making slow rhs at time 397 for fast variables advancing from 396 to 398 Fast time integration at level 0 from 396 to 396.5 with dt = 0.5 Fast time integration at level 0 from 396.5 to 397 with dt = 0.5 Fast time integration at level 0 from 397 to 397.5 with dt = 0.5 Fast time integration at level 0 from 397.5 to 398 with dt = 0.5 Time integration of scalars at level 0 from 396 to 398 with dt = 2 using RHS created at 397 Done with advance_dycore at level 0 [Level 0 step 199] Advanced 4096 cells [Level 1 step 199] ADVANCE from elapsed time = 396 to 398 with dt = 2 Making slow rhs at time 396 for fast variables advancing from 396 to 398 No-substepping time integration at level 1 to 398 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006353389472 0.003611463122 and volume-weighted sum -57811.00391 Subtracting -1.505494856e-05 from rhs in subdomain 0 Sum after subtraction 0.02910383046 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000650393893 MLMG: Initial residual (resid0) = 0.000650393893 MLMG: Final Iter. 2 resid, resid/bnorm = 7.613234629e-07, 0.001170557574 MLMG: Timers: Solve = 0.000752661 Iter = 0.000597031 Bottom = 5.7988e-05 Time in solve 0.00119484 Max/L2 norm of divergence after solve at level 1 : 1.567485742e-05 0.0009329299792 and volume-weighted sum -57811.0625 Time integration of scalars at level 1 from 396 to 398 with dt = 2 using RHS created at 396 Making slow rhs at time 398 for fast variables advancing from 396 to 398 No-substepping time integration at level 1 to 398 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006583686918 0.00351605867 and volume-weighted sum -57811.02344 Subtracting -1.505495402e-05 from rhs in subdomain 0 Sum after subtraction 0.1238659024 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006734235794 MLMG: Initial residual (resid0) = 0.0006734235794 MLMG: Final Iter. 2 resid, resid/bnorm = 8.059796528e-07, 0.001196839032 MLMG: Timers: Solve = 0.00076332 Iter = 0.00060547 Bottom = 6.0759e-05 Time in solve 0.001193606 Max/L2 norm of divergence after solve at level 1 : 1.543015242e-05 0.0009329247405 and volume-weighted sum -57811.03516 Time integration of scalars at level 1 from 396 to 398 with dt = 2 using RHS created at 398 Done with advance_dycore at level 1 [Level 1 step 199] Advanced 3840 cells Coarse STEP 199 ends. TIME = 398 DT = 2 Timestep time = 0.018444676 seconds. Coarse STEP 200 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.40210537 (terrain aware) 1.40210537 (terrain unaware) Anelastic dt at level 0 would be: 6.944116847 (terrain aware) 6.944116847 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2690844198 (terrain aware) 0.2690844198 (terrain unaware) Anelastic dt at level 1 would be: 3.304329167 (terrain aware) 3.304329167 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 200] ADVANCE from elapsed time = 398 to 400 with dt = 2 Making slow rhs at time 398 for fast variables advancing from 398 to 398.6666666667 Fast time integration at level 0 from 398 to 398.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 398 to 398.6666666667 with dt = 0.6666666666667 using RHS created at 398 Making slow rhs at time 398.6666666667 for fast variables advancing from 398 to 399 Fast time integration at level 0 from 398 to 398.5 with dt = 0.5 Fast time integration at level 0 from 398.5 to 399 with dt = 0.5 Time integration of scalars at level 0 from 398 to 399 with dt = 1 using RHS created at 398.6666666667 Making slow rhs at time 399 for fast variables advancing from 398 to 400 Fast time integration at level 0 from 398 to 398.5 with dt = 0.5 Fast time integration at level 0 from 398.5 to 399 with dt = 0.5 Fast time integration at level 0 from 399 to 399.5 with dt = 0.5 Fast time integration at level 0 from 399.5 to 400 with dt = 0.5 Time integration of scalars at level 0 from 398 to 400 with dt = 2 using RHS created at 399 Done with advance_dycore at level 0 [Level 0 step 200] Advanced 4096 cells [Level 1 step 200] ADVANCE from elapsed time = 398 to 400 with dt = 2 Making slow rhs at time 398 for fast variables advancing from 398 to 400 No-substepping time integration at level 1 to 400 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006280057132 0.003511856077 and volume-weighted sum -39892.59375 Subtracting -1.038869596e-05 from rhs in subdomain 0 Sum after subtraction 0.02863816917 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006383943837 MLMG: Initial residual (resid0) = 0.0006383943837 MLMG: Final Iter. 2 resid, resid/bnorm = 7.620765246e-07, 0.001193739357 MLMG: Timers: Solve = 0.000758742 Iter = 0.000601279 Bottom = 6.5849e-05 Time in solve 0.001189442 Max/L2 norm of divergence after solve at level 1 : 1.091742888e-05 0.0006437713746 and volume-weighted sum -39892.53125 Time integration of scalars at level 1 from 398 to 400 with dt = 2 using RHS created at 398 Making slow rhs at time 400 for fast variables advancing from 398 to 400 No-substepping time integration at level 1 to 400 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006717201322 0.003428818891 and volume-weighted sum -39892.58203 Subtracting -1.038869323e-05 from rhs in subdomain 0 Sum after subtraction -0.02002343535 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006821088027 MLMG: Initial residual (resid0) = 0.0006821088027 MLMG: Final Iter. 2 resid, resid/bnorm = 7.792823453e-07, 0.001142460504 MLMG: Timers: Solve = 0.000751626 Iter = 0.0005925 Bottom = 6.0761e-05 Time in solve 0.001254921 Max/L2 norm of divergence after solve at level 1 : 1.079216599e-05 0.0006437693373 and volume-weighted sum -39892.60547 Time integration of scalars at level 1 from 398 to 400 with dt = 2 using RHS created at 400 Done with advance_dycore at level 1 [Level 1 step 200] Advanced 3840 cells Coarse STEP 200 ends. TIME = 400 DT = 2 Timestep time = 0.018785312 seconds. 3DPlotfile write time = 0.006411351 seconds. Coarse STEP 201 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.40128074 (terrain aware) 1.40128074 (terrain unaware) Anelastic dt at level 0 would be: 6.929271118 (terrain aware) 6.929271118 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2689707798 (terrain aware) 0.2689707798 (terrain unaware) Anelastic dt at level 1 would be: 3.294528674 (terrain aware) 3.294528674 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 201] ADVANCE from elapsed time = 400 to 402 with dt = 2 Making slow rhs at time 400 for fast variables advancing from 400 to 400.6666666667 Fast time integration at level 0 from 400 to 400.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 400 to 400.6666666667 with dt = 0.6666666666667 using RHS created at 400 Making slow rhs at time 400.6666666667 for fast variables advancing from 400 to 401 Fast time integration at level 0 from 400 to 400.5 with dt = 0.5 Fast time integration at level 0 from 400.5 to 401 with dt = 0.5 Time integration of scalars at level 0 from 400 to 401 with dt = 1 using RHS created at 400.6666666667 Making slow rhs at time 401 for fast variables advancing from 400 to 402 Fast time integration at level 0 from 400 to 400.5 with dt = 0.5 Fast time integration at level 0 from 400.5 to 401 with dt = 0.5 Fast time integration at level 0 from 401 to 401.5 with dt = 0.5 Fast time integration at level 0 from 401.5 to 402 with dt = 0.5 Time integration of scalars at level 0 from 400 to 402 with dt = 2 using RHS created at 401 Done with advance_dycore at level 0 [Level 0 step 201] Advanced 4096 cells [Level 1 step 201] ADVANCE from elapsed time = 400 to 402 with dt = 2 Making slow rhs at time 400 for fast variables advancing from 400 to 402 No-substepping time integration at level 1 to 402 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000649984926 0.003461955115 and volume-weighted sum -17171.58398 Subtracting -4.471766715e-06 from rhs in subdomain 0 Sum after subtraction 0.008614733815 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006544566713 MLMG: Initial residual (resid0) = 0.0006544566713 MLMG: Final Iter. 2 resid, resid/bnorm = 7.954949979e-07, 0.001215504482 MLMG: Timers: Solve = 0.000769968 Iter = 0.000612398 Bottom = 6.3255e-05 Time in solve 0.001197289 Max/L2 norm of divergence after solve at level 1 : 5.068490282e-06 0.0002771311847 and volume-weighted sum -17171.55078 Time integration of scalars at level 1 from 400 to 402 with dt = 2 using RHS created at 400 Making slow rhs at time 402 for fast variables advancing from 400 to 402 No-substepping time integration at level 1 to 402 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000662278384 0.003358808346 and volume-weighted sum -17171.58008 Subtracting -4.471765806e-06 from rhs in subdomain 0 Sum after subtraction -0.02002343535 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006667501293 MLMG: Initial residual (resid0) = 0.0006667501293 MLMG: Final Iter. 2 resid, resid/bnorm = 7.528578863e-07, 0.001129145501 MLMG: Timers: Solve = 0.000771848 Iter = 0.000611513 Bottom = 6.3087e-05 Time in solve 0.00119818 Max/L2 norm of divergence after solve at level 1 : 4.891306162e-06 0.0002771175641 and volume-weighted sum -17171.57812 Time integration of scalars at level 1 from 400 to 402 with dt = 2 using RHS created at 402 Done with advance_dycore at level 1 [Level 1 step 201] Advanced 3840 cells Coarse STEP 201 ends. TIME = 402 DT = 2 Timestep time = 0.019557643 seconds. Coarse STEP 202 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.400504389 (terrain aware) 1.400504389 (terrain unaware) Anelastic dt at level 0 would be: 6.936529175 (terrain aware) 6.936529175 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2688519989 (terrain aware) 0.2688519989 (terrain unaware) Anelastic dt at level 1 would be: 3.283013653 (terrain aware) 3.283013653 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 202] ADVANCE from elapsed time = 402 to 404 with dt = 2 Making slow rhs at time 402 for fast variables advancing from 402 to 402.6666666667 Fast time integration at level 0 from 402 to 402.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 402 to 402.6666666667 with dt = 0.6666666666667 using RHS created at 402 Making slow rhs at time 402.6666666667 for fast variables advancing from 402 to 403 Fast time integration at level 0 from 402 to 402.5 with dt = 0.5 Fast time integration at level 0 from 402.5 to 403 with dt = 0.5 Time integration of scalars at level 0 from 402 to 403 with dt = 1 using RHS created at 402.6666666667 Making slow rhs at time 403 for fast variables advancing from 402 to 404 Fast time integration at level 0 from 402 to 402.5 with dt = 0.5 Fast time integration at level 0 from 402.5 to 403 with dt = 0.5 Fast time integration at level 0 from 403 to 403.5 with dt = 0.5 Fast time integration at level 0 from 403.5 to 404 with dt = 0.5 Time integration of scalars at level 0 from 402 to 404 with dt = 2 using RHS created at 403 Done with advance_dycore at level 0 [Level 0 step 202] Advanced 4096 cells [Level 1 step 202] ADVANCE from elapsed time = 402 to 404 with dt = 2 Making slow rhs at time 402 for fast variables advancing from 402 to 404 No-substepping time integration at level 1 to 404 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006302073598 0.003471115837 and volume-weighted sum 11346.85645 Subtracting 2.954910542e-06 from rhs in subdomain 0 Sum after subtraction 0.02700835466 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006272524479 MLMG: Initial residual (resid0) = 0.0006272524479 MLMG: Final Iter. 2 resid, resid/bnorm = 8.440692909e-07, 0.001345661236 MLMG: Timers: Solve = 0.000764923 Iter = 0.000610154 Bottom = 6.4206e-05 Time in solve 0.001201229 Max/L2 norm of divergence after solve at level 1 : 3.784894943e-06 0.000183182914 and volume-weighted sum 11346.84863 Time integration of scalars at level 1 from 402 to 404 with dt = 2 using RHS created at 402 Making slow rhs at time 404 for fast variables advancing from 402 to 404 No-substepping time integration at level 1 to 404 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006604958326 0.003332883585 and volume-weighted sum 11346.88965 Subtracting 2.954919182e-06 from rhs in subdomain 0 Sum after subtraction 0.01303851604 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006575409207 MLMG: Initial residual (resid0) = 0.0006575409207 MLMG: Final Iter. 2 resid, resid/bnorm = 7.953494787e-07, 0.001209581736 MLMG: Timers: Solve = 0.000758818 Iter = 0.000600537 Bottom = 6.0704e-05 Time in solve 0.001191892 Max/L2 norm of divergence after solve at level 1 : 3.74764204e-06 0.0001831294503 and volume-weighted sum 11346.89551 Time integration of scalars at level 1 from 402 to 404 with dt = 2 using RHS created at 404 Done with advance_dycore at level 1 [Level 1 step 202] Advanced 3840 cells Coarse STEP 202 ends. TIME = 404 DT = 2 Timestep time = 0.01850107 seconds. Coarse STEP 203 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.399785557 (terrain aware) 1.399785557 (terrain unaware) Anelastic dt at level 0 would be: 6.926795141 (terrain aware) 6.926795141 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2687360679 (terrain aware) 0.2687360679 (terrain unaware) Anelastic dt at level 1 would be: 3.271638404 (terrain aware) 3.271638404 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 203] ADVANCE from elapsed time = 404 to 406 with dt = 2 Making slow rhs at time 404 for fast variables advancing from 404 to 404.6666666667 Fast time integration at level 0 from 404 to 404.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 404 to 404.6666666667 with dt = 0.6666666666667 using RHS created at 404 Making slow rhs at time 404.6666666667 for fast variables advancing from 404 to 405 Fast time integration at level 0 from 404 to 404.5 with dt = 0.5 Fast time integration at level 0 from 404.5 to 405 with dt = 0.5 Time integration of scalars at level 0 from 404 to 405 with dt = 1 using RHS created at 404.6666666667 Making slow rhs at time 405 for fast variables advancing from 404 to 406 Fast time integration at level 0 from 404 to 404.5 with dt = 0.5 Fast time integration at level 0 from 404.5 to 405 with dt = 0.5 Fast time integration at level 0 from 405 to 405.5 with dt = 0.5 Fast time integration at level 0 from 405.5 to 406 with dt = 0.5 Time integration of scalars at level 0 from 404 to 406 with dt = 2 using RHS created at 405 Done with advance_dycore at level 0 [Level 0 step 203] Advanced 4096 cells [Level 1 step 203] ADVANCE from elapsed time = 404 to 406 with dt = 2 Making slow rhs at time 404 for fast variables advancing from 404 to 406 No-substepping time integration at level 1 to 406 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006653405726 0.003500434803 and volume-weighted sum 43407.53516 Subtracting 1.130404598e-05 from rhs in subdomain 0 Sum after subtraction -0.06053596735 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006540365284 MLMG: Initial residual (resid0) = 0.0006540365284 MLMG: Final Iter. 2 resid, resid/bnorm = 8.57617124e-07, 0.001311267959 MLMG: Timers: Solve = 0.000750367 Iter = 0.000593022 Bottom = 6.2274e-05 Time in solve 0.001183227 Max/L2 norm of divergence after solve at level 1 : 1.21742487e-05 0.0007005083608 and volume-weighted sum 43407.58203 Time integration of scalars at level 1 from 404 to 406 with dt = 2 using RHS created at 404 Making slow rhs at time 406 for fast variables advancing from 404 to 406 No-substepping time integration at level 1 to 406 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006843097508 0.003382500727 and volume-weighted sum 43407.56641 Subtracting 1.130405417e-05 from rhs in subdomain 0 Sum after subtraction -0.09569339454 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006730057066 MLMG: Initial residual (resid0) = 0.0006730057066 MLMG: Final Iter. 2 resid, resid/bnorm = 8.127390174e-07, 0.001207625726 MLMG: Timers: Solve = 0.000763608 Iter = 0.000603023 Bottom = 5.8055e-05 Time in solve 0.001194534 Max/L2 norm of divergence after solve at level 1 : 1.211464405e-05 0.0007004918298 and volume-weighted sum 43407.53906 Time integration of scalars at level 1 from 404 to 406 with dt = 2 using RHS created at 406 Done with advance_dycore at level 1 [Level 1 step 203] Advanced 3840 cells Coarse STEP 203 ends. TIME = 406 DT = 2 Timestep time = 0.018654699 seconds. Coarse STEP 204 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.399125436 (terrain aware) 1.399125436 (terrain unaware) Anelastic dt at level 0 would be: 6.914232866 (terrain aware) 6.914232866 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2686234337 (terrain aware) 0.2686234337 (terrain unaware) Anelastic dt at level 1 would be: 3.260444056 (terrain aware) 3.260444056 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 204] ADVANCE from elapsed time = 406 to 408 with dt = 2 Making slow rhs at time 406 for fast variables advancing from 406 to 406.6666666667 Fast time integration at level 0 from 406 to 406.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 406 to 406.6666666667 with dt = 0.6666666666667 using RHS created at 406 Making slow rhs at time 406.6666666667 for fast variables advancing from 406 to 407 Fast time integration at level 0 from 406 to 406.5 with dt = 0.5 Fast time integration at level 0 from 406.5 to 407 with dt = 0.5 Time integration of scalars at level 0 from 406 to 407 with dt = 1 using RHS created at 406.6666666667 Making slow rhs at time 407 for fast variables advancing from 406 to 408 Fast time integration at level 0 from 406 to 406.5 with dt = 0.5 Fast time integration at level 0 from 406.5 to 407 with dt = 0.5 Fast time integration at level 0 from 407 to 407.5 with dt = 0.5 Fast time integration at level 0 from 407.5 to 408 with dt = 0.5 Time integration of scalars at level 0 from 406 to 408 with dt = 2 using RHS created at 407 Done with advance_dycore at level 0 [Level 0 step 204] Advanced 4096 cells [Level 1 step 204] ADVANCE from elapsed time = 406 to 408 with dt = 2 Making slow rhs at time 406 for fast variables advancing from 406 to 408 No-substepping time integration at level 1 to 408 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006516929716 0.003592898836 and volume-weighted sum 73644.02344 Subtracting 1.917813097e-05 from rhs in subdomain 0 Sum after subtraction 0.06426125765 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006325148279 MLMG: Initial residual (resid0) = 0.0006325148279 MLMG: Final Iter. 2 resid, resid/bnorm = 8.523020369e-07, 0.001347481506 MLMG: Timers: Solve = 0.000754338 Iter = 0.000594329 Bottom = 5.75e-05 Time in solve 0.001188834 Max/L2 norm of divergence after solve at level 1 : 2.002902329e-05 0.001188437338 and volume-weighted sum 73644.07031 Time integration of scalars at level 1 from 406 to 408 with dt = 2 using RHS created at 406 Making slow rhs at time 408 for fast variables advancing from 406 to 408 No-substepping time integration at level 1 to 408 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006673615426 0.003499807091 and volume-weighted sum 73644.01562 Subtracting 1.917812915e-05 from rhs in subdomain 0 Sum after subtraction 0.08894130588 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006481833989 MLMG: Initial residual (resid0) = 0.0006481833989 MLMG: Final Iter. 2 resid, resid/bnorm = 8.00115231e-07, 0.001234396361 MLMG: Timers: Solve = 0.000746993 Iter = 0.000591354 Bottom = 6.0738e-05 Time in solve 0.001183186 Max/L2 norm of divergence after solve at level 1 : 1.998059452e-05 0.001188428723 and volume-weighted sum 73644.0625 Time integration of scalars at level 1 from 406 to 408 with dt = 2 using RHS created at 408 Done with advance_dycore at level 1 [Level 1 step 204] Advanced 3840 cells Coarse STEP 204 ends. TIME = 408 DT = 2 Timestep time = 0.018979002 seconds. Coarse STEP 205 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.398507932 (terrain aware) 1.398507932 (terrain unaware) Anelastic dt at level 0 would be: 6.90321912 (terrain aware) 6.90321912 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2685144317 (terrain aware) 0.2685144317 (terrain unaware) Anelastic dt at level 1 would be: 3.249510478 (terrain aware) 3.249510478 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 205] ADVANCE from elapsed time = 408 to 410 with dt = 2 Making slow rhs at time 408 for fast variables advancing from 408 to 408.6666666667 Fast time integration at level 0 from 408 to 408.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 408 to 408.6666666667 with dt = 0.6666666666667 using RHS created at 408 Making slow rhs at time 408.6666666667 for fast variables advancing from 408 to 409 Fast time integration at level 0 from 408 to 408.5 with dt = 0.5 Fast time integration at level 0 from 408.5 to 409 with dt = 0.5 Time integration of scalars at level 0 from 408 to 409 with dt = 1 using RHS created at 408.6666666667 Making slow rhs at time 409 for fast variables advancing from 408 to 410 Fast time integration at level 0 from 408 to 408.5 with dt = 0.5 Fast time integration at level 0 from 408.5 to 409 with dt = 0.5 Fast time integration at level 0 from 409 to 409.5 with dt = 0.5 Fast time integration at level 0 from 409.5 to 410 with dt = 0.5 Time integration of scalars at level 0 from 408 to 410 with dt = 2 using RHS created at 409 Done with advance_dycore at level 0 [Level 0 step 205] Advanced 4096 cells [Level 1 step 205] ADVANCE from elapsed time = 408 to 410 with dt = 2 Making slow rhs at time 408 for fast variables advancing from 408 to 410 No-substepping time integration at level 1 to 410 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006760396063 0.003778887214 and volume-weighted sum 95842.35938 Subtracting 2.495894842e-05 from rhs in subdomain 0 Sum after subtraction -0.03539025784 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006510806852 MLMG: Initial residual (resid0) = 0.0006510806852 MLMG: Final Iter. 2 resid, resid/bnorm = 1.343123813e-06, 0.002062914427 MLMG: Timers: Solve = 0.000751865 Iter = 0.000594049 Bottom = 6.1102e-05 Time in solve 0.001189007 Max/L2 norm of divergence after solve at level 1 : 2.630031668e-05 0.001546660904 and volume-weighted sum 95842.3125 Time integration of scalars at level 1 from 408 to 410 with dt = 2 using RHS created at 408 Making slow rhs at time 410 for fast variables advancing from 408 to 410 No-substepping time integration at level 1 to 410 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006991475821 0.003621430136 and volume-weighted sum 95842.34375 Subtracting 2.495894296e-05 from rhs in subdomain 0 Sum after subtraction -0.008847564459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006741886609 MLMG: Initial residual (resid0) = 0.0006741886609 MLMG: Final Iter. 2 resid, resid/bnorm = 7.571761671e-07, 0.00112309237 MLMG: Timers: Solve = 0.000809316 Iter = 0.000594048 Bottom = 6.1443e-05 Time in solve 0.001299363 Max/L2 norm of divergence after solve at level 1 : 2.57268548e-05 0.001546652173 and volume-weighted sum 95842.32031 Time integration of scalars at level 1 from 408 to 410 with dt = 2 using RHS created at 410 Done with advance_dycore at level 1 [Level 1 step 205] Advanced 3840 cells Coarse STEP 205 ends. TIME = 410 DT = 2 Timestep time = 0.018410958 seconds. Coarse STEP 206 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.397726366 (terrain aware) 1.397726366 (terrain unaware) Anelastic dt at level 0 would be: 6.893728273 (terrain aware) 6.893728273 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2684091178 (terrain aware) 0.2684091178 (terrain unaware) Anelastic dt at level 1 would be: 3.237729024 (terrain aware) 3.237729024 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 206] ADVANCE from elapsed time = 410 to 412 with dt = 2 Making slow rhs at time 410 for fast variables advancing from 410 to 410.6666666667 Fast time integration at level 0 from 410 to 410.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 410 to 410.6666666667 with dt = 0.6666666666667 using RHS created at 410 Making slow rhs at time 410.6666666667 for fast variables advancing from 410 to 411 Fast time integration at level 0 from 410 to 410.5 with dt = 0.5 Fast time integration at level 0 from 410.5 to 411 with dt = 0.5 Time integration of scalars at level 0 from 410 to 411 with dt = 1 using RHS created at 410.6666666667 Making slow rhs at time 411 for fast variables advancing from 410 to 412 Fast time integration at level 0 from 410 to 410.5 with dt = 0.5 Fast time integration at level 0 from 410.5 to 411 with dt = 0.5 Fast time integration at level 0 from 411 to 411.5 with dt = 0.5 Fast time integration at level 0 from 411.5 to 412 with dt = 0.5 Time integration of scalars at level 0 from 410 to 412 with dt = 2 using RHS created at 411 Done with advance_dycore at level 0 [Level 0 step 206] Advanced 4096 cells [Level 1 step 206] ADVANCE from elapsed time = 410 to 412 with dt = 2 Making slow rhs at time 410 for fast variables advancing from 410 to 412 No-substepping time integration at level 1 to 412 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006570536643 0.003932017833 and volume-weighted sum 105657.9531 Subtracting 2.751509237e-05 from rhs in subdomain 0 Sum after subtraction 0.1271255314 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006295384956 MLMG: Initial residual (resid0) = 0.0006295384956 MLMG: Final Iter. 2 resid, resid/bnorm = 1.781588935e-06, 0.00282999198 MLMG: Timers: Solve = 0.000760288 Iter = 0.00060239 Bottom = 6.1635e-05 Time in solve 0.001189279 Max/L2 norm of divergence after solve at level 1 : 2.929684706e-05 0.00170506537 and volume-weighted sum 105657.9297 Time integration of scalars at level 1 from 410 to 412 with dt = 2 using RHS created at 410 Making slow rhs at time 412 for fast variables advancing from 410 to 412 No-substepping time integration at level 1 to 412 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006700903177 0.003676341148 and volume-weighted sum 105657.9766 Subtracting 2.751509783e-05 from rhs in subdomain 0 Sum after subtraction 0.107800588 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006425752072 MLMG: Initial residual (resid0) = 0.0006425752072 MLMG: Final Iter. 2 resid, resid/bnorm = 7.823109627e-07, 0.001217462122 MLMG: Timers: Solve = 0.000772166 Iter = 0.000614837 Bottom = 6.1272e-05 Time in solve 0.001196341 Max/L2 norm of divergence after solve at level 1 : 2.830475569e-05 0.00170505303 and volume-weighted sum 105657.9453 Time integration of scalars at level 1 from 410 to 412 with dt = 2 using RHS created at 412 Done with advance_dycore at level 1 [Level 1 step 206] Advanced 3840 cells Coarse STEP 206 ends. TIME = 412 DT = 2 Timestep time = 0.018246801 seconds. Coarse STEP 207 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.39696745 (terrain aware) 1.39696745 (terrain unaware) Anelastic dt at level 0 would be: 6.877380507 (terrain aware) 6.877380507 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2683073987 (terrain aware) 0.2683073987 (terrain unaware) Anelastic dt at level 1 would be: 3.225340497 (terrain aware) 3.225340497 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 207] ADVANCE from elapsed time = 412 to 414 with dt = 2 Making slow rhs at time 412 for fast variables advancing from 412 to 412.6666666667 Fast time integration at level 0 from 412 to 412.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 412 to 412.6666666667 with dt = 0.6666666666667 using RHS created at 412 Making slow rhs at time 412.6666666667 for fast variables advancing from 412 to 413 Fast time integration at level 0 from 412 to 412.5 with dt = 0.5 Fast time integration at level 0 from 412.5 to 413 with dt = 0.5 Time integration of scalars at level 0 from 412 to 413 with dt = 1 using RHS created at 412.6666666667 Making slow rhs at time 413 for fast variables advancing from 412 to 414 Fast time integration at level 0 from 412 to 412.5 with dt = 0.5 Fast time integration at level 0 from 412.5 to 413 with dt = 0.5 Fast time integration at level 0 from 413 to 413.5 with dt = 0.5 Fast time integration at level 0 from 413.5 to 414 with dt = 0.5 Time integration of scalars at level 0 from 412 to 414 with dt = 2 using RHS created at 413 Done with advance_dycore at level 0 [Level 0 step 207] Advanced 4096 cells [Level 1 step 207] ADVANCE from elapsed time = 412 to 414 with dt = 2 Making slow rhs at time 412 for fast variables advancing from 412 to 414 No-substepping time integration at level 1 to 414 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006615743041 0.003923840821 and volume-weighted sum 101895.5312 Subtracting 2.653529373e-05 from rhs in subdomain 0 Sum after subtraction 0.08591450751 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006350390031 MLMG: Initial residual (resid0) = 0.0006350390031 MLMG: Final Iter. 2 resid, resid/bnorm = 1.753855031e-06, 0.002761806827 MLMG: Timers: Solve = 0.000746931 Iter = 0.000592172 Bottom = 6.1265e-05 Time in solve 0.001178746 Max/L2 norm of divergence after solve at level 1 : 2.82889232e-05 0.001644348376 and volume-weighted sum 101895.5 Time integration of scalars at level 1 from 412 to 414 with dt = 2 using RHS created at 412 Making slow rhs at time 414 for fast variables advancing from 412 to 414 No-substepping time integration at level 1 to 414 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006903074682 0.003633101005 and volume-weighted sum 101895.5703 Subtracting 2.653530464e-05 from rhs in subdomain 0 Sum after subtraction 0.03399327397 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006637721672 MLMG: Initial residual (resid0) = 0.0006637721672 MLMG: Final Iter. 2 resid, resid/bnorm = 8.139904821e-07, 0.001226310036 MLMG: Timers: Solve = 0.000759929 Iter = 0.000601291 Bottom = 5.9837e-05 Time in solve 0.001188017 Max/L2 norm of divergence after solve at level 1 : 2.735108137e-05 0.001644335454 and volume-weighted sum 101895.4609 Time integration of scalars at level 1 from 412 to 414 with dt = 2 using RHS created at 414 Done with advance_dycore at level 1 [Level 1 step 207] Advanced 3840 cells Coarse STEP 207 ends. TIME = 414 DT = 2 Timestep time = 0.01841094 seconds. Coarse STEP 208 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.396228799 (terrain aware) 1.396228799 (terrain unaware) Anelastic dt at level 0 would be: 6.861315863 (terrain aware) 6.861315863 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2682091442 (terrain aware) 0.2682091442 (terrain unaware) Anelastic dt at level 1 would be: 3.213371587 (terrain aware) 3.213371587 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 208] ADVANCE from elapsed time = 414 to 416 with dt = 2 Making slow rhs at time 414 for fast variables advancing from 414 to 414.6666666667 Fast time integration at level 0 from 414 to 414.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 414 to 414.6666666667 with dt = 0.6666666666667 using RHS created at 414 Making slow rhs at time 414.6666666667 for fast variables advancing from 414 to 415 Fast time integration at level 0 from 414 to 414.5 with dt = 0.5 Fast time integration at level 0 from 414.5 to 415 with dt = 0.5 Time integration of scalars at level 0 from 414 to 415 with dt = 1 using RHS created at 414.6666666667 Making slow rhs at time 415 for fast variables advancing from 414 to 416 Fast time integration at level 0 from 414 to 414.5 with dt = 0.5 Fast time integration at level 0 from 414.5 to 415 with dt = 0.5 Fast time integration at level 0 from 415 to 415.5 with dt = 0.5 Fast time integration at level 0 from 415.5 to 416 with dt = 0.5 Time integration of scalars at level 0 from 414 to 416 with dt = 2 using RHS created at 415 Done with advance_dycore at level 0 [Level 0 step 208] Advanced 4096 cells [Level 1 step 208] ADVANCE from elapsed time = 414 to 416 with dt = 2 Making slow rhs at time 414 for fast variables advancing from 414 to 416 No-substepping time integration at level 1 to 416 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006343089044 0.003763212357 and volume-weighted sum 85915.77344 Subtracting 2.23738989e-05 from rhs in subdomain 0 Sum after subtraction 0.04563480616 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006119349855 MLMG: Initial residual (resid0) = 0.0006119349855 MLMG: Final Iter. 2 resid, resid/bnorm = 1.36874155e-06, 0.002236743458 MLMG: Timers: Solve = 0.000747359 Iter = 0.000587648 Bottom = 6.137e-05 Time in solve 0.001231276 Max/L2 norm of divergence after solve at level 1 : 2.374104224e-05 0.001386477845 and volume-weighted sum 85915.79688 Time integration of scalars at level 1 from 414 to 416 with dt = 2 using RHS created at 414 Making slow rhs at time 416 for fast variables advancing from 414 to 416 No-substepping time integration at level 1 to 416 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006543174386 0.00350683718 and volume-weighted sum 85915.77344 Subtracting 2.23738989e-05 from rhs in subdomain 0 Sum after subtraction -0.03864988685 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006319435197 MLMG: Initial residual (resid0) = 0.0006319435197 MLMG: Final Iter. 2 resid, resid/bnorm = 8.228817023e-07, 0.001302144374 MLMG: Timers: Solve = 0.00075399 Iter = 0.000594448 Bottom = 6.055e-05 Time in solve 0.001196471 Max/L2 norm of divergence after solve at level 1 : 2.320483327e-05 0.001386464806 and volume-weighted sum 85915.77344 Time integration of scalars at level 1 from 414 to 416 with dt = 2 using RHS created at 416 Done with advance_dycore at level 1 [Level 1 step 208] Advanced 3840 cells Coarse STEP 208 ends. TIME = 416 DT = 2 Timestep time = 0.018780652 seconds. Coarse STEP 209 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.395505497 (terrain aware) 1.395505497 (terrain unaware) Anelastic dt at level 0 would be: 6.845614808 (terrain aware) 6.845614808 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2681078536 (terrain aware) 0.2681078536 (terrain unaware) Anelastic dt at level 1 would be: 3.202001107 (terrain aware) 3.202001107 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 209] ADVANCE from elapsed time = 416 to 418 with dt = 2 Making slow rhs at time 416 for fast variables advancing from 416 to 416.6666666667 Fast time integration at level 0 from 416 to 416.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 416 to 416.6666666667 with dt = 0.6666666666667 using RHS created at 416 Making slow rhs at time 416.6666666667 for fast variables advancing from 416 to 417 Fast time integration at level 0 from 416 to 416.5 with dt = 0.5 Fast time integration at level 0 from 416.5 to 417 with dt = 0.5 Time integration of scalars at level 0 from 416 to 417 with dt = 1 using RHS created at 416.6666666667 Making slow rhs at time 417 for fast variables advancing from 416 to 418 Fast time integration at level 0 from 416 to 416.5 with dt = 0.5 Fast time integration at level 0 from 416.5 to 417 with dt = 0.5 Fast time integration at level 0 from 417 to 417.5 with dt = 0.5 Fast time integration at level 0 from 417.5 to 418 with dt = 0.5 Time integration of scalars at level 0 from 416 to 418 with dt = 2 using RHS created at 417 Done with advance_dycore at level 0 [Level 0 step 209] Advanced 4096 cells [Level 1 step 209] ADVANCE from elapsed time = 416 to 418 with dt = 2 Making slow rhs at time 416 for fast variables advancing from 416 to 418 No-substepping time integration at level 1 to 418 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006225965917 0.003547473345 and volume-weighted sum 60234.16016 Subtracting 1.568597872e-05 from rhs in subdomain 0 Sum after subtraction -0.05541369319 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006069106166 MLMG: Initial residual (resid0) = 0.0006069106166 MLMG: Final Iter. 2 resid, resid/bnorm = 9.208561096e-07, 0.001517284545 MLMG: Timers: Solve = 0.00076169 Iter = 0.000605018 Bottom = 6.2344e-05 Time in solve 0.001202863 Max/L2 norm of divergence after solve at level 1 : 1.660734415e-05 0.000972044596 and volume-weighted sum 60234.1875 Time integration of scalars at level 1 from 416 to 418 with dt = 2 using RHS created at 416 Making slow rhs at time 418 for fast variables advancing from 416 to 418 No-substepping time integration at level 1 to 418 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006591230631 0.003347381949 and volume-weighted sum 60234.16016 Subtracting 1.568597872e-05 from rhs in subdomain 0 Sum after subtraction 0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000643437088 MLMG: Initial residual (resid0) = 0.000643437088 MLMG: Final Iter. 2 resid, resid/bnorm = 8.072493074e-07, 0.001254589297 MLMG: Timers: Solve = 0.000793664 Iter = 0.000584994 Bottom = 5.7069e-05 Time in solve 0.001242949 Max/L2 norm of divergence after solve at level 1 : 1.650303602e-05 0.0009720285307 and volume-weighted sum 60234.14062 Time integration of scalars at level 1 from 416 to 418 with dt = 2 using RHS created at 418 Done with advance_dycore at level 1 [Level 1 step 209] Advanced 3840 cells Coarse STEP 209 ends. TIME = 418 DT = 2 Timestep time = 0.018398453 seconds. Coarse STEP 210 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.39479039 (terrain aware) 1.39479039 (terrain unaware) Anelastic dt at level 0 would be: 6.830109852 (terrain aware) 6.830109852 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2679966909 (terrain aware) 0.2679966909 (terrain unaware) Anelastic dt at level 1 would be: 3.191390884 (terrain aware) 3.191390884 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 210] ADVANCE from elapsed time = 418 to 420 with dt = 2 Making slow rhs at time 418 for fast variables advancing from 418 to 418.6666666667 Fast time integration at level 0 from 418 to 418.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 418 to 418.6666666667 with dt = 0.6666666666667 using RHS created at 418 Making slow rhs at time 418.6666666667 for fast variables advancing from 418 to 419 Fast time integration at level 0 from 418 to 418.5 with dt = 0.5 Fast time integration at level 0 from 418.5 to 419 with dt = 0.5 Time integration of scalars at level 0 from 418 to 419 with dt = 1 using RHS created at 418.6666666667 Making slow rhs at time 419 for fast variables advancing from 418 to 420 Fast time integration at level 0 from 418 to 418.5 with dt = 0.5 Fast time integration at level 0 from 418.5 to 419 with dt = 0.5 Fast time integration at level 0 from 419 to 419.5 with dt = 0.5 Fast time integration at level 0 from 419.5 to 420 with dt = 0.5 Time integration of scalars at level 0 from 418 to 420 with dt = 2 using RHS created at 419 Done with advance_dycore at level 0 [Level 0 step 210] Advanced 4096 cells [Level 1 step 210] ADVANCE from elapsed time = 418 to 420 with dt = 2 Making slow rhs at time 418 for fast variables advancing from 418 to 420 No-substepping time integration at level 1 to 420 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006268396974 0.003354612505 and volume-weighted sum 27841.25977 Subtracting 7.250328053e-06 from rhs in subdomain 0 Sum after subtraction 0.008847564459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006195893511 MLMG: Initial residual (resid0) = 0.0006195893511 MLMG: Final Iter. 2 resid, resid/bnorm = 7.872586139e-07, 0.001270613517 MLMG: Timers: Solve = 0.00075624 Iter = 0.00060191 Bottom = 6.1035e-05 Time in solve 0.001204195 Max/L2 norm of divergence after solve at level 1 : 8.031725883e-06 0.0004493184388 and volume-weighted sum 27841.22852 Time integration of scalars at level 1 from 418 to 420 with dt = 2 using RHS created at 418 Making slow rhs at time 420 for fast variables advancing from 418 to 420 No-substepping time integration at level 1 to 420 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006362348795 0.003216903424 and volume-weighted sum 27841.29297 Subtracting 7.250336694e-06 from rhs in subdomain 0 Sum after subtraction 0.03981404006 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006289845333 MLMG: Initial residual (resid0) = 0.0006289845333 MLMG: Final Iter. 2 resid, resid/bnorm = 7.669004845e-07, 0.001219267608 MLMG: Timers: Solve = 0.000759148 Iter = 0.000601058 Bottom = 6.0854e-05 Time in solve 0.001197296 Max/L2 norm of divergence after solve at level 1 : 8.024275303e-06 0.0004492970475 and volume-weighted sum 27841.28906 Time integration of scalars at level 1 from 418 to 420 with dt = 2 using RHS created at 420 Done with advance_dycore at level 1 [Level 1 step 210] Advanced 3840 cells Coarse STEP 210 ends. TIME = 420 DT = 2 Timestep time = 0.018565426 seconds. Coarse STEP 211 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.394072601 (terrain aware) 1.394072601 (terrain unaware) Anelastic dt at level 0 would be: 6.814544695 (terrain aware) 6.814544695 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2678871301 (terrain aware) 0.2678871301 (terrain unaware) Anelastic dt at level 1 would be: 3.181666088 (terrain aware) 3.181666088 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(6) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ((64,0,0) (79,0,47) (0,0,0)) ((80,0,0) (95,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ((64,0,0) (79,0,47) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (95,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004467512481 0.002410576446 and volume-weighted sum 42235.80469 Subtracting 9.165756637e-06 from rhs in subdomain 0 Sum after subtraction 0.05215406418 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004375854915 MLMG: Initial residual (resid0) = 0.0004375854915 MLMG: Final Iter. 2 resid, resid/bnorm = 2.557523203e-06, 0.005844625179 MLMG: Timers: Solve = 0.000930727 Iter = 0.000663158 Bottom = 6.5552e-05 Time in solve 0.001409054 Max/L2 norm of divergence after solve at level 1 : 9.758397937e-06 0.0006223333767 and volume-weighted sum 42235.79297 [Level 0 step 211] ADVANCE from elapsed time = 420 to 422 with dt = 2 Making slow rhs at time 420 for fast variables advancing from 420 to 420.6666666667 Fast time integration at level 0 from 420 to 420.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 420 to 420.6666666667 with dt = 0.6666666666667 using RHS created at 420 Making slow rhs at time 420.6666666667 for fast variables advancing from 420 to 421 Fast time integration at level 0 from 420 to 420.5 with dt = 0.5 Fast time integration at level 0 from 420.5 to 421 with dt = 0.5 Time integration of scalars at level 0 from 420 to 421 with dt = 1 using RHS created at 420.6666666667 Making slow rhs at time 421 for fast variables advancing from 420 to 422 Fast time integration at level 0 from 420 to 420.5 with dt = 0.5 Fast time integration at level 0 from 420.5 to 421 with dt = 0.5 Fast time integration at level 0 from 421 to 421.5 with dt = 0.5 Fast time integration at level 0 from 421.5 to 422 with dt = 0.5 Time integration of scalars at level 0 from 420 to 422 with dt = 2 using RHS created at 421 Done with advance_dycore at level 0 [Level 0 step 211] Advanced 4096 cells [Level 1 step 211] ADVANCE from elapsed time = 420 to 422 with dt = 2 Making slow rhs at time 420 for fast variables advancing from 420 to 422 No-substepping time integration at level 1 to 422 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.008438270539 0.08272773027 and volume-weighted sum 2255.14917 Subtracting 4.893987011e-07 from rhs in subdomain 0 Sum after subtraction 0.961124897 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.008438759483 MLMG: Initial residual (resid0) = 0.008438759483 MLMG: Final Iter. 3 resid, resid/bnorm = 1.856591552e-06, 0.0002200076415 MLMG: Timers: Solve = 0.001214109 Iter = 0.000938191 Bottom = 9.4141e-05 Time in solve 0.001679643 Max/L2 norm of divergence after solve at level 1 : 2.353917807e-06 3.499078593e-05 and volume-weighted sum 2255.510498 Time integration of scalars at level 1 from 420 to 422 with dt = 2 using RHS created at 420 Making slow rhs at time 422 for fast variables advancing from 420 to 422 No-substepping time integration at level 1 to 422 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006252955645 0.003168786876 and volume-weighted sum 2255.527832 Subtracting 4.894808399e-07 from rhs in subdomain 0 Sum after subtraction 0.09336508811 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006248060963 MLMG: Initial residual (resid0) = 0.0006248060963 MLMG: Final Iter. 2 resid, resid/bnorm = 6.275076885e-07, 0.001004323945 MLMG: Timers: Solve = 0.000886276 Iter = 0.00066622 Bottom = 6.2641e-05 Time in solve 0.001323871 Max/L2 norm of divergence after solve at level 1 : 1.110136509e-06 3.331325206e-05 and volume-weighted sum 2255.51001 Time integration of scalars at level 1 from 420 to 422 with dt = 2 using RHS created at 422 Done with advance_dycore at level 1 [Level 1 step 211] Advanced 4608 cells Coarse STEP 211 ends. TIME = 422 DT = 2 Timestep time = 0.030916397 seconds. Coarse STEP 212 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.393338868 (terrain aware) 1.393338868 (terrain unaware) Anelastic dt at level 0 would be: 6.798642176 (terrain aware) 6.798642176 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2677735274 (terrain aware) 0.2677735274 (terrain unaware) Anelastic dt at level 1 would be: 3.17126478 (terrain aware) 3.17126478 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 212] ADVANCE from elapsed time = 422 to 424 with dt = 2 Making slow rhs at time 422 for fast variables advancing from 422 to 422.6666666667 Fast time integration at level 0 from 422 to 422.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 422 to 422.6666666667 with dt = 0.6666666666667 using RHS created at 422 Making slow rhs at time 422.6666666667 for fast variables advancing from 422 to 423 Fast time integration at level 0 from 422 to 422.5 with dt = 0.5 Fast time integration at level 0 from 422.5 to 423 with dt = 0.5 Time integration of scalars at level 0 from 422 to 423 with dt = 1 using RHS created at 422.6666666667 Making slow rhs at time 423 for fast variables advancing from 422 to 424 Fast time integration at level 0 from 422 to 422.5 with dt = 0.5 Fast time integration at level 0 from 422.5 to 423 with dt = 0.5 Fast time integration at level 0 from 423 to 423.5 with dt = 0.5 Fast time integration at level 0 from 423.5 to 424 with dt = 0.5 Time integration of scalars at level 0 from 422 to 424 with dt = 2 using RHS created at 423 Done with advance_dycore at level 0 [Level 0 step 212] Advanced 4096 cells [Level 1 step 212] ADVANCE from elapsed time = 422 to 424 with dt = 2 Making slow rhs at time 422 for fast variables advancing from 422 to 424 No-substepping time integration at level 1 to 424 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006114952266 0.003239616286 and volume-weighted sum -36444.79688 Subtracting -7.909026863e-06 from rhs in subdomain 0 Sum after subtraction 0.1228181645 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006194042508 MLMG: Initial residual (resid0) = 0.0006194042508 MLMG: Final Iter. 2 resid, resid/bnorm = 6.470509106e-07, 0.001044634264 MLMG: Timers: Solve = 0.000890286 Iter = 0.000667161 Bottom = 6.3001e-05 Time in solve 0.001345287 Max/L2 norm of divergence after solve at level 1 : 8.249655366e-06 0.0005368922721 and volume-weighted sum -36444.78516 Time integration of scalars at level 1 from 422 to 424 with dt = 2 using RHS created at 422 Making slow rhs at time 424 for fast variables advancing from 422 to 424 No-substepping time integration at level 1 to 424 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006301868707 0.003198120277 and volume-weighted sum -36444.76562 Subtracting -7.909020496e-06 from rhs in subdomain 0 Sum after subtraction -0.1286389232 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006380958948 MLMG: Initial residual (resid0) = 0.0006380958948 MLMG: Final Iter. 2 resid, resid/bnorm = 6.494228728e-07, 0.001017751172 MLMG: Timers: Solve = 0.000955412 Iter = 0.000729301 Bottom = 8.1441e-05 Time in solve 0.001402489 Max/L2 norm of divergence after solve at level 1 : 8.234754205e-06 0.0005368890124 and volume-weighted sum -36444.82812 Time integration of scalars at level 1 from 422 to 424 with dt = 2 using RHS created at 424 Done with advance_dycore at level 1 [Level 1 step 212] Advanced 4608 cells Coarse STEP 212 ends. TIME = 424 DT = 2 Timestep time = 0.020881408 seconds. Coarse STEP 213 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.392582485 (terrain aware) 1.392582485 (terrain unaware) Anelastic dt at level 0 would be: 6.782281298 (terrain aware) 6.782281298 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2676672262 (terrain aware) 0.2676672262 (terrain unaware) Anelastic dt at level 1 would be: 3.159685088 (terrain aware) 3.159685088 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 213] ADVANCE from elapsed time = 424 to 426 with dt = 2 Making slow rhs at time 424 for fast variables advancing from 424 to 424.6666666667 Fast time integration at level 0 from 424 to 424.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 424 to 424.6666666667 with dt = 0.6666666666667 using RHS created at 424 Making slow rhs at time 424.6666666667 for fast variables advancing from 424 to 425 Fast time integration at level 0 from 424 to 424.5 with dt = 0.5 Fast time integration at level 0 from 424.5 to 425 with dt = 0.5 Time integration of scalars at level 0 from 424 to 425 with dt = 1 using RHS created at 424.6666666667 Making slow rhs at time 425 for fast variables advancing from 424 to 426 Fast time integration at level 0 from 424 to 424.5 with dt = 0.5 Fast time integration at level 0 from 424.5 to 425 with dt = 0.5 Fast time integration at level 0 from 425 to 425.5 with dt = 0.5 Fast time integration at level 0 from 425.5 to 426 with dt = 0.5 Time integration of scalars at level 0 from 424 to 426 with dt = 2 using RHS created at 425 Done with advance_dycore at level 0 [Level 0 step 213] Advanced 4096 cells [Level 1 step 213] ADVANCE from elapsed time = 424 to 426 with dt = 2 Making slow rhs at time 424 for fast variables advancing from 424 to 426 No-substepping time integration at level 1 to 426 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005823038518 0.003392711282 and volume-weighted sum -67759.14062 Subtracting -1.470467487e-05 from rhs in subdomain 0 Sum after subtraction -0.006170012057 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000597008504 MLMG: Initial residual (resid0) = 0.000597008504 MLMG: Final Iter. 2 resid, resid/bnorm = 7.701651157e-07, 0.00129004044 MLMG: Timers: Solve = 0.000885249 Iter = 0.000669414 Bottom = 6.5237e-05 Time in solve 0.00135482 Max/L2 norm of divergence after solve at level 1 : 1.547695138e-05 0.0009981964249 and volume-weighted sum -67759.17188 Time integration of scalars at level 1 from 424 to 426 with dt = 2 using RHS created at 424 Making slow rhs at time 426 for fast variables advancing from 424 to 426 No-substepping time integration at level 1 to 426 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000600527972 0.003292711917 and volume-weighted sum -67759.125 Subtracting -1.470467123e-05 from rhs in subdomain 0 Sum after subtraction 0.01490116119 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006152326241 MLMG: Initial residual (resid0) = 0.0006152326241 MLMG: Final Iter. 2 resid, resid/bnorm = 6.470872904e-07, 0.001051776577 MLMG: Timers: Solve = 0.000879571 Iter = 0.000664348 Bottom = 6.1512e-05 Time in solve 0.001341686 Max/L2 norm of divergence after solve at level 1 : 1.500546932e-05 0.0009981897892 and volume-weighted sum -67759.125 Time integration of scalars at level 1 from 424 to 426 with dt = 2 using RHS created at 426 Done with advance_dycore at level 1 [Level 1 step 213] Advanced 4608 cells Coarse STEP 213 ends. TIME = 426 DT = 2 Timestep time = 0.021572595 seconds. Coarse STEP 214 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.391804645 (terrain aware) 1.391804645 (terrain unaware) Anelastic dt at level 0 would be: 6.765529413 (terrain aware) 6.765529413 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2675644268 (terrain aware) 0.2675644268 (terrain unaware) Anelastic dt at level 1 would be: 3.148950887 (terrain aware) 3.148950887 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 214] ADVANCE from elapsed time = 426 to 428 with dt = 2 Making slow rhs at time 426 for fast variables advancing from 426 to 426.6666666667 Fast time integration at level 0 from 426 to 426.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 426 to 426.6666666667 with dt = 0.6666666666667 using RHS created at 426 Making slow rhs at time 426.6666666667 for fast variables advancing from 426 to 427 Fast time integration at level 0 from 426 to 426.5 with dt = 0.5 Fast time integration at level 0 from 426.5 to 427 with dt = 0.5 Time integration of scalars at level 0 from 426 to 427 with dt = 1 using RHS created at 426.6666666667 Making slow rhs at time 427 for fast variables advancing from 426 to 428 Fast time integration at level 0 from 426 to 426.5 with dt = 0.5 Fast time integration at level 0 from 426.5 to 427 with dt = 0.5 Fast time integration at level 0 from 427 to 427.5 with dt = 0.5 Fast time integration at level 0 from 427.5 to 428 with dt = 0.5 Time integration of scalars at level 0 from 426 to 428 with dt = 2 using RHS created at 427 Done with advance_dycore at level 0 [Level 0 step 214] Advanced 4096 cells [Level 1 step 214] ADVANCE from elapsed time = 426 to 428 with dt = 2 Making slow rhs at time 426 for fast variables advancing from 426 to 428 No-substepping time integration at level 1 to 428 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000587053597 0.003587191924 and volume-weighted sum -86904.53125 Subtracting -1.88594895e-05 from rhs in subdomain 0 Sum after subtraction -0.01618172973 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006059131119 MLMG: Initial residual (resid0) = 0.0006059131119 MLMG: Final Iter. 2 resid, resid/bnorm = 1.281386403e-06, 0.002114802133 MLMG: Timers: Solve = 0.001294349 Iter = 0.001066344 Bottom = 8.6948e-05 Time in solve 0.001743668 Max/L2 norm of divergence after solve at level 1 : 2.014311031e-05 0.001280239085 and volume-weighted sum -86904.61719 Time integration of scalars at level 1 from 426 to 428 with dt = 2 using RHS created at 426 Making slow rhs at time 428 for fast variables advancing from 426 to 428 No-substepping time integration at level 1 to 428 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006157308817 0.003377038985 and volume-weighted sum -86904.54688 Subtracting -1.885949314e-05 from rhs in subdomain 0 Sum after subtraction -0.0714790076 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006345903967 MLMG: Initial residual (resid0) = 0.0006345903967 MLMG: Final Iter. 2 resid, resid/bnorm = 6.191476132e-07, 0.0009756649379 MLMG: Timers: Solve = 0.000935328 Iter = 0.000658931 Bottom = 6.0996e-05 Time in solve 0.001394061 Max/L2 norm of divergence after solve at level 1 : 1.919269562e-05 0.001280227094 and volume-weighted sum -86904.58594 Time integration of scalars at level 1 from 426 to 428 with dt = 2 using RHS created at 428 Done with advance_dycore at level 1 [Level 1 step 214] Advanced 4608 cells Coarse STEP 214 ends. TIME = 428 DT = 2 Timestep time = 0.021253568 seconds. Coarse STEP 215 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.39101831 (terrain aware) 1.39101831 (terrain unaware) Anelastic dt at level 0 would be: 6.748674411 (terrain aware) 6.748674411 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2674497252 (terrain aware) 0.2674497252 (terrain unaware) Anelastic dt at level 1 would be: 3.139287783 (terrain aware) 3.139287783 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 215] ADVANCE from elapsed time = 428 to 430 with dt = 2 Making slow rhs at time 428 for fast variables advancing from 428 to 428.6666666667 Fast time integration at level 0 from 428 to 428.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 428 to 428.6666666667 with dt = 0.6666666666667 using RHS created at 428 Making slow rhs at time 428.6666666667 for fast variables advancing from 428 to 429 Fast time integration at level 0 from 428 to 428.5 with dt = 0.5 Fast time integration at level 0 from 428.5 to 429 with dt = 0.5 Time integration of scalars at level 0 from 428 to 429 with dt = 1 using RHS created at 428.6666666667 Making slow rhs at time 429 for fast variables advancing from 428 to 430 Fast time integration at level 0 from 428 to 428.5 with dt = 0.5 Fast time integration at level 0 from 428.5 to 429 with dt = 0.5 Fast time integration at level 0 from 429 to 429.5 with dt = 0.5 Fast time integration at level 0 from 429.5 to 430 with dt = 0.5 Time integration of scalars at level 0 from 428 to 430 with dt = 2 using RHS created at 429 Done with advance_dycore at level 0 [Level 0 step 215] Advanced 4096 cells [Level 1 step 215] ADVANCE from elapsed time = 428 to 430 with dt = 2 Making slow rhs at time 428 for fast variables advancing from 428 to 430 No-substepping time integration at level 1 to 430 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005579274148 0.003663045121 and volume-weighted sum -92069.98438 Subtracting -1.998046537e-05 from rhs in subdomain 0 Sum after subtraction -0.02409797162 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005779078929 MLMG: Initial residual (resid0) = 0.0005779078929 MLMG: Final Iter. 2 resid, resid/bnorm = 1.588028113e-06, 0.002747891471 MLMG: Timers: Solve = 0.000966852 Iter = 0.00065891 Bottom = 6.5347e-05 Time in solve 0.001422197 Max/L2 norm of divergence after solve at level 1 : 2.156523988e-05 0.001356335008 and volume-weighted sum -92070 Time integration of scalars at level 1 from 428 to 430 with dt = 2 using RHS created at 428 Making slow rhs at time 430 for fast variables advancing from 428 to 430 No-substepping time integration at level 1 to 430 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005810819566 0.003394821193 and volume-weighted sum -92070 Subtracting -1.998046901e-05 from rhs in subdomain 0 Sum after subtraction -0.04412140697 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006010624347 MLMG: Initial residual (resid0) = 0.0006010624347 MLMG: Final Iter. 2 resid, resid/bnorm = 6.160698831e-07, 0.001024968224 MLMG: Timers: Solve = 0.00088461 Iter = 0.000656999 Bottom = 6.1263e-05 Time in solve 0.001336169 Max/L2 norm of divergence after solve at level 1 : 2.032704651e-05 0.001356320339 and volume-weighted sum -92070.03125 Time integration of scalars at level 1 from 428 to 430 with dt = 2 using RHS created at 430 Done with advance_dycore at level 1 [Level 1 step 215] Advanced 4608 cells Coarse STEP 215 ends. TIME = 430 DT = 2 Timestep time = 0.020912036 seconds. Coarse STEP 216 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.390242556 (terrain aware) 1.390242556 (terrain unaware) Anelastic dt at level 0 would be: 6.732101936 (terrain aware) 6.732101936 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2673304414 (terrain aware) 0.2673304414 (terrain unaware) Anelastic dt at level 1 would be: 3.130997075 (terrain aware) 3.130997075 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 216] ADVANCE from elapsed time = 430 to 432 with dt = 2 Making slow rhs at time 430 for fast variables advancing from 430 to 430.6666666667 Fast time integration at level 0 from 430 to 430.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 430 to 430.6666666667 with dt = 0.6666666666667 using RHS created at 430 Making slow rhs at time 430.6666666667 for fast variables advancing from 430 to 431 Fast time integration at level 0 from 430 to 430.5 with dt = 0.5 Fast time integration at level 0 from 430.5 to 431 with dt = 0.5 Time integration of scalars at level 0 from 430 to 431 with dt = 1 using RHS created at 430.6666666667 Making slow rhs at time 431 for fast variables advancing from 430 to 432 Fast time integration at level 0 from 430 to 430.5 with dt = 0.5 Fast time integration at level 0 from 430.5 to 431 with dt = 0.5 Fast time integration at level 0 from 431 to 431.5 with dt = 0.5 Fast time integration at level 0 from 431.5 to 432 with dt = 0.5 Time integration of scalars at level 0 from 430 to 432 with dt = 2 using RHS created at 431 Done with advance_dycore at level 0 [Level 0 step 216] Advanced 4096 cells [Level 1 step 216] ADVANCE from elapsed time = 430 to 432 with dt = 2 Making slow rhs at time 430 for fast variables advancing from 430 to 432 No-substepping time integration at level 1 to 432 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005624014884 0.003557458753 and volume-weighted sum -85283.25781 Subtracting -1.850765148e-05 from rhs in subdomain 0 Sum after subtraction 0.06856862456 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005809091381 MLMG: Initial residual (resid0) = 0.0005809091381 MLMG: Final Iter. 2 resid, resid/bnorm = 1.493136779e-06, 0.002570344834 MLMG: Timers: Solve = 0.000890858 Iter = 0.000673278 Bottom = 6.5719e-05 Time in solve 0.001340119 Max/L2 norm of divergence after solve at level 1 : 2.000108361e-05 0.001256357413 and volume-weighted sum -85283.30469 Time integration of scalars at level 1 from 430 to 432 with dt = 2 using RHS created at 430 Making slow rhs at time 432 for fast variables advancing from 430 to 432 No-substepping time integration at level 1 to 432 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005986876786 0.003345489502 and volume-weighted sum -85283.26562 Subtracting -1.850765329e-05 from rhs in subdomain 0 Sum after subtraction 0.05157198757 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006171953282 MLMG: Initial residual (resid0) = 0.0006171953282 MLMG: Final Iter. 2 resid, resid/bnorm = 6.531045074e-07, 0.001058181166 MLMG: Timers: Solve = 0.000871357 Iter = 0.000668922 Bottom = 6.1615e-05 Time in solve 0.001344466 Max/L2 norm of divergence after solve at level 1 : 1.883506775e-05 0.001256344374 and volume-weighted sum -85283.29688 Time integration of scalars at level 1 from 430 to 432 with dt = 2 using RHS created at 432 Done with advance_dycore at level 1 [Level 1 step 216] Advanced 4608 cells Coarse STEP 216 ends. TIME = 432 DT = 2 Timestep time = 0.020985451 seconds. Coarse STEP 217 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.389500478 (terrain aware) 1.389500478 (terrain unaware) Anelastic dt at level 0 would be: 6.716277499 (terrain aware) 6.716277499 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2672197444 (terrain aware) 0.2672197444 (terrain unaware) Anelastic dt at level 1 would be: 3.122261418 (terrain aware) 3.122261418 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 217] ADVANCE from elapsed time = 432 to 434 with dt = 2 Making slow rhs at time 432 for fast variables advancing from 432 to 432.6666666667 Fast time integration at level 0 from 432 to 432.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 432 to 432.6666666667 with dt = 0.6666666666667 using RHS created at 432 Making slow rhs at time 432.6666666667 for fast variables advancing from 432 to 433 Fast time integration at level 0 from 432 to 432.5 with dt = 0.5 Fast time integration at level 0 from 432.5 to 433 with dt = 0.5 Time integration of scalars at level 0 from 432 to 433 with dt = 1 using RHS created at 432.6666666667 Making slow rhs at time 433 for fast variables advancing from 432 to 434 Fast time integration at level 0 from 432 to 432.5 with dt = 0.5 Fast time integration at level 0 from 432.5 to 433 with dt = 0.5 Fast time integration at level 0 from 433 to 433.5 with dt = 0.5 Fast time integration at level 0 from 433.5 to 434 with dt = 0.5 Time integration of scalars at level 0 from 432 to 434 with dt = 2 using RHS created at 433 Done with advance_dycore at level 0 [Level 0 step 217] Advanced 4096 cells [Level 1 step 217] ADVANCE from elapsed time = 432 to 434 with dt = 2 Making slow rhs at time 432 for fast variables advancing from 432 to 434 No-substepping time integration at level 1 to 434 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005698874593 0.00336792157 and volume-weighted sum -71186.21094 Subtracting -1.544839688e-05 from rhs in subdomain 0 Sum after subtraction -0.05611218512 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005853358307 MLMG: Initial residual (resid0) = 0.0005853358307 MLMG: Final Iter. 2 resid, resid/bnorm = 1.009660878e-06, 0.001724925824 MLMG: Timers: Solve = 0.000873311 Iter = 0.000661445 Bottom = 6.3988e-05 Time in solve 0.001330056 Max/L2 norm of divergence after solve at level 1 : 1.645809971e-05 0.001048682258 and volume-weighted sum -71186.21094 Time integration of scalars at level 1 from 432 to 434 with dt = 2 using RHS created at 432 Making slow rhs at time 434 for fast variables advancing from 432 to 434 No-substepping time integration at level 1 to 434 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005794800818 0.003263808088 and volume-weighted sum -71186.17969 Subtracting -1.54483896e-05 from rhs in subdomain 0 Sum after subtraction -0.09883660823 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005949284532 MLMG: Initial residual (resid0) = 0.0005949284532 MLMG: Final Iter. 2 resid, resid/bnorm = 6.66892447e-07, 0.001120962435 MLMG: Timers: Solve = 0.000882126 Iter = 0.000661219 Bottom = 6.2178e-05 Time in solve 0.001318536 Max/L2 norm of divergence after solve at level 1 : 1.575984061e-05 0.001048674108 and volume-weighted sum -71186.21094 Time integration of scalars at level 1 from 432 to 434 with dt = 2 using RHS created at 434 Done with advance_dycore at level 1 [Level 1 step 217] Advanced 4608 cells Coarse STEP 217 ends. TIME = 434 DT = 2 Timestep time = 0.020927472 seconds. Coarse STEP 218 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.388814578 (terrain aware) 1.388814578 (terrain unaware) Anelastic dt at level 0 would be: 6.701640983 (terrain aware) 6.701640983 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2671201301 (terrain aware) 0.2671201301 (terrain unaware) Anelastic dt at level 1 would be: 3.112347378 (terrain aware) 3.112347378 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 218] ADVANCE from elapsed time = 434 to 436 with dt = 2 Making slow rhs at time 434 for fast variables advancing from 434 to 434.6666666667 Fast time integration at level 0 from 434 to 434.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 434 to 434.6666666667 with dt = 0.6666666666667 using RHS created at 434 Making slow rhs at time 434.6666666667 for fast variables advancing from 434 to 435 Fast time integration at level 0 from 434 to 434.5 with dt = 0.5 Fast time integration at level 0 from 434.5 to 435 with dt = 0.5 Time integration of scalars at level 0 from 434 to 435 with dt = 1 using RHS created at 434.6666666667 Making slow rhs at time 435 for fast variables advancing from 434 to 436 Fast time integration at level 0 from 434 to 434.5 with dt = 0.5 Fast time integration at level 0 from 434.5 to 435 with dt = 0.5 Fast time integration at level 0 from 435 to 435.5 with dt = 0.5 Fast time integration at level 0 from 435.5 to 436 with dt = 0.5 Time integration of scalars at level 0 from 434 to 436 with dt = 2 using RHS created at 435 Done with advance_dycore at level 0 [Level 0 step 218] Advanced 4096 cells [Level 1 step 218] ADVANCE from elapsed time = 434 to 436 with dt = 2 Making slow rhs at time 434 for fast variables advancing from 434 to 436 No-substepping time integration at level 1 to 436 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005633365363 0.003222473199 and volume-weighted sum -54431.92578 Subtracting -1.181248354e-05 from rhs in subdomain 0 Sum after subtraction -0.08114147931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005751490244 MLMG: Initial residual (resid0) = 0.0005751490244 MLMG: Final Iter. 2 resid, resid/bnorm = 6.174232112e-07, 0.001073501306 MLMG: Timers: Solve = 0.000887267 Iter = 0.000663889 Bottom = 6.3709e-05 Time in solve 0.001323759 Max/L2 norm of divergence after solve at level 1 : 1.222710125e-05 0.0008018653607 and volume-weighted sum -54431.9375 Time integration of scalars at level 1 from 434 to 436 with dt = 2 using RHS created at 434 Making slow rhs at time 436 for fast variables advancing from 434 to 436 No-substepping time integration at level 1 to 436 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005883686244 0.00318279257 and volume-weighted sum -54431.92969 Subtracting -1.181248444e-05 from rhs in subdomain 0 Sum after subtraction -0.06682239473 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006001811125 MLMG: Initial residual (resid0) = 0.0006001811125 MLMG: Final Iter. 2 resid, resid/bnorm = 6.559566827e-07, 0.001092931256 MLMG: Timers: Solve = 0.000888559 Iter = 0.000664909 Bottom = 6.1774e-05 Time in solve 0.001328051 Max/L2 norm of divergence after solve at level 1 : 1.208856702e-05 0.0008018632652 and volume-weighted sum -54431.95703 Time integration of scalars at level 1 from 434 to 436 with dt = 2 using RHS created at 436 Done with advance_dycore at level 1 [Level 1 step 218] Advanced 4608 cells Coarse STEP 218 ends. TIME = 436 DT = 2 Timestep time = 0.020907083 seconds. Coarse STEP 219 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.388203779 (terrain aware) 1.388203779 (terrain unaware) Anelastic dt at level 0 would be: 6.687720914 (terrain aware) 6.687720914 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2670333495 (terrain aware) 0.2670333495 (terrain unaware) Anelastic dt at level 1 would be: 3.104081108 (terrain aware) 3.104081108 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 219] ADVANCE from elapsed time = 436 to 438 with dt = 2 Making slow rhs at time 436 for fast variables advancing from 436 to 436.6666666667 Fast time integration at level 0 from 436 to 436.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 436 to 436.6666666667 with dt = 0.6666666666667 using RHS created at 436 Making slow rhs at time 436.6666666667 for fast variables advancing from 436 to 437 Fast time integration at level 0 from 436 to 436.5 with dt = 0.5 Fast time integration at level 0 from 436.5 to 437 with dt = 0.5 Time integration of scalars at level 0 from 436 to 437 with dt = 1 using RHS created at 436.6666666667 Making slow rhs at time 437 for fast variables advancing from 436 to 438 Fast time integration at level 0 from 436 to 436.5 with dt = 0.5 Fast time integration at level 0 from 436.5 to 437 with dt = 0.5 Fast time integration at level 0 from 437 to 437.5 with dt = 0.5 Fast time integration at level 0 from 437.5 to 438 with dt = 0.5 Time integration of scalars at level 0 from 436 to 438 with dt = 2 using RHS created at 437 Done with advance_dycore at level 0 [Level 0 step 219] Advanced 4096 cells [Level 1 step 219] ADVANCE from elapsed time = 436 to 438 with dt = 2 Making slow rhs at time 436 for fast variables advancing from 436 to 438 No-substepping time integration at level 1 to 438 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005841050297 0.003140634624 and volume-weighted sum -37136.52344 Subtracting -8.059141692e-06 from rhs in subdomain 0 Sum after subtraction 0.06519258022 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005921641714 MLMG: Initial residual (resid0) = 0.0005921641714 MLMG: Final Iter. 2 resid, resid/bnorm = 5.818583304e-07, 0.0009825963061 MLMG: Timers: Solve = 0.000934307 Iter = 0.000700066 Bottom = 6.726e-05 Time in solve 0.001445584 Max/L2 norm of divergence after solve at level 1 : 8.372589946e-06 0.0005470786127 and volume-weighted sum -37136.52734 Time integration of scalars at level 1 from 436 to 438 with dt = 2 using RHS created at 436 Making slow rhs at time 438 for fast variables advancing from 436 to 438 No-substepping time integration at level 1 to 438 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005998127162 0.003119709203 and volume-weighted sum -37136.50391 Subtracting -8.059137144e-06 from rhs in subdomain 0 Sum after subtraction 0.08370261639 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006078718579 MLMG: Initial residual (resid0) = 0.0006078718579 MLMG: Final Iter. 2 resid, resid/bnorm = 6.205300451e-07, 0.001020823722 MLMG: Timers: Solve = 0.000876783 Iter = 0.000656758 Bottom = 6.2576e-05 Time in solve 0.001341272 Max/L2 norm of divergence after solve at level 1 : 8.36327672e-06 0.000547077565 and volume-weighted sum -37136.49219 Time integration of scalars at level 1 from 436 to 438 with dt = 2 using RHS created at 438 Done with advance_dycore at level 1 [Level 1 step 219] Advanced 4608 cells Coarse STEP 219 ends. TIME = 438 DT = 2 Timestep time = 0.021297834 seconds. Coarse STEP 220 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.387313286 (terrain aware) 1.387313286 (terrain unaware) Anelastic dt at level 0 would be: 6.666163107 (terrain aware) 6.666163107 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2669192811 (terrain aware) 0.2669192811 (terrain unaware) Anelastic dt at level 1 would be: 3.093622877 (terrain aware) 3.093622877 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 220] ADVANCE from elapsed time = 438 to 440 with dt = 2 Making slow rhs at time 438 for fast variables advancing from 438 to 438.6666666667 Fast time integration at level 0 from 438 to 438.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 438 to 438.6666666667 with dt = 0.6666666666667 using RHS created at 438 Making slow rhs at time 438.6666666667 for fast variables advancing from 438 to 439 Fast time integration at level 0 from 438 to 438.5 with dt = 0.5 Fast time integration at level 0 from 438.5 to 439 with dt = 0.5 Time integration of scalars at level 0 from 438 to 439 with dt = 1 using RHS created at 438.6666666667 Making slow rhs at time 439 for fast variables advancing from 438 to 440 Fast time integration at level 0 from 438 to 438.5 with dt = 0.5 Fast time integration at level 0 from 438.5 to 439 with dt = 0.5 Fast time integration at level 0 from 439 to 439.5 with dt = 0.5 Fast time integration at level 0 from 439.5 to 440 with dt = 0.5 Time integration of scalars at level 0 from 438 to 440 with dt = 2 using RHS created at 439 Done with advance_dycore at level 0 [Level 0 step 220] Advanced 4096 cells [Level 1 step 220] ADVANCE from elapsed time = 438 to 440 with dt = 2 Making slow rhs at time 438 for fast variables advancing from 438 to 440 No-substepping time integration at level 1 to 440 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005648043007 0.003099869005 and volume-weighted sum -18599.76367 Subtracting -4.036407063e-06 from rhs in subdomain 0 Sum after subtraction -0.104540959 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005688407109 MLMG: Initial residual (resid0) = 0.0005688407109 MLMG: Final Iter. 2 resid, resid/bnorm = 6.447080523e-07, 0.001133371843 MLMG: Timers: Solve = 0.000892513 Iter = 0.000668775 Bottom = 6.3994e-05 Time in solve 0.001349783 Max/L2 norm of divergence after solve at level 1 : 4.37349081e-06 0.0002740159107 and volume-weighted sum -18599.75781 Time integration of scalars at level 1 from 438 to 440 with dt = 2 using RHS created at 438 Making slow rhs at time 440 for fast variables advancing from 438 to 440 No-substepping time integration at level 1 to 440 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005924701691 0.003075193614 and volume-weighted sum -18599.76758 Subtracting -4.036407972e-06 from rhs in subdomain 0 Sum after subtraction -0.08835922927 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005965065793 MLMG: Initial residual (resid0) = 0.0005965065793 MLMG: Final Iter. 2 resid, resid/bnorm = 6.160407793e-07, 0.001032747678 MLMG: Timers: Solve = 0.001234605 Iter = 0.000700874 Bottom = 6.2251e-05 Time in solve 0.001695511 Max/L2 norm of divergence after solve at level 1 : 4.353001714e-06 0.0002740114578 and volume-weighted sum -18599.75 Time integration of scalars at level 1 from 438 to 440 with dt = 2 using RHS created at 440 Done with advance_dycore at level 1 [Level 1 step 220] Advanced 4608 cells Coarse STEP 220 ends. TIME = 440 DT = 2 Timestep time = 0.0214134 seconds. Coarse STEP 221 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.386395374 (terrain aware) 1.386395374 (terrain unaware) Anelastic dt at level 0 would be: 6.645970842 (terrain aware) 6.645970842 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2668025305 (terrain aware) 0.2668025305 (terrain unaware) Anelastic dt at level 1 would be: 3.080542638 (terrain aware) 3.080542638 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 221] ADVANCE from elapsed time = 440 to 442 with dt = 2 Making slow rhs at time 440 for fast variables advancing from 440 to 440.6666666667 Fast time integration at level 0 from 440 to 440.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 440 to 440.6666666667 with dt = 0.6666666666667 using RHS created at 440 Making slow rhs at time 440.6666666667 for fast variables advancing from 440 to 441 Fast time integration at level 0 from 440 to 440.5 with dt = 0.5 Fast time integration at level 0 from 440.5 to 441 with dt = 0.5 Time integration of scalars at level 0 from 440 to 441 with dt = 1 using RHS created at 440.6666666667 Making slow rhs at time 441 for fast variables advancing from 440 to 442 Fast time integration at level 0 from 440 to 440.5 with dt = 0.5 Fast time integration at level 0 from 440.5 to 441 with dt = 0.5 Fast time integration at level 0 from 441 to 441.5 with dt = 0.5 Fast time integration at level 0 from 441.5 to 442 with dt = 0.5 Time integration of scalars at level 0 from 440 to 442 with dt = 2 using RHS created at 441 Done with advance_dycore at level 0 [Level 0 step 221] Advanced 4096 cells [Level 1 step 221] ADVANCE from elapsed time = 440 to 442 with dt = 2 Making slow rhs at time 440 for fast variables advancing from 440 to 442 No-substepping time integration at level 1 to 442 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005815885961 0.003115616506 and volume-weighted sum 3093.334961 Subtracting 6.712966751e-07 from rhs in subdomain 0 Sum after subtraction 0.06379559636 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005809172872 MLMG: Initial residual (resid0) = 0.0005809172872 MLMG: Final Iter. 2 resid, resid/bnorm = 7.159833331e-07, 0.001232504728 MLMG: Timers: Solve = 0.001221952 Iter = 0.000995906 Bottom = 6.5217e-05 Time in solve 0.001673981 Max/L2 norm of divergence after solve at level 1 : 1.385807991e-06 4.579574306e-05 and volume-weighted sum 3093.302734 Time integration of scalars at level 1 from 440 to 442 with dt = 2 using RHS created at 440 Making slow rhs at time 442 for fast variables advancing from 440 to 442 No-substepping time integration at level 1 to 442 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006057731807 0.003054704051 and volume-weighted sum 3093.320312 Subtracting 6.712934919e-07 from rhs in subdomain 0 Sum after subtraction 0.03189779818 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0006051018718 MLMG: Initial residual (resid0) = 0.0006051018718 MLMG: Final Iter. 2 resid, resid/bnorm = 6.4613414e-07, 0.001067810459 MLMG: Timers: Solve = 0.000880327 Iter = 0.000657252 Bottom = 6.2796e-05 Time in solve 0.00133049 Max/L2 norm of divergence after solve at level 1 : 1.322478056e-06 4.563894981e-05 and volume-weighted sum 3093.335449 Time integration of scalars at level 1 from 440 to 442 with dt = 2 using RHS created at 442 Done with advance_dycore at level 1 [Level 1 step 221] Advanced 4608 cells Coarse STEP 221 ends. TIME = 442 DT = 2 Timestep time = 0.021933612 seconds. Coarse STEP 222 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.385549882 (terrain aware) 1.385549882 (terrain unaware) Anelastic dt at level 0 would be: 6.627173325 (terrain aware) 6.627173325 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2666756471 (terrain aware) 0.2666756471 (terrain unaware) Anelastic dt at level 1 would be: 3.068998112 (terrain aware) 3.068998112 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 222] ADVANCE from elapsed time = 442 to 444 with dt = 2 Making slow rhs at time 442 for fast variables advancing from 442 to 442.6666666667 Fast time integration at level 0 from 442 to 442.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 442 to 442.6666666667 with dt = 0.6666666666667 using RHS created at 442 Making slow rhs at time 442.6666666667 for fast variables advancing from 442 to 443 Fast time integration at level 0 from 442 to 442.5 with dt = 0.5 Fast time integration at level 0 from 442.5 to 443 with dt = 0.5 Time integration of scalars at level 0 from 442 to 443 with dt = 1 using RHS created at 442.6666666667 Making slow rhs at time 443 for fast variables advancing from 442 to 444 Fast time integration at level 0 from 442 to 442.5 with dt = 0.5 Fast time integration at level 0 from 442.5 to 443 with dt = 0.5 Fast time integration at level 0 from 443 to 443.5 with dt = 0.5 Fast time integration at level 0 from 443.5 to 444 with dt = 0.5 Time integration of scalars at level 0 from 442 to 444 with dt = 2 using RHS created at 443 Done with advance_dycore at level 0 [Level 0 step 222] Advanced 4096 cells [Level 1 step 222] ADVANCE from elapsed time = 442 to 444 with dt = 2 Making slow rhs at time 442 for fast variables advancing from 442 to 444 No-substepping time integration at level 1 to 444 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005531217903 0.003169849282 and volume-weighted sum 28428.99023 Subtracting 6.169485914e-06 from rhs in subdomain 0 Sum after subtraction -0.01513399184 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005469523021 MLMG: Initial residual (resid0) = 0.0005469523021 MLMG: Final Iter. 2 resid, resid/bnorm = 7.550152077e-07, 0.001380404108 MLMG: Timers: Solve = 0.000891548 Iter = 0.000663306 Bottom = 6.4357e-05 Time in solve 0.001341432 Max/L2 norm of divergence after solve at level 1 : 6.924790796e-06 0.0004188395396 and volume-weighted sum 28429.01367 Time integration of scalars at level 1 from 442 to 444 with dt = 2 using RHS created at 442 Making slow rhs at time 444 for fast variables advancing from 442 to 444 No-substepping time integration at level 1 to 444 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000584486872 0.003076779423 and volume-weighted sum 28429.00977 Subtracting 6.169490007e-06 from rhs in subdomain 0 Sum after subtraction -0.107451342 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005783173838 MLMG: Initial residual (resid0) = 0.0005783173838 MLMG: Final Iter. 2 resid, resid/bnorm = 6.544505595e-07, 0.001131645986 MLMG: Timers: Solve = 0.000893718 Iter = 0.000665008 Bottom = 6.2761e-05 Time in solve 0.00134726 Max/L2 norm of divergence after solve at level 1 : 6.830319762e-06 0.0004188066814 and volume-weighted sum 28429.0332 Time integration of scalars at level 1 from 442 to 444 with dt = 2 using RHS created at 444 Done with advance_dycore at level 1 [Level 1 step 222] Advanced 4608 cells Coarse STEP 222 ends. TIME = 444 DT = 2 Timestep time = 0.020830618 seconds. Coarse STEP 223 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.384776363 (terrain aware) 1.384776363 (terrain unaware) Anelastic dt at level 0 would be: 6.609775922 (terrain aware) 6.609775922 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2665442375 (terrain aware) 0.2665442375 (terrain unaware) Anelastic dt at level 1 would be: 3.059269144 (terrain aware) 3.059269144 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 223] ADVANCE from elapsed time = 444 to 446 with dt = 2 Making slow rhs at time 444 for fast variables advancing from 444 to 444.6666666667 Fast time integration at level 0 from 444 to 444.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 444 to 444.6666666667 with dt = 0.6666666666667 using RHS created at 444 Making slow rhs at time 444.6666666667 for fast variables advancing from 444 to 445 Fast time integration at level 0 from 444 to 444.5 with dt = 0.5 Fast time integration at level 0 from 444.5 to 445 with dt = 0.5 Time integration of scalars at level 0 from 444 to 445 with dt = 1 using RHS created at 444.6666666667 Making slow rhs at time 445 for fast variables advancing from 444 to 446 Fast time integration at level 0 from 444 to 444.5 with dt = 0.5 Fast time integration at level 0 from 444.5 to 445 with dt = 0.5 Fast time integration at level 0 from 445 to 445.5 with dt = 0.5 Fast time integration at level 0 from 445.5 to 446 with dt = 0.5 Time integration of scalars at level 0 from 444 to 446 with dt = 2 using RHS created at 445 Done with advance_dycore at level 0 [Level 0 step 223] Advanced 4096 cells [Level 1 step 223] ADVANCE from elapsed time = 444 to 446 with dt = 2 Making slow rhs at time 444 for fast variables advancing from 444 to 446 No-substepping time integration at level 1 to 446 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005671009421 0.003226322588 and volume-weighted sum 54839.10938 Subtracting 1.190084822e-05 from rhs in subdomain 0 Sum after subtraction -0.1258449554 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005552000948 MLMG: Initial residual (resid0) = 0.0005552000948 MLMG: Final Iter. 2 resid, resid/bnorm = 7.263770385e-07, 0.001308315783 MLMG: Timers: Solve = 0.000895941 Iter = 0.000678973 Bottom = 6.6015e-05 Time in solve 0.001366096 Max/L2 norm of divergence after solve at level 1 : 1.262903243e-05 0.0008078765823 and volume-weighted sum 54839.07031 Time integration of scalars at level 1 from 444 to 446 with dt = 2 using RHS created at 444 Making slow rhs at time 446 for fast variables advancing from 444 to 446 No-substepping time integration at level 1 to 446 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005985740572 0.003147275187 and volume-weighted sum 54839.10547 Subtracting 1.190084731e-05 from rhs in subdomain 0 Sum after subtraction -0.1003500074 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005866732099 MLMG: Initial residual (resid0) = 0.0005866732099 MLMG: Final Iter. 2 resid, resid/bnorm = 6.385307643e-07, 0.001088392572 MLMG: Timers: Solve = 0.000893429 Iter = 0.00067581 Bottom = 6.299e-05 Time in solve 0.00135907 Max/L2 norm of divergence after solve at level 1 : 1.253560185e-05 0.0008078600513 and volume-weighted sum 54839.12109 Time integration of scalars at level 1 from 444 to 446 with dt = 2 using RHS created at 446 Done with advance_dycore at level 1 [Level 1 step 223] Advanced 4608 cells Coarse STEP 223 ends. TIME = 446 DT = 2 Timestep time = 0.02110762 seconds. Coarse STEP 224 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.38408033 (terrain aware) 1.38408033 (terrain unaware) Anelastic dt at level 0 would be: 6.59391453 (terrain aware) 6.59391453 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2664254194 (terrain aware) 0.2664254194 (terrain unaware) Anelastic dt at level 1 would be: 3.046638324 (terrain aware) 3.046638324 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 224] ADVANCE from elapsed time = 446 to 448 with dt = 2 Making slow rhs at time 446 for fast variables advancing from 446 to 446.6666666667 Fast time integration at level 0 from 446 to 446.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 446 to 446.6666666667 with dt = 0.6666666666667 using RHS created at 446 Making slow rhs at time 446.6666666667 for fast variables advancing from 446 to 447 Fast time integration at level 0 from 446 to 446.5 with dt = 0.5 Fast time integration at level 0 from 446.5 to 447 with dt = 0.5 Time integration of scalars at level 0 from 446 to 447 with dt = 1 using RHS created at 446.6666666667 Making slow rhs at time 447 for fast variables advancing from 446 to 448 Fast time integration at level 0 from 446 to 446.5 with dt = 0.5 Fast time integration at level 0 from 446.5 to 447 with dt = 0.5 Fast time integration at level 0 from 447 to 447.5 with dt = 0.5 Fast time integration at level 0 from 447.5 to 448 with dt = 0.5 Time integration of scalars at level 0 from 446 to 448 with dt = 2 using RHS created at 447 Done with advance_dycore at level 0 [Level 0 step 224] Advanced 4096 cells [Level 1 step 224] ADVANCE from elapsed time = 446 to 448 with dt = 2 Making slow rhs at time 446 for fast variables advancing from 446 to 448 No-substepping time integration at level 1 to 448 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005818754435 0.003310593776 and volume-weighted sum 77380.3125 Subtracting 1.679260276e-05 from rhs in subdomain 0 Sum after subtraction -0.005587935448 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005650828243 MLMG: Initial residual (resid0) = 0.0005650828243 MLMG: Final Iter. 2 resid, resid/bnorm = 6.938935257e-07, 0.001227950095 MLMG: Timers: Solve = 0.00089297 Iter = 0.000668984 Bottom = 6.4718e-05 Time in solve 0.001339564 Max/L2 norm of divergence after solve at level 1 : 1.748651266e-05 0.001139931148 and volume-weighted sum 77380.34375 Time integration of scalars at level 1 from 446 to 448 with dt = 2 using RHS created at 446 Making slow rhs at time 448 for fast variables advancing from 446 to 448 No-substepping time integration at level 1 to 448 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005881693214 0.003242666367 and volume-weighted sum 77380.28906 Subtracting 1.679259731e-05 from rhs in subdomain 0 Sum after subtraction -0.07136259228 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005713767023 MLMG: Initial residual (resid0) = 0.0005713767023 MLMG: Final Iter. 2 resid, resid/bnorm = 5.978508852e-07, 0.001046334044 MLMG: Timers: Solve = 0.000882988 Iter = 0.000657496 Bottom = 6.2678e-05 Time in solve 0.001327329 Max/L2 norm of divergence after solve at level 1 : 1.739244908e-05 0.0011399223 and volume-weighted sum 77380.34375 Time integration of scalars at level 1 from 446 to 448 with dt = 2 using RHS created at 448 Done with advance_dycore at level 1 [Level 1 step 224] Advanced 4608 cells Coarse STEP 224 ends. TIME = 448 DT = 2 Timestep time = 0.021020405 seconds. Coarse STEP 225 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.383466551 (terrain aware) 1.383466551 (terrain unaware) Anelastic dt at level 0 would be: 6.579757235 (terrain aware) 6.579757235 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2663214838 (terrain aware) 0.2663214838 (terrain unaware) Anelastic dt at level 1 would be: 3.03474839 (terrain aware) 3.03474839 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 225] ADVANCE from elapsed time = 448 to 450 with dt = 2 Making slow rhs at time 448 for fast variables advancing from 448 to 448.6666666667 Fast time integration at level 0 from 448 to 448.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 448 to 448.6666666667 with dt = 0.6666666666667 using RHS created at 448 Making slow rhs at time 448.6666666667 for fast variables advancing from 448 to 449 Fast time integration at level 0 from 448 to 448.5 with dt = 0.5 Fast time integration at level 0 from 448.5 to 449 with dt = 0.5 Time integration of scalars at level 0 from 448 to 449 with dt = 1 using RHS created at 448.6666666667 Making slow rhs at time 449 for fast variables advancing from 448 to 450 Fast time integration at level 0 from 448 to 448.5 with dt = 0.5 Fast time integration at level 0 from 448.5 to 449 with dt = 0.5 Fast time integration at level 0 from 449 to 449.5 with dt = 0.5 Fast time integration at level 0 from 449.5 to 450 with dt = 0.5 Time integration of scalars at level 0 from 448 to 450 with dt = 2 using RHS created at 449 Done with advance_dycore at level 0 [Level 0 step 225] Advanced 4096 cells [Level 1 step 225] ADVANCE from elapsed time = 448 to 450 with dt = 2 Making slow rhs at time 448 for fast variables advancing from 448 to 450 No-substepping time integration at level 1 to 450 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005798432976 0.003434897866 and volume-weighted sum 90731.17969 Subtracting 1.968992547e-05 from rhs in subdomain 0 Sum after subtraction -0.04749745131 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005601533921 MLMG: Initial residual (resid0) = 0.0005601533921 MLMG: Final Iter. 2 resid, resid/bnorm = 1.127011956e-06, 0.002011970151 MLMG: Timers: Solve = 0.000887012 Iter = 0.000664912 Bottom = 6.6714e-05 Time in solve 0.001336561 Max/L2 norm of divergence after solve at level 1 : 2.081808634e-05 0.00133660424 and volume-weighted sum 90731.13281 Time integration of scalars at level 1 from 448 to 450 with dt = 2 using RHS created at 448 Making slow rhs at time 450 for fast variables advancing from 448 to 450 No-substepping time integration at level 1 to 450 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006008055061 0.003312554676 and volume-weighted sum 90731.13281 Subtracting 1.968991637e-05 from rhs in subdomain 0 Sum after subtraction -0.09557697922 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005811156007 MLMG: Initial residual (resid0) = 0.0005811156007 MLMG: Final Iter. 2 resid, resid/bnorm = 6.285263225e-07, 0.001081585651 MLMG: Timers: Solve = 0.000890047 Iter = 0.000667965 Bottom = 6.346e-05 Time in solve 0.001336083 Max/L2 norm of divergence after solve at level 1 : 2.031773329e-05 0.001336598303 and volume-weighted sum 90731.17188 Time integration of scalars at level 1 from 448 to 450 with dt = 2 using RHS created at 450 Done with advance_dycore at level 1 [Level 1 step 225] Advanced 4608 cells Coarse STEP 225 ends. TIME = 450 DT = 2 Timestep time = 0.020832772 seconds. Coarse STEP 226 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.382941732 (terrain aware) 1.382941732 (terrain unaware) Anelastic dt at level 0 would be: 6.56752517 (terrain aware) 6.56752517 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2662108799 (terrain aware) 0.2662108799 (terrain unaware) Anelastic dt at level 1 would be: 3.025107041 (terrain aware) 3.025107041 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 226] ADVANCE from elapsed time = 450 to 452 with dt = 2 Making slow rhs at time 450 for fast variables advancing from 450 to 450.6666666667 Fast time integration at level 0 from 450 to 450.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 450 to 450.6666666667 with dt = 0.6666666666667 using RHS created at 450 Making slow rhs at time 450.6666666667 for fast variables advancing from 450 to 451 Fast time integration at level 0 from 450 to 450.5 with dt = 0.5 Fast time integration at level 0 from 450.5 to 451 with dt = 0.5 Time integration of scalars at level 0 from 450 to 451 with dt = 1 using RHS created at 450.6666666667 Making slow rhs at time 451 for fast variables advancing from 450 to 452 Fast time integration at level 0 from 450 to 450.5 with dt = 0.5 Fast time integration at level 0 from 450.5 to 451 with dt = 0.5 Fast time integration at level 0 from 451 to 451.5 with dt = 0.5 Fast time integration at level 0 from 451.5 to 452 with dt = 0.5 Time integration of scalars at level 0 from 450 to 452 with dt = 2 using RHS created at 451 Done with advance_dycore at level 0 [Level 0 step 226] Advanced 4096 cells [Level 1 step 226] ADVANCE from elapsed time = 450 to 452 with dt = 2 Making slow rhs at time 450 for fast variables advancing from 450 to 452 No-substepping time integration at level 1 to 452 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000589132309 0.003513969481 and volume-weighted sum 91681.46875 Subtracting 1.989615157e-05 from rhs in subdomain 0 Sum after subtraction 0.03003515303 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005692361738 MLMG: Initial residual (resid0) = 0.0005692361738 MLMG: Final Iter. 2 resid, resid/bnorm = 1.295026095e-06, 0.002275024308 MLMG: Timers: Solve = 0.000878479 Iter = 0.000661146 Bottom = 6.6597e-05 Time in solve 0.001319204 Max/L2 norm of divergence after solve at level 1 : 2.119154669e-05 0.001350608538 and volume-weighted sum 91681.45312 Time integration of scalars at level 1 from 450 to 452 with dt = 2 using RHS created at 450 Making slow rhs at time 452 for fast variables advancing from 450 to 452 No-substepping time integration at level 1 to 452 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0006016157568 0.003313337918 and volume-weighted sum 91681.375 Subtracting 1.989613156e-05 from rhs in subdomain 0 Sum after subtraction 0.1372536719 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005817195633 MLMG: Initial residual (resid0) = 0.0005817195633 MLMG: Final Iter. 2 resid, resid/bnorm = 6.502959877e-07, 0.001117885695 MLMG: Timers: Solve = 0.000905992 Iter = 0.000688916 Bottom = 6.341e-05 Time in solve 0.001343272 Max/L2 norm of divergence after solve at level 1 : 2.054125071e-05 0.001350598759 and volume-weighted sum 91681.49219 Time integration of scalars at level 1 from 450 to 452 with dt = 2 using RHS created at 452 Done with advance_dycore at level 1 [Level 1 step 226] Advanced 4608 cells Coarse STEP 226 ends. TIME = 452 DT = 2 Timestep time = 0.020692093 seconds. Coarse STEP 227 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.382512728 (terrain aware) 1.382512728 (terrain unaware) Anelastic dt at level 0 would be: 6.557423375 (terrain aware) 6.557423375 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660924715 (terrain aware) 0.2660924715 (terrain unaware) Anelastic dt at level 1 would be: 3.017369166 (terrain aware) 3.017369166 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 227] ADVANCE from elapsed time = 452 to 454 with dt = 2 Making slow rhs at time 452 for fast variables advancing from 452 to 452.6666666667 Fast time integration at level 0 from 452 to 452.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 452 to 452.6666666667 with dt = 0.6666666666667 using RHS created at 452 Making slow rhs at time 452.6666666667 for fast variables advancing from 452 to 453 Fast time integration at level 0 from 452 to 452.5 with dt = 0.5 Fast time integration at level 0 from 452.5 to 453 with dt = 0.5 Time integration of scalars at level 0 from 452 to 453 with dt = 1 using RHS created at 452.6666666667 Making slow rhs at time 453 for fast variables advancing from 452 to 454 Fast time integration at level 0 from 452 to 452.5 with dt = 0.5 Fast time integration at level 0 from 452.5 to 453 with dt = 0.5 Fast time integration at level 0 from 453 to 453.5 with dt = 0.5 Fast time integration at level 0 from 453.5 to 454 with dt = 0.5 Time integration of scalars at level 0 from 452 to 454 with dt = 2 using RHS created at 453 Done with advance_dycore at level 0 [Level 0 step 227] Advanced 4096 cells [Level 1 step 227] ADVANCE from elapsed time = 452 to 454 with dt = 2 Making slow rhs at time 452 for fast variables advancing from 452 to 454 No-substepping time integration at level 1 to 454 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000564776361 0.003465235699 and volume-weighted sum 80086.67969 Subtracting 1.73799217e-05 from rhs in subdomain 0 Sum after subtraction 0.05873152986 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005473964266 MLMG: Initial residual (resid0) = 0.0005473964266 MLMG: Final Iter. 2 resid, resid/bnorm = 1.157411816e-06, 0.002114394214 MLMG: Timers: Solve = 0.000880062 Iter = 0.000654174 Bottom = 6.3804e-05 Time in solve 0.001331844 Max/L2 norm of divergence after solve at level 1 : 1.853541471e-05 0.00117980619 and volume-weighted sum 80086.71094 Time integration of scalars at level 1 from 452 to 454 with dt = 2 using RHS created at 452 Making slow rhs at time 454 for fast variables advancing from 452 to 454 No-substepping time integration at level 1 to 454 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005941390991 0.003242886392 and volume-weighted sum 80086.72656 Subtracting 1.737993261e-05 from rhs in subdomain 0 Sum after subtraction 0.1129228622 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005767591647 MLMG: Initial residual (resid0) = 0.0005767591647 MLMG: Final Iter. 2 resid, resid/bnorm = 6.510017556e-07, 0.001128723728 MLMG: Timers: Solve = 0.00121033 Iter = 0.000981239 Bottom = 6.4594e-05 Time in solve 0.001656682 Max/L2 norm of divergence after solve at level 1 : 1.803040504e-05 0.001179792103 and volume-weighted sum 80086.625 Time integration of scalars at level 1 from 452 to 454 with dt = 2 using RHS created at 454 Done with advance_dycore at level 1 [Level 1 step 227] Advanced 4608 cells Coarse STEP 227 ends. TIME = 454 DT = 2 Timestep time = 0.021269576 seconds. Coarse STEP 228 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.382182369 (terrain aware) 1.382182369 (terrain unaware) Anelastic dt at level 0 would be: 6.549547217 (terrain aware) 6.549547217 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265991274 (terrain aware) 0.265991274 (terrain unaware) Anelastic dt at level 1 would be: 3.005754605 (terrain aware) 3.005754605 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 228] ADVANCE from elapsed time = 454 to 456 with dt = 2 Making slow rhs at time 454 for fast variables advancing from 454 to 454.6666666667 Fast time integration at level 0 from 454 to 454.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 454 to 454.6666666667 with dt = 0.6666666666667 using RHS created at 454 Making slow rhs at time 454.6666666667 for fast variables advancing from 454 to 455 Fast time integration at level 0 from 454 to 454.5 with dt = 0.5 Fast time integration at level 0 from 454.5 to 455 with dt = 0.5 Time integration of scalars at level 0 from 454 to 455 with dt = 1 using RHS created at 454.6666666667 Making slow rhs at time 455 for fast variables advancing from 454 to 456 Fast time integration at level 0 from 454 to 454.5 with dt = 0.5 Fast time integration at level 0 from 454.5 to 455 with dt = 0.5 Fast time integration at level 0 from 455 to 455.5 with dt = 0.5 Fast time integration at level 0 from 455.5 to 456 with dt = 0.5 Time integration of scalars at level 0 from 454 to 456 with dt = 2 using RHS created at 455 Done with advance_dycore at level 0 [Level 0 step 228] Advanced 4096 cells [Level 1 step 228] ADVANCE from elapsed time = 454 to 456 with dt = 2 Making slow rhs at time 454 for fast variables advancing from 454 to 456 No-substepping time integration at level 1 to 456 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005661398172 0.00331189204 and volume-weighted sum 58220.05859 Subtracting 1.263456124e-05 from rhs in subdomain 0 Sum after subtraction 0.003026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005535052624 MLMG: Initial residual (resid0) = 0.0005535052624 MLMG: Final Iter. 2 resid, resid/bnorm = 8.601352874e-07, 0.001553978538 MLMG: Timers: Solve = 0.000877396 Iter = 0.000658972 Bottom = 6.336e-05 Time in solve 0.001343777 Max/L2 norm of divergence after solve at level 1 : 1.349486411e-05 0.0008576827822 and volume-weighted sum 58220.05859 Time integration of scalars at level 1 from 454 to 456 with dt = 2 using RHS created at 454 Making slow rhs at time 456 for fast variables advancing from 454 to 456 No-substepping time integration at level 1 to 456 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005876719952 0.003135550069 and volume-weighted sum 58220.05469 Subtracting 1.263456033e-05 from rhs in subdomain 0 Sum after subtraction -0.004889443517 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005750374403 MLMG: Initial residual (resid0) = 0.0005750374403 MLMG: Final Iter. 2 resid, resid/bnorm = 6.299233064e-07, 0.001095447456 MLMG: Timers: Solve = 0.000869437 Iter = 0.000656576 Bottom = 6.3997e-05 Time in solve 0.001333489 Max/L2 norm of divergence after solve at level 1 : 1.327507198e-05 0.0008576675318 and volume-weighted sum 58220.05078 Time integration of scalars at level 1 from 454 to 456 with dt = 2 using RHS created at 456 Done with advance_dycore at level 1 [Level 1 step 228] Advanced 4608 cells Coarse STEP 228 ends. TIME = 456 DT = 2 Timestep time = 0.020648517 seconds. Coarse STEP 229 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.381952891 (terrain aware) 1.381952891 (terrain unaware) Anelastic dt at level 0 would be: 6.543926499 (terrain aware) 6.543926499 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659091686 (terrain aware) 0.2659091686 (terrain unaware) Anelastic dt at level 1 would be: 2.996848777 (terrain aware) 2.996848777 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 229] ADVANCE from elapsed time = 456 to 458 with dt = 2 Making slow rhs at time 456 for fast variables advancing from 456 to 456.6666666667 Fast time integration at level 0 from 456 to 456.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 456 to 456.6666666667 with dt = 0.6666666666667 using RHS created at 456 Making slow rhs at time 456.6666666667 for fast variables advancing from 456 to 457 Fast time integration at level 0 from 456 to 456.5 with dt = 0.5 Fast time integration at level 0 from 456.5 to 457 with dt = 0.5 Time integration of scalars at level 0 from 456 to 457 with dt = 1 using RHS created at 456.6666666667 Making slow rhs at time 457 for fast variables advancing from 456 to 458 Fast time integration at level 0 from 456 to 456.5 with dt = 0.5 Fast time integration at level 0 from 456.5 to 457 with dt = 0.5 Fast time integration at level 0 from 457 to 457.5 with dt = 0.5 Fast time integration at level 0 from 457.5 to 458 with dt = 0.5 Time integration of scalars at level 0 from 456 to 458 with dt = 2 using RHS created at 457 Done with advance_dycore at level 0 [Level 0 step 229] Advanced 4096 cells [Level 1 step 229] ADVANCE from elapsed time = 456 to 458 with dt = 2 Making slow rhs at time 456 for fast variables advancing from 456 to 458 No-substepping time integration at level 1 to 458 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005495809019 0.003143299604 and volume-weighted sum 29657.21484 Subtracting 6.436027434e-06 from rhs in subdomain 0 Sum after subtraction -0.05780020729 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005431448808 MLMG: Initial residual (resid0) = 0.0005431448808 MLMG: Final Iter. 2 resid, resid/bnorm = 5.634792615e-07, 0.001037438284 MLMG: Timers: Solve = 0.000874792 Iter = 0.000659953 Bottom = 6.2708e-05 Time in solve 0.001333045 Max/L2 norm of divergence after solve at level 1 : 7.000053301e-06 0.0004369188391 and volume-weighted sum 29657.21875 Time integration of scalars at level 1 from 456 to 458 with dt = 2 using RHS created at 456 Making slow rhs at time 458 for fast variables advancing from 456 to 458 No-substepping time integration at level 1 to 458 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005619619042 0.003042520722 and volume-weighted sum 29657.20117 Subtracting 6.436024705e-06 from rhs in subdomain 0 Sum after subtraction -0.09825453162 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005555258831 MLMG: Initial residual (resid0) = 0.0005555258831 MLMG: Final Iter. 2 resid, resid/bnorm = 5.895708455e-07, 0.001061284216 MLMG: Timers: Solve = 0.000893093 Iter = 0.00066616 Bottom = 6.2294e-05 Time in solve 0.001361919 Max/L2 norm of divergence after solve at level 1 : 7.013790309e-06 0.000436900591 and volume-weighted sum 29657.21484 Time integration of scalars at level 1 from 456 to 458 with dt = 2 using RHS created at 458 Done with advance_dycore at level 1 [Level 1 step 229] Advanced 4608 cells Coarse STEP 229 ends. TIME = 458 DT = 2 Timestep time = 0.02089432 seconds. Coarse STEP 230 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.381255368 (terrain aware) 1.381255368 (terrain unaware) Anelastic dt at level 0 would be: 6.52954211 (terrain aware) 6.52954211 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265797205 (terrain aware) 0.265797205 (terrain unaware) Anelastic dt at level 1 would be: 2.990911558 (terrain aware) 2.990911558 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 230] ADVANCE from elapsed time = 458 to 460 with dt = 2 Making slow rhs at time 458 for fast variables advancing from 458 to 458.6666666667 Fast time integration at level 0 from 458 to 458.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 458 to 458.6666666667 with dt = 0.6666666666667 using RHS created at 458 Making slow rhs at time 458.6666666667 for fast variables advancing from 458 to 459 Fast time integration at level 0 from 458 to 458.5 with dt = 0.5 Fast time integration at level 0 from 458.5 to 459 with dt = 0.5 Time integration of scalars at level 0 from 458 to 459 with dt = 1 using RHS created at 458.6666666667 Making slow rhs at time 459 for fast variables advancing from 458 to 460 Fast time integration at level 0 from 458 to 458.5 with dt = 0.5 Fast time integration at level 0 from 458.5 to 459 with dt = 0.5 Fast time integration at level 0 from 459 to 459.5 with dt = 0.5 Fast time integration at level 0 from 459.5 to 460 with dt = 0.5 Time integration of scalars at level 0 from 458 to 460 with dt = 2 using RHS created at 459 Done with advance_dycore at level 0 [Level 0 step 230] Advanced 4096 cells [Level 1 step 230] ADVANCE from elapsed time = 458 to 460 with dt = 2 Making slow rhs at time 458 for fast variables advancing from 458 to 460 No-substepping time integration at level 1 to 460 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000542934984 0.003047174541 and volume-weighted sum -1628.546021 Subtracting -3.534171071e-07 from rhs in subdomain 0 Sum after subtraction 0.03725290298 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005432884209 MLMG: Initial residual (resid0) = 0.0005432884209 MLMG: Final Iter. 2 resid, resid/bnorm = 5.140250323e-07, 0.0009461365407 MLMG: Timers: Solve = 0.000886603 Iter = 0.00066265 Bottom = 6.3698e-05 Time in solve 0.001331387 Max/L2 norm of divergence after solve at level 1 : 8.707866073e-07 2.428187327e-05 and volume-weighted sum -1628.503296 Time integration of scalars at level 1 from 458 to 460 with dt = 2 using RHS created at 458 Making slow rhs at time 460 for fast variables advancing from 458 to 460 No-substepping time integration at level 1 to 460 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005580820143 0.003007462481 and volume-weighted sum -1628.485962 Subtracting -3.534040616e-07 from rhs in subdomain 0 Sum after subtraction 0.008149072528 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000558435393 MLMG: Initial residual (resid0) = 0.000558435393 MLMG: Final Iter. 2 resid, resid/bnorm = 6.189075066e-07, 0.001108288416 MLMG: Timers: Solve = 0.000877551 Iter = 0.000659576 Bottom = 6.3416e-05 Time in solve 0.001333474 Max/L2 norm of divergence after solve at level 1 : 7.583294064e-07 2.415058952e-05 and volume-weighted sum -1628.52832 Time integration of scalars at level 1 from 458 to 460 with dt = 2 using RHS created at 460 Done with advance_dycore at level 1 [Level 1 step 230] Advanced 4608 cells Coarse STEP 230 ends. TIME = 460 DT = 2 Timestep time = 0.020825487 seconds. Coarse STEP 231 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.380493322 (terrain aware) 1.380493322 (terrain unaware) Anelastic dt at level 0 would be: 6.512416504 (terrain aware) 6.512416504 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656951693 (terrain aware) 0.2656951693 (terrain unaware) Anelastic dt at level 1 would be: 2.982340411 (terrain aware) 2.982340411 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 231] ADVANCE from elapsed time = 460 to 462 with dt = 2 Making slow rhs at time 460 for fast variables advancing from 460 to 460.6666666667 Fast time integration at level 0 from 460 to 460.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 460 to 460.6666666667 with dt = 0.6666666666667 using RHS created at 460 Making slow rhs at time 460.6666666667 for fast variables advancing from 460 to 461 Fast time integration at level 0 from 460 to 460.5 with dt = 0.5 Fast time integration at level 0 from 460.5 to 461 with dt = 0.5 Time integration of scalars at level 0 from 460 to 461 with dt = 1 using RHS created at 460.6666666667 Making slow rhs at time 461 for fast variables advancing from 460 to 462 Fast time integration at level 0 from 460 to 460.5 with dt = 0.5 Fast time integration at level 0 from 460.5 to 461 with dt = 0.5 Fast time integration at level 0 from 461 to 461.5 with dt = 0.5 Fast time integration at level 0 from 461.5 to 462 with dt = 0.5 Time integration of scalars at level 0 from 460 to 462 with dt = 2 using RHS created at 461 Done with advance_dycore at level 0 [Level 0 step 231] Advanced 4096 cells [Level 1 step 231] ADVANCE from elapsed time = 460 to 462 with dt = 2 Making slow rhs at time 460 for fast variables advancing from 460 to 462 No-substepping time integration at level 1 to 462 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005384162068 0.003062071046 and volume-weighted sum -31394.7793 Subtracting -6.813103028e-06 from rhs in subdomain 0 Sum after subtraction -0.008731149137 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005452292971 MLMG: Initial residual (resid0) = 0.0005452292971 MLMG: Final Iter. 2 resid, resid/bnorm = 6.381956155e-07, 0.00117050868 MLMG: Timers: Solve = 0.00088253 Iter = 0.000666314 Bottom = 6.6236e-05 Time in solve 0.001341375 Max/L2 norm of divergence after solve at level 1 : 7.45523721e-06 0.0004625001166 and volume-weighted sum -31394.72656 Time integration of scalars at level 1 from 460 to 462 with dt = 2 using RHS created at 460 Making slow rhs at time 462 for fast variables advancing from 460 to 462 No-substepping time integration at level 1 to 462 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005480572581 0.003039933974 and volume-weighted sum -31394.76562 Subtracting -6.813100299e-06 from rhs in subdomain 0 Sum after subtraction 0.05343463272 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005548703484 MLMG: Initial residual (resid0) = 0.0005548703484 MLMG: Final Iter. 2 resid, resid/bnorm = 6.408954505e-07, 0.001155036385 MLMG: Timers: Solve = 0.000873719 Iter = 0.000655781 Bottom = 5.7076e-05 Time in solve 0.001322155 Max/L2 norm of divergence after solve at level 1 : 7.196795195e-06 0.0004624966241 and volume-weighted sum -31394.75 Time integration of scalars at level 1 from 460 to 462 with dt = 2 using RHS created at 462 Done with advance_dycore at level 1 [Level 1 step 231] Advanced 4608 cells Coarse STEP 231 ends. TIME = 462 DT = 2 Timestep time = 0.021844381 seconds. Coarse STEP 232 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.379790137 (terrain aware) 1.379790137 (terrain unaware) Anelastic dt at level 0 would be: 6.496593855 (terrain aware) 6.496593855 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656134178 (terrain aware) 0.2656134178 (terrain unaware) Anelastic dt at level 1 would be: 2.973958508 (terrain aware) 2.973958508 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 232] ADVANCE from elapsed time = 462 to 464 with dt = 2 Making slow rhs at time 462 for fast variables advancing from 462 to 462.6666666667 Fast time integration at level 0 from 462 to 462.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 462 to 462.6666666667 with dt = 0.6666666666667 using RHS created at 462 Making slow rhs at time 462.6666666667 for fast variables advancing from 462 to 463 Fast time integration at level 0 from 462 to 462.5 with dt = 0.5 Fast time integration at level 0 from 462.5 to 463 with dt = 0.5 Time integration of scalars at level 0 from 462 to 463 with dt = 1 using RHS created at 462.6666666667 Making slow rhs at time 463 for fast variables advancing from 462 to 464 Fast time integration at level 0 from 462 to 462.5 with dt = 0.5 Fast time integration at level 0 from 462.5 to 463 with dt = 0.5 Fast time integration at level 0 from 463 to 463.5 with dt = 0.5 Fast time integration at level 0 from 463.5 to 464 with dt = 0.5 Time integration of scalars at level 0 from 462 to 464 with dt = 2 using RHS created at 463 Done with advance_dycore at level 0 [Level 0 step 232] Advanced 4096 cells [Level 1 step 232] ADVANCE from elapsed time = 462 to 464 with dt = 2 Making slow rhs at time 462 for fast variables advancing from 462 to 464 No-substepping time integration at level 1 to 464 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000528363511 0.003167828545 and volume-weighted sum -55340.43359 Subtracting -1.200964289e-05 from rhs in subdomain 0 Sum after subtraction 0.02130400389 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005403731484 MLMG: Initial residual (resid0) = 0.0005403731484 MLMG: Final Iter. 2 resid, resid/bnorm = 6.913239758e-07, 0.001279345481 MLMG: Timers: Solve = 0.001236428 Iter = 0.000658192 Bottom = 6.4471e-05 Time in solve 0.001690754 Max/L2 norm of divergence after solve at level 1 : 1.27023086e-05 0.0008152512019 and volume-weighted sum -55340.41797 Time integration of scalars at level 1 from 462 to 464 with dt = 2 using RHS created at 462 Making slow rhs at time 464 for fast variables advancing from 462 to 464 No-substepping time integration at level 1 to 464 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005548093468 0.003111331491 and volume-weighted sum -55340.42969 Subtracting -1.200964198e-05 from rhs in subdomain 0 Sum after subtraction 0.0752042979 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005668189842 MLMG: Initial residual (resid0) = 0.0005668189842 MLMG: Final Iter. 2 resid, resid/bnorm = 6.429254427e-07, 0.001134269405 MLMG: Timers: Solve = 0.000874804 Iter = 0.000657944 Bottom = 6.3518e-05 Time in solve 0.001313186 Max/L2 norm of divergence after solve at level 1 : 1.243175939e-05 0.0008152470691 and volume-weighted sum -55340.41797 Time integration of scalars at level 1 from 462 to 464 with dt = 2 using RHS created at 464 Done with advance_dycore at level 1 [Level 1 step 232] Advanced 4608 cells Coarse STEP 232 ends. TIME = 464 DT = 2 Timestep time = 0.020978827 seconds. Coarse STEP 233 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.379152814 (terrain aware) 1.379152814 (terrain unaware) Anelastic dt at level 0 would be: 6.482217215 (terrain aware) 6.482217215 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655206022 (terrain aware) 0.2655206022 (terrain unaware) Anelastic dt at level 1 would be: 2.968725816 (terrain aware) 2.968725816 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 233] ADVANCE from elapsed time = 464 to 466 with dt = 2 Making slow rhs at time 464 for fast variables advancing from 464 to 464.6666666667 Fast time integration at level 0 from 464 to 464.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 464 to 464.6666666667 with dt = 0.6666666666667 using RHS created at 464 Making slow rhs at time 464.6666666667 for fast variables advancing from 464 to 465 Fast time integration at level 0 from 464 to 464.5 with dt = 0.5 Fast time integration at level 0 from 464.5 to 465 with dt = 0.5 Time integration of scalars at level 0 from 464 to 465 with dt = 1 using RHS created at 464.6666666667 Making slow rhs at time 465 for fast variables advancing from 464 to 466 Fast time integration at level 0 from 464 to 464.5 with dt = 0.5 Fast time integration at level 0 from 464.5 to 465 with dt = 0.5 Fast time integration at level 0 from 465 to 465.5 with dt = 0.5 Fast time integration at level 0 from 465.5 to 466 with dt = 0.5 Time integration of scalars at level 0 from 464 to 466 with dt = 2 using RHS created at 465 Done with advance_dycore at level 0 [Level 0 step 233] Advanced 4096 cells [Level 1 step 233] ADVANCE from elapsed time = 464 to 466 with dt = 2 Making slow rhs at time 464 for fast variables advancing from 464 to 466 No-substepping time integration at level 1 to 466 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005232151598 0.00330099999 and volume-weighted sum -69957.625 Subtracting -1.518177669e-05 from rhs in subdomain 0 Sum after subtraction -0.08748611808 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005383969401 MLMG: Initial residual (resid0) = 0.0005383969401 MLMG: Final Iter. 2 resid, resid/bnorm = 1.05157892e-06, 0.001953166677 MLMG: Timers: Solve = 0.000889889 Iter = 0.000668768 Bottom = 6.6665e-05 Time in solve 0.001329662 Max/L2 norm of divergence after solve at level 1 : 1.623458229e-05 0.001030584914 and volume-weighted sum -69957.625 Time integration of scalars at level 1 from 464 to 466 with dt = 2 using RHS created at 464 Making slow rhs at time 466 for fast variables advancing from 464 to 466 No-substepping time integration at level 1 to 466 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005431268364 0.003174225101 and volume-weighted sum -69957.60938 Subtracting -1.518177305e-05 from rhs in subdomain 0 Sum after subtraction -0.01362059265 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005583086167 MLMG: Initial residual (resid0) = 0.0005583086167 MLMG: Final Iter. 2 resid, resid/bnorm = 6.237387424e-07, 0.001117193489 MLMG: Timers: Solve = 0.000880727 Iter = 0.000658955 Bottom = 6.3529e-05 Time in solve 0.001317881 Max/L2 norm of divergence after solve at level 1 : 1.558265649e-05 0.001030575717 and volume-weighted sum -69957.61719 Time integration of scalars at level 1 from 464 to 466 with dt = 2 using RHS created at 466 Done with advance_dycore at level 1 [Level 1 step 233] Advanced 4608 cells Coarse STEP 233 ends. TIME = 466 DT = 2 Timestep time = 0.02061096 seconds. Coarse STEP 234 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.378592679 (terrain aware) 1.378592679 (terrain unaware) Anelastic dt at level 0 would be: 6.469525002 (terrain aware) 6.469525002 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654185107 (terrain aware) 0.2654185107 (terrain unaware) Anelastic dt at level 1 would be: 2.960459248 (terrain aware) 2.960459248 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 234] ADVANCE from elapsed time = 466 to 468 with dt = 2 Making slow rhs at time 466 for fast variables advancing from 466 to 466.6666666667 Fast time integration at level 0 from 466 to 466.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 466 to 466.6666666667 with dt = 0.6666666666667 using RHS created at 466 Making slow rhs at time 466.6666666667 for fast variables advancing from 466 to 467 Fast time integration at level 0 from 466 to 466.5 with dt = 0.5 Fast time integration at level 0 from 466.5 to 467 with dt = 0.5 Time integration of scalars at level 0 from 466 to 467 with dt = 1 using RHS created at 466.6666666667 Making slow rhs at time 467 for fast variables advancing from 466 to 468 Fast time integration at level 0 from 466 to 466.5 with dt = 0.5 Fast time integration at level 0 from 466.5 to 467 with dt = 0.5 Fast time integration at level 0 from 467 to 467.5 with dt = 0.5 Fast time integration at level 0 from 467.5 to 468 with dt = 0.5 Time integration of scalars at level 0 from 466 to 468 with dt = 2 using RHS created at 467 Done with advance_dycore at level 0 [Level 0 step 234] Advanced 4096 cells [Level 1 step 234] ADVANCE from elapsed time = 466 to 468 with dt = 2 Making slow rhs at time 466 for fast variables advancing from 466 to 468 No-substepping time integration at level 1 to 468 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005249362439 0.003378465772 and volume-weighted sum -73502.71094 Subtracting -1.595110916e-05 from rhs in subdomain 0 Sum after subtraction -0.104890205 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005408873549 MLMG: Initial residual (resid0) = 0.0005408873549 MLMG: Final Iter. 2 resid, resid/bnorm = 1.455397978e-06, 0.002690759953 MLMG: Timers: Solve = 0.00088655 Iter = 0.000661684 Bottom = 6.4876e-05 Time in solve 0.001321443 Max/L2 norm of divergence after solve at level 1 : 1.740967855e-05 0.001082815812 and volume-weighted sum -73502.65625 Time integration of scalars at level 1 from 466 to 468 with dt = 2 using RHS created at 466 Making slow rhs at time 468 for fast variables advancing from 466 to 468 No-substepping time integration at level 1 to 468 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005401130766 0.00319177541 and volume-weighted sum -73502.76562 Subtracting -1.59511219e-05 from rhs in subdomain 0 Sum after subtraction 0.09743962437 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005560641875 MLMG: Initial residual (resid0) = 0.0005560641875 MLMG: Final Iter. 2 resid, resid/bnorm = 6.156624295e-07, 0.001107178745 MLMG: Timers: Solve = 0.000889333 Iter = 0.000668743 Bottom = 6.902e-05 Time in solve 0.001330571 Max/L2 norm of divergence after solve at level 1 : 1.637276728e-05 0.001082801027 and volume-weighted sum -73502.65625 Time integration of scalars at level 1 from 466 to 468 with dt = 2 using RHS created at 468 Done with advance_dycore at level 1 [Level 1 step 234] Advanced 4608 cells Coarse STEP 234 ends. TIME = 468 DT = 2 Timestep time = 0.020962123 seconds. Coarse STEP 235 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.37812672 (terrain aware) 1.37812672 (terrain unaware) Anelastic dt at level 0 would be: 6.458870672 (terrain aware) 6.458870672 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653441725 (terrain aware) 0.2653441725 (terrain unaware) Anelastic dt at level 1 would be: 2.950709716 (terrain aware) 2.950709716 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 235] ADVANCE from elapsed time = 468 to 470 with dt = 2 Making slow rhs at time 468 for fast variables advancing from 468 to 468.6666666667 Fast time integration at level 0 from 468 to 468.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 468 to 468.6666666667 with dt = 0.6666666666667 using RHS created at 468 Making slow rhs at time 468.6666666667 for fast variables advancing from 468 to 469 Fast time integration at level 0 from 468 to 468.5 with dt = 0.5 Fast time integration at level 0 from 468.5 to 469 with dt = 0.5 Time integration of scalars at level 0 from 468 to 469 with dt = 1 using RHS created at 468.6666666667 Making slow rhs at time 469 for fast variables advancing from 468 to 470 Fast time integration at level 0 from 468 to 468.5 with dt = 0.5 Fast time integration at level 0 from 468.5 to 469 with dt = 0.5 Fast time integration at level 0 from 469 to 469.5 with dt = 0.5 Fast time integration at level 0 from 469.5 to 470 with dt = 0.5 Time integration of scalars at level 0 from 468 to 470 with dt = 2 using RHS created at 469 Done with advance_dycore at level 0 [Level 0 step 235] Advanced 4096 cells [Level 1 step 235] ADVANCE from elapsed time = 468 to 470 with dt = 2 Making slow rhs at time 468 for fast variables advancing from 468 to 470 No-substepping time integration at level 1 to 470 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005085431039 0.003337510396 and volume-weighted sum -66885.33594 Subtracting -1.451504704e-05 from rhs in subdomain 0 Sum after subtraction -0.004307366908 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005230581737 MLMG: Initial residual (resid0) = 0.0005230581737 MLMG: Final Iter. 2 resid, resid/bnorm = 1.475083536e-06, 0.002820113674 MLMG: Timers: Solve = 0.000922705 Iter = 0.00069681 Bottom = 6.1737e-05 Time in solve 0.001362395 Max/L2 norm of divergence after solve at level 1 : 1.59884803e-05 0.0009853353258 and volume-weighted sum -66885.34375 Time integration of scalars at level 1 from 468 to 470 with dt = 2 using RHS created at 468 Making slow rhs at time 470 for fast variables advancing from 468 to 470 No-substepping time integration at level 1 to 470 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005268473178 0.003160359338 and volume-weighted sum -66885.39062 Subtracting -1.451505887e-05 from rhs in subdomain 0 Sum after subtraction -0.005471520126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005413623876 MLMG: Initial residual (resid0) = 0.0005413623876 MLMG: Final Iter. 2 resid, resid/bnorm = 6.55563781e-07, 0.001210951828 MLMG: Timers: Solve = 0.00089106 Iter = 0.0006625 Bottom = 6.4194e-05 Time in solve 0.001342851 Max/L2 norm of divergence after solve at level 1 : 1.496258483e-05 0.0009853179799 and volume-weighted sum -66885.28906 Time integration of scalars at level 1 from 468 to 470 with dt = 2 using RHS created at 470 Done with advance_dycore at level 1 [Level 1 step 235] Advanced 4608 cells Coarse STEP 235 ends. TIME = 470 DT = 2 Timestep time = 0.020932553 seconds. Coarse STEP 236 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.377777437 (terrain aware) 1.377777437 (terrain unaware) Anelastic dt at level 0 would be: 6.450696491 (terrain aware) 6.450696491 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652143834 (terrain aware) 0.2652143834 (terrain unaware) Anelastic dt at level 1 would be: 2.943824784 (terrain aware) 2.943824784 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 236] ADVANCE from elapsed time = 470 to 472 with dt = 2 Making slow rhs at time 470 for fast variables advancing from 470 to 470.6666666667 Fast time integration at level 0 from 470 to 470.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 470 to 470.6666666667 with dt = 0.6666666666667 using RHS created at 470 Making slow rhs at time 470.6666666667 for fast variables advancing from 470 to 471 Fast time integration at level 0 from 470 to 470.5 with dt = 0.5 Fast time integration at level 0 from 470.5 to 471 with dt = 0.5 Time integration of scalars at level 0 from 470 to 471 with dt = 1 using RHS created at 470.6666666667 Making slow rhs at time 471 for fast variables advancing from 470 to 472 Fast time integration at level 0 from 470 to 470.5 with dt = 0.5 Fast time integration at level 0 from 470.5 to 471 with dt = 0.5 Fast time integration at level 0 from 471 to 471.5 with dt = 0.5 Fast time integration at level 0 from 471.5 to 472 with dt = 0.5 Time integration of scalars at level 0 from 470 to 472 with dt = 2 using RHS created at 471 Done with advance_dycore at level 0 [Level 0 step 236] Advanced 4096 cells [Level 1 step 236] ADVANCE from elapsed time = 470 to 472 with dt = 2 Making slow rhs at time 470 for fast variables advancing from 470 to 472 No-substepping time integration at level 1 to 472 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005352981389 0.003199873026 and volume-weighted sum -53472.81641 Subtracting -1.160434385e-05 from rhs in subdomain 0 Sum after subtraction 0.01862645149 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005469024763 MLMG: Initial residual (resid0) = 0.0005469024763 MLMG: Final Iter. 2 resid, resid/bnorm = 1.068156735e-06, 0.001953102765 MLMG: Timers: Solve = 0.000899189 Iter = 0.000670508 Bottom = 6.4118e-05 Time in solve 0.001354317 Max/L2 norm of divergence after solve at level 1 : 1.267134212e-05 0.0007877457538 and volume-weighted sum -53472.80469 Time integration of scalars at level 1 from 470 to 472 with dt = 2 using RHS created at 470 Making slow rhs at time 472 for fast variables advancing from 470 to 472 No-substepping time integration at level 1 to 472 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005385335535 0.00310584018 and volume-weighted sum -53472.82422 Subtracting -1.160434567e-05 from rhs in subdomain 0 Sum after subtraction 0.09324867278 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000550137891 MLMG: Initial residual (resid0) = 0.000550137891 MLMG: Final Iter. 2 resid, resid/bnorm = 6.754125934e-07, 0.001227715053 MLMG: Timers: Solve = 0.00089821 Iter = 0.000670196 Bottom = 6.3761e-05 Time in solve 0.001346811 Max/L2 norm of divergence after solve at level 1 : 1.206435263e-05 0.0007877342287 and volume-weighted sum -53472.83203 Time integration of scalars at level 1 from 470 to 472 with dt = 2 using RHS created at 472 Done with advance_dycore at level 1 [Level 1 step 236] Advanced 4608 cells Coarse STEP 236 ends. TIME = 472 DT = 2 Timestep time = 0.020817116 seconds. Coarse STEP 237 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.377568969 (terrain aware) 1.377568969 (terrain unaware) Anelastic dt at level 0 would be: 6.445445322 (terrain aware) 6.445445322 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650994582 (terrain aware) 0.2650994582 (terrain unaware) Anelastic dt at level 1 would be: 2.932410196 (terrain aware) 2.932410196 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 237] ADVANCE from elapsed time = 472 to 474 with dt = 2 Making slow rhs at time 472 for fast variables advancing from 472 to 472.6666666667 Fast time integration at level 0 from 472 to 472.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 472 to 472.6666666667 with dt = 0.6666666666667 using RHS created at 472 Making slow rhs at time 472.6666666667 for fast variables advancing from 472 to 473 Fast time integration at level 0 from 472 to 472.5 with dt = 0.5 Fast time integration at level 0 from 472.5 to 473 with dt = 0.5 Time integration of scalars at level 0 from 472 to 473 with dt = 1 using RHS created at 472.6666666667 Making slow rhs at time 473 for fast variables advancing from 472 to 474 Fast time integration at level 0 from 472 to 472.5 with dt = 0.5 Fast time integration at level 0 from 472.5 to 473 with dt = 0.5 Fast time integration at level 0 from 473 to 473.5 with dt = 0.5 Fast time integration at level 0 from 473.5 to 474 with dt = 0.5 Time integration of scalars at level 0 from 472 to 474 with dt = 2 using RHS created at 473 Done with advance_dycore at level 0 [Level 0 step 237] Advanced 4096 cells [Level 1 step 237] ADVANCE from elapsed time = 472 to 474 with dt = 2 Making slow rhs at time 472 for fast variables advancing from 472 to 474 No-substepping time integration at level 1 to 474 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005263146013 0.003077235306 and volume-weighted sum -37654.60938 Subtracting -8.171573427e-06 from rhs in subdomain 0 Sum after subtraction -0.02107117325 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005344862002 MLMG: Initial residual (resid0) = 0.0005344862002 MLMG: Final Iter. 2 resid, resid/bnorm = 6.866539479e-07, 0.001284699072 MLMG: Timers: Solve = 0.000903136 Iter = 0.000671935 Bottom = 6.444e-05 Time in solve 0.001358151 Max/L2 norm of divergence after solve at level 1 : 8.587026969e-06 0.0005547147593 and volume-weighted sum -37654.58594 Time integration of scalars at level 1 from 472 to 474 with dt = 2 using RHS created at 472 Making slow rhs at time 474 for fast variables advancing from 472 to 474 No-substepping time integration at level 1 to 474 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005467701703 0.003056657966 and volume-weighted sum -37654.64844 Subtracting -8.171581612e-06 from rhs in subdomain 0 Sum after subtraction -0.002037268132 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005549417692 MLMG: Initial residual (resid0) = 0.0005549417692 MLMG: Final Iter. 2 resid, resid/bnorm = 6.7394285e-07, 0.001214438817 MLMG: Timers: Solve = 0.000897374 Iter = 0.000664526 Bottom = 6.5316e-05 Time in solve 0.001388047 Max/L2 norm of divergence after solve at level 1 : 8.618691936e-06 0.0005547127803 and volume-weighted sum -37654.625 Time integration of scalars at level 1 from 472 to 474 with dt = 2 using RHS created at 474 Done with advance_dycore at level 1 [Level 1 step 237] Advanced 4608 cells Coarse STEP 237 ends. TIME = 474 DT = 2 Timestep time = 0.020897146 seconds. Coarse STEP 238 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376992891 (terrain aware) 1.376992891 (terrain unaware) Anelastic dt at level 0 would be: 6.437368297 (terrain aware) 6.437368297 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650157695 (terrain aware) 0.2650157695 (terrain unaware) Anelastic dt at level 1 would be: 2.92491074 (terrain aware) 2.92491074 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 238] ADVANCE from elapsed time = 474 to 476 with dt = 2 Making slow rhs at time 474 for fast variables advancing from 474 to 474.6666666667 Fast time integration at level 0 from 474 to 474.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 474 to 474.6666666667 with dt = 0.6666666666667 using RHS created at 474 Making slow rhs at time 474.6666666667 for fast variables advancing from 474 to 475 Fast time integration at level 0 from 474 to 474.5 with dt = 0.5 Fast time integration at level 0 from 474.5 to 475 with dt = 0.5 Time integration of scalars at level 0 from 474 to 475 with dt = 1 using RHS created at 474.6666666667 Making slow rhs at time 475 for fast variables advancing from 474 to 476 Fast time integration at level 0 from 474 to 474.5 with dt = 0.5 Fast time integration at level 0 from 474.5 to 475 with dt = 0.5 Fast time integration at level 0 from 475 to 475.5 with dt = 0.5 Fast time integration at level 0 from 475.5 to 476 with dt = 0.5 Time integration of scalars at level 0 from 474 to 476 with dt = 2 using RHS created at 475 Done with advance_dycore at level 0 [Level 0 step 238] Advanced 4096 cells [Level 1 step 238] ADVANCE from elapsed time = 474 to 476 with dt = 2 Making slow rhs at time 474 for fast variables advancing from 474 to 476 No-substepping time integration at level 1 to 476 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005251020193 0.003033056157 and volume-weighted sum -22819.34375 Subtracting -4.952114523e-06 from rhs in subdomain 0 Sum after subtraction -0.04016328603 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005300541525 MLMG: Initial residual (resid0) = 0.0005300541525 MLMG: Final Iter. 2 resid, resid/bnorm = 6.51451046e-07, 0.001229027286 MLMG: Timers: Solve = 0.000897314 Iter = 0.000675061 Bottom = 6.6625e-05 Time in solve 0.001350092 Max/L2 norm of divergence after solve at level 1 : 5.405396223e-06 0.0003361729905 and volume-weighted sum -22819.32031 Time integration of scalars at level 1 from 474 to 476 with dt = 2 using RHS created at 474 Making slow rhs at time 476 for fast variables advancing from 474 to 476 No-substepping time integration at level 1 to 476 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005362313241 0.003025530605 and volume-weighted sum -22819.34766 Subtracting -4.952115432e-06 from rhs in subdomain 0 Sum after subtraction -0.04976755008 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005411834572 MLMG: Initial residual (resid0) = 0.0005411834572 MLMG: Final Iter. 2 resid, resid/bnorm = 6.516347639e-07, 0.001204092172 MLMG: Timers: Solve = 0.001144144 Iter = 0.000921075 Bottom = 6.5209e-05 Time in solve 0.001598353 Max/L2 norm of divergence after solve at level 1 : 5.395850167e-06 0.0003361737181 and volume-weighted sum -22819.30469 Time integration of scalars at level 1 from 474 to 476 with dt = 2 using RHS created at 476 Done with advance_dycore at level 1 [Level 1 step 238] Advanced 4608 cells Coarse STEP 238 ends. TIME = 476 DT = 2 Timestep time = 0.021411624 seconds. Coarse STEP 239 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375704834 (terrain aware) 1.375704834 (terrain unaware) Anelastic dt at level 0 would be: 6.418347263 (terrain aware) 6.418347263 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649021668 (terrain aware) 0.2649021668 (terrain unaware) Anelastic dt at level 1 would be: 2.921112732 (terrain aware) 2.921112732 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 239] ADVANCE from elapsed time = 476 to 478 with dt = 2 Making slow rhs at time 476 for fast variables advancing from 476 to 476.6666666667 Fast time integration at level 0 from 476 to 476.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 476 to 476.6666666667 with dt = 0.6666666666667 using RHS created at 476 Making slow rhs at time 476.6666666667 for fast variables advancing from 476 to 477 Fast time integration at level 0 from 476 to 476.5 with dt = 0.5 Fast time integration at level 0 from 476.5 to 477 with dt = 0.5 Time integration of scalars at level 0 from 476 to 477 with dt = 1 using RHS created at 476.6666666667 Making slow rhs at time 477 for fast variables advancing from 476 to 478 Fast time integration at level 0 from 476 to 476.5 with dt = 0.5 Fast time integration at level 0 from 476.5 to 477 with dt = 0.5 Fast time integration at level 0 from 477 to 477.5 with dt = 0.5 Fast time integration at level 0 from 477.5 to 478 with dt = 0.5 Time integration of scalars at level 0 from 476 to 478 with dt = 2 using RHS created at 477 Done with advance_dycore at level 0 [Level 0 step 239] Advanced 4096 cells [Level 1 step 239] ADVANCE from elapsed time = 476 to 478 with dt = 2 Making slow rhs at time 476 for fast variables advancing from 476 to 478 No-substepping time integration at level 1 to 478 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005381517112 0.003031380475 and volume-weighted sum -9771.958984 Subtracting -2.120650834e-06 from rhs in subdomain 0 Sum after subtraction -0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005402723909 MLMG: Initial residual (resid0) = 0.0005402723909 MLMG: Final Iter. 2 resid, resid/bnorm = 6.718328223e-07, 0.001243507606 MLMG: Timers: Solve = 0.000921866 Iter = 0.000702649 Bottom = 6.7619e-05 Time in solve 0.001376424 Max/L2 norm of divergence after solve at level 1 : 2.661719918e-06 0.0001440031774 and volume-weighted sum -9771.983398 Time integration of scalars at level 1 from 476 to 478 with dt = 2 using RHS created at 476 Making slow rhs at time 478 for fast variables advancing from 476 to 478 No-substepping time integration at level 1 to 478 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005501080304 0.003011902561 and volume-weighted sum -9771.960938 Subtracting -2.120651288e-06 from rhs in subdomain 0 Sum after subtraction -0.007450580597 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005522287101 MLMG: Initial residual (resid0) = 0.0005522287101 MLMG: Final Iter. 2 resid, resid/bnorm = 6.256450433e-07, 0.00113294553 MLMG: Timers: Solve = 0.000972082 Iter = 0.000672613 Bottom = 6.5553e-05 Time in solve 0.001433123 Max/L2 norm of divergence after solve at level 1 : 2.570450306e-06 0.0001439871558 and volume-weighted sum -9771.959961 Time integration of scalars at level 1 from 476 to 478 with dt = 2 using RHS created at 478 Done with advance_dycore at level 1 [Level 1 step 239] Advanced 4608 cells Coarse STEP 239 ends. TIME = 478 DT = 2 Timestep time = 0.021157774 seconds. Coarse STEP 240 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374553422 (terrain aware) 1.374553422 (terrain unaware) Anelastic dt at level 0 would be: 6.402310038 (terrain aware) 6.402310038 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264805719 (terrain aware) 0.264805719 (terrain unaware) Anelastic dt at level 1 would be: 2.911516385 (terrain aware) 2.911516385 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 240] ADVANCE from elapsed time = 478 to 480 with dt = 2 Making slow rhs at time 478 for fast variables advancing from 478 to 478.6666666667 Fast time integration at level 0 from 478 to 478.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 478 to 478.6666666667 with dt = 0.6666666666667 using RHS created at 478 Making slow rhs at time 478.6666666667 for fast variables advancing from 478 to 479 Fast time integration at level 0 from 478 to 478.5 with dt = 0.5 Fast time integration at level 0 from 478.5 to 479 with dt = 0.5 Time integration of scalars at level 0 from 478 to 479 with dt = 1 using RHS created at 478.6666666667 Making slow rhs at time 479 for fast variables advancing from 478 to 480 Fast time integration at level 0 from 478 to 478.5 with dt = 0.5 Fast time integration at level 0 from 478.5 to 479 with dt = 0.5 Fast time integration at level 0 from 479 to 479.5 with dt = 0.5 Fast time integration at level 0 from 479.5 to 480 with dt = 0.5 Time integration of scalars at level 0 from 478 to 480 with dt = 2 using RHS created at 479 Done with advance_dycore at level 0 [Level 0 step 240] Advanced 4096 cells [Level 1 step 240] ADVANCE from elapsed time = 478 to 480 with dt = 2 Making slow rhs at time 478 for fast variables advancing from 478 to 480 No-substepping time integration at level 1 to 480 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000509634614 0.003045026446 and volume-weighted sum 2780.669922 Subtracting 6.034439934e-07 from rhs in subdomain 0 Sum after subtraction -0.09755603969 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005090311752 MLMG: Initial residual (resid0) = 0.0005090311752 MLMG: Final Iter. 2 resid, resid/bnorm = 7.367198123e-07, 0.001447297982 MLMG: Timers: Solve = 0.000896246 Iter = 0.000671205 Bottom = 7.0329e-05 Time in solve 0.00135701 Max/L2 norm of divergence after solve at level 1 : 1.356005669e-06 4.123550752e-05 and volume-weighted sum 2780.699219 Time integration of scalars at level 1 from 478 to 480 with dt = 2 using RHS created at 478 Making slow rhs at time 480 for fast variables advancing from 478 to 480 No-substepping time integration at level 1 to 480 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005303192884 0.003010440152 and volume-weighted sum 2780.688477 Subtracting 6.034480293e-07 from rhs in subdomain 0 Sum after subtraction -0.08795177937 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005297158496 MLMG: Initial residual (resid0) = 0.0005297158496 MLMG: Final Iter. 2 resid, resid/bnorm = 6.611517165e-07, 0.00124812522 MLMG: Timers: Solve = 0.00089022 Iter = 0.000672922 Bottom = 7.0973e-05 Time in solve 0.001347892 Max/L2 norm of divergence after solve at level 1 : 1.255422831e-06 4.108089342e-05 and volume-weighted sum 2780.663086 Time integration of scalars at level 1 from 478 to 480 with dt = 2 using RHS created at 480 Done with advance_dycore at level 1 [Level 1 step 240] Advanced 4608 cells Coarse STEP 240 ends. TIME = 480 DT = 2 Timestep time = 0.02087533 seconds. Coarse STEP 241 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373556385 (terrain aware) 1.373556385 (terrain unaware) Anelastic dt at level 0 would be: 6.389564777 (terrain aware) 6.389564777 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647432832 (terrain aware) 0.2647432832 (terrain unaware) Anelastic dt at level 1 would be: 2.90599014 (terrain aware) 2.90599014 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 241] ADVANCE from elapsed time = 480 to 482 with dt = 2 Making slow rhs at time 480 for fast variables advancing from 480 to 480.6666666667 Fast time integration at level 0 from 480 to 480.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 480 to 480.6666666667 with dt = 0.6666666666667 using RHS created at 480 Making slow rhs at time 480.6666666667 for fast variables advancing from 480 to 481 Fast time integration at level 0 from 480 to 480.5 with dt = 0.5 Fast time integration at level 0 from 480.5 to 481 with dt = 0.5 Time integration of scalars at level 0 from 480 to 481 with dt = 1 using RHS created at 480.6666666667 Making slow rhs at time 481 for fast variables advancing from 480 to 482 Fast time integration at level 0 from 480 to 480.5 with dt = 0.5 Fast time integration at level 0 from 480.5 to 481 with dt = 0.5 Fast time integration at level 0 from 481 to 481.5 with dt = 0.5 Fast time integration at level 0 from 481.5 to 482 with dt = 0.5 Time integration of scalars at level 0 from 480 to 482 with dt = 2 using RHS created at 481 Done with advance_dycore at level 0 [Level 0 step 241] Advanced 4096 cells [Level 1 step 241] ADVANCE from elapsed time = 480 to 482 with dt = 2 Making slow rhs at time 480 for fast variables advancing from 480 to 482 No-substepping time integration at level 1 to 482 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005592629313 0.003077806905 and volume-weighted sum 16802.99414 Subtracting 3.646483037e-06 from rhs in subdomain 0 Sum after subtraction -0.03213062882 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005556164542 MLMG: Initial residual (resid0) = 0.0005556164542 MLMG: Final Iter. 2 resid, resid/bnorm = 7.534399629e-07, 0.001356043271 MLMG: Timers: Solve = 0.00101198 Iter = 0.000675868 Bottom = 6.6916e-05 Time in solve 0.001471023 Max/L2 norm of divergence after solve at level 1 : 4.416331649e-06 0.0002475938527 and volume-weighted sum 16803 Time integration of scalars at level 1 from 480 to 482 with dt = 2 using RHS created at 480 Making slow rhs at time 482 for fast variables advancing from 480 to 482 No-substepping time integration at level 1 to 482 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000553926453 0.003022408346 and volume-weighted sum 16802.98828 Subtracting 3.6464819e-06 from rhs in subdomain 0 Sum after subtraction -0.03562308848 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005502799759 MLMG: Initial residual (resid0) = 0.0005502799759 MLMG: Final Iter. 2 resid, resid/bnorm = 6.793270586e-07, 0.001234511728 MLMG: Timers: Solve = 0.00090191 Iter = 0.000680209 Bottom = 6.5699e-05 Time in solve 0.001350148 Max/L2 norm of divergence after solve at level 1 : 4.336237907e-06 0.000247551623 and volume-weighted sum 16802.97266 Time integration of scalars at level 1 from 480 to 482 with dt = 2 using RHS created at 482 Done with advance_dycore at level 1 [Level 1 step 241] Advanced 4608 cells Coarse STEP 241 ends. TIME = 482 DT = 2 Timestep time = 0.02201207 seconds. Coarse STEP 242 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372731457 (terrain aware) 1.372731457 (terrain unaware) Anelastic dt at level 0 would be: 6.380469704 (terrain aware) 6.380469704 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646480834 (terrain aware) 0.2646480834 (terrain unaware) Anelastic dt at level 1 would be: 2.904147164 (terrain aware) 2.904147164 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 242] ADVANCE from elapsed time = 482 to 484 with dt = 2 Making slow rhs at time 482 for fast variables advancing from 482 to 482.6666666667 Fast time integration at level 0 from 482 to 482.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 482 to 482.6666666667 with dt = 0.6666666666667 using RHS created at 482 Making slow rhs at time 482.6666666667 for fast variables advancing from 482 to 483 Fast time integration at level 0 from 482 to 482.5 with dt = 0.5 Fast time integration at level 0 from 482.5 to 483 with dt = 0.5 Time integration of scalars at level 0 from 482 to 483 with dt = 1 using RHS created at 482.6666666667 Making slow rhs at time 483 for fast variables advancing from 482 to 484 Fast time integration at level 0 from 482 to 482.5 with dt = 0.5 Fast time integration at level 0 from 482.5 to 483 with dt = 0.5 Fast time integration at level 0 from 483 to 483.5 with dt = 0.5 Fast time integration at level 0 from 483.5 to 484 with dt = 0.5 Time integration of scalars at level 0 from 482 to 484 with dt = 2 using RHS created at 483 Done with advance_dycore at level 0 [Level 0 step 242] Advanced 4096 cells [Level 1 step 242] ADVANCE from elapsed time = 482 to 484 with dt = 2 Making slow rhs at time 482 for fast variables advancing from 482 to 484 No-substepping time integration at level 1 to 484 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005325041711 0.003112751292 and volume-weighted sum 32613.59766 Subtracting 7.077603641e-06 from rhs in subdomain 0 Sum after subtraction 0.02863816917 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005254265852 MLMG: Initial residual (resid0) = 0.0005254265852 MLMG: Final Iter. 2 resid, resid/bnorm = 7.560647646e-07, 0.001438954147 MLMG: Timers: Solve = 0.000897139 Iter = 0.000674566 Bottom = 6.6273e-05 Time in solve 0.001351462 Max/L2 norm of divergence after solve at level 1 : 7.828697562e-06 0.0004804772616 and volume-weighted sum 32613.58984 Time integration of scalars at level 1 from 482 to 484 with dt = 2 using RHS created at 482 Making slow rhs at time 484 for fast variables advancing from 482 to 484 No-substepping time integration at level 1 to 484 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005486477166 0.003052420914 and volume-weighted sum 32613.62109 Subtracting 7.077608643e-06 from rhs in subdomain 0 Sum after subtraction 0.05587935448 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005415701307 MLMG: Initial residual (resid0) = 0.0005415701307 MLMG: Final Iter. 2 resid, resid/bnorm = 6.780028343e-07, 0.001251920708 MLMG: Timers: Solve = 0.000894324 Iter = 0.000669434 Bottom = 6.5238e-05 Time in solve 0.001346647 Max/L2 norm of divergence after solve at level 1 : 7.756054401e-06 0.0004804541823 and volume-weighted sum 32613.55273 Time integration of scalars at level 1 from 482 to 484 with dt = 2 using RHS created at 484 Done with advance_dycore at level 1 [Level 1 step 242] Advanced 4608 cells Coarse STEP 242 ends. TIME = 484 DT = 2 Timestep time = 0.021020132 seconds. Coarse STEP 243 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372098306 (terrain aware) 1.372098306 (terrain unaware) Anelastic dt at level 0 would be: 6.375365162 (terrain aware) 6.375365162 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645718453 (terrain aware) 0.2645718453 (terrain unaware) Anelastic dt at level 1 would be: 2.896233158 (terrain aware) 2.896233158 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 243] ADVANCE from elapsed time = 484 to 486 with dt = 2 Making slow rhs at time 484 for fast variables advancing from 484 to 484.6666666667 Fast time integration at level 0 from 484 to 484.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 484 to 484.6666666667 with dt = 0.6666666666667 using RHS created at 484 Making slow rhs at time 484.6666666667 for fast variables advancing from 484 to 485 Fast time integration at level 0 from 484 to 484.5 with dt = 0.5 Fast time integration at level 0 from 484.5 to 485 with dt = 0.5 Time integration of scalars at level 0 from 484 to 485 with dt = 1 using RHS created at 484.6666666667 Making slow rhs at time 485 for fast variables advancing from 484 to 486 Fast time integration at level 0 from 484 to 484.5 with dt = 0.5 Fast time integration at level 0 from 484.5 to 485 with dt = 0.5 Fast time integration at level 0 from 485 to 485.5 with dt = 0.5 Fast time integration at level 0 from 485.5 to 486 with dt = 0.5 Time integration of scalars at level 0 from 484 to 486 with dt = 2 using RHS created at 485 Done with advance_dycore at level 0 [Level 0 step 243] Advanced 4096 cells [Level 1 step 243] ADVANCE from elapsed time = 484 to 486 with dt = 2 Making slow rhs at time 484 for fast variables advancing from 484 to 486 No-substepping time integration at level 1 to 486 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005548782647 0.003135185922 and volume-weighted sum 48187.00391 Subtracting 1.045724912e-05 from rhs in subdomain 0 Sum after subtraction -0.03096647561 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005444210256 MLMG: Initial residual (resid0) = 0.0005444210256 MLMG: Final Iter. 2 resid, resid/bnorm = 7.211347111e-07, 0.001324590063 MLMG: Timers: Solve = 0.000903178 Iter = 0.000666901 Bottom = 6.5479e-05 Time in solve 0.001356346 Max/L2 norm of divergence after solve at level 1 : 1.11842528e-05 0.0007098794449 and volume-weighted sum 48187.05469 Time integration of scalars at level 1 from 484 to 486 with dt = 2 using RHS created at 484 Making slow rhs at time 486 for fast variables advancing from 484 to 486 No-substepping time integration at level 1 to 486 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005514081568 0.003098917659 and volume-weighted sum 48187.04297 Subtracting 1.04572573e-05 from rhs in subdomain 0 Sum after subtraction -0.00698491931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005409509176 MLMG: Initial residual (resid0) = 0.0005409509176 MLMG: Final Iter. 2 resid, resid/bnorm = 6.559857866e-07, 0.001212653005 MLMG: Timers: Solve = 0.000903534 Iter = 0.000665443 Bottom = 6.3449e-05 Time in solve 0.001354771 Max/L2 norm of divergence after solve at level 1 : 1.110043377e-05 0.0007098699571 and volume-weighted sum 48187.00781 Time integration of scalars at level 1 from 484 to 486 with dt = 2 using RHS created at 486 Done with advance_dycore at level 1 [Level 1 step 243] Advanced 4608 cells Coarse STEP 243 ends. TIME = 486 DT = 2 Timestep time = 0.02092828 seconds. Coarse STEP 244 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371301392 (terrain aware) 1.371301392 (terrain unaware) Anelastic dt at level 0 would be: 6.374620104 (terrain aware) 6.374620104 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645341268 (terrain aware) 0.2645341268 (terrain unaware) Anelastic dt at level 1 would be: 2.892608599 (terrain aware) 2.892608599 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 244] ADVANCE from elapsed time = 486 to 488 with dt = 2 Making slow rhs at time 486 for fast variables advancing from 486 to 486.6666666667 Fast time integration at level 0 from 486 to 486.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 486 to 486.6666666667 with dt = 0.6666666666667 using RHS created at 486 Making slow rhs at time 486.6666666667 for fast variables advancing from 486 to 487 Fast time integration at level 0 from 486 to 486.5 with dt = 0.5 Fast time integration at level 0 from 486.5 to 487 with dt = 0.5 Time integration of scalars at level 0 from 486 to 487 with dt = 1 using RHS created at 486.6666666667 Making slow rhs at time 487 for fast variables advancing from 486 to 488 Fast time integration at level 0 from 486 to 486.5 with dt = 0.5 Fast time integration at level 0 from 486.5 to 487 with dt = 0.5 Fast time integration at level 0 from 487 to 487.5 with dt = 0.5 Fast time integration at level 0 from 487.5 to 488 with dt = 0.5 Time integration of scalars at level 0 from 486 to 488 with dt = 2 using RHS created at 487 Done with advance_dycore at level 0 [Level 0 step 244] Advanced 4096 cells [Level 1 step 244] ADVANCE from elapsed time = 486 to 488 with dt = 2 Making slow rhs at time 486 for fast variables advancing from 486 to 488 No-substepping time integration at level 1 to 488 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005474984646 0.003176718252 and volume-weighted sum 59804.78125 Subtracting 1.297846848e-05 from rhs in subdomain 0 Sum after subtraction 0.06161280721 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005345200188 MLMG: Initial residual (resid0) = 0.0005345200188 MLMG: Final Iter. 2 resid, resid/bnorm = 7.348426152e-07, 0.001374771004 MLMG: Timers: Solve = 0.000884508 Iter = 0.000666236 Bottom = 6.525e-05 Time in solve 0.001342801 Max/L2 norm of divergence after solve at level 1 : 1.372024417e-05 0.0008810167783 and volume-weighted sum 59804.81641 Time integration of scalars at level 1 from 486 to 488 with dt = 2 using RHS created at 486 Making slow rhs at time 488 for fast variables advancing from 486 to 488 No-substepping time integration at level 1 to 488 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005562026054 0.003145267488 and volume-weighted sum 59804.82031 Subtracting 1.297847666e-05 from rhs in subdomain 0 Sum after subtraction 0.02229353413 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005432241014 MLMG: Initial residual (resid0) = 0.0005432241014 MLMG: Final Iter. 2 resid, resid/bnorm = 6.518966984e-07, 0.001200051163 MLMG: Timers: Solve = 0.00089087 Iter = 0.000669146 Bottom = 6.4018e-05 Time in solve 0.001346605 Max/L2 norm of divergence after solve at level 1 : 1.361221075e-05 0.0008810139843 and volume-weighted sum 59804.82812 Time integration of scalars at level 1 from 486 to 488 with dt = 2 using RHS created at 488 Done with advance_dycore at level 1 [Level 1 step 244] Advanced 4608 cells Coarse STEP 244 ends. TIME = 488 DT = 2 Timestep time = 0.020964756 seconds. Coarse STEP 245 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370010505 (terrain aware) 1.370010505 (terrain unaware) Anelastic dt at level 0 would be: 6.378472948 (terrain aware) 6.378472948 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2644539958 (terrain aware) 0.2644539958 (terrain unaware) Anelastic dt at level 1 would be: 2.892393725 (terrain aware) 2.892393725 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 245] ADVANCE from elapsed time = 488 to 490 with dt = 2 Making slow rhs at time 488 for fast variables advancing from 488 to 488.6666666667 Fast time integration at level 0 from 488 to 488.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 488 to 488.6666666667 with dt = 0.6666666666667 using RHS created at 488 Making slow rhs at time 488.6666666667 for fast variables advancing from 488 to 489 Fast time integration at level 0 from 488 to 488.5 with dt = 0.5 Fast time integration at level 0 from 488.5 to 489 with dt = 0.5 Time integration of scalars at level 0 from 488 to 489 with dt = 1 using RHS created at 488.6666666667 Making slow rhs at time 489 for fast variables advancing from 488 to 490 Fast time integration at level 0 from 488 to 488.5 with dt = 0.5 Fast time integration at level 0 from 488.5 to 489 with dt = 0.5 Fast time integration at level 0 from 489 to 489.5 with dt = 0.5 Fast time integration at level 0 from 489.5 to 490 with dt = 0.5 Time integration of scalars at level 0 from 488 to 490 with dt = 2 using RHS created at 489 Done with advance_dycore at level 0 [Level 0 step 245] Advanced 4096 cells [Level 1 step 245] ADVANCE from elapsed time = 488 to 490 with dt = 2 Making slow rhs at time 488 for fast variables advancing from 488 to 490 No-substepping time integration at level 1 to 490 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005184449255 0.003245301312 and volume-weighted sum 63859.97656 Subtracting 1.385850192e-05 from rhs in subdomain 0 Sum after subtraction -0.0455765985 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005045864382 MLMG: Initial residual (resid0) = 0.0005045864382 MLMG: Final Iter. 2 resid, resid/bnorm = 8.524308441e-07, 0.001689365366 MLMG: Timers: Solve = 0.000890731 Iter = 0.000666145 Bottom = 6.4022e-05 Time in solve 0.00133988 Max/L2 norm of divergence after solve at level 1 : 1.470884308e-05 0.0009407573962 and volume-weighted sum 63860 Time integration of scalars at level 1 from 488 to 490 with dt = 2 using RHS created at 488 Making slow rhs at time 490 for fast variables advancing from 488 to 490 No-substepping time integration at level 1 to 490 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000527523458 0.003164003137 and volume-weighted sum 63859.98438 Subtracting 1.385850373e-05 from rhs in subdomain 0 Sum after subtraction -0.0428699404 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005136649706 MLMG: Initial residual (resid0) = 0.0005136649706 MLMG: Final Iter. 2 resid, resid/bnorm = 6.85788109e-07, 0.00133508828 MLMG: Timers: Solve = 0.001189261 Iter = 0.000964195 Bottom = 6.3785e-05 Time in solve 0.001632204 Max/L2 norm of divergence after solve at level 1 : 1.454353333e-05 0.0009407530306 and volume-weighted sum 63860.01562 Time integration of scalars at level 1 from 488 to 490 with dt = 2 using RHS created at 490 Done with advance_dycore at level 1 [Level 1 step 245] Advanced 4608 cells Coarse STEP 245 ends. TIME = 490 DT = 2 Timestep time = 0.021252116 seconds. Coarse STEP 246 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368895004 (terrain aware) 1.368895004 (terrain unaware) Anelastic dt at level 0 would be: 6.357243562 (terrain aware) 6.357243562 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2644041886 (terrain aware) 0.2644041886 (terrain unaware) Anelastic dt at level 1 would be: 2.88646038 (terrain aware) 2.88646038 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 246] ADVANCE from elapsed time = 490 to 492 with dt = 2 Making slow rhs at time 490 for fast variables advancing from 490 to 490.6666666667 Fast time integration at level 0 from 490 to 490.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 490 to 490.6666666667 with dt = 0.6666666666667 using RHS created at 490 Making slow rhs at time 490.6666666667 for fast variables advancing from 490 to 491 Fast time integration at level 0 from 490 to 490.5 with dt = 0.5 Fast time integration at level 0 from 490.5 to 491 with dt = 0.5 Time integration of scalars at level 0 from 490 to 491 with dt = 1 using RHS created at 490.6666666667 Making slow rhs at time 491 for fast variables advancing from 490 to 492 Fast time integration at level 0 from 490 to 490.5 with dt = 0.5 Fast time integration at level 0 from 490.5 to 491 with dt = 0.5 Fast time integration at level 0 from 491 to 491.5 with dt = 0.5 Fast time integration at level 0 from 491.5 to 492 with dt = 0.5 Time integration of scalars at level 0 from 490 to 492 with dt = 2 using RHS created at 491 Done with advance_dycore at level 0 [Level 0 step 246] Advanced 4096 cells [Level 1 step 246] ADVANCE from elapsed time = 490 to 492 with dt = 2 Making slow rhs at time 490 for fast variables advancing from 490 to 492 No-substepping time integration at level 1 to 492 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005726628006 0.003275174415 and volume-weighted sum 58700.90234 Subtracting 1.273891121e-05 from rhs in subdomain 0 Sum after subtraction 0.08422648907 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005599238793 MLMG: Initial residual (resid0) = 0.0005599238793 MLMG: Final Iter. 2 resid, resid/bnorm = 8.860336038e-07, 0.001582417986 MLMG: Timers: Solve = 0.000888698 Iter = 0.000669931 Bottom = 6.3989e-05 Time in solve 0.001336185 Max/L2 norm of divergence after solve at level 1 : 1.362664625e-05 0.0008647635696 and volume-weighted sum 58700.91797 Time integration of scalars at level 1 from 490 to 492 with dt = 2 using RHS created at 490 Making slow rhs at time 492 for fast variables advancing from 490 to 492 No-substepping time integration at level 1 to 492 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005595553666 0.003144167131 and volume-weighted sum 58700.89844 Subtracting 1.27389103e-05 from rhs in subdomain 0 Sum after subtraction 0.05785841495 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005468164454 MLMG: Initial residual (resid0) = 0.0005468164454 MLMG: Final Iter. 2 resid, resid/bnorm = 7.011694834e-07, 0.001282275771 MLMG: Timers: Solve = 0.000874855 Iter = 0.000664772 Bottom = 6.5232e-05 Time in solve 0.001341606 Max/L2 norm of divergence after solve at level 1 : 1.343153417e-05 0.0008647531504 and volume-weighted sum 58700.93359 Time integration of scalars at level 1 from 490 to 492 with dt = 2 using RHS created at 492 Done with advance_dycore at level 1 [Level 1 step 246] Advanced 4608 cells Coarse STEP 246 ends. TIME = 492 DT = 2 Timestep time = 0.020803617 seconds. Coarse STEP 247 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367954293 (terrain aware) 1.367954293 (terrain unaware) Anelastic dt at level 0 would be: 6.337501312 (terrain aware) 6.337501312 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2643920256 (terrain aware) 0.2643920256 (terrain unaware) Anelastic dt at level 1 would be: 2.88496043 (terrain aware) 2.88496043 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 247] ADVANCE from elapsed time = 492 to 494 with dt = 2 Making slow rhs at time 492 for fast variables advancing from 492 to 492.6666666667 Fast time integration at level 0 from 492 to 492.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 492 to 492.6666666667 with dt = 0.6666666666667 using RHS created at 492 Making slow rhs at time 492.6666666667 for fast variables advancing from 492 to 493 Fast time integration at level 0 from 492 to 492.5 with dt = 0.5 Fast time integration at level 0 from 492.5 to 493 with dt = 0.5 Time integration of scalars at level 0 from 492 to 493 with dt = 1 using RHS created at 492.6666666667 Making slow rhs at time 493 for fast variables advancing from 492 to 494 Fast time integration at level 0 from 492 to 492.5 with dt = 0.5 Fast time integration at level 0 from 492.5 to 493 with dt = 0.5 Fast time integration at level 0 from 493 to 493.5 with dt = 0.5 Fast time integration at level 0 from 493.5 to 494 with dt = 0.5 Time integration of scalars at level 0 from 492 to 494 with dt = 2 using RHS created at 493 Done with advance_dycore at level 0 [Level 0 step 247] Advanced 4096 cells [Level 1 step 247] ADVANCE from elapsed time = 492 to 494 with dt = 2 Making slow rhs at time 492 for fast variables advancing from 492 to 494 No-substepping time integration at level 1 to 494 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005257520825 0.003222934902 and volume-weighted sum 45099.64453 Subtracting 9.787248928e-06 from rhs in subdomain 0 Sum after subtraction -0.01513399184 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005159648135 MLMG: Initial residual (resid0) = 0.0005159648135 MLMG: Final Iter. 2 resid, resid/bnorm = 7.317281643e-07, 0.001418174594 MLMG: Timers: Solve = 0.000857256 Iter = 0.000655112 Bottom = 6.4365e-05 Time in solve 0.001350667 Max/L2 norm of divergence after solve at level 1 : 1.052138396e-05 0.0006644036039 and volume-weighted sum 45099.69141 Time integration of scalars at level 1 from 492 to 494 with dt = 2 using RHS created at 492 Making slow rhs at time 494 for fast variables advancing from 492 to 494 No-substepping time integration at level 1 to 494 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005378071219 0.003096605884 and volume-weighted sum 45099.66797 Subtracting 9.787254385e-06 from rhs in subdomain 0 Sum after subtraction -0.05436595529 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005280198529 MLMG: Initial residual (resid0) = 0.0005280198529 MLMG: Final Iter. 2 resid, resid/bnorm = 6.994378055e-07, 0.001324643032 MLMG: Timers: Solve = 0.000882141 Iter = 0.000652256 Bottom = 6.5662e-05 Time in solve 0.001345914 Max/L2 norm of divergence after solve at level 1 : 1.049600542e-05 0.000664389634 and volume-weighted sum 45099.69141 Time integration of scalars at level 1 from 492 to 494 with dt = 2 using RHS created at 494 Done with advance_dycore at level 1 [Level 1 step 247] Advanced 4608 cells Coarse STEP 247 ends. TIME = 494 DT = 2 Timestep time = 0.021036049 seconds. Coarse STEP 248 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367186884 (terrain aware) 1.367186884 (terrain unaware) Anelastic dt at level 0 would be: 6.32140031 (terrain aware) 6.32140031 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2643278202 (terrain aware) 0.2643278202 (terrain unaware) Anelastic dt at level 1 would be: 2.882635252 (terrain aware) 2.882635252 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 248] ADVANCE from elapsed time = 494 to 496 with dt = 2 Making slow rhs at time 494 for fast variables advancing from 494 to 494.6666666667 Fast time integration at level 0 from 494 to 494.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 494 to 494.6666666667 with dt = 0.6666666666667 using RHS created at 494 Making slow rhs at time 494.6666666667 for fast variables advancing from 494 to 495 Fast time integration at level 0 from 494 to 494.5 with dt = 0.5 Fast time integration at level 0 from 494.5 to 495 with dt = 0.5 Time integration of scalars at level 0 from 494 to 495 with dt = 1 using RHS created at 494.6666666667 Making slow rhs at time 495 for fast variables advancing from 494 to 496 Fast time integration at level 0 from 494 to 494.5 with dt = 0.5 Fast time integration at level 0 from 494.5 to 495 with dt = 0.5 Fast time integration at level 0 from 495 to 495.5 with dt = 0.5 Fast time integration at level 0 from 495.5 to 496 with dt = 0.5 Time integration of scalars at level 0 from 494 to 496 with dt = 2 using RHS created at 495 Done with advance_dycore at level 0 [Level 0 step 248] Advanced 4096 cells [Level 1 step 248] ADVANCE from elapsed time = 494 to 496 with dt = 2 Making slow rhs at time 494 for fast variables advancing from 494 to 496 No-substepping time integration at level 1 to 496 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005594044924 0.003125492251 and volume-weighted sum 25567.21484 Subtracting 5.54844064e-06 from rhs in subdomain 0 Sum after subtraction 0.06111804396 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005538560799 MLMG: Initial residual (resid0) = 0.0005538560799 MLMG: Final Iter. 2 resid, resid/bnorm = 6.585032679e-07, 0.00118894293 MLMG: Timers: Solve = 0.000892963 Iter = 0.000672279 Bottom = 6.4165e-05 Time in solve 0.001362304 Max/L2 norm of divergence after solve at level 1 : 6.053363904e-06 0.000376670796 and volume-weighted sum 25567.21289 Time integration of scalars at level 1 from 494 to 496 with dt = 2 using RHS created at 494 Making slow rhs at time 496 for fast variables advancing from 494 to 496 No-substepping time integration at level 1 to 496 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000547491014 0.003048038809 and volume-weighted sum 25567.25 Subtracting 5.548448371e-06 from rhs in subdomain 0 Sum after subtraction 0.01885928214 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005419425434 MLMG: Initial residual (resid0) = 0.0005419425434 MLMG: Final Iter. 2 resid, resid/bnorm = 6.808986655e-07, 0.001256403746 MLMG: Timers: Solve = 0.001064584 Iter = 0.000666307 Bottom = 6.6387e-05 Time in solve 0.001519855 Max/L2 norm of divergence after solve at level 1 : 6.217509508e-06 0.0003766565642 and volume-weighted sum 25567.22656 Time integration of scalars at level 1 from 494 to 496 with dt = 2 using RHS created at 496 Done with advance_dycore at level 1 [Level 1 step 248] Advanced 4608 cells Coarse STEP 248 ends. TIME = 496 DT = 2 Timestep time = 0.02149241 seconds. Coarse STEP 249 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366594562 (terrain aware) 1.366594562 (terrain unaware) Anelastic dt at level 0 would be: 6.308923866 (terrain aware) 6.308923866 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2642885742 (terrain aware) 0.2642885742 (terrain unaware) Anelastic dt at level 1 would be: 2.878648 (terrain aware) 2.878648 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 249] ADVANCE from elapsed time = 496 to 498 with dt = 2 Making slow rhs at time 496 for fast variables advancing from 496 to 496.6666666667 Fast time integration at level 0 from 496 to 496.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 496 to 496.6666666667 with dt = 0.6666666666667 using RHS created at 496 Making slow rhs at time 496.6666666667 for fast variables advancing from 496 to 497 Fast time integration at level 0 from 496 to 496.5 with dt = 0.5 Fast time integration at level 0 from 496.5 to 497 with dt = 0.5 Time integration of scalars at level 0 from 496 to 497 with dt = 1 using RHS created at 496.6666666667 Making slow rhs at time 497 for fast variables advancing from 496 to 498 Fast time integration at level 0 from 496 to 496.5 with dt = 0.5 Fast time integration at level 0 from 496.5 to 497 with dt = 0.5 Fast time integration at level 0 from 497 to 497.5 with dt = 0.5 Fast time integration at level 0 from 497.5 to 498 with dt = 0.5 Time integration of scalars at level 0 from 496 to 498 with dt = 2 using RHS created at 497 Done with advance_dycore at level 0 [Level 0 step 249] Advanced 4096 cells [Level 1 step 249] ADVANCE from elapsed time = 496 to 498 with dt = 2 Making slow rhs at time 496 for fast variables advancing from 496 to 498 No-substepping time integration at level 1 to 498 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005323942751 0.003055794165 and volume-weighted sum 3263.405762 Subtracting 7.08204368e-07 from rhs in subdomain 0 Sum after subtraction -0.008847564459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005316860625 MLMG: Initial residual (resid0) = 0.0005316860625 MLMG: Final Iter. 2 resid, resid/bnorm = 6.352929631e-07, 0.001194864861 MLMG: Timers: Solve = 0.000901114 Iter = 0.000660338 Bottom = 6.6452e-05 Time in solve 0.001350653 Max/L2 norm of divergence after solve at level 1 : 1.196749508e-06 4.822746996e-05 and volume-weighted sum 3263.413086 Time integration of scalars at level 1 from 496 to 498 with dt = 2 using RHS created at 496 Making slow rhs at time 498 for fast variables advancing from 496 to 498 No-substepping time integration at level 1 to 498 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005336180329 0.0030267525 and volume-weighted sum 3263.437256 Subtracting 7.082111892e-07 from rhs in subdomain 0 Sum after subtraction 0.01583248377 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005329098203 MLMG: Initial residual (resid0) = 0.0005329098203 MLMG: Final Iter. 2 resid, resid/bnorm = 6.493064575e-07, 0.001218417194 MLMG: Timers: Solve = 0.000911729 Iter = 0.000665343 Bottom = 6.7235e-05 Time in solve 0.001368667 Max/L2 norm of divergence after solve at level 1 : 1.359730959e-06 4.819664173e-05 and volume-weighted sum 3263.439697 Time integration of scalars at level 1 from 496 to 498 with dt = 2 using RHS created at 498 Done with advance_dycore at level 1 [Level 1 step 249] Advanced 4608 cells Coarse STEP 249 ends. TIME = 498 DT = 2 Timestep time = 0.021141887 seconds. Coarse STEP 250 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366183588 (terrain aware) 1.366183588 (terrain unaware) Anelastic dt at level 0 would be: 6.30014589 (terrain aware) 6.30014589 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2642348928 (terrain aware) 0.2642348928 (terrain unaware) Anelastic dt at level 1 would be: 2.878802376 (terrain aware) 2.878802376 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 250] ADVANCE from elapsed time = 498 to 500 with dt = 2 Making slow rhs at time 498 for fast variables advancing from 498 to 498.6666666667 Fast time integration at level 0 from 498 to 498.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 498 to 498.6666666667 with dt = 0.6666666666667 using RHS created at 498 Making slow rhs at time 498.6666666667 for fast variables advancing from 498 to 499 Fast time integration at level 0 from 498 to 498.5 with dt = 0.5 Fast time integration at level 0 from 498.5 to 499 with dt = 0.5 Time integration of scalars at level 0 from 498 to 499 with dt = 1 using RHS created at 498.6666666667 Making slow rhs at time 499 for fast variables advancing from 498 to 500 Fast time integration at level 0 from 498 to 498.5 with dt = 0.5 Fast time integration at level 0 from 498.5 to 499 with dt = 0.5 Fast time integration at level 0 from 499 to 499.5 with dt = 0.5 Fast time integration at level 0 from 499.5 to 500 with dt = 0.5 Time integration of scalars at level 0 from 498 to 500 with dt = 2 using RHS created at 499 Done with advance_dycore at level 0 [Level 0 step 250] Advanced 4096 cells [Level 1 step 250] ADVANCE from elapsed time = 498 to 500 with dt = 2 Making slow rhs at time 498 for fast variables advancing from 498 to 500 No-substepping time integration at level 1 to 500 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005089715123 0.003052478889 and volume-weighted sum -18589.52734 Subtracting -4.034185622e-06 from rhs in subdomain 0 Sum after subtraction -0.03026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005130057107 MLMG: Initial residual (resid0) = 0.0005130057107 MLMG: Final Iter. 2 resid, resid/bnorm = 5.983674782e-07, 0.001166395377 MLMG: Timers: Solve = 0.000962918 Iter = 0.000676236 Bottom = 7.1662e-05 Time in solve 0.001449526 Max/L2 norm of divergence after solve at level 1 : 4.628498573e-06 0.0002738704206 and volume-weighted sum -18589.51172 Time integration of scalars at level 1 from 498 to 500 with dt = 2 using RHS created at 498 Making slow rhs at time 500 for fast variables advancing from 498 to 500 No-substepping time integration at level 1 to 500 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000518951565 0.003040426411 and volume-weighted sum -18589.49805 Subtracting -4.034179256e-06 from rhs in subdomain 0 Sum after subtraction 0.006752088666 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005229857634 MLMG: Initial residual (resid0) = 0.0005229857634 MLMG: Final Iter. 2 resid, resid/bnorm = 6.894406397e-07, 0.001318278024 MLMG: Timers: Solve = 0.000885428 Iter = 0.000668972 Bottom = 5.9597e-05 Time in solve 0.00133547 Max/L2 norm of divergence after solve at level 1 : 4.593050107e-06 0.0002738703624 and volume-weighted sum -18589.47461 Time integration of scalars at level 1 from 498 to 500 with dt = 2 using RHS created at 500 Done with advance_dycore at level 1 [Level 1 step 250] Advanced 4608 cells Coarse STEP 250 ends. TIME = 500 DT = 2 Timestep time = 0.020925774 seconds. 3DPlotfile write time = 0.006513604 seconds. Coarse STEP 251 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365962604 (terrain aware) 1.365962604 (terrain unaware) Anelastic dt at level 0 would be: 6.292775776 (terrain aware) 6.292775776 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2641507385 (terrain aware) 0.2641507385 (terrain unaware) Anelastic dt at level 1 would be: 2.872926848 (terrain aware) 2.872926848 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,47) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (111,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(6) m_ref->m_hash_sig(0) ((0,0,0) (15,0,47) (0,0,0)) ((16,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (63,0,47) (0,0,0)) ((64,0,0) (79,0,47) (0,0,0)) ((80,0,0) (95,0,47) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (111,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004222784191 0.002163378755 and volume-weighted sum -6531.606934 Subtracting -1.214956683e-06 from rhs in subdomain 0 Sum after subtraction -0.07916241884 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004234933876 MLMG: Initial residual (resid0) = 0.0004234933876 MLMG: Final Iter. 2 resid, resid/bnorm = 4.095024451e-06, 0.009669629857 MLMG: Timers: Solve = 0.000834384 Iter = 0.000666183 Bottom = 7.0881e-05 Time in solve 0.001335751 Max/L2 norm of divergence after solve at level 1 : 5.316920578e-06 9.133103595e-05 and volume-weighted sum -6531.640137 [Level 0 step 251] ADVANCE from elapsed time = 500 to 502 with dt = 2 Making slow rhs at time 500 for fast variables advancing from 500 to 500.6666666667 Fast time integration at level 0 from 500 to 500.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 500 to 500.6666666667 with dt = 0.6666666666667 using RHS created at 500 Making slow rhs at time 500.6666666667 for fast variables advancing from 500 to 501 Fast time integration at level 0 from 500 to 500.5 with dt = 0.5 Fast time integration at level 0 from 500.5 to 501 with dt = 0.5 Time integration of scalars at level 0 from 500 to 501 with dt = 1 using RHS created at 500.6666666667 Making slow rhs at time 501 for fast variables advancing from 500 to 502 Fast time integration at level 0 from 500 to 500.5 with dt = 0.5 Fast time integration at level 0 from 500.5 to 501 with dt = 0.5 Fast time integration at level 0 from 501 to 501.5 with dt = 0.5 Fast time integration at level 0 from 501.5 to 502 with dt = 0.5 Time integration of scalars at level 0 from 500 to 502 with dt = 2 using RHS created at 501 Done with advance_dycore at level 0 [Level 0 step 251] Advanced 4096 cells [Level 1 step 251] ADVANCE from elapsed time = 500 to 502 with dt = 2 Making slow rhs at time 500 for fast variables advancing from 500 to 502 No-substepping time integration at level 1 to 502 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.009063290432 0.08810647577 and volume-weighted sum -28263.53906 Subtracting -5.257354587e-06 from rhs in subdomain 0 Sum after subtraction 0.1564621925 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.009058033116 MLMG: Initial residual (resid0) = 0.009058033116 MLMG: Final Iter. 3 resid, resid/bnorm = 1.909211278e-06, 0.0002107754844 MLMG: Timers: Solve = 0.001106152 Iter = 0.00095873 Bottom = 0.000105151 Time in solve 0.00157641 Max/L2 norm of divergence after solve at level 1 : 6.78235665e-06 0.0003856093099 and volume-weighted sum -28263.36719 Time integration of scalars at level 1 from 500 to 502 with dt = 2 using RHS created at 500 Making slow rhs at time 502 for fast variables advancing from 500 to 502 No-substepping time integration at level 1 to 502 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005418155342 0.003055613022 and volume-weighted sum -28263.36914 Subtracting -5.25732321e-06 from rhs in subdomain 0 Sum after subtraction -0.002153683454 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005470728502 MLMG: Initial residual (resid0) = 0.0005470728502 MLMG: Final Iter. 2 resid, resid/bnorm = 6.053232937e-07, 0.001106476528 MLMG: Timers: Solve = 0.000841404 Iter = 0.000684807 Bottom = 8.129e-05 Time in solve 0.001301636 Max/L2 norm of divergence after solve at level 1 : 5.840905942e-06 0.0003854851238 and volume-weighted sum -28263.39062 Time integration of scalars at level 1 from 500 to 502 with dt = 2 using RHS created at 502 Done with advance_dycore at level 1 [Level 1 step 251] Advanced 5376 cells Coarse STEP 251 ends. TIME = 502 DT = 2 Timestep time = 0.030887268 seconds. Coarse STEP 252 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364640126 (terrain aware) 1.364640126 (terrain unaware) Anelastic dt at level 0 would be: 6.265070941 (terrain aware) 6.265070941 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264101248 (terrain aware) 0.264101248 (terrain unaware) Anelastic dt at level 1 would be: 2.870914297 (terrain aware) 2.870914297 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 252] ADVANCE from elapsed time = 502 to 504 with dt = 2 Making slow rhs at time 502 for fast variables advancing from 502 to 502.6666666667 Fast time integration at level 0 from 502 to 502.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 502 to 502.6666666667 with dt = 0.6666666666667 using RHS created at 502 Making slow rhs at time 502.6666666667 for fast variables advancing from 502 to 503 Fast time integration at level 0 from 502 to 502.5 with dt = 0.5 Fast time integration at level 0 from 502.5 to 503 with dt = 0.5 Time integration of scalars at level 0 from 502 to 503 with dt = 1 using RHS created at 502.6666666667 Making slow rhs at time 503 for fast variables advancing from 502 to 504 Fast time integration at level 0 from 502 to 502.5 with dt = 0.5 Fast time integration at level 0 from 502.5 to 503 with dt = 0.5 Fast time integration at level 0 from 503 to 503.5 with dt = 0.5 Fast time integration at level 0 from 503.5 to 504 with dt = 0.5 Time integration of scalars at level 0 from 502 to 504 with dt = 2 using RHS created at 503 Done with advance_dycore at level 0 [Level 0 step 252] Advanced 4096 cells [Level 1 step 252] ADVANCE from elapsed time = 502 to 504 with dt = 2 Making slow rhs at time 502 for fast variables advancing from 502 to 504 No-substepping time integration at level 1 to 504 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004972163588 0.003164821072 and volume-weighted sum -44550.64844 Subtracting -8.286951015e-06 from rhs in subdomain 0 Sum after subtraction -0.09383074939 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005055033253 MLMG: Initial residual (resid0) = 0.0005055033253 MLMG: Final Iter. 2 resid, resid/bnorm = 8.704221273e-07, 0.00172189204 MLMG: Timers: Solve = 0.000825836 Iter = 0.000670247 Bottom = 6.864e-05 Time in solve 0.001280123 Max/L2 norm of divergence after solve at level 1 : 9.161536582e-06 0.0006076329155 and volume-weighted sum -44550.65625 Time integration of scalars at level 1 from 502 to 504 with dt = 2 using RHS created at 502 Making slow rhs at time 504 for fast variables advancing from 502 to 504 No-substepping time integration at level 1 to 504 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005122572184 0.003094467102 and volume-weighted sum -44550.67188 Subtracting -8.286955563e-06 from rhs in subdomain 0 Sum after subtraction -0.06210757419 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005205441848 MLMG: Initial residual (resid0) = 0.0005205441848 MLMG: Final Iter. 2 resid, resid/bnorm = 6.034533726e-07, 0.001159274019 MLMG: Timers: Solve = 0.000937877 Iter = 0.00077875 Bottom = 7.3808e-05 Time in solve 0.001390242 Max/L2 norm of divergence after solve at level 1 : 8.910195902e-06 0.0006076170248 and volume-weighted sum -44550.67188 Time integration of scalars at level 1 from 502 to 504 with dt = 2 using RHS created at 504 Done with advance_dycore at level 1 [Level 1 step 252] Advanced 5376 cells Coarse STEP 252 ends. TIME = 504 DT = 2 Timestep time = 0.02122393 seconds. Coarse STEP 253 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.363465021 (terrain aware) 1.363465021 (terrain unaware) Anelastic dt at level 0 would be: 6.240807679 (terrain aware) 6.240807679 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640579602 (terrain aware) 0.2640579602 (terrain unaware) Anelastic dt at level 1 would be: 2.872659223 (terrain aware) 2.872659223 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 253] ADVANCE from elapsed time = 504 to 506 with dt = 2 Making slow rhs at time 504 for fast variables advancing from 504 to 504.6666666667 Fast time integration at level 0 from 504 to 504.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 504 to 504.6666666667 with dt = 0.6666666666667 using RHS created at 504 Making slow rhs at time 504.6666666667 for fast variables advancing from 504 to 505 Fast time integration at level 0 from 504 to 504.5 with dt = 0.5 Fast time integration at level 0 from 504.5 to 505 with dt = 0.5 Time integration of scalars at level 0 from 504 to 505 with dt = 1 using RHS created at 504.6666666667 Making slow rhs at time 505 for fast variables advancing from 504 to 506 Fast time integration at level 0 from 504 to 504.5 with dt = 0.5 Fast time integration at level 0 from 504.5 to 505 with dt = 0.5 Fast time integration at level 0 from 505 to 505.5 with dt = 0.5 Fast time integration at level 0 from 505.5 to 506 with dt = 0.5 Time integration of scalars at level 0 from 504 to 506 with dt = 2 using RHS created at 505 Done with advance_dycore at level 0 [Level 0 step 253] Advanced 4096 cells [Level 1 step 253] ADVANCE from elapsed time = 504 to 506 with dt = 2 Making slow rhs at time 504 for fast variables advancing from 504 to 506 No-substepping time integration at level 1 to 506 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005491599441 0.003240041435 and volume-weighted sum -53316.17188 Subtracting -9.917443094e-06 from rhs in subdomain 0 Sum after subtraction -0.01513399184 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005590773653 MLMG: Initial residual (resid0) = 0.0005590773653 MLMG: Final Iter. 2 resid, resid/bnorm = 1.210132723e-06, 0.002164517529 MLMG: Timers: Solve = 0.000827501 Iter = 0.000672053 Bottom = 6.8176e-05 Time in solve 0.001276192 Max/L2 norm of divergence after solve at level 1 : 1.1131051e-05 0.0007271862705 and volume-weighted sum -53316.15234 Time integration of scalars at level 1 from 504 to 506 with dt = 2 using RHS created at 504 Making slow rhs at time 506 for fast variables advancing from 504 to 506 No-substepping time integration at level 1 to 506 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005387067795 0.003121029353 and volume-weighted sum -53316.15625 Subtracting -9.917439456e-06 from rhs in subdomain 0 Sum after subtraction -0.006461050361 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005486242007 MLMG: Initial residual (resid0) = 0.0005486242007 MLMG: Final Iter. 2 resid, resid/bnorm = 6.049522199e-07, 0.001102671376 MLMG: Timers: Solve = 0.000847392 Iter = 0.00067655 Bottom = 7.1811e-05 Time in solve 0.001297517 Max/L2 norm of divergence after solve at level 1 : 1.05346553e-05 0.0007271650247 and volume-weighted sum -53316.17578 Time integration of scalars at level 1 from 504 to 506 with dt = 2 using RHS created at 506 Done with advance_dycore at level 1 [Level 1 step 253] Advanced 5376 cells Coarse STEP 253 ends. TIME = 506 DT = 2 Timestep time = 0.020822192 seconds. Coarse STEP 254 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.362479309 (terrain aware) 1.362479309 (terrain unaware) Anelastic dt at level 0 would be: 6.220355537 (terrain aware) 6.220355537 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640057875 (terrain aware) 0.2640057875 (terrain unaware) Anelastic dt at level 1 would be: 2.870116191 (terrain aware) 2.870116191 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 254] ADVANCE from elapsed time = 506 to 508 with dt = 2 Making slow rhs at time 506 for fast variables advancing from 506 to 506.6666666667 Fast time integration at level 0 from 506 to 506.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 506 to 506.6666666667 with dt = 0.6666666666667 using RHS created at 506 Making slow rhs at time 506.6666666667 for fast variables advancing from 506 to 507 Fast time integration at level 0 from 506 to 506.5 with dt = 0.5 Fast time integration at level 0 from 506.5 to 507 with dt = 0.5 Time integration of scalars at level 0 from 506 to 507 with dt = 1 using RHS created at 506.6666666667 Making slow rhs at time 507 for fast variables advancing from 506 to 508 Fast time integration at level 0 from 506 to 506.5 with dt = 0.5 Fast time integration at level 0 from 506.5 to 507 with dt = 0.5 Fast time integration at level 0 from 507 to 507.5 with dt = 0.5 Fast time integration at level 0 from 507.5 to 508 with dt = 0.5 Time integration of scalars at level 0 from 506 to 508 with dt = 2 using RHS created at 507 Done with advance_dycore at level 0 [Level 0 step 254] Advanced 4096 cells [Level 1 step 254] ADVANCE from elapsed time = 506 to 508 with dt = 2 Making slow rhs at time 506 for fast variables advancing from 506 to 508 No-substepping time integration at level 1 to 508 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005255043507 0.003245807486 and volume-weighted sum -54015.88281 Subtracting -1.004759724e-05 from rhs in subdomain 0 Sum after subtraction -0.07543712854 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005355519243 MLMG: Initial residual (resid0) = 0.0005355519243 MLMG: Final Iter. 2 resid, resid/bnorm = 1.241118071e-06, 0.002317456063 MLMG: Timers: Solve = 0.000825826 Iter = 0.000670632 Bottom = 6.9823e-05 Time in solve 0.00132473 Max/L2 norm of divergence after solve at level 1 : 1.129123848e-05 0.0007367288927 and volume-weighted sum -54015.87109 Time integration of scalars at level 1 from 506 to 508 with dt = 2 using RHS created at 506 Making slow rhs at time 508 for fast variables advancing from 506 to 508 No-substepping time integration at level 1 to 508 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005162730813 0.003124587238 and volume-weighted sum -54015.91406 Subtracting -1.00476027e-05 from rhs in subdomain 0 Sum after subtraction -0.0320142135 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005263206549 MLMG: Initial residual (resid0) = 0.0005263206549 MLMG: Final Iter. 2 resid, resid/bnorm = 6.280533853e-07, 0.001193290344 MLMG: Timers: Solve = 0.000839571 Iter = 0.000675023 Bottom = 7.1353e-05 Time in solve 0.001294474 Max/L2 norm of divergence after solve at level 1 : 1.068972051e-05 0.0007367084618 and volume-weighted sum -54015.89062 Time integration of scalars at level 1 from 506 to 508 with dt = 2 using RHS created at 508 Done with advance_dycore at level 1 [Level 1 step 254] Advanced 5376 cells Coarse STEP 254 ends. TIME = 508 DT = 2 Timestep time = 0.020916643 seconds. Coarse STEP 255 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361707876 (terrain aware) 1.361707876 (terrain unaware) Anelastic dt at level 0 would be: 6.204189566 (terrain aware) 6.204189566 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639994917 (terrain aware) 0.2639994917 (terrain unaware) Anelastic dt at level 1 would be: 2.872437196 (terrain aware) 2.872437196 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 255] ADVANCE from elapsed time = 508 to 510 with dt = 2 Making slow rhs at time 508 for fast variables advancing from 508 to 508.6666666667 Fast time integration at level 0 from 508 to 508.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 508 to 508.6666666667 with dt = 0.6666666666667 using RHS created at 508 Making slow rhs at time 508.6666666667 for fast variables advancing from 508 to 509 Fast time integration at level 0 from 508 to 508.5 with dt = 0.5 Fast time integration at level 0 from 508.5 to 509 with dt = 0.5 Time integration of scalars at level 0 from 508 to 509 with dt = 1 using RHS created at 508.6666666667 Making slow rhs at time 509 for fast variables advancing from 508 to 510 Fast time integration at level 0 from 508 to 508.5 with dt = 0.5 Fast time integration at level 0 from 508.5 to 509 with dt = 0.5 Fast time integration at level 0 from 509 to 509.5 with dt = 0.5 Fast time integration at level 0 from 509.5 to 510 with dt = 0.5 Time integration of scalars at level 0 from 508 to 510 with dt = 2 using RHS created at 509 Done with advance_dycore at level 0 [Level 0 step 255] Advanced 4096 cells [Level 1 step 255] ADVANCE from elapsed time = 508 to 510 with dt = 2 Making slow rhs at time 508 for fast variables advancing from 508 to 510 No-substepping time integration at level 1 to 510 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005092397332 0.003176097991 and volume-weighted sum -48122.07031 Subtracting -8.951277778e-06 from rhs in subdomain 0 Sum after subtraction -0.040512532 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005181910237 MLMG: Initial residual (resid0) = 0.0005181910237 MLMG: Final Iter. 2 resid, resid/bnorm = 9.051849474e-07, 0.001746817143 MLMG: Timers: Solve = 0.000854369 Iter = 0.000680123 Bottom = 6.9158e-05 Time in solve 0.001328593 Max/L2 norm of divergence after solve at level 1 : 9.857933037e-06 0.0006563377101 and volume-weighted sum -48122.09375 Time integration of scalars at level 1 from 508 to 510 with dt = 2 using RHS created at 508 Making slow rhs at time 510 for fast variables advancing from 508 to 510 No-substepping time integration at level 1 to 510 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005219914019 0.003107223427 and volume-weighted sum -48122.12891 Subtracting -8.951288692e-06 from rhs in subdomain 0 Sum after subtraction -0.0498839654 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005309426924 MLMG: Initial residual (resid0) = 0.0005309426924 MLMG: Final Iter. 2 resid, resid/bnorm = 6.466580089e-07, 0.001217943151 MLMG: Timers: Solve = 0.00083166 Iter = 0.000670889 Bottom = 7.0836e-05 Time in solve 0.001288511 Max/L2 norm of divergence after solve at level 1 : 9.617069736e-06 0.0006563254283 and volume-weighted sum -48122.01953 Time integration of scalars at level 1 from 508 to 510 with dt = 2 using RHS created at 510 Done with advance_dycore at level 1 [Level 1 step 255] Advanced 5376 cells Coarse STEP 255 ends. TIME = 510 DT = 2 Timestep time = 0.020964091 seconds. Coarse STEP 256 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361180077 (terrain aware) 1.361180077 (terrain unaware) Anelastic dt at level 0 would be: 6.192834881 (terrain aware) 6.192834881 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.263972353 (terrain aware) 0.263972353 (terrain unaware) Anelastic dt at level 1 would be: 2.876496868 (terrain aware) 2.876496868 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 256] ADVANCE from elapsed time = 510 to 512 with dt = 2 Making slow rhs at time 510 for fast variables advancing from 510 to 510.6666666667 Fast time integration at level 0 from 510 to 510.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 510 to 510.6666666667 with dt = 0.6666666666667 using RHS created at 510 Making slow rhs at time 510.6666666667 for fast variables advancing from 510 to 511 Fast time integration at level 0 from 510 to 510.5 with dt = 0.5 Fast time integration at level 0 from 510.5 to 511 with dt = 0.5 Time integration of scalars at level 0 from 510 to 511 with dt = 1 using RHS created at 510.6666666667 Making slow rhs at time 511 for fast variables advancing from 510 to 512 Fast time integration at level 0 from 510 to 510.5 with dt = 0.5 Fast time integration at level 0 from 510.5 to 511 with dt = 0.5 Fast time integration at level 0 from 511 to 511.5 with dt = 0.5 Fast time integration at level 0 from 511.5 to 512 with dt = 0.5 Time integration of scalars at level 0 from 510 to 512 with dt = 2 using RHS created at 511 Done with advance_dycore at level 0 [Level 0 step 256] Advanced 4096 cells [Level 1 step 256] ADVANCE from elapsed time = 510 to 512 with dt = 2 Making slow rhs at time 510 for fast variables advancing from 510 to 512 No-substepping time integration at level 1 to 512 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005616825074 0.003096524859 and volume-weighted sum -38714.17578 Subtracting -7.201297649e-06 from rhs in subdomain 0 Sum after subtraction 0.01350417733 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005688837846 MLMG: Initial residual (resid0) = 0.0005688837846 MLMG: Final Iter. 2 resid, resid/bnorm = 5.861074897e-07, 0.001030276297 MLMG: Timers: Solve = 0.000831931 Iter = 0.000676285 Bottom = 6.8322e-05 Time in solve 0.001288643 Max/L2 norm of divergence after solve at level 1 : 7.792463293e-06 0.0005280185724 and volume-weighted sum -38714.14062 Time integration of scalars at level 1 from 510 to 512 with dt = 2 using RHS created at 510 Making slow rhs at time 512 for fast variables advancing from 510 to 512 No-substepping time integration at level 1 to 512 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005412437022 0.003081363393 and volume-weighted sum -38714.13281 Subtracting -7.201289463e-06 from rhs in subdomain 0 Sum after subtraction -0.001571606845 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005484449794 MLMG: Initial residual (resid0) = 0.0005484449794 MLMG: Final Iter. 2 resid, resid/bnorm = 6.598784239e-07, 0.001203180756 MLMG: Timers: Solve = 0.00084062 Iter = 0.000680991 Bottom = 7.2919e-05 Time in solve 0.001294996 Max/L2 norm of divergence after solve at level 1 : 7.87928002e-06 0.0005280161859 and volume-weighted sum -38714.13281 Time integration of scalars at level 1 from 510 to 512 with dt = 2 using RHS created at 512 Done with advance_dycore at level 1 [Level 1 step 256] Advanced 5376 cells Coarse STEP 256 ends. TIME = 512 DT = 2 Timestep time = 0.021277895 seconds. Coarse STEP 257 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.360921839 (terrain aware) 1.360921839 (terrain unaware) Anelastic dt at level 0 would be: 6.18676534 (terrain aware) 6.18676534 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639552166 (terrain aware) 0.2639552166 (terrain unaware) Anelastic dt at level 1 would be: 2.876862245 (terrain aware) 2.876862245 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 257] ADVANCE from elapsed time = 512 to 514 with dt = 2 Making slow rhs at time 512 for fast variables advancing from 512 to 512.6666666667 Fast time integration at level 0 from 512 to 512.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 512 to 512.6666666667 with dt = 0.6666666666666 using RHS created at 512 Making slow rhs at time 512.6666666667 for fast variables advancing from 512 to 513 Fast time integration at level 0 from 512 to 512.5 with dt = 0.5 Fast time integration at level 0 from 512.5 to 513 with dt = 0.5 Time integration of scalars at level 0 from 512 to 513 with dt = 1 using RHS created at 512.6666666667 Making slow rhs at time 513 for fast variables advancing from 512 to 514 Fast time integration at level 0 from 512 to 512.5 with dt = 0.5 Fast time integration at level 0 from 512.5 to 513 with dt = 0.5 Fast time integration at level 0 from 513 to 513.5 with dt = 0.5 Fast time integration at level 0 from 513.5 to 514 with dt = 0.5 Time integration of scalars at level 0 from 512 to 514 with dt = 2 using RHS created at 513 Done with advance_dycore at level 0 [Level 0 step 257] Advanced 4096 cells [Level 1 step 257] ADVANCE from elapsed time = 512 to 514 with dt = 2 Making slow rhs at time 512 for fast variables advancing from 512 to 514 No-substepping time integration at level 1 to 514 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004956871271 0.00307357125 and volume-weighted sum -29068.58203 Subtracting -5.407102435e-06 from rhs in subdomain 0 Sum after subtraction -0.01565786079 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005010942114 MLMG: Initial residual (resid0) = 0.0005010942114 MLMG: Final Iter. 2 resid, resid/bnorm = 7.581547834e-07, 0.001512998482 MLMG: Timers: Solve = 0.000952474 Iter = 0.000792358 Bottom = 7.3238e-05 Time in solve 0.001402272 Max/L2 norm of divergence after solve at level 1 : 6.165471859e-06 0.0003964769712 and volume-weighted sum -29068.58008 Time integration of scalars at level 1 from 512 to 514 with dt = 2 using RHS created at 512 Making slow rhs at time 514 for fast variables advancing from 512 to 514 No-substepping time integration at level 1 to 514 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005108267069 0.003061884549 and volume-weighted sum -29068.61719 Subtracting -5.407108802e-06 from rhs in subdomain 0 Sum after subtraction -0.007508788258 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005162337911 MLMG: Initial residual (resid0) = 0.0005162337911 MLMG: Final Iter. 2 resid, resid/bnorm = 6.674890756e-07, 0.001292997622 MLMG: Timers: Solve = 0.000832935 Iter = 0.000676447 Bottom = 6.2562e-05 Time in solve 0.0012913 Max/L2 norm of divergence after solve at level 1 : 6.074842531e-06 0.0003964680654 and volume-weighted sum -29068.5625 Time integration of scalars at level 1 from 512 to 514 with dt = 2 using RHS created at 514 Done with advance_dycore at level 1 [Level 1 step 257] Advanced 5376 cells Coarse STEP 257 ends. TIME = 514 DT = 2 Timestep time = 0.020814444 seconds. Coarse STEP 258 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.360788325 (terrain aware) 1.360788325 (terrain unaware) Anelastic dt at level 0 would be: 6.183734444 (terrain aware) 6.183734444 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639800271 (terrain aware) 0.2639800271 (terrain unaware) Anelastic dt at level 1 would be: 2.881222324 (terrain aware) 2.881222324 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 258] ADVANCE from elapsed time = 514 to 516 with dt = 2 Making slow rhs at time 514 for fast variables advancing from 514 to 514.6666666667 Fast time integration at level 0 from 514 to 514.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 514 to 514.6666666667 with dt = 0.6666666666666 using RHS created at 514 Making slow rhs at time 514.6666666667 for fast variables advancing from 514 to 515 Fast time integration at level 0 from 514 to 514.5 with dt = 0.5 Fast time integration at level 0 from 514.5 to 515 with dt = 0.5 Time integration of scalars at level 0 from 514 to 515 with dt = 1 using RHS created at 514.6666666667 Making slow rhs at time 515 for fast variables advancing from 514 to 516 Fast time integration at level 0 from 514 to 514.5 with dt = 0.5 Fast time integration at level 0 from 514.5 to 515 with dt = 0.5 Fast time integration at level 0 from 515 to 515.5 with dt = 0.5 Fast time integration at level 0 from 515.5 to 516 with dt = 0.5 Time integration of scalars at level 0 from 514 to 516 with dt = 2 using RHS created at 515 Done with advance_dycore at level 0 [Level 0 step 258] Advanced 4096 cells [Level 1 step 258] ADVANCE from elapsed time = 514 to 516 with dt = 2 Making slow rhs at time 514 for fast variables advancing from 514 to 516 No-substepping time integration at level 1 to 516 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005599968135 0.003091459163 and volume-weighted sum -20923.41211 Subtracting -3.892003861e-06 from rhs in subdomain 0 Sum after subtraction -0.003143213689 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005638888106 MLMG: Initial residual (resid0) = 0.0005638888106 MLMG: Final Iter. 2 resid, resid/bnorm = 8.578936104e-07, 0.001521387952 MLMG: Timers: Solve = 0.00083604 Iter = 0.000670588 Bottom = 7.2253e-05 Time in solve 0.001304376 Max/L2 norm of divergence after solve at level 1 : 4.749046639e-06 0.0002854191407 and volume-weighted sum -20923.43359 Time integration of scalars at level 1 from 514 to 516 with dt = 2 using RHS created at 514 Making slow rhs at time 516 for fast variables advancing from 514 to 516 No-substepping time integration at level 1 to 516 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005509071052 0.0030483054 and volume-weighted sum -20923.43359 Subtracting -3.892007953e-06 from rhs in subdomain 0 Sum after subtraction -0.0117579475 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005547991022 MLMG: Initial residual (resid0) = 0.0005547991022 MLMG: Final Iter. 2 resid, resid/bnorm = 6.707741704e-07, 0.001209039707 MLMG: Timers: Solve = 0.000831359 Iter = 0.000660793 Bottom = 6.4469e-05 Time in solve 0.001286969 Max/L2 norm of divergence after solve at level 1 : 4.584668204e-06 0.0002853850601 and volume-weighted sum -20923.50195 Time integration of scalars at level 1 from 514 to 516 with dt = 2 using RHS created at 516 Done with advance_dycore at level 1 [Level 1 step 258] Advanced 5376 cells Coarse STEP 258 ends. TIME = 516 DT = 2 Timestep time = 0.020897032 seconds. Coarse STEP 259 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.359594593 (terrain aware) 1.359594593 (terrain unaware) Anelastic dt at level 0 would be: 6.15905991 (terrain aware) 6.15905991 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639639897 (terrain aware) 0.2639639897 (terrain unaware) Anelastic dt at level 1 would be: 2.887693601 (terrain aware) 2.887693601 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 259] ADVANCE from elapsed time = 516 to 518 with dt = 2 Making slow rhs at time 516 for fast variables advancing from 516 to 516.6666666667 Fast time integration at level 0 from 516 to 516.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 516 to 516.6666666667 with dt = 0.6666666666666 using RHS created at 516 Making slow rhs at time 516.6666666667 for fast variables advancing from 516 to 517 Fast time integration at level 0 from 516 to 516.5 with dt = 0.5 Fast time integration at level 0 from 516.5 to 517 with dt = 0.5 Time integration of scalars at level 0 from 516 to 517 with dt = 1 using RHS created at 516.6666666667 Making slow rhs at time 517 for fast variables advancing from 516 to 518 Fast time integration at level 0 from 516 to 516.5 with dt = 0.5 Fast time integration at level 0 from 516.5 to 517 with dt = 0.5 Fast time integration at level 0 from 517 to 517.5 with dt = 0.5 Fast time integration at level 0 from 517.5 to 518 with dt = 0.5 Time integration of scalars at level 0 from 516 to 518 with dt = 2 using RHS created at 517 Done with advance_dycore at level 0 [Level 0 step 259] Advanced 4096 cells [Level 1 step 259] ADVANCE from elapsed time = 516 to 518 with dt = 2 Making slow rhs at time 516 for fast variables advancing from 516 to 518 No-substepping time integration at level 1 to 518 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005437489599 0.003097271314 and volume-weighted sum -13575.47266 Subtracting -2.525199534e-06 from rhs in subdomain 0 Sum after subtraction 0.01676380634 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005462741829 MLMG: Initial residual (resid0) = 0.0005462741829 MLMG: Final Iter. 2 resid, resid/bnorm = 8.640672604e-07, 0.001581746503 MLMG: Timers: Solve = 0.000839698 Iter = 0.000683851 Bottom = 7.2516e-05 Time in solve 0.001302574 Max/L2 norm of divergence after solve at level 1 : 3.379303962e-06 0.0001852532441 and volume-weighted sum -13575.48633 Time integration of scalars at level 1 from 516 to 518 with dt = 2 using RHS created at 516 Making slow rhs at time 518 for fast variables advancing from 516 to 518 No-substepping time integration at level 1 to 518 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005240440369 0.003039739328 and volume-weighted sum -13575.44434 Subtracting -2.525194304e-06 from rhs in subdomain 0 Sum after subtraction -0.040512532 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005265692598 MLMG: Initial residual (resid0) = 0.0005265692598 MLMG: Final Iter. 2 resid, resid/bnorm = 6.644841051e-07, 0.001261912053 MLMG: Timers: Solve = 0.00082953 Iter = 0.000674734 Bottom = 7.2259e-05 Time in solve 0.001303566 Max/L2 norm of divergence after solve at level 1 : 3.194436431e-06 0.0001851788838 and volume-weighted sum -13575.49609 Time integration of scalars at level 1 from 516 to 518 with dt = 2 using RHS created at 518 Done with advance_dycore at level 1 [Level 1 step 259] Advanced 5376 cells Coarse STEP 259 ends. TIME = 518 DT = 2 Timestep time = 0.021176753 seconds. Coarse STEP 260 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358692924 (terrain aware) 1.358692924 (terrain unaware) Anelastic dt at level 0 would be: 6.139991192 (terrain aware) 6.139991192 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2639712168 (terrain aware) 0.2639712168 (terrain unaware) Anelastic dt at level 1 would be: 2.889151828 (terrain aware) 2.889151828 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 260] ADVANCE from elapsed time = 518 to 520 with dt = 2 Making slow rhs at time 518 for fast variables advancing from 518 to 518.6666666667 Fast time integration at level 0 from 518 to 518.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 518 to 518.6666666667 with dt = 0.6666666666666 using RHS created at 518 Making slow rhs at time 518.6666666667 for fast variables advancing from 518 to 519 Fast time integration at level 0 from 518 to 518.5 with dt = 0.5 Fast time integration at level 0 from 518.5 to 519 with dt = 0.5 Time integration of scalars at level 0 from 518 to 519 with dt = 1 using RHS created at 518.6666666667 Making slow rhs at time 519 for fast variables advancing from 518 to 520 Fast time integration at level 0 from 518 to 518.5 with dt = 0.5 Fast time integration at level 0 from 518.5 to 519 with dt = 0.5 Fast time integration at level 0 from 519 to 519.5 with dt = 0.5 Fast time integration at level 0 from 519.5 to 520 with dt = 0.5 Time integration of scalars at level 0 from 518 to 520 with dt = 2 using RHS created at 519 Done with advance_dycore at level 0 [Level 0 step 260] Advanced 4096 cells [Level 1 step 260] ADVANCE from elapsed time = 518 to 520 with dt = 2 Making slow rhs at time 518 for fast variables advancing from 518 to 520 No-substepping time integration at level 1 to 520 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005142427981 0.003095595632 and volume-weighted sum -4726.740723 Subtracting -8.792300719e-07 from rhs in subdomain 0 Sum after subtraction 0.09837094694 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005151220248 MLMG: Initial residual (resid0) = 0.0005151220248 MLMG: Final Iter. 2 resid, resid/bnorm = 8.017086657e-07, 0.001556347124 MLMG: Timers: Solve = 0.000832109 Iter = 0.000677557 Bottom = 6.9004e-05 Time in solve 0.001289372 Max/L2 norm of divergence after solve at level 1 : 1.67847611e-06 6.476703857e-05 and volume-weighted sum -4726.748047 Time integration of scalars at level 1 from 518 to 520 with dt = 2 using RHS created at 518 Making slow rhs at time 520 for fast variables advancing from 518 to 520 No-substepping time integration at level 1 to 520 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005299188197 0.003034674097 and volume-weighted sum -4726.766113 Subtracting -8.792347899e-07 from rhs in subdomain 0 Sum after subtraction 0.08498318493 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005307980464 MLMG: Initial residual (resid0) = 0.0005307980464 MLMG: Final Iter. 2 resid, resid/bnorm = 6.56596967e-07, 0.00123699964 MLMG: Timers: Solve = 0.000831446 Iter = 0.000673577 Bottom = 7.0805e-05 Time in solve 0.001284541 Max/L2 norm of divergence after solve at level 1 : 1.535285264e-06 6.454724644e-05 and volume-weighted sum -4726.731445 Time integration of scalars at level 1 from 518 to 520 with dt = 2 using RHS created at 520 Done with advance_dycore at level 1 [Level 1 step 260] Advanced 5376 cells Coarse STEP 260 ends. TIME = 520 DT = 2 Timestep time = 0.021175538 seconds. Coarse STEP 261 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358094195 (terrain aware) 1.358094195 (terrain unaware) Anelastic dt at level 0 would be: 6.126695184 (terrain aware) 6.126695184 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640156409 (terrain aware) 0.2640156409 (terrain unaware) Anelastic dt at level 1 would be: 2.893790858 (terrain aware) 2.893790858 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 261] ADVANCE from elapsed time = 520 to 522 with dt = 2 Making slow rhs at time 520 for fast variables advancing from 520 to 520.6666666667 Fast time integration at level 0 from 520 to 520.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 520 to 520.6666666667 with dt = 0.6666666666666 using RHS created at 520 Making slow rhs at time 520.6666666667 for fast variables advancing from 520 to 521 Fast time integration at level 0 from 520 to 520.5 with dt = 0.5 Fast time integration at level 0 from 520.5 to 521 with dt = 0.5 Time integration of scalars at level 0 from 520 to 521 with dt = 1 using RHS created at 520.6666666667 Making slow rhs at time 521 for fast variables advancing from 520 to 522 Fast time integration at level 0 from 520 to 520.5 with dt = 0.5 Fast time integration at level 0 from 520.5 to 521 with dt = 0.5 Fast time integration at level 0 from 521 to 521.5 with dt = 0.5 Fast time integration at level 0 from 521.5 to 522 with dt = 0.5 Time integration of scalars at level 0 from 520 to 522 with dt = 2 using RHS created at 521 Done with advance_dycore at level 0 [Level 0 step 261] Advanced 4096 cells [Level 1 step 261] ADVANCE from elapsed time = 520 to 522 with dt = 2 Making slow rhs at time 520 for fast variables advancing from 520 to 522 No-substepping time integration at level 1 to 522 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005762167275 0.003099585418 and volume-weighted sum 7624.60498 Subtracting 1.418267288e-06 from rhs in subdomain 0 Sum after subtraction -0.0522704795 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005747984396 MLMG: Initial residual (resid0) = 0.0005747984396 MLMG: Final Iter. 2 resid, resid/bnorm = 7.422931958e-07, 0.001291397377 MLMG: Timers: Solve = 0.000839497 Iter = 0.000679963 Bottom = 7.6961e-05 Time in solve 0.001286387 Max/L2 norm of divergence after solve at level 1 : 2.126093023e-06 0.0001041605356 and volume-weighted sum 7624.631836 Time integration of scalars at level 1 from 520 to 522 with dt = 2 using RHS created at 520 Making slow rhs at time 522 for fast variables advancing from 520 to 522 No-substepping time integration at level 1 to 522 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005516000092 0.003034804482 and volume-weighted sum 7624.637695 Subtracting 1.418273428e-06 from rhs in subdomain 0 Sum after subtraction -0.04546018317 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005501817213 MLMG: Initial residual (resid0) = 0.0005501817213 MLMG: Final Iter. 2 resid, resid/bnorm = 6.751070032e-07, 0.001227061846 MLMG: Timers: Solve = 0.000827814 Iter = 0.000675213 Bottom = 7.0968e-05 Time in solve 0.001277123 Max/L2 norm of divergence after solve at level 1 : 1.983717084e-06 0.0001040400966 and volume-weighted sum 7624.595215 Time integration of scalars at level 1 from 520 to 522 with dt = 2 using RHS created at 522 Done with advance_dycore at level 1 [Level 1 step 261] Advanced 5376 cells Coarse STEP 261 ends. TIME = 522 DT = 2 Timestep time = 0.021425843 seconds. Coarse STEP 262 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357806156 (terrain aware) 1.357806156 (terrain unaware) Anelastic dt at level 0 would be: 6.119305996 (terrain aware) 6.119305996 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640156222 (terrain aware) 0.2640156222 (terrain unaware) Anelastic dt at level 1 would be: 2.896747546 (terrain aware) 2.896747546 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 262] ADVANCE from elapsed time = 522 to 524 with dt = 2 Making slow rhs at time 522 for fast variables advancing from 522 to 522.6666666667 Fast time integration at level 0 from 522 to 522.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 522 to 522.6666666667 with dt = 0.6666666666666 using RHS created at 522 Making slow rhs at time 522.6666666667 for fast variables advancing from 522 to 523 Fast time integration at level 0 from 522 to 522.5 with dt = 0.5 Fast time integration at level 0 from 522.5 to 523 with dt = 0.5 Time integration of scalars at level 0 from 522 to 523 with dt = 1 using RHS created at 522.6666666667 Making slow rhs at time 523 for fast variables advancing from 522 to 524 Fast time integration at level 0 from 522 to 522.5 with dt = 0.5 Fast time integration at level 0 from 522.5 to 523 with dt = 0.5 Fast time integration at level 0 from 523 to 523.5 with dt = 0.5 Fast time integration at level 0 from 523.5 to 524 with dt = 0.5 Time integration of scalars at level 0 from 522 to 524 with dt = 2 using RHS created at 523 Done with advance_dycore at level 0 [Level 0 step 262] Advanced 4096 cells [Level 1 step 262] ADVANCE from elapsed time = 522 to 524 with dt = 2 Making slow rhs at time 522 for fast variables advancing from 522 to 524 No-substepping time integration at level 1 to 524 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005000121891 0.00309090456 and volume-weighted sum 23220.76562 Subtracting 4.319339041e-06 from rhs in subdomain 0 Sum after subtraction -0.0410946086 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004956928315 MLMG: Initial residual (resid0) = 0.0004956928315 MLMG: Final Iter. 2 resid, resid/bnorm = 7.110575098e-07, 0.00143447204 MLMG: Timers: Solve = 0.000838085 Iter = 0.0006853 Bottom = 7.2322e-05 Time in solve 0.001288355 Max/L2 norm of divergence after solve at level 1 : 4.875473678e-06 0.0003167393443 and volume-weighted sum 23220.80078 Time integration of scalars at level 1 from 522 to 524 with dt = 2 using RHS created at 522 Making slow rhs at time 524 for fast variables advancing from 522 to 524 No-substepping time integration at level 1 to 524 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005178116262 0.003049759427 and volume-weighted sum 23220.80078 Subtracting 4.319345408e-06 from rhs in subdomain 0 Sum after subtraction -0.0317231752 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005134922685 MLMG: Initial residual (resid0) = 0.0005134922685 MLMG: Final Iter. 2 resid, resid/bnorm = 6.866321201e-07, 0.001337181078 MLMG: Timers: Solve = 0.000835469 Iter = 0.000679547 Bottom = 6.7851e-05 Time in solve 0.001281959 Max/L2 norm of divergence after solve at level 1 : 4.898756742e-06 0.0003167167015 and volume-weighted sum 23220.77344 Time integration of scalars at level 1 from 522 to 524 with dt = 2 using RHS created at 524 Done with advance_dycore at level 1 [Level 1 step 262] Advanced 5376 cells Coarse STEP 262 ends. TIME = 524 DT = 2 Timestep time = 0.020748289 seconds. Coarse STEP 263 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357831935 (terrain aware) 1.357831935 (terrain unaware) Anelastic dt at level 0 would be: 6.117902307 (terrain aware) 6.117902307 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640426306 (terrain aware) 0.2640426306 (terrain unaware) Anelastic dt at level 1 would be: 2.900283293 (terrain aware) 2.900283293 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 263] ADVANCE from elapsed time = 524 to 526 with dt = 2 Making slow rhs at time 524 for fast variables advancing from 524 to 524.6666666667 Fast time integration at level 0 from 524 to 524.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 524 to 524.6666666667 with dt = 0.6666666666666 using RHS created at 524 Making slow rhs at time 524.6666666667 for fast variables advancing from 524 to 525 Fast time integration at level 0 from 524 to 524.5 with dt = 0.5 Fast time integration at level 0 from 524.5 to 525 with dt = 0.5 Time integration of scalars at level 0 from 524 to 525 with dt = 1 using RHS created at 524.6666666667 Making slow rhs at time 525 for fast variables advancing from 524 to 526 Fast time integration at level 0 from 524 to 524.5 with dt = 0.5 Fast time integration at level 0 from 524.5 to 525 with dt = 0.5 Fast time integration at level 0 from 525 to 525.5 with dt = 0.5 Fast time integration at level 0 from 525.5 to 526 with dt = 0.5 Time integration of scalars at level 0 from 524 to 526 with dt = 2 using RHS created at 525 Done with advance_dycore at level 0 [Level 0 step 263] Advanced 4096 cells [Level 1 step 263] ADVANCE from elapsed time = 524 to 526 with dt = 2 Making slow rhs at time 524 for fast variables advancing from 524 to 526 No-substepping time integration at level 1 to 526 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005685500801 0.003084534779 and volume-weighted sum 39226.49609 Subtracting 7.296595413e-06 from rhs in subdomain 0 Sum after subtraction 0.01696753316 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005612534587 MLMG: Initial residual (resid0) = 0.0005612534587 MLMG: Final Iter. 2 resid, resid/bnorm = 7.076523616e-07, 0.001260842779 MLMG: Timers: Solve = 0.000827015 Iter = 0.000677927 Bottom = 7.4158e-05 Time in solve 0.001274975 Max/L2 norm of divergence after solve at level 1 : 7.873401046e-06 0.0005350076244 and volume-weighted sum 39226.50781 Time integration of scalars at level 1 from 524 to 526 with dt = 2 using RHS created at 524 Making slow rhs at time 526 for fast variables advancing from 524 to 526 No-substepping time integration at level 1 to 526 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005657970905 0.003079089569 and volume-weighted sum 39226.48438 Subtracting 7.296593139e-06 from rhs in subdomain 0 Sum after subtraction -0.009080395103 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005585004692 MLMG: Initial residual (resid0) = 0.0005585004692 MLMG: Final Iter. 2 resid, resid/bnorm = 6.925765774e-07, 0.001240064506 MLMG: Timers: Solve = 0.001182649 Iter = 0.00102302 Bottom = 0.0001216 Time in solve 0.001634282 Max/L2 norm of divergence after solve at level 1 : 7.886439562e-06 0.0005350055289 and volume-weighted sum 39226.54688 Time integration of scalars at level 1 from 524 to 526 with dt = 2 using RHS created at 526 Done with advance_dycore at level 1 [Level 1 step 263] Advanced 5376 cells Coarse STEP 263 ends. TIME = 526 DT = 2 Timestep time = 0.021190886 seconds. Coarse STEP 264 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358164827 (terrain aware) 1.358164827 (terrain unaware) Anelastic dt at level 0 would be: 6.122388152 (terrain aware) 6.122388152 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264076568 (terrain aware) 0.264076568 (terrain unaware) Anelastic dt at level 1 would be: 2.903210179 (terrain aware) 2.903210179 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 264] ADVANCE from elapsed time = 526 to 528 with dt = 2 Making slow rhs at time 526 for fast variables advancing from 526 to 526.6666666667 Fast time integration at level 0 from 526 to 526.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 526 to 526.6666666667 with dt = 0.6666666666666 using RHS created at 526 Making slow rhs at time 526.6666666667 for fast variables advancing from 526 to 527 Fast time integration at level 0 from 526 to 526.5 with dt = 0.5 Fast time integration at level 0 from 526.5 to 527 with dt = 0.5 Time integration of scalars at level 0 from 526 to 527 with dt = 1 using RHS created at 526.6666666667 Making slow rhs at time 527 for fast variables advancing from 526 to 528 Fast time integration at level 0 from 526 to 526.5 with dt = 0.5 Fast time integration at level 0 from 526.5 to 527 with dt = 0.5 Fast time integration at level 0 from 527 to 527.5 with dt = 0.5 Fast time integration at level 0 from 527.5 to 528 with dt = 0.5 Time integration of scalars at level 0 from 526 to 528 with dt = 2 using RHS created at 527 Done with advance_dycore at level 0 [Level 0 step 264] Advanced 4096 cells [Level 1 step 264] ADVANCE from elapsed time = 526 to 528 with dt = 2 Making slow rhs at time 526 for fast variables advancing from 526 to 528 No-substepping time integration at level 1 to 528 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005692206323 0.003126273397 and volume-weighted sum 51295.33984 Subtracting 9.541543477e-06 from rhs in subdomain 0 Sum after subtraction 0.03376044333 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005596791161 MLMG: Initial residual (resid0) = 0.0005596791161 MLMG: Final Iter. 2 resid, resid/bnorm = 7.252965588e-07, 0.00129591499 MLMG: Timers: Solve = 0.000840846 Iter = 0.000673454 Bottom = 6.9013e-05 Time in solve 0.001294972 Max/L2 norm of divergence after solve at level 1 : 1.012161374e-05 0.0006996074808 and volume-weighted sum 51295.36328 Time integration of scalars at level 1 from 526 to 528 with dt = 2 using RHS created at 526 Making slow rhs at time 528 for fast variables advancing from 526 to 528 No-substepping time integration at level 1 to 528 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005447696894 0.003110603429 and volume-weighted sum 51295.33984 Subtracting 9.541543477e-06 from rhs in subdomain 0 Sum after subtraction 0.09487848729 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005352281732 MLMG: Initial residual (resid0) = 0.0005352281732 MLMG: Final Iter. 2 resid, resid/bnorm = 6.911795936e-07, 0.001291373745 MLMG: Timers: Solve = 0.000836498 Iter = 0.000672759 Bottom = 6.8416e-05 Time in solve 0.001289555 Max/L2 norm of divergence after solve at level 1 : 1.01365149e-05 0.0006996068405 and volume-weighted sum 51295.36328 Time integration of scalars at level 1 from 526 to 528 with dt = 2 using RHS created at 528 Done with advance_dycore at level 1 [Level 1 step 264] Advanced 5376 cells Coarse STEP 264 ends. TIME = 528 DT = 2 Timestep time = 0.021064956 seconds. Coarse STEP 265 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358083615 (terrain aware) 1.358083615 (terrain unaware) Anelastic dt at level 0 would be: 6.123860983 (terrain aware) 6.123860983 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640564514 (terrain aware) 0.2640564514 (terrain unaware) Anelastic dt at level 1 would be: 2.898716585 (terrain aware) 2.898716585 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 265] ADVANCE from elapsed time = 528 to 530 with dt = 2 Making slow rhs at time 528 for fast variables advancing from 528 to 528.6666666667 Fast time integration at level 0 from 528 to 528.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 528 to 528.6666666667 with dt = 0.6666666666666 using RHS created at 528 Making slow rhs at time 528.6666666667 for fast variables advancing from 528 to 529 Fast time integration at level 0 from 528 to 528.5 with dt = 0.5 Fast time integration at level 0 from 528.5 to 529 with dt = 0.5 Time integration of scalars at level 0 from 528 to 529 with dt = 1 using RHS created at 528.6666666667 Making slow rhs at time 529 for fast variables advancing from 528 to 530 Fast time integration at level 0 from 528 to 528.5 with dt = 0.5 Fast time integration at level 0 from 528.5 to 529 with dt = 0.5 Fast time integration at level 0 from 529 to 529.5 with dt = 0.5 Fast time integration at level 0 from 529.5 to 530 with dt = 0.5 Time integration of scalars at level 0 from 528 to 530 with dt = 2 using RHS created at 529 Done with advance_dycore at level 0 [Level 0 step 265] Advanced 4096 cells [Level 1 step 265] ADVANCE from elapsed time = 528 to 530 with dt = 2 Making slow rhs at time 528 for fast variables advancing from 528 to 530 No-substepping time integration at level 1 to 530 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005135051906 0.003199458821 and volume-weighted sum 55775.02344 Subtracting 1.037481798e-05 from rhs in subdomain 0 Sum after subtraction -0.07194466889 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005031303735 MLMG: Initial residual (resid0) = 0.0005031303735 MLMG: Final Iter. 2 resid, resid/bnorm = 7.346097846e-07, 0.001460078405 MLMG: Timers: Solve = 0.000829236 Iter = 0.000675016 Bottom = 6.5828e-05 Time in solve 0.001279181 Max/L2 norm of divergence after solve at level 1 : 1.096352935e-05 0.0007607089938 and volume-weighted sum 55774.96484 Time integration of scalars at level 1 from 528 to 530 with dt = 2 using RHS created at 528 Making slow rhs at time 530 for fast variables advancing from 528 to 530 No-substepping time integration at level 1 to 530 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005339160562 0.003123594448 and volume-weighted sum 55775.00391 Subtracting 1.037481434e-05 from rhs in subdomain 0 Sum after subtraction -0.006461050361 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005235412391 MLMG: Initial residual (resid0) = 0.0005235412391 MLMG: Final Iter. 2 resid, resid/bnorm = 6.837944966e-07, 0.001306094811 MLMG: Timers: Solve = 0.000837431 Iter = 0.000685019 Bottom = 8.2852e-05 Time in solve 0.00129351 Max/L2 norm of divergence after solve at level 1 : 1.096352935e-05 0.0007607018342 and volume-weighted sum 55774.99609 Time integration of scalars at level 1 from 528 to 530 with dt = 2 using RHS created at 530 Done with advance_dycore at level 1 [Level 1 step 265] Advanced 5376 cells Coarse STEP 265 ends. TIME = 530 DT = 2 Timestep time = 0.020868682 seconds. Coarse STEP 266 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.35735167 (terrain aware) 1.35735167 (terrain unaware) Anelastic dt at level 0 would be: 6.107551961 (terrain aware) 6.107551961 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640558554 (terrain aware) 0.2640558554 (terrain unaware) Anelastic dt at level 1 would be: 2.895071463 (terrain aware) 2.895071463 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 266] ADVANCE from elapsed time = 530 to 532 with dt = 2 Making slow rhs at time 530 for fast variables advancing from 530 to 530.6666666667 Fast time integration at level 0 from 530 to 530.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 530 to 530.6666666667 with dt = 0.6666666666666 using RHS created at 530 Making slow rhs at time 530.6666666667 for fast variables advancing from 530 to 531 Fast time integration at level 0 from 530 to 530.5 with dt = 0.5 Fast time integration at level 0 from 530.5 to 531 with dt = 0.5 Time integration of scalars at level 0 from 530 to 531 with dt = 1 using RHS created at 530.6666666667 Making slow rhs at time 531 for fast variables advancing from 530 to 532 Fast time integration at level 0 from 530 to 530.5 with dt = 0.5 Fast time integration at level 0 from 530.5 to 531 with dt = 0.5 Fast time integration at level 0 from 531 to 531.5 with dt = 0.5 Fast time integration at level 0 from 531.5 to 532 with dt = 0.5 Time integration of scalars at level 0 from 530 to 532 with dt = 2 using RHS created at 531 Done with advance_dycore at level 0 [Level 0 step 266] Advanced 4096 cells [Level 1 step 266] ADVANCE from elapsed time = 530 to 532 with dt = 2 Making slow rhs at time 530 for fast variables advancing from 530 to 532 No-substepping time integration at level 1 to 532 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000590711832 0.003222055268 and volume-weighted sum 51343.53906 Subtracting 9.550509276e-06 from rhs in subdomain 0 Sum after subtraction 0.0512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005811613519 MLMG: Initial residual (resid0) = 0.0005811613519 MLMG: Final Iter. 2 resid, resid/bnorm = 7.309718058e-07, 0.00125777768 MLMG: Timers: Solve = 0.000832485 Iter = 0.000672993 Bottom = 6.7389e-05 Time in solve 0.001279682 Max/L2 norm of divergence after solve at level 1 : 1.012906432e-05 0.0007002773928 and volume-weighted sum 51343.42188 Time integration of scalars at level 1 from 530 to 532 with dt = 2 using RHS created at 530 Making slow rhs at time 532 for fast variables advancing from 530 to 532 No-substepping time integration at level 1 to 532 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005685538054 0.00310604088 and volume-weighted sum 51343.51953 Subtracting 9.550505638e-06 from rhs in subdomain 0 Sum after subtraction 0.05529727787 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005590033252 MLMG: Initial residual (resid0) = 0.0005590033252 MLMG: Final Iter. 2 resid, resid/bnorm = 6.823684089e-07, 0.001220687525 MLMG: Timers: Solve = 0.000830735 Iter = 0.000675572 Bottom = 7.0898e-05 Time in solve 0.001280981 Max/L2 norm of divergence after solve at level 1 : 1.012906432e-05 0.000700262317 and volume-weighted sum 51343.51562 Time integration of scalars at level 1 from 530 to 532 with dt = 2 using RHS created at 532 Done with advance_dycore at level 1 [Level 1 step 266] Advanced 5376 cells Coarse STEP 266 ends. TIME = 532 DT = 2 Timestep time = 0.021096857 seconds. Coarse STEP 267 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356887797 (terrain aware) 1.356887797 (terrain unaware) Anelastic dt at level 0 would be: 6.096308141 (terrain aware) 6.096308141 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640781512 (terrain aware) 0.2640781512 (terrain unaware) Anelastic dt at level 1 would be: 2.887304978 (terrain aware) 2.887304978 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 267] ADVANCE from elapsed time = 532 to 534 with dt = 2 Making slow rhs at time 532 for fast variables advancing from 532 to 532.6666666667 Fast time integration at level 0 from 532 to 532.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 532 to 532.6666666667 with dt = 0.6666666666666 using RHS created at 532 Making slow rhs at time 532.6666666667 for fast variables advancing from 532 to 533 Fast time integration at level 0 from 532 to 532.5 with dt = 0.5 Fast time integration at level 0 from 532.5 to 533 with dt = 0.5 Time integration of scalars at level 0 from 532 to 533 with dt = 1 using RHS created at 532.6666666667 Making slow rhs at time 533 for fast variables advancing from 532 to 534 Fast time integration at level 0 from 532 to 532.5 with dt = 0.5 Fast time integration at level 0 from 532.5 to 533 with dt = 0.5 Fast time integration at level 0 from 533 to 533.5 with dt = 0.5 Fast time integration at level 0 from 533.5 to 534 with dt = 0.5 Time integration of scalars at level 0 from 532 to 534 with dt = 2 using RHS created at 533 Done with advance_dycore at level 0 [Level 0 step 267] Advanced 4096 cells [Level 1 step 267] ADVANCE from elapsed time = 532 to 534 with dt = 2 Making slow rhs at time 532 for fast variables advancing from 532 to 534 No-substepping time integration at level 1 to 534 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005265250802 0.003165560775 and volume-weighted sum 39165.69531 Subtracting 7.285285392e-06 from rhs in subdomain 0 Sum after subtraction 0.03282912076 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005192398094 MLMG: Initial residual (resid0) = 0.0005192398094 MLMG: Final Iter. 2 resid, resid/bnorm = 7.437847671e-07, 0.00143244944 MLMG: Timers: Solve = 0.000861375 Iter = 0.00070623 Bottom = 6.7589e-05 Time in solve 0.001324536 Max/L2 norm of divergence after solve at level 1 : 7.851049304e-06 0.0005341935321 and volume-weighted sum 39165.64062 Time integration of scalars at level 1 from 532 to 534 with dt = 2 using RHS created at 532 Making slow rhs at time 534 for fast variables advancing from 532 to 534 No-substepping time integration at level 1 to 534 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005178507417 0.003069628263 and volume-weighted sum 39165.67188 Subtracting 7.285281299e-06 from rhs in subdomain 0 Sum after subtraction 0.04819594324 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005105654709 MLMG: Initial residual (resid0) = 0.0005105654709 MLMG: Final Iter. 2 resid, resid/bnorm = 7.065027603e-07, 0.001383765251 MLMG: Timers: Solve = 0.000835395 Iter = 0.000675889 Bottom = 7.2315e-05 Time in solve 0.001296617 Max/L2 norm of divergence after solve at level 1 : 7.883645594e-06 0.0005341760116 and volume-weighted sum 39165.66797 Time integration of scalars at level 1 from 532 to 534 with dt = 2 using RHS created at 534 Done with advance_dycore at level 1 [Level 1 step 267] Advanced 5376 cells Coarse STEP 267 ends. TIME = 534 DT = 2 Timestep time = 0.020814063 seconds. Coarse STEP 268 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356682757 (terrain aware) 1.356682757 (terrain unaware) Anelastic dt at level 0 would be: 6.089898257 (terrain aware) 6.089898257 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2640635108 (terrain aware) 0.2640635108 (terrain unaware) Anelastic dt at level 1 would be: 2.880599456 (terrain aware) 2.880599456 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 268] ADVANCE from elapsed time = 534 to 536 with dt = 2 Making slow rhs at time 534 for fast variables advancing from 534 to 534.6666666667 Fast time integration at level 0 from 534 to 534.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 534 to 534.6666666667 with dt = 0.6666666666666 using RHS created at 534 Making slow rhs at time 534.6666666667 for fast variables advancing from 534 to 535 Fast time integration at level 0 from 534 to 534.5 with dt = 0.5 Fast time integration at level 0 from 534.5 to 535 with dt = 0.5 Time integration of scalars at level 0 from 534 to 535 with dt = 1 using RHS created at 534.6666666667 Making slow rhs at time 535 for fast variables advancing from 534 to 536 Fast time integration at level 0 from 534 to 534.5 with dt = 0.5 Fast time integration at level 0 from 534.5 to 535 with dt = 0.5 Fast time integration at level 0 from 535 to 535.5 with dt = 0.5 Fast time integration at level 0 from 535.5 to 536 with dt = 0.5 Time integration of scalars at level 0 from 534 to 536 with dt = 2 using RHS created at 535 Done with advance_dycore at level 0 [Level 0 step 268] Advanced 4096 cells [Level 1 step 268] ADVANCE from elapsed time = 534 to 536 with dt = 2 Making slow rhs at time 534 for fast variables advancing from 534 to 536 No-substepping time integration at level 1 to 536 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005569308996 0.003081474686 and volume-weighted sum 22011.86914 Subtracting 4.094469659e-06 from rhs in subdomain 0 Sum after subtraction 0.04447065294 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005528364563 MLMG: Initial residual (resid0) = 0.0005528364563 MLMG: Final Iter. 2 resid, resid/bnorm = 7.446433301e-07, 0.001346950536 MLMG: Timers: Solve = 0.001252748 Iter = 0.000715522 Bottom = 6.6675e-05 Time in solve 0.001728188 Max/L2 norm of divergence after solve at level 1 : 4.705041647e-06 0.0003002473968 and volume-weighted sum 22011.81836 Time integration of scalars at level 1 from 534 to 536 with dt = 2 using RHS created at 534 Making slow rhs at time 536 for fast variables advancing from 534 to 536 No-substepping time integration at level 1 to 536 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005616433918 0.003033152781 and volume-weighted sum 22011.84766 Subtracting 4.094465567e-06 from rhs in subdomain 0 Sum after subtraction 0.06472691894 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005575489486 MLMG: Initial residual (resid0) = 0.0005575489486 MLMG: Final Iter. 2 resid, resid/bnorm = 7.210983313e-07, 0.001293336391 MLMG: Timers: Solve = 0.000825077 Iter = 0.000669253 Bottom = 6.9262e-05 Time in solve 0.001278068 Max/L2 norm of divergence after solve at level 1 : 4.710629582e-06 0.0003002301964 and volume-weighted sum 22011.83594 Time integration of scalars at level 1 from 534 to 536 with dt = 2 using RHS created at 536 Done with advance_dycore at level 1 [Level 1 step 268] Advanced 5376 cells Coarse STEP 268 ends. TIME = 536 DT = 2 Timestep time = 0.021004694 seconds. Coarse STEP 269 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356728951 (terrain aware) 1.356728951 (terrain unaware) Anelastic dt at level 0 would be: 6.088177471 (terrain aware) 6.088177471 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264083795 (terrain aware) 0.264083795 (terrain unaware) Anelastic dt at level 1 would be: 2.875173049 (terrain aware) 2.875173049 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 269] ADVANCE from elapsed time = 536 to 538 with dt = 2 Making slow rhs at time 536 for fast variables advancing from 536 to 536.6666666667 Fast time integration at level 0 from 536 to 536.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 536 to 536.6666666667 with dt = 0.6666666666666 using RHS created at 536 Making slow rhs at time 536.6666666667 for fast variables advancing from 536 to 537 Fast time integration at level 0 from 536 to 536.5 with dt = 0.5 Fast time integration at level 0 from 536.5 to 537 with dt = 0.5 Time integration of scalars at level 0 from 536 to 537 with dt = 1 using RHS created at 536.6666666667 Making slow rhs at time 537 for fast variables advancing from 536 to 538 Fast time integration at level 0 from 536 to 536.5 with dt = 0.5 Fast time integration at level 0 from 536.5 to 537 with dt = 0.5 Fast time integration at level 0 from 537 to 537.5 with dt = 0.5 Fast time integration at level 0 from 537.5 to 538 with dt = 0.5 Time integration of scalars at level 0 from 536 to 538 with dt = 2 using RHS created at 537 Done with advance_dycore at level 0 [Level 0 step 269] Advanced 4096 cells [Level 1 step 269] ADVANCE from elapsed time = 536 to 538 with dt = 2 Making slow rhs at time 536 for fast variables advancing from 536 to 538 No-substepping time integration at level 1 to 538 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005734618753 0.003031354863 and volume-weighted sum 3054.994385 Subtracting 5.682653068e-07 from rhs in subdomain 0 Sum after subtraction 0.1001171768 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005728935939 MLMG: Initial residual (resid0) = 0.0005728935939 MLMG: Final Iter. 2 resid, resid/bnorm = 7.1787872e-07, 0.001253075083 MLMG: Timers: Solve = 0.000833236 Iter = 0.000667115 Bottom = 6.9599e-05 Time in solve 0.001282695 Max/L2 norm of divergence after solve at level 1 : 1.205131412e-06 4.186930528e-05 and volume-weighted sum 3054.973877 Time integration of scalars at level 1 from 536 to 538 with dt = 2 using RHS created at 536 Making slow rhs at time 538 for fast variables advancing from 536 to 538 No-substepping time integration at level 1 to 538 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005450565368 0.003013454843 and volume-weighted sum 3054.990723 Subtracting 5.682646247e-07 from rhs in subdomain 0 Sum after subtraction 0.02759043127 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005444882554 MLMG: Initial residual (resid0) = 0.0005444882554 MLMG: Final Iter. 2 resid, resid/bnorm = 7.302733138e-07, 0.001341210445 MLMG: Timers: Solve = 0.000839858 Iter = 0.000685918 Bottom = 6.9672e-05 Time in solve 0.001288951 Max/L2 norm of divergence after solve at level 1 : 1.175329089e-06 4.179886309e-05 and volume-weighted sum 3055.016113 Time integration of scalars at level 1 from 536 to 538 with dt = 2 using RHS created at 538 Done with advance_dycore at level 1 [Level 1 step 269] Advanced 5376 cells Coarse STEP 269 ends. TIME = 538 DT = 2 Timestep time = 0.02049516 seconds. Coarse STEP 270 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357023547 (terrain aware) 1.357023547 (terrain unaware) Anelastic dt at level 0 would be: 6.091097503 (terrain aware) 6.091097503 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2641341982 (terrain aware) 0.2641341982 (terrain unaware) Anelastic dt at level 1 would be: 2.8712305 (terrain aware) 2.8712305 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 270] ADVANCE from elapsed time = 538 to 540 with dt = 2 Making slow rhs at time 538 for fast variables advancing from 538 to 538.6666666667 Fast time integration at level 0 from 538 to 538.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 538 to 538.6666666667 with dt = 0.6666666666666 using RHS created at 538 Making slow rhs at time 538.6666666667 for fast variables advancing from 538 to 539 Fast time integration at level 0 from 538 to 538.5 with dt = 0.5 Fast time integration at level 0 from 538.5 to 539 with dt = 0.5 Time integration of scalars at level 0 from 538 to 539 with dt = 1 using RHS created at 538.6666666667 Making slow rhs at time 539 for fast variables advancing from 538 to 540 Fast time integration at level 0 from 538 to 538.5 with dt = 0.5 Fast time integration at level 0 from 538.5 to 539 with dt = 0.5 Fast time integration at level 0 from 539 to 539.5 with dt = 0.5 Fast time integration at level 0 from 539.5 to 540 with dt = 0.5 Time integration of scalars at level 0 from 538 to 540 with dt = 2 using RHS created at 539 Done with advance_dycore at level 0 [Level 0 step 270] Advanced 4096 cells [Level 1 step 270] ADVANCE from elapsed time = 538 to 540 with dt = 2 Making slow rhs at time 538 for fast variables advancing from 538 to 540 No-substepping time integration at level 1 to 540 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004807189107 0.003029305488 and volume-weighted sum -14879.21094 Subtracting -2.767710384e-06 from rhs in subdomain 0 Sum after subtraction -0.03888271749 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004834866268 MLMG: Initial residual (resid0) = 0.0004834866268 MLMG: Final Iter. 2 resid, resid/bnorm = 7.034504961e-07, 0.001454953337 MLMG: Timers: Solve = 0.000828846 Iter = 0.000667769 Bottom = 7.196e-05 Time in solve 0.001276058 Max/L2 norm of divergence after solve at level 1 : 3.413986633e-06 0.0002029737807 and volume-weighted sum -14879.18066 Time integration of scalars at level 1 from 538 to 540 with dt = 2 using RHS created at 538 Making slow rhs at time 540 for fast variables advancing from 538 to 540 No-substepping time integration at level 1 to 540 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005028583109 0.003015000373 and volume-weighted sum -14879.2168 Subtracting -2.767711521e-06 from rhs in subdomain 0 Sum after subtraction -0.1305015683 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000505626027 MLMG: Initial residual (resid0) = 0.000505626027 MLMG: Final Iter. 2 resid, resid/bnorm = 7.334383554e-07, 0.001450554933 MLMG: Timers: Solve = 0.000822183 Iter = 0.000661937 Bottom = 6.3497e-05 Time in solve 0.001272375 Max/L2 norm of divergence after solve at level 1 : 3.505423592e-06 0.0002029593452 and volume-weighted sum -14879.22363 Time integration of scalars at level 1 from 538 to 540 with dt = 2 using RHS created at 540 Done with advance_dycore at level 1 [Level 1 step 270] Advanced 5376 cells Coarse STEP 270 ends. TIME = 540 DT = 2 Timestep time = 0.0210715 seconds. Coarse STEP 271 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357440928 (terrain aware) 1.357440928 (terrain unaware) Anelastic dt at level 0 would be: 6.09855762 (terrain aware) 6.09855762 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2641661053 (terrain aware) 0.2641661053 (terrain unaware) Anelastic dt at level 1 would be: 2.866657334 (terrain aware) 2.866657334 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 271] ADVANCE from elapsed time = 540 to 542 with dt = 2 Making slow rhs at time 540 for fast variables advancing from 540 to 540.6666666667 Fast time integration at level 0 from 540 to 540.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 540 to 540.6666666667 with dt = 0.6666666666666 using RHS created at 540 Making slow rhs at time 540.6666666667 for fast variables advancing from 540 to 541 Fast time integration at level 0 from 540 to 540.5 with dt = 0.5 Fast time integration at level 0 from 540.5 to 541 with dt = 0.5 Time integration of scalars at level 0 from 540 to 541 with dt = 1 using RHS created at 540.6666666667 Making slow rhs at time 541 for fast variables advancing from 540 to 542 Fast time integration at level 0 from 540 to 540.5 with dt = 0.5 Fast time integration at level 0 from 540.5 to 541 with dt = 0.5 Fast time integration at level 0 from 541 to 541.5 with dt = 0.5 Fast time integration at level 0 from 541.5 to 542 with dt = 0.5 Time integration of scalars at level 0 from 540 to 542 with dt = 2 using RHS created at 541 Done with advance_dycore at level 0 [Level 0 step 271] Advanced 4096 cells [Level 1 step 271] ADVANCE from elapsed time = 540 to 542 with dt = 2 Making slow rhs at time 540 for fast variables advancing from 540 to 542 No-substepping time integration at level 1 to 542 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005716457963 0.003061954863 and volume-weighted sum -29337.05664 Subtracting -5.45704188e-06 from rhs in subdomain 0 Sum after subtraction 0.01885928214 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005771028227 MLMG: Initial residual (resid0) = 0.0005771028227 MLMG: Final Iter. 2 resid, resid/bnorm = 7.875960364e-07, 0.001364741242 MLMG: Timers: Solve = 0.000831944 Iter = 0.000678909 Bottom = 8.043e-05 Time in solve 0.001287142 Max/L2 norm of divergence after solve at level 1 : 6.063841283e-06 0.0004001445195 and volume-weighted sum -29337.06836 Time integration of scalars at level 1 from 540 to 542 with dt = 2 using RHS created at 540 Making slow rhs at time 542 for fast variables advancing from 540 to 542 No-substepping time integration at level 1 to 542 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005615353584 0.003029164393 and volume-weighted sum -29337.04688 Subtracting -5.457040061e-06 from rhs in subdomain 0 Sum after subtraction 0.1011649147 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005669923848 MLMG: Initial residual (resid0) = 0.0005669923848 MLMG: Final Iter. 2 resid, resid/bnorm = 7.282324077e-07, 0.001284377766 MLMG: Timers: Solve = 0.000834039 Iter = 0.00067926 Bottom = 7.1811e-05 Time in solve 0.001290499 Max/L2 norm of divergence after solve at level 1 : 6.16768375e-06 0.0004001307243 and volume-weighted sum -29337.0625 Time integration of scalars at level 1 from 540 to 542 with dt = 2 using RHS created at 542 Done with advance_dycore at level 1 [Level 1 step 271] Advanced 5376 cells Coarse STEP 271 ends. TIME = 542 DT = 2 Timestep time = 0.021565521 seconds. Coarse STEP 272 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356265823 (terrain aware) 1.356265823 (terrain unaware) Anelastic dt at level 0 would be: 6.097696333 (terrain aware) 6.097696333 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2641978262 (terrain aware) 0.2641978262 (terrain unaware) Anelastic dt at level 1 would be: 2.859547394 (terrain aware) 2.859547394 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 272] ADVANCE from elapsed time = 542 to 544 with dt = 2 Making slow rhs at time 542 for fast variables advancing from 542 to 542.6666666667 Fast time integration at level 0 from 542 to 542.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 542 to 542.6666666667 with dt = 0.6666666666666 using RHS created at 542 Making slow rhs at time 542.6666666667 for fast variables advancing from 542 to 543 Fast time integration at level 0 from 542 to 542.5 with dt = 0.5 Fast time integration at level 0 from 542.5 to 543 with dt = 0.5 Time integration of scalars at level 0 from 542 to 543 with dt = 1 using RHS created at 542.6666666667 Making slow rhs at time 543 for fast variables advancing from 542 to 544 Fast time integration at level 0 from 542 to 542.5 with dt = 0.5 Fast time integration at level 0 from 542.5 to 543 with dt = 0.5 Fast time integration at level 0 from 543 to 543.5 with dt = 0.5 Fast time integration at level 0 from 543.5 to 544 with dt = 0.5 Time integration of scalars at level 0 from 542 to 544 with dt = 2 using RHS created at 543 Done with advance_dycore at level 0 [Level 0 step 272] Advanced 4096 cells [Level 1 step 272] ADVANCE from elapsed time = 542 to 544 with dt = 2 Making slow rhs at time 542 for fast variables advancing from 542 to 544 No-substepping time integration at level 1 to 544 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005349069834 0.003098224755 and volume-weighted sum -38406.13281 Subtracting -7.143998118e-06 from rhs in subdomain 0 Sum after subtraction -0.05937181413 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005420509842 MLMG: Initial residual (resid0) = 0.0005420509842 MLMG: Final Iter. 2 resid, resid/bnorm = 8.526958482e-07, 0.001573091606 MLMG: Timers: Solve = 0.000837899 Iter = 0.00067109 Bottom = 7.1944e-05 Time in solve 0.001288026 Max/L2 norm of divergence after solve at level 1 : 7.987371646e-06 0.0005238323356 and volume-weighted sum -38406.13281 Time integration of scalars at level 1 from 542 to 544 with dt = 2 using RHS created at 542 Making slow rhs at time 544 for fast variables advancing from 542 to 544 No-substepping time integration at level 1 to 544 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005140714347 0.003042154014 and volume-weighted sum -38406.13281 Subtracting -7.143998118e-06 from rhs in subdomain 0 Sum after subtraction -0.1376029104 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005212154356 MLMG: Initial residual (resid0) = 0.0005212154356 MLMG: Final Iter. 2 resid, resid/bnorm = 7.16685463e-07, 0.00137502735 MLMG: Timers: Solve = 0.000836528 Iter = 0.000670732 Bottom = 7.0609e-05 Time in solve 0.001285119 Max/L2 norm of divergence after solve at level 1 : 7.868162356e-06 0.0005238172598 and volume-weighted sum -38406.14844 Time integration of scalars at level 1 from 542 to 544 with dt = 2 using RHS created at 544 Done with advance_dycore at level 1 [Level 1 step 272] Advanced 5376 cells Coarse STEP 272 ends. TIME = 544 DT = 2 Timestep time = 0.020801877 seconds. Coarse STEP 273 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.355398873 (terrain aware) 1.355398873 (terrain unaware) Anelastic dt at level 0 would be: 6.083162336 (terrain aware) 6.083162336 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2642562946 (terrain aware) 0.2642562946 (terrain unaware) Anelastic dt at level 1 would be: 2.854218142 (terrain aware) 2.854218142 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 273] ADVANCE from elapsed time = 544 to 546 with dt = 2 Making slow rhs at time 544 for fast variables advancing from 544 to 544.6666666667 Fast time integration at level 0 from 544 to 544.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 544 to 544.6666666667 with dt = 0.6666666666666 using RHS created at 544 Making slow rhs at time 544.6666666667 for fast variables advancing from 544 to 545 Fast time integration at level 0 from 544 to 544.5 with dt = 0.5 Fast time integration at level 0 from 544.5 to 545 with dt = 0.5 Time integration of scalars at level 0 from 544 to 545 with dt = 1 using RHS created at 544.6666666667 Making slow rhs at time 545 for fast variables advancing from 544 to 546 Fast time integration at level 0 from 544 to 544.5 with dt = 0.5 Fast time integration at level 0 from 544.5 to 545 with dt = 0.5 Fast time integration at level 0 from 545 to 545.5 with dt = 0.5 Fast time integration at level 0 from 545.5 to 546 with dt = 0.5 Time integration of scalars at level 0 from 544 to 546 with dt = 2 using RHS created at 545 Done with advance_dycore at level 0 [Level 0 step 273] Advanced 4096 cells [Level 1 step 273] ADVANCE from elapsed time = 544 to 546 with dt = 2 Making slow rhs at time 544 for fast variables advancing from 544 to 546 No-substepping time integration at level 1 to 546 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000522069633 0.003102623159 and volume-weighted sum -41062.40625 Subtracting -7.638096577e-06 from rhs in subdomain 0 Sum after subtraction 0.0346917659 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005297077587 MLMG: Initial residual (resid0) = 0.0005297077587 MLMG: Final Iter. 2 resid, resid/bnorm = 8.599885177e-07, 0.00162351504 MLMG: Timers: Solve = 0.000829643 Iter = 0.000667848 Bottom = 7.1183e-05 Time in solve 0.001279745 Max/L2 norm of divergence after solve at level 1 : 8.498085663e-06 0.0005600575241 and volume-weighted sum -41062.34766 Time integration of scalars at level 1 from 544 to 546 with dt = 2 using RHS created at 544 Making slow rhs at time 546 for fast variables advancing from 544 to 546 No-substepping time integration at level 1 to 546 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005389302969 0.003042728407 and volume-weighted sum -41062.375 Subtracting -7.63809021e-06 from rhs in subdomain 0 Sum after subtraction 0.02130400389 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005465683644 MLMG: Initial residual (resid0) = 0.0005465683644 MLMG: Final Iter. 2 resid, resid/bnorm = 6.997724995e-07, 0.001280301833 MLMG: Timers: Solve = 0.000823653 Iter = 0.000671442 Bottom = 7.0438e-05 Time in solve 0.001273823 Max/L2 norm of divergence after solve at level 1 : 8.351868019e-06 0.0005600454751 and volume-weighted sum -41062.38281 Time integration of scalars at level 1 from 544 to 546 with dt = 2 using RHS created at 546 Done with advance_dycore at level 1 [Level 1 step 273] Advanced 5376 cells Coarse STEP 273 ends. TIME = 546 DT = 2 Timestep time = 0.020732534 seconds. Coarse STEP 274 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.354854236 (terrain aware) 1.354854236 (terrain unaware) Anelastic dt at level 0 would be: 6.073955803 (terrain aware) 6.073955803 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2643121553 (terrain aware) 0.2643121553 (terrain unaware) Anelastic dt at level 1 would be: 2.850786703 (terrain aware) 2.850786703 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 274] ADVANCE from elapsed time = 546 to 548 with dt = 2 Making slow rhs at time 546 for fast variables advancing from 546 to 546.6666666667 Fast time integration at level 0 from 546 to 546.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 546 to 546.6666666667 with dt = 0.6666666666666 using RHS created at 546 Making slow rhs at time 546.6666666667 for fast variables advancing from 546 to 547 Fast time integration at level 0 from 546 to 546.5 with dt = 0.5 Fast time integration at level 0 from 546.5 to 547 with dt = 0.5 Time integration of scalars at level 0 from 546 to 547 with dt = 1 using RHS created at 546.6666666667 Making slow rhs at time 547 for fast variables advancing from 546 to 548 Fast time integration at level 0 from 546 to 546.5 with dt = 0.5 Fast time integration at level 0 from 546.5 to 547 with dt = 0.5 Fast time integration at level 0 from 547 to 547.5 with dt = 0.5 Fast time integration at level 0 from 547.5 to 548 with dt = 0.5 Time integration of scalars at level 0 from 546 to 548 with dt = 2 using RHS created at 547 Done with advance_dycore at level 0 [Level 0 step 274] Advanced 4096 cells [Level 1 step 274] ADVANCE from elapsed time = 546 to 548 with dt = 2 Making slow rhs at time 546 for fast variables advancing from 546 to 548 No-substepping time integration at level 1 to 548 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005738995969 0.003067512298 and volume-weighted sum -37759.84375 Subtracting -7.023780654e-06 from rhs in subdomain 0 Sum after subtraction 0.0384170562 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000580923399 MLMG: Initial residual (resid0) = 0.000580923399 MLMG: Final Iter. 2 resid, resid/bnorm = 7.926682883e-07, 0.001364497119 MLMG: Timers: Solve = 0.000819297 Iter = 0.000664692 Bottom = 7.0193e-05 Time in solve 0.001272752 Max/L2 norm of divergence after solve at level 1 : 7.626251318e-06 0.0005150089273 and volume-weighted sum -37759.87891 Time integration of scalars at level 1 from 546 to 548 with dt = 2 using RHS created at 546 Making slow rhs at time 548 for fast variables advancing from 546 to 548 No-substepping time integration at level 1 to 548 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005493331701 0.00302763842 and volume-weighted sum -37759.84766 Subtracting -7.023781109e-06 from rhs in subdomain 0 Sum after subtraction 0.05506444722 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005563569721 MLMG: Initial residual (resid0) = 0.0005563569721 MLMG: Final Iter. 2 resid, resid/bnorm = 6.961527106e-07, 0.00125126983 MLMG: Timers: Solve = 0.001129704 Iter = 0.000927988 Bottom = 6.9459e-05 Time in solve 0.001600854 Max/L2 norm of divergence after solve at level 1 : 7.71926716e-06 0.0005150024663 and volume-weighted sum -37759.87891 Time integration of scalars at level 1 from 546 to 548 with dt = 2 using RHS created at 548 Done with advance_dycore at level 1 [Level 1 step 274] Advanced 5376 cells Coarse STEP 274 ends. TIME = 548 DT = 2 Timestep time = 0.0211269 seconds. Coarse STEP 275 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.354644725 (terrain aware) 1.354644725 (terrain unaware) Anelastic dt at level 0 would be: 6.070136933 (terrain aware) 6.070136933 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2643514013 (terrain aware) 0.2643514013 (terrain unaware) Anelastic dt at level 1 would be: 2.849225955 (terrain aware) 2.849225955 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 275] ADVANCE from elapsed time = 548 to 550 with dt = 2 Making slow rhs at time 548 for fast variables advancing from 548 to 548.6666666667 Fast time integration at level 0 from 548 to 548.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 548 to 548.6666666667 with dt = 0.6666666666666 using RHS created at 548 Making slow rhs at time 548.6666666667 for fast variables advancing from 548 to 549 Fast time integration at level 0 from 548 to 548.5 with dt = 0.5 Fast time integration at level 0 from 548.5 to 549 with dt = 0.5 Time integration of scalars at level 0 from 548 to 549 with dt = 1 using RHS created at 548.6666666667 Making slow rhs at time 549 for fast variables advancing from 548 to 550 Fast time integration at level 0 from 548 to 548.5 with dt = 0.5 Fast time integration at level 0 from 548.5 to 549 with dt = 0.5 Fast time integration at level 0 from 549 to 549.5 with dt = 0.5 Fast time integration at level 0 from 549.5 to 550 with dt = 0.5 Time integration of scalars at level 0 from 548 to 550 with dt = 2 using RHS created at 549 Done with advance_dycore at level 0 [Level 0 step 275] Advanced 4096 cells [Level 1 step 275] ADVANCE from elapsed time = 548 to 550 with dt = 2 Making slow rhs at time 548 for fast variables advancing from 548 to 550 No-substepping time integration at level 1 to 550 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004910025746 0.003022337565 and volume-weighted sum -30545.27344 Subtracting -5.681784387e-06 from rhs in subdomain 0 Sum after subtraction -0.0154832378 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004966843408 MLMG: Initial residual (resid0) = 0.0004966843408 MLMG: Final Iter. 2 resid, resid/bnorm = 7.086273399e-07, 0.001426715637 MLMG: Timers: Solve = 0.000820643 Iter = 0.000667251 Bottom = 6.897e-05 Time in solve 0.001285305 Max/L2 norm of divergence after solve at level 1 : 6.40982762e-06 0.0004166149884 and volume-weighted sum -30545.3125 Time integration of scalars at level 1 from 548 to 550 with dt = 2 using RHS created at 548 Making slow rhs at time 550 for fast variables advancing from 548 to 550 No-substepping time integration at level 1 to 550 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004948247224 0.003006110899 and volume-weighted sum -30545.30078 Subtracting -5.681789389e-06 from rhs in subdomain 0 Sum after subtraction -0.03399327397 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005005064886 MLMG: Initial residual (resid0) = 0.0005005064886 MLMG: Final Iter. 2 resid, resid/bnorm = 7.056369213e-07, 0.00140984566 MLMG: Timers: Solve = 0.000833843 Iter = 0.000675236 Bottom = 7.5071e-05 Time in solve 0.001295162 Max/L2 norm of divergence after solve at level 1 : 6.408430636e-06 0.0004166093131 and volume-weighted sum -30545.32227 Time integration of scalars at level 1 from 548 to 550 with dt = 2 using RHS created at 550 Done with advance_dycore at level 1 [Level 1 step 275] Advanced 5376 cells Coarse STEP 275 ends. TIME = 550 DT = 2 Timestep time = 0.020893558 seconds. Coarse STEP 276 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.354777942 (terrain aware) 1.354777942 (terrain unaware) Anelastic dt at level 0 would be: 6.071653276 (terrain aware) 6.071653276 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2644118627 (terrain aware) 0.2644118627 (terrain unaware) Anelastic dt at level 1 would be: 2.842605668 (terrain aware) 2.842605668 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 276] ADVANCE from elapsed time = 550 to 552 with dt = 2 Making slow rhs at time 550 for fast variables advancing from 550 to 550.6666666667 Fast time integration at level 0 from 550 to 550.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 550 to 550.6666666667 with dt = 0.6666666666666 using RHS created at 550 Making slow rhs at time 550.6666666667 for fast variables advancing from 550 to 551 Fast time integration at level 0 from 550 to 550.5 with dt = 0.5 Fast time integration at level 0 from 550.5 to 551 with dt = 0.5 Time integration of scalars at level 0 from 550 to 551 with dt = 1 using RHS created at 550.6666666667 Making slow rhs at time 551 for fast variables advancing from 550 to 552 Fast time integration at level 0 from 550 to 550.5 with dt = 0.5 Fast time integration at level 0 from 550.5 to 551 with dt = 0.5 Fast time integration at level 0 from 551 to 551.5 with dt = 0.5 Fast time integration at level 0 from 551.5 to 552 with dt = 0.5 Time integration of scalars at level 0 from 550 to 552 with dt = 2 using RHS created at 551 Done with advance_dycore at level 0 [Level 0 step 276] Advanced 4096 cells [Level 1 step 276] ADVANCE from elapsed time = 550 to 552 with dt = 2 Making slow rhs at time 550 for fast variables advancing from 550 to 552 No-substepping time integration at level 1 to 552 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005607493222 0.003007438034 and volume-weighted sum -22415.98828 Subtracting -4.169640761e-06 from rhs in subdomain 0 Sum after subtraction 0.01076841727 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005649189698 MLMG: Initial residual (resid0) = 0.0005649189698 MLMG: Final Iter. 2 resid, resid/bnorm = 8.415045158e-07, 0.001489602146 MLMG: Timers: Solve = 0.000836205 Iter = 0.000680712 Bottom = 7.3939e-05 Time in solve 0.001292257 Max/L2 norm of divergence after solve at level 1 : 4.977657227e-06 0.0003057623107 and volume-weighted sum -22416.03711 Time integration of scalars at level 1 from 550 to 552 with dt = 2 using RHS created at 550 Making slow rhs at time 552 for fast variables advancing from 550 to 552 No-substepping time integration at level 1 to 552 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005622394383 0.002985716099 and volume-weighted sum -22415.99414 Subtracting -4.16964167e-06 from rhs in subdomain 0 Sum after subtraction 0.001396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005664090859 MLMG: Initial residual (resid0) = 0.0005664090859 MLMG: Final Iter. 2 resid, resid/bnorm = 7.078888302e-07, 0.001249783672 MLMG: Timers: Solve = 0.000837725 Iter = 0.000679217 Bottom = 7.2417e-05 Time in solve 0.001292151 Max/L2 norm of divergence after solve at level 1 : 4.887580872e-06 0.0003057405411 and volume-weighted sum -22415.98633 Time integration of scalars at level 1 from 550 to 552 with dt = 2 using RHS created at 552 Done with advance_dycore at level 1 [Level 1 step 276] Advanced 5376 cells Coarse STEP 276 ends. TIME = 552 DT = 2 Timestep time = 0.020885504 seconds. Coarse STEP 277 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353923509 (terrain aware) 1.353923509 (terrain unaware) Anelastic dt at level 0 would be: 6.078340321 (terrain aware) 6.078340321 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2644889017 (terrain aware) 0.2644889017 (terrain unaware) Anelastic dt at level 1 would be: 2.837662655 (terrain aware) 2.837662655 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 277] ADVANCE from elapsed time = 552 to 554 with dt = 2 Making slow rhs at time 552 for fast variables advancing from 552 to 552.6666666667 Fast time integration at level 0 from 552 to 552.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 552 to 552.6666666667 with dt = 0.6666666666666 using RHS created at 552 Making slow rhs at time 552.6666666667 for fast variables advancing from 552 to 553 Fast time integration at level 0 from 552 to 552.5 with dt = 0.5 Fast time integration at level 0 from 552.5 to 553 with dt = 0.5 Time integration of scalars at level 0 from 552 to 553 with dt = 1 using RHS created at 552.6666666667 Making slow rhs at time 553 for fast variables advancing from 552 to 554 Fast time integration at level 0 from 552 to 552.5 with dt = 0.5 Fast time integration at level 0 from 552.5 to 553 with dt = 0.5 Fast time integration at level 0 from 553 to 553.5 with dt = 0.5 Fast time integration at level 0 from 553.5 to 554 with dt = 0.5 Time integration of scalars at level 0 from 552 to 554 with dt = 2 using RHS created at 553 Done with advance_dycore at level 0 [Level 0 step 277] Advanced 4096 cells [Level 1 step 277] ADVANCE from elapsed time = 552 to 554 with dt = 2 Making slow rhs at time 552 for fast variables advancing from 552 to 554 No-substepping time integration at level 1 to 554 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000563044101 0.003015198978 and volume-weighted sum -15833.45215 Subtracting -2.945210554e-06 from rhs in subdomain 0 Sum after subtraction -0.03824243322 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005659892922 MLMG: Initial residual (resid0) = 0.0005659892922 MLMG: Final Iter. 2 resid, resid/bnorm = 9.200302884e-07, 0.001625525998 MLMG: Timers: Solve = 0.000839618 Iter = 0.000683269 Bottom = 7.0572e-05 Time in solve 0.00129712 Max/L2 norm of divergence after solve at level 1 : 3.843393642e-06 0.0002160212898 and volume-weighted sum -15833.42285 Time integration of scalars at level 1 from 552 to 554 with dt = 2 using RHS created at 552 Making slow rhs at time 554 for fast variables advancing from 552 to 554 No-substepping time integration at level 1 to 554 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005352012813 0.002971008886 and volume-weighted sum -15833.42285 Subtracting -2.945205097e-06 from rhs in subdomain 0 Sum after subtraction 0.006053596735 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005381464725 MLMG: Initial residual (resid0) = 0.0005381464725 MLMG: Final Iter. 2 resid, resid/bnorm = 7.060480129e-07, 0.001311999746 MLMG: Timers: Solve = 0.000855165 Iter = 0.000699505 Bottom = 7.2262e-05 Time in solve 0.001313853 Max/L2 norm of divergence after solve at level 1 : 3.646855475e-06 0.0002159704891 and volume-weighted sum -15833.37012 Time integration of scalars at level 1 from 552 to 554 with dt = 2 using RHS created at 554 Done with advance_dycore at level 1 [Level 1 step 277] Advanced 5376 cells Coarse STEP 277 ends. TIME = 554 DT = 2 Timestep time = 0.021006318 seconds. Coarse STEP 278 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352997402 (terrain aware) 1.352997402 (terrain unaware) Anelastic dt at level 0 would be: 6.084099321 (terrain aware) 6.084099321 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645345365 (terrain aware) 0.2645345365 (terrain unaware) Anelastic dt at level 1 would be: 2.834401088 (terrain aware) 2.834401088 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 278] ADVANCE from elapsed time = 554 to 556 with dt = 2 Making slow rhs at time 554 for fast variables advancing from 554 to 554.6666666667 Fast time integration at level 0 from 554 to 554.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 554 to 554.6666666667 with dt = 0.6666666666666 using RHS created at 554 Making slow rhs at time 554.6666666667 for fast variables advancing from 554 to 555 Fast time integration at level 0 from 554 to 554.5 with dt = 0.5 Fast time integration at level 0 from 554.5 to 555 with dt = 0.5 Time integration of scalars at level 0 from 554 to 555 with dt = 1 using RHS created at 554.6666666667 Making slow rhs at time 555 for fast variables advancing from 554 to 556 Fast time integration at level 0 from 554 to 554.5 with dt = 0.5 Fast time integration at level 0 from 554.5 to 555 with dt = 0.5 Fast time integration at level 0 from 555 to 555.5 with dt = 0.5 Fast time integration at level 0 from 555.5 to 556 with dt = 0.5 Time integration of scalars at level 0 from 554 to 556 with dt = 2 using RHS created at 555 Done with advance_dycore at level 0 [Level 0 step 278] Advanced 4096 cells [Level 1 step 278] ADVANCE from elapsed time = 554 to 556 with dt = 2 Making slow rhs at time 554 for fast variables advancing from 554 to 556 No-substepping time integration at level 1 to 556 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004923157394 0.003009801963 and volume-weighted sum -11357.53223 Subtracting -2.112636139e-06 from rhs in subdomain 0 Sum after subtraction 0.01222360879 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004944283864 MLMG: Initial residual (resid0) = 0.0004944283864 MLMG: Final Iter. 2 resid, resid/bnorm = 9.181385394e-07, 0.001856969669 MLMG: Timers: Solve = 0.000837772 Iter = 0.000678141 Bottom = 6.9739e-05 Time in solve 0.001293809 Max/L2 norm of divergence after solve at level 1 : 3.043445759e-06 0.000155010348 and volume-weighted sum -11357.52539 Time integration of scalars at level 1 from 554 to 556 with dt = 2 using RHS created at 554 Making slow rhs at time 556 for fast variables advancing from 554 to 556 No-substepping time integration at level 1 to 556 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005189701915 0.002960876329 and volume-weighted sum -11357.53711 Subtracting -2.112637048e-06 from rhs in subdomain 0 Sum after subtraction 0.06332993507 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005210828385 MLMG: Initial residual (resid0) = 0.0005210828385 MLMG: Final Iter. 2 resid, resid/bnorm = 7.001654012e-07, 0.00134367391 MLMG: Timers: Solve = 0.0008327 Iter = 0.000672164 Bottom = 7.1962e-05 Time in solve 0.001287756 Max/L2 norm of divergence after solve at level 1 : 2.806307748e-06 0.0001549355366 and volume-weighted sum -11357.49414 Time integration of scalars at level 1 from 554 to 556 with dt = 2 using RHS created at 556 Done with advance_dycore at level 1 [Level 1 step 278] Advanced 5376 cells Coarse STEP 278 ends. TIME = 556 DT = 2 Timestep time = 0.02091981 seconds. Coarse STEP 279 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352440993 (terrain aware) 1.352440993 (terrain unaware) Anelastic dt at level 0 would be: 6.075010805 (terrain aware) 6.075010805 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645858897 (terrain aware) 0.2645858897 (terrain unaware) Anelastic dt at level 1 would be: 2.832843917 (terrain aware) 2.832843917 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 279] ADVANCE from elapsed time = 556 to 558 with dt = 2 Making slow rhs at time 556 for fast variables advancing from 556 to 556.6666666667 Fast time integration at level 0 from 556 to 556.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 556 to 556.6666666667 with dt = 0.6666666666666 using RHS created at 556 Making slow rhs at time 556.6666666667 for fast variables advancing from 556 to 557 Fast time integration at level 0 from 556 to 556.5 with dt = 0.5 Fast time integration at level 0 from 556.5 to 557 with dt = 0.5 Time integration of scalars at level 0 from 556 to 557 with dt = 1 using RHS created at 556.6666666667 Making slow rhs at time 557 for fast variables advancing from 556 to 558 Fast time integration at level 0 from 556 to 556.5 with dt = 0.5 Fast time integration at level 0 from 556.5 to 557 with dt = 0.5 Fast time integration at level 0 from 557 to 557.5 with dt = 0.5 Fast time integration at level 0 from 557.5 to 558 with dt = 0.5 Time integration of scalars at level 0 from 556 to 558 with dt = 2 using RHS created at 557 Done with advance_dycore at level 0 [Level 0 step 279] Advanced 4096 cells [Level 1 step 279] ADVANCE from elapsed time = 556 to 558 with dt = 2 Making slow rhs at time 556 for fast variables advancing from 556 to 558 No-substepping time integration at level 1 to 558 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005799122155 0.002981746104 and volume-weighted sum -7503.045898 Subtracting -1.395655886e-06 from rhs in subdomain 0 Sum after subtraction -0.05715992302 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005813078606 MLMG: Initial residual (resid0) = 0.0005813078606 MLMG: Final Iter. 2 resid, resid/bnorm = 8.370698197e-07, 0.001439976739 MLMG: Timers: Solve = 0.001087276 Iter = 0.000844335 Bottom = 7.4116e-05 Time in solve 0.00156519 Max/L2 norm of divergence after solve at level 1 : 2.243090421e-06 0.0001024625744 and volume-weighted sum -7503.015137 Time integration of scalars at level 1 from 556 to 558 with dt = 2 using RHS created at 556 Making slow rhs at time 558 for fast variables advancing from 556 to 558 No-substepping time integration at level 1 to 558 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005673915148 0.002951648552 and volume-weighted sum -7503.005859 Subtracting -1.395648383e-06 from rhs in subdomain 0 Sum after subtraction -0.05168840289 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005687871599 MLMG: Initial residual (resid0) = 0.0005687871599 MLMG: Final Iter. 2 resid, resid/bnorm = 6.896098057e-07, 0.001212421572 MLMG: Timers: Solve = 0.000833372 Iter = 0.000676693 Bottom = 7.2645e-05 Time in solve 0.001288078 Max/L2 norm of divergence after solve at level 1 : 2.081505954e-06 0.0001023843943 and volume-weighted sum -7503.027832 Time integration of scalars at level 1 from 556 to 558 with dt = 2 using RHS created at 558 Done with advance_dycore at level 1 [Level 1 step 279] Advanced 5376 cells Coarse STEP 279 ends. TIME = 558 DT = 2 Timestep time = 0.020939206 seconds. Coarse STEP 280 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352245191 (terrain aware) 1.352245191 (terrain unaware) Anelastic dt at level 0 would be: 6.072680264 (terrain aware) 6.072680264 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646502813 (terrain aware) 0.2646502813 (terrain unaware) Anelastic dt at level 1 would be: 2.828125614 (terrain aware) 2.828125614 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 280] ADVANCE from elapsed time = 558 to 560 with dt = 2 Making slow rhs at time 558 for fast variables advancing from 558 to 558.6666666667 Fast time integration at level 0 from 558 to 558.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 558 to 558.6666666667 with dt = 0.6666666666666 using RHS created at 558 Making slow rhs at time 558.6666666667 for fast variables advancing from 558 to 559 Fast time integration at level 0 from 558 to 558.5 with dt = 0.5 Fast time integration at level 0 from 558.5 to 559 with dt = 0.5 Time integration of scalars at level 0 from 558 to 559 with dt = 1 using RHS created at 558.6666666667 Making slow rhs at time 559 for fast variables advancing from 558 to 560 Fast time integration at level 0 from 558 to 558.5 with dt = 0.5 Fast time integration at level 0 from 558.5 to 559 with dt = 0.5 Fast time integration at level 0 from 559 to 559.5 with dt = 0.5 Fast time integration at level 0 from 559.5 to 560 with dt = 0.5 Time integration of scalars at level 0 from 558 to 560 with dt = 2 using RHS created at 559 Done with advance_dycore at level 0 [Level 0 step 280] Advanced 4096 cells [Level 1 step 280] ADVANCE from elapsed time = 558 to 560 with dt = 2 Making slow rhs at time 558 for fast variables advancing from 558 to 560 No-substepping time integration at level 1 to 560 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005335360765 0.002963066334 and volume-weighted sum -1870.008667 Subtracting -3.478438657e-07 from rhs in subdomain 0 Sum after subtraction -0.05285255611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005338839255 MLMG: Initial residual (resid0) = 0.0005338839255 MLMG: Final Iter. 2 resid, resid/bnorm = 7.390699466e-07, 0.001384327072 MLMG: Timers: Solve = 0.000837373 Iter = 0.000679146 Bottom = 7.384e-05 Time in solve 0.001285409 Max/L2 norm of divergence after solve at level 1 : 1.081265509e-06 2.592334386e-05 and volume-weighted sum -1870.050049 Time integration of scalars at level 1 from 558 to 560 with dt = 2 using RHS created at 558 Making slow rhs at time 560 for fast variables advancing from 558 to 560 No-substepping time integration at level 1 to 560 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005138255656 0.002943812404 and volume-weighted sum -1870.01355 Subtracting -3.478447752e-07 from rhs in subdomain 0 Sum after subtraction -0.04936009645 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005141734146 MLMG: Initial residual (resid0) = 0.0005141734146 MLMG: Final Iter. 2 resid, resid/bnorm = 7.02082616e-07, 0.001365458826 MLMG: Timers: Solve = 0.000842568 Iter = 0.000686736 Bottom = 7.1169e-05 Time in solve 0.001290672 Max/L2 norm of divergence after solve at level 1 : 1.061940566e-06 2.57175725e-05 and volume-weighted sum -1870.006714 Time integration of scalars at level 1 from 558 to 560 with dt = 2 using RHS created at 560 Done with advance_dycore at level 1 [Level 1 step 280] Advanced 5376 cells Coarse STEP 280 ends. TIME = 560 DT = 2 Timestep time = 0.020921281 seconds. Coarse STEP 281 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352395246 (terrain aware) 1.352395246 (terrain unaware) Anelastic dt at level 0 would be: 6.076869874 (terrain aware) 6.076869874 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647258674 (terrain aware) 0.2647258674 (terrain unaware) Anelastic dt at level 1 would be: 2.823358136 (terrain aware) 2.823358136 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 281] ADVANCE from elapsed time = 560 to 562 with dt = 2 Making slow rhs at time 560 for fast variables advancing from 560 to 560.6666666667 Fast time integration at level 0 from 560 to 560.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 560 to 560.6666666667 with dt = 0.6666666666666 using RHS created at 560 Making slow rhs at time 560.6666666667 for fast variables advancing from 560 to 561 Fast time integration at level 0 from 560 to 560.5 with dt = 0.5 Fast time integration at level 0 from 560.5 to 561 with dt = 0.5 Time integration of scalars at level 0 from 560 to 561 with dt = 1 using RHS created at 560.6666666667 Making slow rhs at time 561 for fast variables advancing from 560 to 562 Fast time integration at level 0 from 560 to 560.5 with dt = 0.5 Fast time integration at level 0 from 560.5 to 561 with dt = 0.5 Fast time integration at level 0 from 561 to 561.5 with dt = 0.5 Fast time integration at level 0 from 561.5 to 562 with dt = 0.5 Time integration of scalars at level 0 from 560 to 562 with dt = 2 using RHS created at 561 Done with advance_dycore at level 0 [Level 0 step 281] Advanced 4096 cells [Level 1 step 281] ADVANCE from elapsed time = 560 to 562 with dt = 2 Making slow rhs at time 560 for fast variables advancing from 560 to 562 No-substepping time integration at level 1 to 562 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005377493799 0.002958492842 and volume-weighted sum 7036.716797 Subtracting 1.308913056e-06 from rhs in subdomain 0 Sum after subtraction -0.03445893526 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005364404642 MLMG: Initial residual (resid0) = 0.0005364404642 MLMG: Final Iter. 2 resid, resid/bnorm = 7.212292985e-07, 0.00134447217 MLMG: Timers: Solve = 0.000826453 Iter = 0.000675506 Bottom = 6.8588e-05 Time in solve 0.001279613 Max/L2 norm of divergence after solve at level 1 : 2.041459084e-06 9.606767708e-05 and volume-weighted sum 7036.706543 Time integration of scalars at level 1 from 560 to 562 with dt = 2 using RHS created at 560 Making slow rhs at time 562 for fast variables advancing from 560 to 562 No-substepping time integration at level 1 to 562 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005533434451 0.002939024242 and volume-weighted sum 7036.70459 Subtracting 1.308910782e-06 from rhs in subdomain 0 Sum after subtraction -0.040512532 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005520345294 MLMG: Initial residual (resid0) = 0.0005520345294 MLMG: Final Iter. 2 resid, resid/bnorm = 7.137750799e-07, 0.001292989939 MLMG: Timers: Solve = 0.000818637 Iter = 0.000668373 Bottom = 7.2939e-05 Time in solve 0.001271997 Max/L2 norm of divergence after solve at level 1 : 1.953914762e-06 9.602875798e-05 and volume-weighted sum 7036.729492 Time integration of scalars at level 1 from 560 to 562 with dt = 2 using RHS created at 562 Done with advance_dycore at level 1 [Level 1 step 281] Advanced 5376 cells Coarse STEP 281 ends. TIME = 562 DT = 2 Timestep time = 0.021742102 seconds. Coarse STEP 282 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.35287402 (terrain aware) 1.35287402 (terrain unaware) Anelastic dt at level 0 would be: 6.087263732 (terrain aware) 6.087263732 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647721169 (terrain aware) 0.2647721169 (terrain unaware) Anelastic dt at level 1 would be: 2.820573109 (terrain aware) 2.820573109 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 282] ADVANCE from elapsed time = 562 to 564 with dt = 2 Making slow rhs at time 562 for fast variables advancing from 562 to 562.6666666667 Fast time integration at level 0 from 562 to 562.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 562 to 562.6666666667 with dt = 0.6666666666666 using RHS created at 562 Making slow rhs at time 562.6666666667 for fast variables advancing from 562 to 563 Fast time integration at level 0 from 562 to 562.5 with dt = 0.5 Fast time integration at level 0 from 562.5 to 563 with dt = 0.5 Time integration of scalars at level 0 from 562 to 563 with dt = 1 using RHS created at 562.6666666667 Making slow rhs at time 563 for fast variables advancing from 562 to 564 Fast time integration at level 0 from 562 to 562.5 with dt = 0.5 Fast time integration at level 0 from 562.5 to 563 with dt = 0.5 Fast time integration at level 0 from 563 to 563.5 with dt = 0.5 Fast time integration at level 0 from 563.5 to 564 with dt = 0.5 Time integration of scalars at level 0 from 562 to 564 with dt = 2 using RHS created at 563 Done with advance_dycore at level 0 [Level 0 step 282] Advanced 4096 cells [Level 1 step 282] ADVANCE from elapsed time = 562 to 564 with dt = 2 Making slow rhs at time 562 for fast variables advancing from 562 to 564 No-substepping time integration at level 1 to 564 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005824863911 0.002950158669 and volume-weighted sum 18377.17383 Subtracting 3.418373126e-06 from rhs in subdomain 0 Sum after subtraction -0.02840533853 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005790680298 MLMG: Initial residual (resid0) = 0.0005790680298 MLMG: Final Iter. 2 resid, resid/bnorm = 7.819453458e-07, 0.001350351493 MLMG: Timers: Solve = 0.000827782 Iter = 0.000667057 Bottom = 7.0924e-05 Time in solve 0.001290492 Max/L2 norm of divergence after solve at level 1 : 4.215165973e-06 0.0002506712626 and volume-weighted sum 18377.14062 Time integration of scalars at level 1 from 562 to 564 with dt = 2 using RHS created at 562 Making slow rhs at time 564 for fast variables advancing from 562 to 564 No-substepping time integration at level 1 to 564 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005582123995 0.002940706909 and volume-weighted sum 18377.15625 Subtracting 3.418369943e-06 from rhs in subdomain 0 Sum after subtraction -0.03958120942 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005547940382 MLMG: Initial residual (resid0) = 0.0005547940382 MLMG: Final Iter. 2 resid, resid/bnorm = 7.202506822e-07, 0.001298230723 MLMG: Timers: Solve = 0.000837104 Iter = 0.000685065 Bottom = 7.1537e-05 Time in solve 0.00129307 Max/L2 norm of divergence after solve at level 1 : 4.06242907e-06 0.000250660989 and volume-weighted sum 18377.14453 Time integration of scalars at level 1 from 562 to 564 with dt = 2 using RHS created at 564 Done with advance_dycore at level 1 [Level 1 step 282] Advanced 5376 cells Coarse STEP 282 ends. TIME = 564 DT = 2 Timestep time = 0.021063948 seconds. Coarse STEP 283 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353173981 (terrain aware) 1.353173981 (terrain unaware) Anelastic dt at level 0 would be: 6.087029486 (terrain aware) 6.087029486 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648263013 (terrain aware) 0.2648263013 (terrain unaware) Anelastic dt at level 1 would be: 2.819845336 (terrain aware) 2.819845336 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 283] ADVANCE from elapsed time = 564 to 566 with dt = 2 Making slow rhs at time 564 for fast variables advancing from 564 to 564.6666666667 Fast time integration at level 0 from 564 to 564.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 564 to 564.6666666667 with dt = 0.6666666666666 using RHS created at 564 Making slow rhs at time 564.6666666667 for fast variables advancing from 564 to 565 Fast time integration at level 0 from 564 to 564.5 with dt = 0.5 Fast time integration at level 0 from 564.5 to 565 with dt = 0.5 Time integration of scalars at level 0 from 564 to 565 with dt = 1 using RHS created at 564.6666666667 Making slow rhs at time 565 for fast variables advancing from 564 to 566 Fast time integration at level 0 from 564 to 564.5 with dt = 0.5 Fast time integration at level 0 from 564.5 to 565 with dt = 0.5 Fast time integration at level 0 from 565 to 565.5 with dt = 0.5 Fast time integration at level 0 from 565.5 to 566 with dt = 0.5 Time integration of scalars at level 0 from 564 to 566 with dt = 2 using RHS created at 565 Done with advance_dycore at level 0 [Level 0 step 283] Advanced 4096 cells [Level 1 step 283] ADVANCE from elapsed time = 564 to 566 with dt = 2 Making slow rhs at time 564 for fast variables advancing from 564 to 566 No-substepping time integration at level 1 to 566 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004952773452 0.00295163109 and volume-weighted sum 29297.55664 Subtracting 5.449694527e-06 from rhs in subdomain 0 Sum after subtraction 0.01257285476 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004898276529 MLMG: Initial residual (resid0) = 0.0004898276529 MLMG: Final Iter. 2 resid, resid/bnorm = 7.846374501e-07, 0.001601864351 MLMG: Timers: Solve = 0.000828922 Iter = 0.000664734 Bottom = 7.0527e-05 Time in solve 0.001279648 Max/L2 norm of divergence after solve at level 1 : 6.234273314e-06 0.0003995987354 and volume-weighted sum 29297.51953 Time integration of scalars at level 1 from 564 to 566 with dt = 2 using RHS created at 564 Making slow rhs at time 566 for fast variables advancing from 564 to 566 No-substepping time integration at level 1 to 566 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004981942475 0.002949900692 and volume-weighted sum 29297.54883 Subtracting 5.449692708e-06 from rhs in subdomain 0 Sum after subtraction 0.05075708032 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004927445552 MLMG: Initial residual (resid0) = 0.0004927445552 MLMG: Final Iter. 2 resid, resid/bnorm = 7.226444723e-07, 0.001466570189 MLMG: Timers: Solve = 0.000842241 Iter = 0.000683994 Bottom = 7.1554e-05 Time in solve 0.001295304 Max/L2 norm of divergence after solve at level 1 : 6.106682122e-06 0.0003995923034 and volume-weighted sum 29297.51758 Time integration of scalars at level 1 from 564 to 566 with dt = 2 using RHS created at 566 Done with advance_dycore at level 1 [Level 1 step 283] Advanced 5376 cells Coarse STEP 283 ends. TIME = 566 DT = 2 Timestep time = 0.020878716 seconds. Coarse STEP 284 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352533827 (terrain aware) 1.352533827 (terrain unaware) Anelastic dt at level 0 would be: 6.075765996 (terrain aware) 6.075765996 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648880107 (terrain aware) 0.2648880107 (terrain unaware) Anelastic dt at level 1 would be: 2.817974645 (terrain aware) 2.817974645 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 284] ADVANCE from elapsed time = 566 to 568 with dt = 2 Making slow rhs at time 566 for fast variables advancing from 566 to 566.6666666667 Fast time integration at level 0 from 566 to 566.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 566 to 566.6666666667 with dt = 0.6666666666666 using RHS created at 566 Making slow rhs at time 566.6666666667 for fast variables advancing from 566 to 567 Fast time integration at level 0 from 566 to 566.5 with dt = 0.5 Fast time integration at level 0 from 566.5 to 567 with dt = 0.5 Time integration of scalars at level 0 from 566 to 567 with dt = 1 using RHS created at 566.6666666667 Making slow rhs at time 567 for fast variables advancing from 566 to 568 Fast time integration at level 0 from 566 to 566.5 with dt = 0.5 Fast time integration at level 0 from 566.5 to 567 with dt = 0.5 Fast time integration at level 0 from 567 to 567.5 with dt = 0.5 Fast time integration at level 0 from 567.5 to 568 with dt = 0.5 Time integration of scalars at level 0 from 566 to 568 with dt = 2 using RHS created at 567 Done with advance_dycore at level 0 [Level 0 step 284] Advanced 4096 cells [Level 1 step 284] ADVANCE from elapsed time = 566 to 568 with dt = 2 Making slow rhs at time 566 for fast variables advancing from 566 to 568 No-substepping time integration at level 1 to 568 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005715414882 0.002982809441 and volume-weighted sum 36291.51172 Subtracting 6.750653029e-06 from rhs in subdomain 0 Sum after subtraction -0.02281740308 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005647908547 MLMG: Initial residual (resid0) = 0.0005647908547 MLMG: Final Iter. 2 resid, resid/bnorm = 7.360522432e-07, 0.001303229714 MLMG: Timers: Solve = 0.000825281 Iter = 0.0006717 Bottom = 6.9854e-05 Time in solve 0.001291658 Max/L2 norm of divergence after solve at level 1 : 7.481314242e-06 0.0004949872964 and volume-weighted sum 36291.51172 Time integration of scalars at level 1 from 566 to 568 with dt = 2 using RHS created at 566 Making slow rhs at time 568 for fast variables advancing from 566 to 568 No-substepping time integration at level 1 to 568 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005739033222 0.002955810633 and volume-weighted sum 36291.48828 Subtracting 6.750648936e-06 from rhs in subdomain 0 Sum after subtraction -0.02048909664 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005671526887 MLMG: Initial residual (resid0) = 0.0005671526887 MLMG: Final Iter. 2 resid, resid/bnorm = 7.214330253e-07, 0.0012720261 MLMG: Timers: Solve = 0.000830539 Iter = 0.000669615 Bottom = 7.1674e-05 Time in solve 0.001285974 Max/L2 norm of divergence after solve at level 1 : 7.392838597e-06 0.0004949769937 and volume-weighted sum 36291.49219 Time integration of scalars at level 1 from 566 to 568 with dt = 2 using RHS created at 568 Done with advance_dycore at level 1 [Level 1 step 284] Advanced 5376 cells Coarse STEP 284 ends. TIME = 568 DT = 2 Timestep time = 0.020937717 seconds. Coarse STEP 285 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352217624 (terrain aware) 1.352217624 (terrain unaware) Anelastic dt at level 0 would be: 6.070570855 (terrain aware) 6.070570855 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649186885 (terrain aware) 0.2649186885 (terrain unaware) Anelastic dt at level 1 would be: 2.814876693 (terrain aware) 2.814876693 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 285] ADVANCE from elapsed time = 568 to 570 with dt = 2 Making slow rhs at time 568 for fast variables advancing from 568 to 568.6666666667 Fast time integration at level 0 from 568 to 568.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 568 to 568.6666666667 with dt = 0.6666666666666 using RHS created at 568 Making slow rhs at time 568.6666666667 for fast variables advancing from 568 to 569 Fast time integration at level 0 from 568 to 568.5 with dt = 0.5 Fast time integration at level 0 from 568.5 to 569 with dt = 0.5 Time integration of scalars at level 0 from 568 to 569 with dt = 1 using RHS created at 568.6666666667 Making slow rhs at time 569 for fast variables advancing from 568 to 570 Fast time integration at level 0 from 568 to 568.5 with dt = 0.5 Fast time integration at level 0 from 568.5 to 569 with dt = 0.5 Fast time integration at level 0 from 569 to 569.5 with dt = 0.5 Fast time integration at level 0 from 569.5 to 570 with dt = 0.5 Time integration of scalars at level 0 from 568 to 570 with dt = 2 using RHS created at 569 Done with advance_dycore at level 0 [Level 0 step 285] Advanced 4096 cells [Level 1 step 285] ADVANCE from elapsed time = 568 to 570 with dt = 2 Making slow rhs at time 568 for fast variables advancing from 568 to 570 No-substepping time integration at level 1 to 570 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005709715188 0.003011013614 and volume-weighted sum 37002.69922 Subtracting 6.882942671e-06 from rhs in subdomain 0 Sum after subtraction -0.1094304025 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005640885793 MLMG: Initial residual (resid0) = 0.0005640885793 MLMG: Final Iter. 2 resid, resid/bnorm = 7.208891475e-07, 0.001277971547 MLMG: Timers: Solve = 0.000825201 Iter = 0.000669579 Bottom = 6.9044e-05 Time in solve 0.00129307 Max/L2 norm of divergence after solve at level 1 : 7.559545338e-06 0.0005046911538 and volume-weighted sum 37002.69141 Time integration of scalars at level 1 from 568 to 570 with dt = 2 using RHS created at 568 Making slow rhs at time 570 for fast variables advancing from 568 to 570 No-substepping time integration at level 1 to 570 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005423352122 0.00294824806 and volume-weighted sum 37002.74219 Subtracting 6.882950402e-06 from rhs in subdomain 0 Sum after subtraction -0.07683411241 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005354522727 MLMG: Initial residual (resid0) = 0.0005354522727 MLMG: Final Iter. 2 resid, resid/bnorm = 7.169292076e-07, 0.001338922651 MLMG: Timers: Solve = 0.000892957 Iter = 0.000683219 Bottom = 7.1969e-05 Time in solve 0.00140942 Max/L2 norm of divergence after solve at level 1 : 7.551163435e-06 0.0005046775914 and volume-weighted sum 37002.70312 Time integration of scalars at level 1 from 568 to 570 with dt = 2 using RHS created at 570 Done with advance_dycore at level 1 [Level 1 step 285] Advanced 5376 cells Coarse STEP 285 ends. TIME = 570 DT = 2 Timestep time = 0.021002715 seconds. Coarse STEP 286 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352196912 (terrain aware) 1.352196912 (terrain unaware) Anelastic dt at level 0 would be: 6.070930271 (terrain aware) 6.070930271 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649650497 (terrain aware) 0.2649650497 (terrain unaware) Anelastic dt at level 1 would be: 2.813898581 (terrain aware) 2.813898581 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 286] ADVANCE from elapsed time = 570 to 572 with dt = 2 Making slow rhs at time 570 for fast variables advancing from 570 to 570.6666666667 Fast time integration at level 0 from 570 to 570.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 570 to 570.6666666667 with dt = 0.6666666666666 using RHS created at 570 Making slow rhs at time 570.6666666667 for fast variables advancing from 570 to 571 Fast time integration at level 0 from 570 to 570.5 with dt = 0.5 Fast time integration at level 0 from 570.5 to 571 with dt = 0.5 Time integration of scalars at level 0 from 570 to 571 with dt = 1 using RHS created at 570.6666666667 Making slow rhs at time 571 for fast variables advancing from 570 to 572 Fast time integration at level 0 from 570 to 570.5 with dt = 0.5 Fast time integration at level 0 from 570.5 to 571 with dt = 0.5 Fast time integration at level 0 from 571 to 571.5 with dt = 0.5 Fast time integration at level 0 from 571.5 to 572 with dt = 0.5 Time integration of scalars at level 0 from 570 to 572 with dt = 2 using RHS created at 571 Done with advance_dycore at level 0 [Level 0 step 286] Advanced 4096 cells [Level 1 step 286] ADVANCE from elapsed time = 570 to 572 with dt = 2 Making slow rhs at time 570 for fast variables advancing from 570 to 572 No-substepping time integration at level 1 to 572 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004941932857 0.002989940811 and volume-weighted sum 31209.40039 Subtracting 5.805320143e-06 from rhs in subdomain 0 Sum after subtraction -0.04936009645 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004883879446 MLMG: Initial residual (resid0) = 0.0004883879446 MLMG: Final Iter. 2 resid, resid/bnorm = 7.634898793e-07, 0.00156328571 MLMG: Timers: Solve = 0.000826491 Iter = 0.000672534 Bottom = 6.6803e-05 Time in solve 0.001290777 Max/L2 norm of divergence after solve at level 1 : 6.404705346e-06 0.0004256808606 and volume-weighted sum 31209.39648 Time integration of scalars at level 1 from 570 to 572 with dt = 2 using RHS created at 570 Making slow rhs at time 572 for fast variables advancing from 570 to 572 No-substepping time integration at level 1 to 572 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005220770836 0.002926142421 and volume-weighted sum 31209.43945 Subtracting 5.805327419e-06 from rhs in subdomain 0 Sum after subtraction -0.04423782229 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005162717425 MLMG: Initial residual (resid0) = 0.0005162717425 MLMG: Final Iter. 2 resid, resid/bnorm = 7.090402505e-07, 0.001373385778 MLMG: Timers: Solve = 0.000836983 Iter = 0.000679588 Bottom = 7.128e-05 Time in solve 0.00129752 Max/L2 norm of divergence after solve at level 1 : 6.450340152e-06 0.000425666396 and volume-weighted sum 31209.38281 Time integration of scalars at level 1 from 570 to 572 with dt = 2 using RHS created at 572 Done with advance_dycore at level 1 [Level 1 step 286] Advanced 5376 cells Coarse STEP 286 ends. TIME = 572 DT = 2 Timestep time = 0.020847338 seconds. Coarse STEP 287 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352445016 (terrain aware) 1.352445016 (terrain unaware) Anelastic dt at level 0 would be: 6.076394229 (terrain aware) 6.076394229 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650240955 (terrain aware) 0.2650240955 (terrain unaware) Anelastic dt at level 1 would be: 2.814916628 (terrain aware) 2.814916628 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 287] ADVANCE from elapsed time = 572 to 574 with dt = 2 Making slow rhs at time 572 for fast variables advancing from 572 to 572.6666666667 Fast time integration at level 0 from 572 to 572.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 572 to 572.6666666667 with dt = 0.6666666666666 using RHS created at 572 Making slow rhs at time 572.6666666667 for fast variables advancing from 572 to 573 Fast time integration at level 0 from 572 to 572.5 with dt = 0.5 Fast time integration at level 0 from 572.5 to 573 with dt = 0.5 Time integration of scalars at level 0 from 572 to 573 with dt = 1 using RHS created at 572.6666666667 Making slow rhs at time 573 for fast variables advancing from 572 to 574 Fast time integration at level 0 from 572 to 572.5 with dt = 0.5 Fast time integration at level 0 from 572.5 to 573 with dt = 0.5 Fast time integration at level 0 from 573 to 573.5 with dt = 0.5 Fast time integration at level 0 from 573.5 to 574 with dt = 0.5 Time integration of scalars at level 0 from 572 to 574 with dt = 2 using RHS created at 573 Done with advance_dycore at level 0 [Level 0 step 287] Advanced 4096 cells [Level 1 step 287] ADVANCE from elapsed time = 572 to 574 with dt = 2 Making slow rhs at time 572 for fast variables advancing from 572 to 574 No-substepping time integration at level 1 to 574 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005801618099 0.002932523144 and volume-weighted sum 20566.19727 Subtracting 3.825557542e-06 from rhs in subdomain 0 Sum after subtraction 0.08195638657 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005763362278 MLMG: Initial residual (resid0) = 0.0005763362278 MLMG: Final Iter. 2 resid, resid/bnorm = 7.737089618e-07, 0.001342461095 MLMG: Timers: Solve = 0.000834013 Iter = 0.000679822 Bottom = 6.9431e-05 Time in solve 0.001282386 Max/L2 norm of divergence after solve at level 1 : 4.395842552e-06 0.0002805250406 and volume-weighted sum 20566.20312 Time integration of scalars at level 1 from 572 to 574 with dt = 2 using RHS created at 572 Making slow rhs at time 574 for fast variables advancing from 572 to 574 No-substepping time integration at level 1 to 574 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005710180849 0.002897553146 and volume-weighted sum 20566.23633 Subtracting 3.825564818e-06 from rhs in subdomain 0 Sum after subtraction 0.06286427379 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005671925028 MLMG: Initial residual (resid0) = 0.0005671925028 MLMG: Final Iter. 2 resid, resid/bnorm = 6.978189049e-07, 0.001230303431 MLMG: Timers: Solve = 0.00083457 Iter = 0.000677372 Bottom = 7.1789e-05 Time in solve 0.001283575 Max/L2 norm of divergence after solve at level 1 : 4.455447197e-06 0.0002805145923 and volume-weighted sum 20566.23242 Time integration of scalars at level 1 from 572 to 574 with dt = 2 using RHS created at 574 Done with advance_dycore at level 1 [Level 1 step 287] Advanced 5376 cells Coarse STEP 287 ends. TIME = 574 DT = 2 Timestep time = 0.020928213 seconds. Coarse STEP 288 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.352943311 (terrain aware) 1.352943311 (terrain unaware) Anelastic dt at level 0 would be: 6.086645036 (terrain aware) 6.086645036 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265073437 (terrain aware) 0.265073437 (terrain unaware) Anelastic dt at level 1 would be: 2.816207367 (terrain aware) 2.816207367 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 288] ADVANCE from elapsed time = 574 to 576 with dt = 2 Making slow rhs at time 574 for fast variables advancing from 574 to 574.6666666667 Fast time integration at level 0 from 574 to 574.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 574 to 574.6666666667 with dt = 0.6666666666666 using RHS created at 574 Making slow rhs at time 574.6666666667 for fast variables advancing from 574 to 575 Fast time integration at level 0 from 574 to 574.5 with dt = 0.5 Fast time integration at level 0 from 574.5 to 575 with dt = 0.5 Time integration of scalars at level 0 from 574 to 575 with dt = 1 using RHS created at 574.6666666667 Making slow rhs at time 575 for fast variables advancing from 574 to 576 Fast time integration at level 0 from 574 to 574.5 with dt = 0.5 Fast time integration at level 0 from 574.5 to 575 with dt = 0.5 Fast time integration at level 0 from 575 to 575.5 with dt = 0.5 Fast time integration at level 0 from 575.5 to 576 with dt = 0.5 Time integration of scalars at level 0 from 574 to 576 with dt = 2 using RHS created at 575 Done with advance_dycore at level 0 [Level 0 step 288] Advanced 4096 cells [Level 1 step 288] ADVANCE from elapsed time = 574 to 576 with dt = 2 Making slow rhs at time 574 for fast variables advancing from 574 to 576 No-substepping time integration at level 1 to 576 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005358345807 0.002881120425 and volume-weighted sum 7584.669434 Subtracting 1.410838763e-06 from rhs in subdomain 0 Sum after subtraction -0.1396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005344237434 MLMG: Initial residual (resid0) = 0.0005344237434 MLMG: Final Iter. 2 resid, resid/bnorm = 7.401667972e-07, 0.001384981093 MLMG: Timers: Solve = 0.000834053 Iter = 0.000673824 Bottom = 7.1241e-05 Time in solve 0.00129268 Max/L2 norm of divergence after solve at level 1 : 1.994892955e-06 0.0001035066743 and volume-weighted sum 7584.664062 Time integration of scalars at level 1 from 574 to 576 with dt = 2 using RHS created at 574 Making slow rhs at time 576 for fast variables advancing from 574 to 576 No-substepping time integration at level 1 to 576 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005160570145 0.002874700585 and volume-weighted sum 7584.669434 Subtracting 1.410838763e-06 from rhs in subdomain 0 Sum after subtraction -0.131316483 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005146461772 MLMG: Initial residual (resid0) = 0.0005146461772 MLMG: Final Iter. 2 resid, resid/bnorm = 6.864938769e-07, 0.001333914232 MLMG: Timers: Solve = 0.000837989 Iter = 0.000679423 Bottom = 7.0141e-05 Time in solve 0.001293194 Max/L2 norm of divergence after solve at level 1 : 2.022832632e-06 0.0001034970264 and volume-weighted sum 7584.635742 Time integration of scalars at level 1 from 574 to 576 with dt = 2 using RHS created at 576 Done with advance_dycore at level 1 [Level 1 step 288] Advanced 5376 cells Coarse STEP 288 ends. TIME = 576 DT = 2 Timestep time = 0.02138922 seconds. Coarse STEP 289 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353673915 (terrain aware) 1.353673915 (terrain unaware) Anelastic dt at level 0 would be: 6.101370363 (terrain aware) 6.101370363 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2651103546 (terrain aware) 0.2651103546 (terrain unaware) Anelastic dt at level 1 would be: 2.814589697 (terrain aware) 2.814589697 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 289] ADVANCE from elapsed time = 576 to 578 with dt = 2 Making slow rhs at time 576 for fast variables advancing from 576 to 576.6666666667 Fast time integration at level 0 from 576 to 576.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 576 to 576.6666666667 with dt = 0.6666666666666 using RHS created at 576 Making slow rhs at time 576.6666666667 for fast variables advancing from 576 to 577 Fast time integration at level 0 from 576 to 576.5 with dt = 0.5 Fast time integration at level 0 from 576.5 to 577 with dt = 0.5 Time integration of scalars at level 0 from 576 to 577 with dt = 1 using RHS created at 576.6666666667 Making slow rhs at time 577 for fast variables advancing from 576 to 578 Fast time integration at level 0 from 576 to 576.5 with dt = 0.5 Fast time integration at level 0 from 576.5 to 577 with dt = 0.5 Fast time integration at level 0 from 577 to 577.5 with dt = 0.5 Fast time integration at level 0 from 577.5 to 578 with dt = 0.5 Time integration of scalars at level 0 from 576 to 578 with dt = 2 using RHS created at 577 Done with advance_dycore at level 0 [Level 0 step 289] Advanced 4096 cells [Level 1 step 289] ADVANCE from elapsed time = 576 to 578 with dt = 2 Making slow rhs at time 576 for fast variables advancing from 576 to 578 No-substepping time integration at level 1 to 578 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000522505492 0.002858568681 and volume-weighted sum -5249.716309 Subtracting -9.76509682e-07 from rhs in subdomain 0 Sum after subtraction 0.0111758709 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005234819837 MLMG: Initial residual (resid0) = 0.0005234819837 MLMG: Final Iter. 2 resid, resid/bnorm = 6.975678843e-07, 0.001332553802 MLMG: Timers: Solve = 0.000849473 Iter = 0.00068955 Bottom = 7.4887e-05 Time in solve 0.001313642 Max/L2 norm of divergence after solve at level 1 : 1.670792699e-06 7.167636068e-05 and volume-weighted sum -5249.714355 Time integration of scalars at level 1 from 576 to 578 with dt = 2 using RHS created at 576 Making slow rhs at time 578 for fast variables advancing from 576 to 578 No-substepping time integration at level 1 to 578 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005415454507 0.002862720983 and volume-weighted sum -5249.750977 Subtracting -9.765161622e-07 from rhs in subdomain 0 Sum after subtraction -0.008381903172 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005425219424 MLMG: Initial residual (resid0) = 0.0005425219424 MLMG: Final Iter. 2 resid, resid/bnorm = 6.899244909e-07, 0.00127169874 MLMG: Timers: Solve = 0.000839935 Iter = 0.000683037 Bottom = 6.9508e-05 Time in solve 0.001291338 Max/L2 norm of divergence after solve at level 1 : 1.679174602e-06 7.167459989e-05 and volume-weighted sum -5249.704102 Time integration of scalars at level 1 from 576 to 578 with dt = 2 using RHS created at 578 Done with advance_dycore at level 1 [Level 1 step 289] Advanced 5376 cells Coarse STEP 289 ends. TIME = 578 DT = 2 Timestep time = 0.020951377 seconds. Coarse STEP 290 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.3537967 (terrain aware) 1.3537967 (terrain unaware) Anelastic dt at level 0 would be: 6.10064557 (terrain aware) 6.10064557 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2651566228 (terrain aware) 0.2651566228 (terrain unaware) Anelastic dt at level 1 would be: 2.814779836 (terrain aware) 2.814779836 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 290] ADVANCE from elapsed time = 578 to 580 with dt = 2 Making slow rhs at time 578 for fast variables advancing from 578 to 578.6666666667 Fast time integration at level 0 from 578 to 578.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 578 to 578.6666666667 with dt = 0.6666666666666 using RHS created at 578 Making slow rhs at time 578.6666666667 for fast variables advancing from 578 to 579 Fast time integration at level 0 from 578 to 578.5 with dt = 0.5 Fast time integration at level 0 from 578.5 to 579 with dt = 0.5 Time integration of scalars at level 0 from 578 to 579 with dt = 1 using RHS created at 578.6666666667 Making slow rhs at time 579 for fast variables advancing from 578 to 580 Fast time integration at level 0 from 578 to 578.5 with dt = 0.5 Fast time integration at level 0 from 578.5 to 579 with dt = 0.5 Fast time integration at level 0 from 579 to 579.5 with dt = 0.5 Fast time integration at level 0 from 579.5 to 580 with dt = 0.5 Time integration of scalars at level 0 from 578 to 580 with dt = 2 using RHS created at 579 Done with advance_dycore at level 0 [Level 0 step 290] Advanced 4096 cells [Level 1 step 290] ADVANCE from elapsed time = 578 to 580 with dt = 2 Making slow rhs at time 578 for fast variables advancing from 578 to 580 No-substepping time integration at level 1 to 580 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005710683763 0.002860279055 and volume-weighted sum -16045.05664 Subtracting -2.984571438e-06 from rhs in subdomain 0 Sum after subtraction 0.05634501576 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005740529741 MLMG: Initial residual (resid0) = 0.0005740529741 MLMG: Final Iter. 2 resid, resid/bnorm = 6.42015948e-07, 0.001118391519 MLMG: Timers: Solve = 0.000832966 Iter = 0.000673248 Bottom = 7.1638e-05 Time in solve 0.001287521 Max/L2 norm of divergence after solve at level 1 : 3.629829735e-06 0.0002188605868 and volume-weighted sum -16045.02441 Time integration of scalars at level 1 from 578 to 580 with dt = 2 using RHS created at 578 Making slow rhs at time 580 for fast variables advancing from 578 to 580 No-substepping time integration at level 1 to 580 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005529914051 0.002858550521 and volume-weighted sum -16045.07324 Subtracting -2.984574621e-06 from rhs in subdomain 0 Sum after subtraction 0.07054768503 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005559760029 MLMG: Initial residual (resid0) = 0.0005559760029 MLMG: Final Iter. 2 resid, resid/bnorm = 6.891441444e-07, 0.001239521429 MLMG: Timers: Solve = 0.000830433 Iter = 0.000670662 Bottom = 6.824e-05 Time in solve 0.001287243 Max/L2 norm of divergence after solve at level 1 : 3.680237569e-06 0.0002188573999 and volume-weighted sum -16045.05859 Time integration of scalars at level 1 from 578 to 580 with dt = 2 using RHS created at 580 Done with advance_dycore at level 1 [Level 1 step 290] Advanced 5376 cells Coarse STEP 290 ends. TIME = 580 DT = 2 Timestep time = 0.021101178 seconds. Coarse STEP 291 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353458444 (terrain aware) 1.353458444 (terrain unaware) Anelastic dt at level 0 would be: 6.09431973 (terrain aware) 6.09431973 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652112914 (terrain aware) 0.2652112914 (terrain unaware) Anelastic dt at level 1 would be: 2.816738444 (terrain aware) 2.816738444 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (15,0,15) (0,0,0)) ((16,0,0) (31,0,31) (0,0,0)) ((32,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,47) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (111,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.01634660549 0.06038796902 and volume-weighted sum -4082.976318 Subtracting -7.594821909e-07 from rhs in subdomain 0 Sum after subtraction -0.4847534001 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.01634736545 MLMG: Initial residual (resid0) = 0.01634736545 MLMG: Final Iter. 4 resid, resid/bnorm = 1.909407274e-06, 0.0001168021408 MLMG: Timers: Solve = 0.002234421 Iter = 0.001841291 Bottom = 0.000745536 Time in solve 0.002521863 Max/L2 norm of divergence after solve at level 1 : 2.660788596e-06 5.615044574e-05 and volume-weighted sum -4083.358643 [Level 0 step 291] ADVANCE from elapsed time = 580 to 582 with dt = 2 Making slow rhs at time 580 for fast variables advancing from 580 to 580.6666666667 Fast time integration at level 0 from 580 to 580.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 580 to 580.6666666667 with dt = 0.6666666666666 using RHS created at 580 Making slow rhs at time 580.6666666667 for fast variables advancing from 580 to 581 Fast time integration at level 0 from 580 to 580.5 with dt = 0.5 Fast time integration at level 0 from 580.5 to 581 with dt = 0.5 Time integration of scalars at level 0 from 580 to 581 with dt = 1 using RHS created at 580.6666666667 Making slow rhs at time 581 for fast variables advancing from 580 to 582 Fast time integration at level 0 from 580 to 580.5 with dt = 0.5 Fast time integration at level 0 from 580.5 to 581 with dt = 0.5 Fast time integration at level 0 from 581 to 581.5 with dt = 0.5 Fast time integration at level 0 from 581.5 to 582 with dt = 0.5 Time integration of scalars at level 0 from 580 to 582 with dt = 2 using RHS created at 581 Done with advance_dycore at level 0 [Level 0 step 291] Advanced 4096 cells [Level 1 step 291] ADVANCE from elapsed time = 580 to 582 with dt = 2 Making slow rhs at time 580 for fast variables advancing from 580 to 582 No-substepping time integration at level 1 to 582 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.03218638152 0.1452657431 and volume-weighted sum -14785.58789 Subtracting -2.75029538e-06 from rhs in subdomain 0 Sum after subtraction -1.356005669 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.03218363225 MLMG: Initial residual (resid0) = 0.03218363225 MLMG: Final Iter. 4 resid, resid/bnorm = 3.476747224e-06, 0.0001080284273 MLMG: Timers: Solve = 0.002226204 Iter = 0.001832383 Bottom = 0.000735325 Time in solve 0.002494324 Max/L2 norm of divergence after solve at level 1 : 6.213202141e-06 0.000202109135 and volume-weighted sum -14786.3252 Time integration of scalars at level 1 from 580 to 582 with dt = 2 using RHS created at 580 Making slow rhs at time 582 for fast variables advancing from 580 to 582 No-substepping time integration at level 1 to 582 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004850160331 0.00283990032 and volume-weighted sum -14786.28809 Subtracting -2.750425665e-06 from rhs in subdomain 0 Sum after subtraction 0.007610651664 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004877664614 MLMG: Initial residual (resid0) = 0.0004877664614 MLMG: Final Iter. 2 resid, resid/bnorm = 6.306345313e-07, 0.001292902627 MLMG: Timers: Solve = 0.001313886 Iter = 0.000925231 Bottom = 0.000337863 Time in solve 0.001575239 Max/L2 norm of divergence after solve at level 1 : 3.395485692e-06 0.0002016887884 and volume-weighted sum -14786.33984 Time integration of scalars at level 1 from 580 to 582 with dt = 2 using RHS created at 582 Done with advance_dycore at level 1 [Level 1 step 291] Advanced 5376 cells Coarse STEP 291 ends. TIME = 582 DT = 2 Timestep time = 0.035214791 seconds. Coarse STEP 292 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353404651 (terrain aware) 1.353404651 (terrain unaware) Anelastic dt at level 0 would be: 6.093374996 (terrain aware) 6.093374996 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653523495 (terrain aware) 0.2653523495 (terrain unaware) Anelastic dt at level 1 would be: 2.829825538 (terrain aware) 2.829825538 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 292] ADVANCE from elapsed time = 582 to 584 with dt = 2 Making slow rhs at time 582 for fast variables advancing from 582 to 582.6666666667 Fast time integration at level 0 from 582 to 582.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 582 to 582.6666666667 with dt = 0.6666666666666 using RHS created at 582 Making slow rhs at time 582.6666666667 for fast variables advancing from 582 to 583 Fast time integration at level 0 from 582 to 582.5 with dt = 0.5 Fast time integration at level 0 from 582.5 to 583 with dt = 0.5 Time integration of scalars at level 0 from 582 to 583 with dt = 1 using RHS created at 582.6666666667 Making slow rhs at time 583 for fast variables advancing from 582 to 584 Fast time integration at level 0 from 582 to 582.5 with dt = 0.5 Fast time integration at level 0 from 582.5 to 583 with dt = 0.5 Fast time integration at level 0 from 583 to 583.5 with dt = 0.5 Fast time integration at level 0 from 583.5 to 584 with dt = 0.5 Time integration of scalars at level 0 from 582 to 584 with dt = 2 using RHS created at 583 Done with advance_dycore at level 0 [Level 0 step 292] Advanced 4096 cells [Level 1 step 292] ADVANCE from elapsed time = 582 to 584 with dt = 2 Making slow rhs at time 582 for fast variables advancing from 582 to 584 No-substepping time integration at level 1 to 584 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005439557135 0.002853327664 and volume-weighted sum -23371.57422 Subtracting -4.347391041e-06 from rhs in subdomain 0 Sum after subtraction 0.0737054497 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005483031273 MLMG: Initial residual (resid0) = 0.0005483031273 MLMG: Final Iter. 2 resid, resid/bnorm = 1.38836765e-06, 0.002532117069 MLMG: Timers: Solve = 0.00134134 Iter = 0.000952983 Bottom = 0.000372629 Time in solve 0.001608318 Max/L2 norm of divergence after solve at level 1 : 5.683861673e-06 0.0003188104311 and volume-weighted sum -23371.54688 Time integration of scalars at level 1 from 582 to 584 with dt = 2 using RHS created at 582 Making slow rhs at time 584 for fast variables advancing from 582 to 584 No-substepping time integration at level 1 to 584 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005533955991 0.002838938963 and volume-weighted sum -23371.60352 Subtracting -4.347396498e-06 from rhs in subdomain 0 Sum after subtraction 0.05830952525 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005577430129 MLMG: Initial residual (resid0) = 0.0005577430129 MLMG: Final Iter. 2 resid, resid/bnorm = 6.228583516e-07, 0.001116747968 MLMG: Timers: Solve = 0.001474289 Iter = 0.001092349 Bottom = 0.00034874 Time in solve 0.001744853 Max/L2 norm of divergence after solve at level 1 : 4.984147381e-06 0.0003187702969 and volume-weighted sum -23371.5957 Time integration of scalars at level 1 from 582 to 584 with dt = 2 using RHS created at 584 Done with advance_dycore at level 1 [Level 1 step 292] Advanced 5376 cells Coarse STEP 292 ends. TIME = 584 DT = 2 Timestep time = 0.023597268 seconds. Coarse STEP 293 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.353615949 (terrain aware) 1.353615949 (terrain unaware) Anelastic dt at level 0 would be: 6.097546725 (terrain aware) 6.097546725 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653846291 (terrain aware) 0.2653846291 (terrain unaware) Anelastic dt at level 1 would be: 2.829272109 (terrain aware) 2.829272109 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 293] ADVANCE from elapsed time = 584 to 586 with dt = 2 Making slow rhs at time 584 for fast variables advancing from 584 to 584.6666666667 Fast time integration at level 0 from 584 to 584.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 584 to 584.6666666667 with dt = 0.6666666666666 using RHS created at 584 Making slow rhs at time 584.6666666667 for fast variables advancing from 584 to 585 Fast time integration at level 0 from 584 to 584.5 with dt = 0.5 Fast time integration at level 0 from 584.5 to 585 with dt = 0.5 Time integration of scalars at level 0 from 584 to 585 with dt = 1 using RHS created at 584.6666666667 Making slow rhs at time 585 for fast variables advancing from 584 to 586 Fast time integration at level 0 from 584 to 584.5 with dt = 0.5 Fast time integration at level 0 from 584.5 to 585 with dt = 0.5 Fast time integration at level 0 from 585 to 585.5 with dt = 0.5 Fast time integration at level 0 from 585.5 to 586 with dt = 0.5 Time integration of scalars at level 0 from 584 to 586 with dt = 2 using RHS created at 585 Done with advance_dycore at level 0 [Level 0 step 293] Advanced 4096 cells [Level 1 step 293] ADVANCE from elapsed time = 584 to 586 with dt = 2 Making slow rhs at time 584 for fast variables advancing from 584 to 586 No-substepping time integration at level 1 to 586 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000557448715 0.002848881995 and volume-weighted sum -28858.00586 Subtracting -5.367932772e-06 from rhs in subdomain 0 Sum after subtraction -0.04371395335 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005628166255 MLMG: Initial residual (resid0) = 0.0005628166255 MLMG: Final Iter. 2 resid, resid/bnorm = 9.619818684e-07, 0.001709227916 MLMG: Timers: Solve = 0.001512013 Iter = 0.001101736 Bottom = 0.000387273 Time in solve 0.001779754 Max/L2 norm of divergence after solve at level 1 : 6.29061833e-06 0.0003936179273 and volume-weighted sum -28858.01758 Time integration of scalars at level 1 from 584 to 586 with dt = 2 using RHS created at 584 Making slow rhs at time 586 for fast variables advancing from 584 to 586 No-substepping time integration at level 1 to 586 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000530578196 0.00283606071 and volume-weighted sum -28858.02148 Subtracting -5.367935501e-06 from rhs in subdomain 0 Sum after subtraction -0.0500440374 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005359461065 MLMG: Initial residual (resid0) = 0.0005359461065 MLMG: Final Iter. 2 resid, resid/bnorm = 6.122772902e-07, 0.001142423251 MLMG: Timers: Solve = 0.001322673 Iter = 0.000926412 Bottom = 0.000346824 Time in solve 0.001587046 Max/L2 norm of divergence after solve at level 1 : 5.967944162e-06 0.000393594295 and volume-weighted sum -28857.98828 Time integration of scalars at level 1 from 584 to 586 with dt = 2 using RHS created at 586 Done with advance_dycore at level 1 [Level 1 step 293] Advanced 5376 cells Coarse STEP 293 ends. TIME = 586 DT = 2 Timestep time = 0.023169051 seconds. Coarse STEP 294 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.354069243 (terrain aware) 1.354069243 (terrain unaware) Anelastic dt at level 0 would be: 6.106483249 (terrain aware) 6.106483249 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654230369 (terrain aware) 0.2654230369 (terrain unaware) Anelastic dt at level 1 would be: 2.830275851 (terrain aware) 2.830275851 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 294] ADVANCE from elapsed time = 586 to 588 with dt = 2 Making slow rhs at time 586 for fast variables advancing from 586 to 586.6666666667 Fast time integration at level 0 from 586 to 586.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 586 to 586.6666666667 with dt = 0.6666666666666 using RHS created at 586 Making slow rhs at time 586.6666666667 for fast variables advancing from 586 to 587 Fast time integration at level 0 from 586 to 586.5 with dt = 0.5 Fast time integration at level 0 from 586.5 to 587 with dt = 0.5 Time integration of scalars at level 0 from 586 to 587 with dt = 1 using RHS created at 586.6666666667 Making slow rhs at time 587 for fast variables advancing from 586 to 588 Fast time integration at level 0 from 586 to 586.5 with dt = 0.5 Fast time integration at level 0 from 586.5 to 587 with dt = 0.5 Fast time integration at level 0 from 587 to 587.5 with dt = 0.5 Fast time integration at level 0 from 587.5 to 588 with dt = 0.5 Time integration of scalars at level 0 from 586 to 588 with dt = 2 using RHS created at 587 Done with advance_dycore at level 0 [Level 0 step 294] Advanced 4096 cells [Level 1 step 294] ADVANCE from elapsed time = 586 to 588 with dt = 2 Making slow rhs at time 586 for fast variables advancing from 586 to 588 No-substepping time integration at level 1 to 588 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004546716809 0.002839606488 and volume-weighted sum -30629.70117 Subtracting -5.697489087e-06 from rhs in subdomain 0 Sum after subtraction 0.06426125765 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004575900966 MLMG: Initial residual (resid0) = 0.0004575900966 MLMG: Final Iter. 2 resid, resid/bnorm = 7.553729802e-07, 0.001650763443 MLMG: Timers: Solve = 0.001376232 Iter = 0.000980368 Bottom = 0.000396864 Time in solve 0.001635555 Max/L2 norm of divergence after solve at level 1 : 6.45162072e-06 0.0004177690134 and volume-weighted sum -30629.67578 Time integration of scalars at level 1 from 586 to 588 with dt = 2 using RHS created at 586 Making slow rhs at time 588 for fast variables advancing from 586 to 588 No-substepping time integration at level 1 to 588 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004866234958 0.002827832475 and volume-weighted sum -30629.67578 Subtracting -5.697484539e-06 from rhs in subdomain 0 Sum after subtraction -0.02595879696 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004923209781 MLMG: Initial residual (resid0) = 0.0004923209781 MLMG: Final Iter. 2 resid, resid/bnorm = 6.003720046e-07, 0.001219472731 MLMG: Timers: Solve = 0.001309371 Iter = 0.000921539 Bottom = 0.000339957 Time in solve 0.00157003 Max/L2 norm of divergence after solve at level 1 : 6.312096957e-06 0.0004177583614 and volume-weighted sum -30629.71289 Time integration of scalars at level 1 from 586 to 588 with dt = 2 using RHS created at 588 Done with advance_dycore at level 1 [Level 1 step 294] Advanced 5376 cells Coarse STEP 294 ends. TIME = 588 DT = 2 Timestep time = 0.023759576 seconds. Coarse STEP 295 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.354745457 (terrain aware) 1.354745457 (terrain unaware) Anelastic dt at level 0 would be: 6.119881181 (terrain aware) 6.119881181 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654666973 (terrain aware) 0.2654666973 (terrain unaware) Anelastic dt at level 1 would be: 2.832733649 (terrain aware) 2.832733649 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 295] ADVANCE from elapsed time = 588 to 590 with dt = 2 Making slow rhs at time 588 for fast variables advancing from 588 to 588.6666666667 Fast time integration at level 0 from 588 to 588.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 588 to 588.6666666667 with dt = 0.6666666666666 using RHS created at 588 Making slow rhs at time 588.6666666667 for fast variables advancing from 588 to 589 Fast time integration at level 0 from 588 to 588.5 with dt = 0.5 Fast time integration at level 0 from 588.5 to 589 with dt = 0.5 Time integration of scalars at level 0 from 588 to 589 with dt = 1 using RHS created at 588.6666666667 Making slow rhs at time 589 for fast variables advancing from 588 to 590 Fast time integration at level 0 from 588 to 588.5 with dt = 0.5 Fast time integration at level 0 from 588.5 to 589 with dt = 0.5 Fast time integration at level 0 from 589 to 589.5 with dt = 0.5 Fast time integration at level 0 from 589.5 to 590 with dt = 0.5 Time integration of scalars at level 0 from 588 to 590 with dt = 2 using RHS created at 589 Done with advance_dycore at level 0 [Level 0 step 295] Advanced 4096 cells [Level 1 step 295] ADVANCE from elapsed time = 588 to 590 with dt = 2 Making slow rhs at time 588 for fast variables advancing from 588 to 590 No-substepping time integration at level 1 to 590 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000556435436 0.002825299511 and volume-weighted sum -29058.05078 Subtracting -5.405143384e-06 from rhs in subdomain 0 Sum after subtraction 0.03993045539 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005618405994 MLMG: Initial residual (resid0) = 0.0005618405994 MLMG: Final Iter. 2 resid, resid/bnorm = 6.835871318e-07, 0.001216692268 MLMG: Timers: Solve = 0.00136597 Iter = 0.000978566 Bottom = 0.000395116 Time in solve 0.001635349 Max/L2 norm of divergence after solve at level 1 : 6.078742445e-06 0.0003963315103 and volume-weighted sum -29058.0293 Time integration of scalars at level 1 from 588 to 590 with dt = 2 using RHS created at 588 Making slow rhs at time 590 for fast variables advancing from 588 to 590 No-substepping time integration at level 1 to 590 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000556755811 0.002812567865 and volume-weighted sum -29058.02734 Subtracting -5.405138836e-06 from rhs in subdomain 0 Sum after subtraction 0.03985042125 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005621609744 MLMG: Initial residual (resid0) = 0.0005621609744 MLMG: Final Iter. 2 resid, resid/bnorm = 5.989568308e-07, 0.001065454329 MLMG: Timers: Solve = 0.001321987 Iter = 0.000930373 Bottom = 0.000340983 Time in solve 0.001591341 Max/L2 norm of divergence after solve at level 1 : 5.996320397e-06 0.0003963221388 and volume-weighted sum -29057.99023 Time integration of scalars at level 1 from 588 to 590 with dt = 2 using RHS created at 590 Done with advance_dycore at level 1 [Level 1 step 295] Advanced 5376 cells Coarse STEP 295 ends. TIME = 590 DT = 2 Timestep time = 0.023314349 seconds. Coarse STEP 296 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.355621795 (terrain aware) 1.355621795 (terrain unaware) Anelastic dt at level 0 would be: 6.137328056 (terrain aware) 6.137328056 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655152564 (terrain aware) 0.2655152564 (terrain unaware) Anelastic dt at level 1 would be: 2.836582618 (terrain aware) 2.836582618 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 296] ADVANCE from elapsed time = 590 to 592 with dt = 2 Making slow rhs at time 590 for fast variables advancing from 590 to 590.6666666667 Fast time integration at level 0 from 590 to 590.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 590 to 590.6666666667 with dt = 0.6666666666666 using RHS created at 590 Making slow rhs at time 590.6666666667 for fast variables advancing from 590 to 591 Fast time integration at level 0 from 590 to 590.5 with dt = 0.5 Fast time integration at level 0 from 590.5 to 591 with dt = 0.5 Time integration of scalars at level 0 from 590 to 591 with dt = 1 using RHS created at 590.6666666667 Making slow rhs at time 591 for fast variables advancing from 590 to 592 Fast time integration at level 0 from 590 to 590.5 with dt = 0.5 Fast time integration at level 0 from 590.5 to 591 with dt = 0.5 Fast time integration at level 0 from 591 to 591.5 with dt = 0.5 Fast time integration at level 0 from 591.5 to 592 with dt = 0.5 Time integration of scalars at level 0 from 590 to 592 with dt = 2 using RHS created at 591 Done with advance_dycore at level 0 [Level 0 step 296] Advanced 4096 cells [Level 1 step 296] ADVANCE from elapsed time = 590 to 592 with dt = 2 Making slow rhs at time 590 for fast variables advancing from 590 to 592 No-substepping time integration at level 1 to 592 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005380157381 0.002808978548 and volume-weighted sum -25293.75977 Subtracting -4.704940238e-06 from rhs in subdomain 0 Sum after subtraction -0.04144385457 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005427206634 MLMG: Initial residual (resid0) = 0.0005427206634 MLMG: Final Iter. 2 resid, resid/bnorm = 6.366462912e-07, 0.001173064345 MLMG: Timers: Solve = 0.001383825 Iter = 0.000991961 Bottom = 0.000386708 Time in solve 0.001656587 Max/L2 norm of divergence after solve at level 1 : 5.365815014e-06 0.0003450021031 and volume-weighted sum -25293.73047 Time integration of scalars at level 1 from 590 to 592 with dt = 2 using RHS created at 590 Making slow rhs at time 592 for fast variables advancing from 590 to 592 No-substepping time integration at level 1 to 592 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005144979805 0.002793409163 and volume-weighted sum -25293.76367 Subtracting -4.704941148e-06 from rhs in subdomain 0 Sum after subtraction 0.01212174539 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005192029057 MLMG: Initial residual (resid0) = 0.0005192029057 MLMG: Final Iter. 2 resid, resid/bnorm = 6.041464076e-07, 0.001163603622 MLMG: Timers: Solve = 0.001320045 Iter = 0.000930961 Bottom = 0.000349414 Time in solve 0.001583404 Max/L2 norm of divergence after solve at level 1 : 5.325535312e-06 0.000344984117 and volume-weighted sum -25293.75977 Time integration of scalars at level 1 from 590 to 592 with dt = 2 using RHS created at 592 Done with advance_dycore at level 1 [Level 1 step 296] Advanced 5376 cells Coarse STEP 296 ends. TIME = 592 DT = 2 Timestep time = 0.023498528 seconds. Coarse STEP 297 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356369088 (terrain aware) 1.356369088 (terrain unaware) Anelastic dt at level 0 would be: 6.151617078 (terrain aware) 6.151617078 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655566444 (terrain aware) 0.2655566444 (terrain unaware) Anelastic dt at level 1 would be: 2.83829208 (terrain aware) 2.83829208 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 297] ADVANCE from elapsed time = 592 to 594 with dt = 2 Making slow rhs at time 592 for fast variables advancing from 592 to 592.6666666667 Fast time integration at level 0 from 592 to 592.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 592 to 592.6666666667 with dt = 0.6666666666666 using RHS created at 592 Making slow rhs at time 592.6666666667 for fast variables advancing from 592 to 593 Fast time integration at level 0 from 592 to 592.5 with dt = 0.5 Fast time integration at level 0 from 592.5 to 593 with dt = 0.5 Time integration of scalars at level 0 from 592 to 593 with dt = 1 using RHS created at 592.6666666667 Making slow rhs at time 593 for fast variables advancing from 592 to 594 Fast time integration at level 0 from 592 to 592.5 with dt = 0.5 Fast time integration at level 0 from 592.5 to 593 with dt = 0.5 Fast time integration at level 0 from 593 to 593.5 with dt = 0.5 Fast time integration at level 0 from 593.5 to 594 with dt = 0.5 Time integration of scalars at level 0 from 592 to 594 with dt = 2 using RHS created at 593 Done with advance_dycore at level 0 [Level 0 step 297] Advanced 4096 cells [Level 1 step 297] ADVANCE from elapsed time = 592 to 594 with dt = 2 Making slow rhs at time 592 for fast variables advancing from 592 to 594 No-substepping time integration at level 1 to 594 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004885494709 0.002788955346 and volume-weighted sum -20508.09961 Subtracting -3.814750471e-06 from rhs in subdomain 0 Sum after subtraction -0.04767207429 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004923642264 MLMG: Initial residual (resid0) = 0.0004923642264 MLMG: Final Iter. 2 resid, resid/bnorm = 7.06897481e-07, 0.001435720595 MLMG: Timers: Solve = 0.001390498 Iter = 0.000996767 Bottom = 0.000410039 Time in solve 0.001650938 Max/L2 norm of divergence after solve at level 1 : 4.501314834e-06 0.0002797458146 and volume-weighted sum -20508.06445 Time integration of scalars at level 1 from 592 to 594 with dt = 2 using RHS created at 592 Making slow rhs at time 594 for fast variables advancing from 592 to 594 No-substepping time integration at level 1 to 594 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005149506032 0.002774191787 and volume-weighted sum -20508.09961 Subtracting -3.814750471e-06 from rhs in subdomain 0 Sum after subtraction -0.02335582301 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005187653587 MLMG: Initial residual (resid0) = 0.0005187653587 MLMG: Final Iter. 2 resid, resid/bnorm = 6.116497389e-07, 0.001179048908 MLMG: Timers: Solve = 0.001324099 Iter = 0.000933825 Bottom = 0.000354477 Time in solve 0.001585357 Max/L2 norm of divergence after solve at level 1 : 4.454283044e-06 0.00027971706 and volume-weighted sum -20508.05859 Time integration of scalars at level 1 from 592 to 594 with dt = 2 using RHS created at 594 Done with advance_dycore at level 1 [Level 1 step 297] Advanced 5376 cells Coarse STEP 297 ends. TIME = 594 DT = 2 Timestep time = 0.023699894 seconds. Coarse STEP 298 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356350014 (terrain aware) 1.356350014 (terrain unaware) Anelastic dt at level 0 would be: 6.15100315 (terrain aware) 6.15100315 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265583094 (terrain aware) 0.265583094 (terrain unaware) Anelastic dt at level 1 would be: 2.839479106 (terrain aware) 2.839479106 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 298] ADVANCE from elapsed time = 594 to 596 with dt = 2 Making slow rhs at time 594 for fast variables advancing from 594 to 594.6666666667 Fast time integration at level 0 from 594 to 594.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 594 to 594.6666666667 with dt = 0.6666666666666 using RHS created at 594 Making slow rhs at time 594.6666666667 for fast variables advancing from 594 to 595 Fast time integration at level 0 from 594 to 594.5 with dt = 0.5 Fast time integration at level 0 from 594.5 to 595 with dt = 0.5 Time integration of scalars at level 0 from 594 to 595 with dt = 1 using RHS created at 594.6666666667 Making slow rhs at time 595 for fast variables advancing from 594 to 596 Fast time integration at level 0 from 594 to 594.5 with dt = 0.5 Fast time integration at level 0 from 594.5 to 595 with dt = 0.5 Fast time integration at level 0 from 595 to 595.5 with dt = 0.5 Fast time integration at level 0 from 595.5 to 596 with dt = 0.5 Time integration of scalars at level 0 from 594 to 596 with dt = 2 using RHS created at 595 Done with advance_dycore at level 0 [Level 0 step 298] Advanced 4096 cells [Level 1 step 298] ADVANCE from elapsed time = 594 to 596 with dt = 2 Making slow rhs at time 594 for fast variables advancing from 594 to 596 No-substepping time integration at level 1 to 596 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00056341663 0.002761071781 and volume-weighted sum -15138.75391 Subtracting -2.81598841e-06 from rhs in subdomain 0 Sum after subtraction -0.04953471944 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005662326002 MLMG: Initial residual (resid0) = 0.0005662326002 MLMG: Final Iter. 2 resid, resid/bnorm = 6.165482773e-07, 0.001088860445 MLMG: Timers: Solve = 0.001395589 Iter = 0.001004238 Bottom = 0.000420136 Time in solve 0.001654249 Max/L2 norm of divergence after solve at level 1 : 3.417488188e-06 0.0002065116132 and volume-weighted sum -15138.79004 Time integration of scalars at level 1 from 594 to 596 with dt = 2 using RHS created at 594 Making slow rhs at time 596 for fast variables advancing from 594 to 596 No-substepping time integration at level 1 to 596 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005546063185 0.002755287103 and volume-weighted sum -15138.77344 Subtracting -2.815992048e-06 from rhs in subdomain 0 Sum after subtraction -0.02194428816 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005574222887 MLMG: Initial residual (resid0) = 0.0005574222887 MLMG: Final Iter. 2 resid, resid/bnorm = 6.08361006e-07, 0.001091382583 MLMG: Timers: Solve = 0.001324942 Iter = 0.00093499 Bottom = 0.000346612 Time in solve 0.001580315 Max/L2 norm of divergence after solve at level 1 : 3.421213478e-06 0.0002064919827 and volume-weighted sum -15138.78027 Time integration of scalars at level 1 from 594 to 596 with dt = 2 using RHS created at 596 Done with advance_dycore at level 1 [Level 1 step 298] Advanced 5376 cells Coarse STEP 298 ends. TIME = 596 DT = 2 Timestep time = 0.023921779 seconds. Coarse STEP 299 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356549988 (terrain aware) 1.356549988 (terrain unaware) Anelastic dt at level 0 would be: 6.154649762 (terrain aware) 6.154649762 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656150197 (terrain aware) 0.2656150197 (terrain unaware) Anelastic dt at level 1 would be: 2.842109459 (terrain aware) 2.842109459 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 299] ADVANCE from elapsed time = 596 to 598 with dt = 2 Making slow rhs at time 596 for fast variables advancing from 596 to 596.6666666667 Fast time integration at level 0 from 596 to 596.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 596 to 596.6666666667 with dt = 0.6666666666666 using RHS created at 596 Making slow rhs at time 596.6666666667 for fast variables advancing from 596 to 597 Fast time integration at level 0 from 596 to 596.5 with dt = 0.5 Fast time integration at level 0 from 596.5 to 597 with dt = 0.5 Time integration of scalars at level 0 from 596 to 597 with dt = 1 using RHS created at 596.6666666667 Making slow rhs at time 597 for fast variables advancing from 596 to 598 Fast time integration at level 0 from 596 to 596.5 with dt = 0.5 Fast time integration at level 0 from 596.5 to 597 with dt = 0.5 Fast time integration at level 0 from 597 to 597.5 with dt = 0.5 Fast time integration at level 0 from 597.5 to 598 with dt = 0.5 Time integration of scalars at level 0 from 596 to 598 with dt = 2 using RHS created at 597 Done with advance_dycore at level 0 [Level 0 step 299] Advanced 4096 cells [Level 1 step 299] ADVANCE from elapsed time = 596 to 598 with dt = 2 Making slow rhs at time 596 for fast variables advancing from 596 to 598 No-substepping time integration at level 1 to 598 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005137491971 0.002737241099 and volume-weighted sum -8836.931641 Subtracting -1.643774453e-06 from rhs in subdomain 0 Sum after subtraction 0.02468004823 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005153929815 MLMG: Initial residual (resid0) = 0.0005153929815 MLMG: Final Iter. 2 resid, resid/bnorm = 6.726804713e-07, 0.00130517967 MLMG: Timers: Solve = 0.001359632 Iter = 0.000968728 Bottom = 0.000369302 Time in solve 0.001622556 Max/L2 norm of divergence after solve at level 1 : 2.334010787e-06 0.0001205719163 and volume-weighted sum -8836.990234 Time integration of scalars at level 1 from 596 to 598 with dt = 2 using RHS created at 596 Making slow rhs at time 598 for fast variables advancing from 596 to 598 No-substepping time integration at level 1 to 598 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004976466298 0.002738045529 and volume-weighted sum -8836.947266 Subtracting -1.643777409e-06 from rhs in subdomain 0 Sum after subtraction 0.02534943633 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004992904142 MLMG: Initial residual (resid0) = 0.0004992904142 MLMG: Final Iter. 2 resid, resid/bnorm = 6.075169949e-07, 0.001216760837 MLMG: Timers: Solve = 0.001403891 Iter = 0.001017183 Bottom = 0.000342709 Time in solve 0.001666316 Max/L2 norm of divergence after solve at level 1 : 2.257409506e-06 0.0001205570807 and volume-weighted sum -8836.951172 Time integration of scalars at level 1 from 596 to 598 with dt = 2 using RHS created at 598 Done with advance_dycore at level 1 [Level 1 step 299] Advanced 5376 cells Coarse STEP 299 ends. TIME = 598 DT = 2 Timestep time = 0.023696192 seconds. Coarse STEP 300 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.356938759 (terrain aware) 1.356938759 (terrain unaware) Anelastic dt at level 0 would be: 6.162046102 (terrain aware) 6.162046102 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656519932 (terrain aware) 0.2656519932 (terrain unaware) Anelastic dt at level 1 would be: 2.846094029 (terrain aware) 2.846094029 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 300] ADVANCE from elapsed time = 598 to 600 with dt = 2 Making slow rhs at time 598 for fast variables advancing from 598 to 598.6666666667 Fast time integration at level 0 from 598 to 598.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 598 to 598.6666666667 with dt = 0.6666666666666 using RHS created at 598 Making slow rhs at time 598.6666666667 for fast variables advancing from 598 to 599 Fast time integration at level 0 from 598 to 598.5 with dt = 0.5 Fast time integration at level 0 from 598.5 to 599 with dt = 0.5 Time integration of scalars at level 0 from 598 to 599 with dt = 1 using RHS created at 598.6666666667 Making slow rhs at time 599 for fast variables advancing from 598 to 600 Fast time integration at level 0 from 598 to 598.5 with dt = 0.5 Fast time integration at level 0 from 598.5 to 599 with dt = 0.5 Fast time integration at level 0 from 599 to 599.5 with dt = 0.5 Fast time integration at level 0 from 599.5 to 600 with dt = 0.5 Time integration of scalars at level 0 from 598 to 600 with dt = 2 using RHS created at 599 Done with advance_dycore at level 0 [Level 0 step 300] Advanced 4096 cells [Level 1 step 300] ADVANCE from elapsed time = 598 to 600 with dt = 2 Making slow rhs at time 598 for fast variables advancing from 598 to 600 No-substepping time integration at level 1 to 600 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000518143177 0.002729858272 and volume-weighted sum -1063.595093 Subtracting -1.978413451e-07 from rhs in subdomain 0 Sum after subtraction -0.06085611135 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005183410249 MLMG: Initial residual (resid0) = 0.0005183410249 MLMG: Final Iter. 2 resid, resid/bnorm = 8.886826777e-07, 0.001714474871 MLMG: Timers: Solve = 0.001461902 Iter = 0.001070487 Bottom = 0.000390273 Time in solve 0.001733583 Max/L2 norm of divergence after solve at level 1 : 1.077656634e-06 1.522389175e-05 and volume-weighted sum -1063.624268 Time integration of scalars at level 1 from 598 to 600 with dt = 2 using RHS created at 598 Making slow rhs at time 600 for fast variables advancing from 598 to 600 No-substepping time integration at level 1 to 600 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005367286503 0.002723587444 and volume-weighted sum -1063.582275 Subtracting -1.978389719e-07 from rhs in subdomain 0 Sum after subtraction -0.02878368832 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005369264982 MLMG: Initial residual (resid0) = 0.0005369264982 MLMG: Final Iter. 2 resid, resid/bnorm = 6.068021321e-07, 0.001130140037 MLMG: Timers: Solve = 0.001349623 Iter = 0.000959209 Bottom = 0.000356412 Time in solve 0.001618975 Max/L2 norm of divergence after solve at level 1 : 8.06292519e-07 1.477430033e-05 and volume-weighted sum -1063.603149 Time integration of scalars at level 1 from 598 to 600 with dt = 2 using RHS created at 600 Done with advance_dycore at level 1 [Level 1 step 300] Advanced 5376 cells Coarse STEP 300 ends. TIME = 600 DT = 2 Timestep time = 0.023332058 seconds. 3DPlotfile write time = 0.006705367 seconds. Coarse STEP 301 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.357488165 (terrain aware) 1.357488165 (terrain unaware) Anelastic dt at level 0 would be: 6.17272487 (terrain aware) 6.17272487 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656859492 (terrain aware) 0.2656859492 (terrain unaware) Anelastic dt at level 1 would be: 2.850519674 (terrain aware) 2.850519674 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (15,0,15) (0,0,0)) ((16,0,0) (31,0,31) (0,0,0)) ((32,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.02173191682 0.08070613444 and volume-weighted sum 1398.995483 Subtracting 2.732413122e-07 from rhs in subdomain 0 Sum after subtraction -0.5066394806 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.02173219062 MLMG: Initial residual (resid0) = 0.02173219062 MLMG: Final Iter. 4 resid, resid/bnorm = 4.907924449e-06, 0.0002258366148 MLMG: Timers: Solve = 0.00193039 Iter = 0.001684614 Bottom = 0.000787544 Time in solve 0.002297352 Max/L2 norm of divergence after solve at level 1 : 5.082925782e-06 2.456166658e-05 and volume-weighted sum 1398.478149 [Level 0 step 301] ADVANCE from elapsed time = 600 to 602 with dt = 2 Making slow rhs at time 600 for fast variables advancing from 600 to 600.6666666667 Fast time integration at level 0 from 600 to 600.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 600 to 600.6666666667 with dt = 0.6666666666666 using RHS created at 600 Making slow rhs at time 600.6666666667 for fast variables advancing from 600 to 601 Fast time integration at level 0 from 600 to 600.5 with dt = 0.5 Fast time integration at level 0 from 600.5 to 601 with dt = 0.5 Time integration of scalars at level 0 from 600 to 601 with dt = 1 using RHS created at 600.6666666667 Making slow rhs at time 601 for fast variables advancing from 600 to 602 Fast time integration at level 0 from 600 to 600.5 with dt = 0.5 Fast time integration at level 0 from 600.5 to 601 with dt = 0.5 Fast time integration at level 0 from 601 to 601.5 with dt = 0.5 Fast time integration at level 0 from 601.5 to 602 with dt = 0.5 Time integration of scalars at level 0 from 600 to 602 with dt = 2 using RHS created at 601 Done with advance_dycore at level 0 [Level 0 step 301] Advanced 4096 cells [Level 1 step 301] ADVANCE from elapsed time = 600 to 602 with dt = 2 Making slow rhs at time 600 for fast variables advancing from 600 to 602 No-substepping time integration at level 1 to 602 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.04247146472 0.1779980958 and volume-weighted sum 10518.84863 Subtracting 2.054462584e-06 from rhs in subdomain 0 Sum after subtraction -0.2384185791 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.04246941209 MLMG: Initial residual (resid0) = 0.04246941209 MLMG: Final Iter. 4 resid, resid/bnorm = 9.640898497e-06, 0.0002270080586 MLMG: Timers: Solve = 0.001932711 Iter = 0.001693424 Bottom = 0.00080115 Time in solve 0.0022811 Max/L2 norm of divergence after solve at level 1 : 1.168972813e-05 0.0001498740457 and volume-weighted sum 10518.56055 Time integration of scalars at level 1 from 600 to 602 with dt = 2 using RHS created at 600 Making slow rhs at time 602 for fast variables advancing from 600 to 602 No-substepping time integration at level 1 to 602 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005470793694 0.00272415136 and volume-weighted sum 10518.51953 Subtracting 2.054398237e-06 from rhs in subdomain 0 Sum after subtraction 0.03684544936 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005450249882 MLMG: Initial residual (resid0) = 0.0005450249882 MLMG: Final Iter. 2 resid, resid/bnorm = 5.649599188e-07, 0.001036576228 MLMG: Timers: Solve = 0.001124074 Iter = 0.000878817 Bottom = 0.00039054 Time in solve 0.001470942 Max/L2 norm of divergence after solve at level 1 : 2.587214112e-06 0.0001470322459 and volume-weighted sum 10518.5293 Time integration of scalars at level 1 from 600 to 602 with dt = 2 using RHS created at 602 Done with advance_dycore at level 1 [Level 1 step 301] Advanced 5120 cells Coarse STEP 301 ends. TIME = 602 DT = 2 Timestep time = 0.028993784 seconds. Coarse STEP 302 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358174661 (terrain aware) 1.358174661 (terrain unaware) Anelastic dt at level 0 would be: 6.17526224 (terrain aware) 6.17526224 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658022901 (terrain aware) 0.2658022901 (terrain unaware) Anelastic dt at level 1 would be: 2.864024596 (terrain aware) 2.864024596 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 302] ADVANCE from elapsed time = 602 to 604 with dt = 2 Making slow rhs at time 602 for fast variables advancing from 602 to 602.6666666667 Fast time integration at level 0 from 602 to 602.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 602 to 602.6666666667 with dt = 0.6666666666666 using RHS created at 602 Making slow rhs at time 602.6666666667 for fast variables advancing from 602 to 603 Fast time integration at level 0 from 602 to 602.5 with dt = 0.5 Fast time integration at level 0 from 602.5 to 603 with dt = 0.5 Time integration of scalars at level 0 from 602 to 603 with dt = 1 using RHS created at 602.6666666667 Making slow rhs at time 603 for fast variables advancing from 602 to 604 Fast time integration at level 0 from 602 to 602.5 with dt = 0.5 Fast time integration at level 0 from 602.5 to 603 with dt = 0.5 Fast time integration at level 0 from 603 to 603.5 with dt = 0.5 Fast time integration at level 0 from 603.5 to 604 with dt = 0.5 Time integration of scalars at level 0 from 602 to 604 with dt = 2 using RHS created at 603 Done with advance_dycore at level 0 [Level 0 step 302] Advanced 4096 cells [Level 1 step 302] ADVANCE from elapsed time = 602 to 604 with dt = 2 Making slow rhs at time 602 for fast variables advancing from 602 to 604 No-substepping time integration at level 1 to 604 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004870034754 0.002728580032 and volume-weighted sum 18953.24219 Subtracting 3.701805099e-06 from rhs in subdomain 0 Sum after subtraction -0.004598405212 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004833016719 MLMG: Initial residual (resid0) = 0.0004833016719 MLMG: Final Iter. 2 resid, resid/bnorm = 1.629377948e-06, 0.003371347673 MLMG: Timers: Solve = 0.001128758 Iter = 0.000891204 Bottom = 0.000401831 Time in solve 0.001501412 Max/L2 norm of divergence after solve at level 1 : 5.331123248e-06 0.0002649526286 and volume-weighted sum 18953.22266 Time integration of scalars at level 1 from 602 to 604 with dt = 2 using RHS created at 602 Making slow rhs at time 604 for fast variables advancing from 602 to 604 No-substepping time integration at level 1 to 604 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004783160985 0.002717565978 and volume-weighted sum 18953.24609 Subtracting 3.701805781e-06 from rhs in subdomain 0 Sum after subtraction 0.001396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004746142949 MLMG: Initial residual (resid0) = 0.0004746142949 MLMG: Final Iter. 2 resid, resid/bnorm = 5.492793207e-07, 0.001157317311 MLMG: Timers: Solve = 0.001123278 Iter = 0.000888791 Bottom = 0.000396277 Time in solve 0.001490284 Max/L2 norm of divergence after solve at level 1 : 4.235655069e-06 0.0002648976806 and volume-weighted sum 18953.19336 Time integration of scalars at level 1 from 602 to 604 with dt = 2 using RHS created at 604 Done with advance_dycore at level 1 [Level 1 step 302] Advanced 5120 cells Coarse STEP 302 ends. TIME = 604 DT = 2 Timestep time = 0.020237379 seconds. Coarse STEP 303 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.358977238 (terrain aware) 1.358977238 (terrain unaware) Anelastic dt at level 0 would be: 6.17818704 (terrain aware) 6.17818704 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265793219 (terrain aware) 0.265793219 (terrain unaware) Anelastic dt at level 1 would be: 2.866623359 (terrain aware) 2.866623359 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 303] ADVANCE from elapsed time = 604 to 606 with dt = 2 Making slow rhs at time 604 for fast variables advancing from 604 to 604.6666666667 Fast time integration at level 0 from 604 to 604.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 604 to 604.6666666667 with dt = 0.6666666666666 using RHS created at 604 Making slow rhs at time 604.6666666667 for fast variables advancing from 604 to 605 Fast time integration at level 0 from 604 to 604.5 with dt = 0.5 Fast time integration at level 0 from 604.5 to 605 with dt = 0.5 Time integration of scalars at level 0 from 604 to 605 with dt = 1 using RHS created at 604.6666666667 Making slow rhs at time 605 for fast variables advancing from 604 to 606 Fast time integration at level 0 from 604 to 604.5 with dt = 0.5 Fast time integration at level 0 from 604.5 to 605 with dt = 0.5 Fast time integration at level 0 from 605 to 605.5 with dt = 0.5 Fast time integration at level 0 from 605.5 to 606 with dt = 0.5 Time integration of scalars at level 0 from 604 to 606 with dt = 2 using RHS created at 605 Done with advance_dycore at level 0 [Level 0 step 303] Advanced 4096 cells [Level 1 step 303] ADVANCE from elapsed time = 604 to 606 with dt = 2 Making slow rhs at time 604 for fast variables advancing from 604 to 606 No-substepping time integration at level 1 to 606 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005409531295 0.002712829737 and volume-weighted sum 24869.1582 Subtracting 4.857257409e-06 from rhs in subdomain 0 Sum after subtraction -0.06711342931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005360958748 MLMG: Initial residual (resid0) = 0.0005360958748 MLMG: Final Iter. 2 resid, resid/bnorm = 7.034232112e-07, 0.001312121982 MLMG: Timers: Solve = 0.001148038 Iter = 0.000908651 Bottom = 0.000415981 Time in solve 0.001511684 Max/L2 norm of divergence after solve at level 1 : 5.474081263e-06 0.0003475761332 and volume-weighted sum 24869.19531 Time integration of scalars at level 1 from 604 to 606 with dt = 2 using RHS created at 604 Making slow rhs at time 606 for fast variables advancing from 604 to 606 No-substepping time integration at level 1 to 606 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005511268973 0.002711005043 and volume-weighted sum 24869.21094 Subtracting 4.857267868e-06 from rhs in subdomain 0 Sum after subtraction -0.07043126971 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005462696427 MLMG: Initial residual (resid0) = 0.0005462696427 MLMG: Final Iter. 2 resid, resid/bnorm = 5.390784281e-07, 0.0009868358029 MLMG: Timers: Solve = 0.001130328 Iter = 0.000881261 Bottom = 0.000397884 Time in solve 0.001497383 Max/L2 norm of divergence after solve at level 1 : 5.377456546e-06 0.0003475703124 and volume-weighted sum 24869.16602 Time integration of scalars at level 1 from 604 to 606 with dt = 2 using RHS created at 606 Done with advance_dycore at level 1 [Level 1 step 303] Advanced 5120 cells Coarse STEP 303 ends. TIME = 606 DT = 2 Timestep time = 0.020214397 seconds. Coarse STEP 304 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.359875182 (terrain aware) 1.359875182 (terrain unaware) Anelastic dt at level 0 would be: 6.182182935 (terrain aware) 6.182182935 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265793517 (terrain aware) 0.265793517 (terrain unaware) Anelastic dt at level 1 would be: 2.870548027 (terrain aware) 2.870548027 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 304] ADVANCE from elapsed time = 606 to 608 with dt = 2 Making slow rhs at time 606 for fast variables advancing from 606 to 606.6666666667 Fast time integration at level 0 from 606 to 606.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 606 to 606.6666666667 with dt = 0.6666666666666 using RHS created at 606 Making slow rhs at time 606.6666666667 for fast variables advancing from 606 to 607 Fast time integration at level 0 from 606 to 606.5 with dt = 0.5 Fast time integration at level 0 from 606.5 to 607 with dt = 0.5 Time integration of scalars at level 0 from 606 to 607 with dt = 1 using RHS created at 606.6666666667 Making slow rhs at time 607 for fast variables advancing from 606 to 608 Fast time integration at level 0 from 606 to 606.5 with dt = 0.5 Fast time integration at level 0 from 606.5 to 607 with dt = 0.5 Fast time integration at level 0 from 607 to 607.5 with dt = 0.5 Fast time integration at level 0 from 607.5 to 608 with dt = 0.5 Time integration of scalars at level 0 from 606 to 608 with dt = 2 using RHS created at 607 Done with advance_dycore at level 0 [Level 0 step 304] Advanced 4096 cells [Level 1 step 304] ADVANCE from elapsed time = 606 to 608 with dt = 2 Making slow rhs at time 606 for fast variables advancing from 606 to 608 No-substepping time integration at level 1 to 608 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005561802536 0.002712610411 and volume-weighted sum 27195.89258 Subtracting 5.311697805e-06 from rhs in subdomain 0 Sum after subtraction -0.04132743925 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005508685717 MLMG: Initial residual (resid0) = 0.0005508685717 MLMG: Final Iter. 2 resid, resid/bnorm = 8.202455319e-07, 0.001489004004 MLMG: Timers: Solve = 0.001145597 Iter = 0.000907851 Bottom = 0.000411749 Time in solve 0.001567695 Max/L2 norm of divergence after solve at level 1 : 6.108253729e-06 0.0003800995764 and volume-weighted sum 27195.875 Time integration of scalars at level 1 from 606 to 608 with dt = 2 using RHS created at 606 Making slow rhs at time 608 for fast variables advancing from 606 to 608 No-substepping time integration at level 1 to 608 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005322620273 0.002699117642 and volume-weighted sum 27195.89062 Subtracting 5.31169735e-06 from rhs in subdomain 0 Sum after subtraction 0.01129228622 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005269503454 MLMG: Initial residual (resid0) = 0.0005269503454 MLMG: Final Iter. 2 resid, resid/bnorm = 5.347455954e-07, 0.001014793175 MLMG: Timers: Solve = 0.001143594 Iter = 0.000906208 Bottom = 0.000408113 Time in solve 0.00151298 Max/L2 norm of divergence after solve at level 1 : 5.814246833e-06 0.0003800865379 and volume-weighted sum 27195.9043 Time integration of scalars at level 1 from 606 to 608 with dt = 2 using RHS created at 608 Done with advance_dycore at level 1 [Level 1 step 304] Advanced 5120 cells Coarse STEP 304 ends. TIME = 608 DT = 2 Timestep time = 0.02014436 seconds. Coarse STEP 305 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.360851655 (terrain aware) 1.360851655 (terrain unaware) Anelastic dt at level 0 would be: 6.187343505 (terrain aware) 6.187343505 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658039478 (terrain aware) 0.2658039478 (terrain unaware) Anelastic dt at level 1 would be: 2.875852244 (terrain aware) 2.875852244 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 305] ADVANCE from elapsed time = 608 to 610 with dt = 2 Making slow rhs at time 608 for fast variables advancing from 608 to 608.6666666667 Fast time integration at level 0 from 608 to 608.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 608 to 608.6666666667 with dt = 0.6666666666666 using RHS created at 608 Making slow rhs at time 608.6666666667 for fast variables advancing from 608 to 609 Fast time integration at level 0 from 608 to 608.5 with dt = 0.5 Fast time integration at level 0 from 608.5 to 609 with dt = 0.5 Time integration of scalars at level 0 from 608 to 609 with dt = 1 using RHS created at 608.6666666667 Making slow rhs at time 609 for fast variables advancing from 608 to 610 Fast time integration at level 0 from 608 to 608.5 with dt = 0.5 Fast time integration at level 0 from 608.5 to 609 with dt = 0.5 Fast time integration at level 0 from 609 to 609.5 with dt = 0.5 Fast time integration at level 0 from 609.5 to 610 with dt = 0.5 Time integration of scalars at level 0 from 608 to 610 with dt = 2 using RHS created at 609 Done with advance_dycore at level 0 [Level 0 step 305] Advanced 4096 cells [Level 1 step 305] ADVANCE from elapsed time = 608 to 610 with dt = 2 Making slow rhs at time 608 for fast variables advancing from 608 to 610 No-substepping time integration at level 1 to 610 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004529003054 0.002708912827 and volume-weighted sum 26037.08398 Subtracting 5.085367775e-06 from rhs in subdomain 0 Sum after subtraction 0.05471520126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004478149349 MLMG: Initial residual (resid0) = 0.0004478149349 MLMG: Final Iter. 2 resid, resid/bnorm = 1.930409553e-06, 0.004310730845 MLMG: Timers: Solve = 0.00112904 Iter = 0.000884718 Bottom = 0.000395666 Time in solve 0.001504516 Max/L2 norm of divergence after solve at level 1 : 6.954673154e-06 0.000363956904 and volume-weighted sum 26037.06055 Time integration of scalars at level 1 from 608 to 610 with dt = 2 using RHS created at 608 Making slow rhs at time 610 for fast variables advancing from 608 to 610 No-substepping time integration at level 1 to 610 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004808567464 0.002680665348 and volume-weighted sum 26037.07617 Subtracting 5.085366411e-06 from rhs in subdomain 0 Sum after subtraction 0.00698491931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004757713759 MLMG: Initial residual (resid0) = 0.0004757713759 MLMG: Final Iter. 2 resid, resid/bnorm = 5.334641173e-07, 0.001121261506 MLMG: Timers: Solve = 0.001125746 Iter = 0.000888656 Bottom = 0.0004029 Time in solve 0.001489478 Max/L2 norm of divergence after solve at level 1 : 5.589332432e-06 0.0003638918861 and volume-weighted sum 26037.08398 Time integration of scalars at level 1 from 608 to 610 with dt = 2 using RHS created at 610 Done with advance_dycore at level 1 [Level 1 step 305] Advanced 5120 cells Coarse STEP 305 ends. TIME = 610 DT = 2 Timestep time = 0.020013916 seconds. Coarse STEP 306 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361097226 (terrain aware) 1.361097226 (terrain unaware) Anelastic dt at level 0 would be: 6.193832663 (terrain aware) 6.193832663 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658247722 (terrain aware) 0.2658247722 (terrain unaware) Anelastic dt at level 1 would be: 2.87895258 (terrain aware) 2.87895258 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 306] ADVANCE from elapsed time = 610 to 612 with dt = 2 Making slow rhs at time 610 for fast variables advancing from 610 to 610.6666666667 Fast time integration at level 0 from 610 to 610.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 610 to 610.6666666667 with dt = 0.6666666666666 using RHS created at 610 Making slow rhs at time 610.6666666667 for fast variables advancing from 610 to 611 Fast time integration at level 0 from 610 to 610.5 with dt = 0.5 Fast time integration at level 0 from 610.5 to 611 with dt = 0.5 Time integration of scalars at level 0 from 610 to 611 with dt = 1 using RHS created at 610.6666666667 Making slow rhs at time 611 for fast variables advancing from 610 to 612 Fast time integration at level 0 from 610 to 610.5 with dt = 0.5 Fast time integration at level 0 from 610.5 to 611 with dt = 0.5 Fast time integration at level 0 from 611 to 611.5 with dt = 0.5 Fast time integration at level 0 from 611.5 to 612 with dt = 0.5 Time integration of scalars at level 0 from 610 to 612 with dt = 2 using RHS created at 611 Done with advance_dycore at level 0 [Level 0 step 306] Advanced 4096 cells [Level 1 step 306] ADVANCE from elapsed time = 610 to 612 with dt = 2 Making slow rhs at time 610 for fast variables advancing from 610 to 612 No-substepping time integration at level 1 to 612 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005505420268 0.002684387146 and volume-weighted sum 22689.54688 Subtracting 4.431552043e-06 from rhs in subdomain 0 Sum after subtraction 0.04377216101 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005461105029 MLMG: Initial residual (resid0) = 0.0005461105029 MLMG: Final Iter. 2 resid, resid/bnorm = 2.360440249e-06, 0.004322275985 MLMG: Timers: Solve = 0.001109689 Iter = 0.000874995 Bottom = 0.000386977 Time in solve 0.001490144 Max/L2 norm of divergence after solve at level 1 : 6.706715794e-06 0.0003172179859 and volume-weighted sum 22689.50977 Time integration of scalars at level 1 from 610 to 612 with dt = 2 using RHS created at 610 Making slow rhs at time 612 for fast variables advancing from 610 to 612 No-substepping time integration at level 1 to 612 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005535744131 0.002659221413 and volume-weighted sum 22689.53906 Subtracting 4.431550678e-06 from rhs in subdomain 0 Sum after subtraction 0.03026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005491428892 MLMG: Initial residual (resid0) = 0.0005491428892 MLMG: Final Iter. 2 resid, resid/bnorm = 5.353304005e-07, 0.0009748471784 MLMG: Timers: Solve = 0.001138597 Iter = 0.000892579 Bottom = 0.000403311 Time in solve 0.001500891 Max/L2 norm of divergence after solve at level 1 : 4.934612662e-06 0.0003171100107 and volume-weighted sum 22689.54297 Time integration of scalars at level 1 from 610 to 612 with dt = 2 using RHS created at 612 Done with advance_dycore at level 1 [Level 1 step 306] Advanced 5120 cells Coarse STEP 306 ends. TIME = 612 DT = 2 Timestep time = 0.020119364 seconds. Coarse STEP 307 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361293772 (terrain aware) 1.361293772 (terrain unaware) Anelastic dt at level 0 would be: 6.201870349 (terrain aware) 6.201870349 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658293543 (terrain aware) 0.2658293543 (terrain unaware) Anelastic dt at level 1 would be: 2.882343488 (terrain aware) 2.882343488 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 307] ADVANCE from elapsed time = 612 to 614 with dt = 2 Making slow rhs at time 612 for fast variables advancing from 612 to 612.6666666667 Fast time integration at level 0 from 612 to 612.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 612 to 612.6666666667 with dt = 0.6666666666666 using RHS created at 612 Making slow rhs at time 612.6666666667 for fast variables advancing from 612 to 613 Fast time integration at level 0 from 612 to 612.5 with dt = 0.5 Fast time integration at level 0 from 612.5 to 613 with dt = 0.5 Time integration of scalars at level 0 from 612 to 613 with dt = 1 using RHS created at 612.6666666667 Making slow rhs at time 613 for fast variables advancing from 612 to 614 Fast time integration at level 0 from 612 to 612.5 with dt = 0.5 Fast time integration at level 0 from 612.5 to 613 with dt = 0.5 Fast time integration at level 0 from 613 to 613.5 with dt = 0.5 Fast time integration at level 0 from 613.5 to 614 with dt = 0.5 Time integration of scalars at level 0 from 612 to 614 with dt = 2 using RHS created at 613 Done with advance_dycore at level 0 [Level 0 step 307] Advanced 4096 cells [Level 1 step 307] ADVANCE from elapsed time = 612 to 614 with dt = 2 Making slow rhs at time 612 for fast variables advancing from 612 to 614 No-substepping time integration at level 1 to 614 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005374122411 0.002646797337 and volume-weighted sum 18472.65234 Subtracting 3.607940016e-06 from rhs in subdomain 0 Sum after subtraction 0.02910383046 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005338042974 MLMG: Initial residual (resid0) = 0.0005338042974 MLMG: Final Iter. 2 resid, resid/bnorm = 1.891448164e-06, 0.00354333641 MLMG: Timers: Solve = 0.001120882 Iter = 0.000885865 Bottom = 0.000395368 Time in solve 0.001471581 Max/L2 norm of divergence after solve at level 1 : 5.428795703e-06 0.0002582660818 and volume-weighted sum 18472.68945 Time integration of scalars at level 1 from 612 to 614 with dt = 2 using RHS created at 612 Making slow rhs at time 614 for fast variables advancing from 612 to 614 No-substepping time integration at level 1 to 614 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005101580173 0.002637280384 and volume-weighted sum 18472.68359 Subtracting 3.607945928e-06 from rhs in subdomain 0 Sum after subtraction -0.03655441105 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005065500736 MLMG: Initial residual (resid0) = 0.0005065500736 MLMG: Final Iter. 2 resid, resid/bnorm = 5.354304449e-07, 0.001057013869 MLMG: Timers: Solve = 0.001305276 Iter = 0.001072464 Bottom = 0.000412902 Time in solve 0.001773118 Max/L2 norm of divergence after solve at level 1 : 4.102941602e-06 0.0002581797598 and volume-weighted sum 18472.69531 Time integration of scalars at level 1 from 612 to 614 with dt = 2 using RHS created at 614 Done with advance_dycore at level 1 [Level 1 step 307] Advanced 5120 cells Coarse STEP 307 ends. TIME = 614 DT = 2 Timestep time = 0.020411795 seconds. Coarse STEP 308 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36158211 (terrain aware) 1.36158211 (terrain unaware) Anelastic dt at level 0 would be: 6.196238306 (terrain aware) 6.196238306 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658316453 (terrain aware) 0.2658316453 (terrain unaware) Anelastic dt at level 1 would be: 2.88719471 (terrain aware) 2.88719471 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 308] ADVANCE from elapsed time = 614 to 616 with dt = 2 Making slow rhs at time 614 for fast variables advancing from 614 to 614.6666666667 Fast time integration at level 0 from 614 to 614.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 614 to 614.6666666667 with dt = 0.6666666666666 using RHS created at 614 Making slow rhs at time 614.6666666667 for fast variables advancing from 614 to 615 Fast time integration at level 0 from 614 to 614.5 with dt = 0.5 Fast time integration at level 0 from 614.5 to 615 with dt = 0.5 Time integration of scalars at level 0 from 614 to 615 with dt = 1 using RHS created at 614.6666666667 Making slow rhs at time 615 for fast variables advancing from 614 to 616 Fast time integration at level 0 from 614 to 614.5 with dt = 0.5 Fast time integration at level 0 from 614.5 to 615 with dt = 0.5 Fast time integration at level 0 from 615 to 615.5 with dt = 0.5 Fast time integration at level 0 from 615.5 to 616 with dt = 0.5 Time integration of scalars at level 0 from 614 to 616 with dt = 2 using RHS created at 615 Done with advance_dycore at level 0 [Level 0 step 308] Advanced 4096 cells [Level 1 step 308] ADVANCE from elapsed time = 614 to 616 with dt = 2 Making slow rhs at time 614 for fast variables advancing from 614 to 616 No-substepping time integration at level 1 to 616 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000470072031 0.002613125602 and volume-weighted sum 13977.04883 Subtracting 2.729892458e-06 from rhs in subdomain 0 Sum after subtraction -0.03632158041 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004673421499 MLMG: Initial residual (resid0) = 0.0004673421499 MLMG: Final Iter. 2 resid, resid/bnorm = 6.76393654e-07, 0.001447319984 MLMG: Timers: Solve = 0.001129925 Iter = 0.00088163 Bottom = 0.000393806 Time in solve 0.001504318 Max/L2 norm of divergence after solve at level 1 : 3.379595e-06 0.0001953745668 and volume-weighted sum 13977.01172 Time integration of scalars at level 1 from 614 to 616 with dt = 2 using RHS created at 614 Making slow rhs at time 616 for fast variables advancing from 614 to 616 No-substepping time integration at level 1 to 616 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000499162823 0.002617189661 and volume-weighted sum 13977.04102 Subtracting 2.729890866e-06 from rhs in subdomain 0 Sum after subtraction -0.03166496754 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004964329419 MLMG: Initial residual (resid0) = 0.0004964329419 MLMG: Final Iter. 2 resid, resid/bnorm = 5.344045348e-07, 0.001076488872 MLMG: Timers: Solve = 0.0011509 Iter = 0.000902452 Bottom = 0.000409426 Time in solve 0.001514165 Max/L2 norm of divergence after solve at level 1 : 3.220979124e-06 0.0001953560277 and volume-weighted sum 13977.01953 Time integration of scalars at level 1 from 614 to 616 with dt = 2 using RHS created at 616 Done with advance_dycore at level 1 [Level 1 step 308] Advanced 5120 cells Coarse STEP 308 ends. TIME = 616 DT = 2 Timestep time = 0.020018989 seconds. Coarse STEP 309 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.361957023 (terrain aware) 1.361957023 (terrain unaware) Anelastic dt at level 0 would be: 6.189088133 (terrain aware) 6.189088133 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658425046 (terrain aware) 0.2658425046 (terrain unaware) Anelastic dt at level 1 would be: 2.893314318 (terrain aware) 2.893314318 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 309] ADVANCE from elapsed time = 616 to 618 with dt = 2 Making slow rhs at time 616 for fast variables advancing from 616 to 616.6666666667 Fast time integration at level 0 from 616 to 616.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 616 to 616.6666666667 with dt = 0.6666666666666 using RHS created at 616 Making slow rhs at time 616.6666666667 for fast variables advancing from 616 to 617 Fast time integration at level 0 from 616 to 616.5 with dt = 0.5 Fast time integration at level 0 from 616.5 to 617 with dt = 0.5 Time integration of scalars at level 0 from 616 to 617 with dt = 1 using RHS created at 616.6666666667 Making slow rhs at time 617 for fast variables advancing from 616 to 618 Fast time integration at level 0 from 616 to 616.5 with dt = 0.5 Fast time integration at level 0 from 616.5 to 617 with dt = 0.5 Fast time integration at level 0 from 617 to 617.5 with dt = 0.5 Fast time integration at level 0 from 617.5 to 618 with dt = 0.5 Time integration of scalars at level 0 from 616 to 618 with dt = 2 using RHS created at 617 Done with advance_dycore at level 0 [Level 0 step 309] Advanced 4096 cells [Level 1 step 309] ADVANCE from elapsed time = 616 to 618 with dt = 2 Making slow rhs at time 616 for fast variables advancing from 616 to 618 No-substepping time integration at level 1 to 618 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005507878959 0.002599013504 and volume-weighted sum 8903.916992 Subtracting 1.739046297e-06 from rhs in subdomain 0 Sum after subtraction 0.02491287887 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005490488256 MLMG: Initial residual (resid0) = 0.0005490488256 MLMG: Final Iter. 2 resid, resid/bnorm = 8.436450116e-07, 0.001536557334 MLMG: Timers: Solve = 0.001299776 Iter = 0.000891293 Bottom = 0.000402615 Time in solve 0.001695869 Max/L2 norm of divergence after solve at level 1 : 2.586864866e-06 0.0001245058811 and volume-weighted sum 8903.887695 Time integration of scalars at level 1 from 616 to 618 with dt = 2 using RHS created at 616 Making slow rhs at time 618 for fast variables advancing from 616 to 618 No-substepping time integration at level 1 to 618 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005475059152 0.002598662395 and volume-weighted sum 8903.924805 Subtracting 1.739047775e-06 from rhs in subdomain 0 Sum after subtraction 0.03445893526 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005457668449 MLMG: Initial residual (resid0) = 0.0005457668449 MLMG: Final Iter. 2 resid, resid/bnorm = 5.337733455e-07, 0.0009780244436 MLMG: Timers: Solve = 0.001129664 Iter = 0.000897614 Bottom = 0.000410642 Time in solve 0.001497736 Max/L2 norm of divergence after solve at level 1 : 2.226326615e-06 0.0001244679734 and volume-weighted sum 8903.898438 Time integration of scalars at level 1 from 616 to 618 with dt = 2 using RHS created at 618 Done with advance_dycore at level 1 [Level 1 step 309] Advanced 5120 cells Coarse STEP 309 ends. TIME = 618 DT = 2 Timestep time = 0.019958541 seconds. Coarse STEP 310 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.362417618 (terrain aware) 1.362417618 (terrain unaware) Anelastic dt at level 0 would be: 6.183459667 (terrain aware) 6.183459667 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658604605 (terrain aware) 0.2658604605 (terrain unaware) Anelastic dt at level 1 would be: 2.899923877 (terrain aware) 2.899923877 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 310] ADVANCE from elapsed time = 618 to 620 with dt = 2 Making slow rhs at time 618 for fast variables advancing from 618 to 618.6666666667 Fast time integration at level 0 from 618 to 618.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 618 to 618.6666666667 with dt = 0.6666666666666 using RHS created at 618 Making slow rhs at time 618.6666666667 for fast variables advancing from 618 to 619 Fast time integration at level 0 from 618 to 618.5 with dt = 0.5 Fast time integration at level 0 from 618.5 to 619 with dt = 0.5 Time integration of scalars at level 0 from 618 to 619 with dt = 1 using RHS created at 618.6666666667 Making slow rhs at time 619 for fast variables advancing from 618 to 620 Fast time integration at level 0 from 618 to 618.5 with dt = 0.5 Fast time integration at level 0 from 618.5 to 619 with dt = 0.5 Fast time integration at level 0 from 619 to 619.5 with dt = 0.5 Fast time integration at level 0 from 619.5 to 620 with dt = 0.5 Time integration of scalars at level 0 from 618 to 620 with dt = 2 using RHS created at 619 Done with advance_dycore at level 0 [Level 0 step 310] Advanced 4096 cells [Level 1 step 310] ADVANCE from elapsed time = 618 to 620 with dt = 2 Making slow rhs at time 618 for fast variables advancing from 618 to 620 No-substepping time integration at level 1 to 620 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005134958774 0.002597389277 and volume-weighted sum 2904.521729 Subtracting 5.67289419e-07 from rhs in subdomain 0 Sum after subtraction 0.1456355751 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005129285855 MLMG: Initial residual (resid0) = 0.0005129285855 MLMG: Final Iter. 2 resid, resid/bnorm = 2.057827714e-06, 0.004011918791 MLMG: Timers: Solve = 0.00114869 Iter = 0.000898113 Bottom = 0.000396034 Time in solve 0.001513951 Max/L2 norm of divergence after solve at level 1 : 2.620217856e-06 4.127473221e-05 and volume-weighted sum 2904.539551 Time integration of scalars at level 1 from 618 to 620 with dt = 2 using RHS created at 618 Making slow rhs at time 620 for fast variables advancing from 618 to 620 No-substepping time integration at level 1 to 620 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004917103797 0.002581953304 and volume-weighted sum 2904.525391 Subtracting 5.672901011e-07 from rhs in subdomain 0 Sum after subtraction 0.1492444426 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004911430296 MLMG: Initial residual (resid0) = 0.0004911430296 MLMG: Final Iter. 2 resid, resid/bnorm = 5.275906005e-07, 0.001074209693 MLMG: Timers: Solve = 0.001150822 Iter = 0.000909485 Bottom = 0.000415117 Time in solve 0.001557748 Max/L2 norm of divergence after solve at level 1 : 1.047272235e-06 4.068588169e-05 and volume-weighted sum 2904.518311 Time integration of scalars at level 1 from 618 to 620 with dt = 2 using RHS created at 620 Done with advance_dycore at level 1 [Level 1 step 310] Advanced 5120 cells Coarse STEP 310 ends. TIME = 620 DT = 2 Timestep time = 0.020344799 seconds. Coarse STEP 311 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.362963299 (terrain aware) 1.362963299 (terrain unaware) Anelastic dt at level 0 would be: 6.179659275 (terrain aware) 6.179659275 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658841347 (terrain aware) 0.2658841347 (terrain unaware) Anelastic dt at level 1 would be: 2.903364257 (terrain aware) 2.903364257 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 311] ADVANCE from elapsed time = 620 to 622 with dt = 2 Making slow rhs at time 620 for fast variables advancing from 620 to 620.6666666667 Fast time integration at level 0 from 620 to 620.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 620 to 620.6666666667 with dt = 0.6666666666666 using RHS created at 620 Making slow rhs at time 620.6666666667 for fast variables advancing from 620 to 621 Fast time integration at level 0 from 620 to 620.5 with dt = 0.5 Fast time integration at level 0 from 620.5 to 621 with dt = 0.5 Time integration of scalars at level 0 from 620 to 621 with dt = 1 using RHS created at 620.6666666667 Making slow rhs at time 621 for fast variables advancing from 620 to 622 Fast time integration at level 0 from 620 to 620.5 with dt = 0.5 Fast time integration at level 0 from 620.5 to 621 with dt = 0.5 Fast time integration at level 0 from 621 to 621.5 with dt = 0.5 Fast time integration at level 0 from 621.5 to 622 with dt = 0.5 Time integration of scalars at level 0 from 620 to 622 with dt = 2 using RHS created at 621 Done with advance_dycore at level 0 [Level 0 step 311] Advanced 4096 cells [Level 1 step 311] ADVANCE from elapsed time = 620 to 622 with dt = 2 Making slow rhs at time 620 for fast variables advancing from 620 to 622 No-substepping time integration at level 1 to 622 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004873760045 0.002589459531 and volume-weighted sum -3770.229492 Subtracting -7.363729537e-07 from rhs in subdomain 0 Sum after subtraction 0.06810296327 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004881123896 MLMG: Initial residual (resid0) = 0.0004881123896 MLMG: Final Iter. 2 resid, resid/bnorm = 2.584867616e-06, 0.005295640323 MLMG: Timers: Solve = 0.001141104 Iter = 0.000875254 Bottom = 0.000390045 Time in solve 0.001512539 Max/L2 norm of divergence after solve at level 1 : 3.23652057e-06 5.347100887e-05 and volume-weighted sum -3770.249023 Time integration of scalars at level 1 from 620 to 622 with dt = 2 using RHS created at 620 Making slow rhs at time 622 for fast variables advancing from 620 to 622 No-substepping time integration at level 1 to 622 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005105212331 0.002569410251 and volume-weighted sum -3770.26416 Subtracting -7.363797181e-07 from rhs in subdomain 0 Sum after subtraction 0.0549480319 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005112576182 MLMG: Initial residual (resid0) = 0.0005112576182 MLMG: Final Iter. 2 resid, resid/bnorm = 5.273295756e-07, 0.001031436143 MLMG: Timers: Solve = 0.001126019 Iter = 0.000881078 Bottom = 0.000399325 Time in solve 0.001535833 Max/L2 norm of divergence after solve at level 1 : 1.260545105e-06 5.275976582e-05 and volume-weighted sum -3770.231689 Time integration of scalars at level 1 from 620 to 622 with dt = 2 using RHS created at 622 Done with advance_dycore at level 1 [Level 1 step 311] Advanced 5120 cells Coarse STEP 311 ends. TIME = 622 DT = 2 Timestep time = 0.021180424 seconds. Coarse STEP 312 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.363592426 (terrain aware) 1.363592426 (terrain unaware) Anelastic dt at level 0 would be: 6.177924183 (terrain aware) 6.177924183 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658874316 (terrain aware) 0.2658874316 (terrain unaware) Anelastic dt at level 1 would be: 2.907749967 (terrain aware) 2.907749967 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 312] ADVANCE from elapsed time = 622 to 624 with dt = 2 Making slow rhs at time 622 for fast variables advancing from 622 to 622.6666666667 Fast time integration at level 0 from 622 to 622.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 622 to 622.6666666667 with dt = 0.6666666666666 using RHS created at 622 Making slow rhs at time 622.6666666667 for fast variables advancing from 622 to 623 Fast time integration at level 0 from 622 to 622.5 with dt = 0.5 Fast time integration at level 0 from 622.5 to 623 with dt = 0.5 Time integration of scalars at level 0 from 622 to 623 with dt = 1 using RHS created at 622.6666666667 Making slow rhs at time 623 for fast variables advancing from 622 to 624 Fast time integration at level 0 from 622 to 622.5 with dt = 0.5 Fast time integration at level 0 from 622.5 to 623 with dt = 0.5 Fast time integration at level 0 from 623 to 623.5 with dt = 0.5 Fast time integration at level 0 from 623.5 to 624 with dt = 0.5 Time integration of scalars at level 0 from 622 to 624 with dt = 2 using RHS created at 623 Done with advance_dycore at level 0 [Level 0 step 312] Advanced 4096 cells [Level 1 step 312] ADVANCE from elapsed time = 622 to 624 with dt = 2 Making slow rhs at time 622 for fast variables advancing from 622 to 624 No-substepping time integration at level 1 to 624 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005453750491 0.002567288466 and volume-weighted sum -10064.19336 Subtracting -1.965662705e-06 from rhs in subdomain 0 Sum after subtraction -0.1324806362 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005473407218 MLMG: Initial residual (resid0) = 0.0005473407218 MLMG: Final Iter. 2 resid, resid/bnorm = 2.198757102e-06, 0.004017163534 MLMG: Timers: Solve = 0.001138919 Iter = 0.000895402 Bottom = 0.000412284 Time in solve 0.001495692 Max/L2 norm of divergence after solve at level 1 : 4.088855349e-06 0.000140870543 and volume-weighted sum -10064.17871 Time integration of scalars at level 1 from 622 to 624 with dt = 2 using RHS created at 622 Making slow rhs at time 624 for fast variables advancing from 622 to 624 No-substepping time integration at level 1 to 624 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005363021046 0.002559724962 and volume-weighted sum -10064.20898 Subtracting -1.965665888e-06 from rhs in subdomain 0 Sum after subtraction -0.1287553459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005382677773 MLMG: Initial residual (resid0) = 0.0005382677773 MLMG: Final Iter. 2 resid, resid/bnorm = 5.098772817e-07, 0.0009472558158 MLMG: Timers: Solve = 0.001136917 Iter = 0.000899682 Bottom = 0.000409169 Time in solve 0.001494907 Max/L2 norm of divergence after solve at level 1 : 2.483400749e-06 0.0001406775846 and volume-weighted sum -10064.20996 Time integration of scalars at level 1 from 622 to 624 with dt = 2 using RHS created at 624 Done with advance_dycore at level 1 [Level 1 step 312] Advanced 5120 cells Coarse STEP 312 ends. TIME = 624 DT = 2 Timestep time = 0.020140254 seconds. Coarse STEP 313 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364304403 (terrain aware) 1.364304403 (terrain unaware) Anelastic dt at level 0 would be: 6.178444532 (terrain aware) 6.178444532 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658841906 (terrain aware) 0.2658841906 (terrain unaware) Anelastic dt at level 1 would be: 2.913055377 (terrain aware) 2.913055377 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 313] ADVANCE from elapsed time = 624 to 626 with dt = 2 Making slow rhs at time 624 for fast variables advancing from 624 to 624.6666666667 Fast time integration at level 0 from 624 to 624.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 624 to 624.6666666667 with dt = 0.6666666666666 using RHS created at 624 Making slow rhs at time 624.6666666667 for fast variables advancing from 624 to 625 Fast time integration at level 0 from 624 to 624.5 with dt = 0.5 Fast time integration at level 0 from 624.5 to 625 with dt = 0.5 Time integration of scalars at level 0 from 624 to 625 with dt = 1 using RHS created at 624.6666666667 Making slow rhs at time 625 for fast variables advancing from 624 to 626 Fast time integration at level 0 from 624 to 624.5 with dt = 0.5 Fast time integration at level 0 from 624.5 to 625 with dt = 0.5 Fast time integration at level 0 from 625 to 625.5 with dt = 0.5 Fast time integration at level 0 from 625.5 to 626 with dt = 0.5 Time integration of scalars at level 0 from 624 to 626 with dt = 2 using RHS created at 625 Done with advance_dycore at level 0 [Level 0 step 313] Advanced 4096 cells [Level 1 step 313] ADVANCE from elapsed time = 624 to 626 with dt = 2 Making slow rhs at time 624 for fast variables advancing from 624 to 626 No-substepping time integration at level 1 to 626 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004865787923 0.002545841504 and volume-weighted sum -14639.82031 Subtracting -2.859339929e-06 from rhs in subdomain 0 Sum after subtraction 0.06565824151 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004894381273 MLMG: Initial residual (resid0) = 0.0004894381273 MLMG: Final Iter. 1 resid, resid/bnorm = 9.947274521e-06, 0.02032386512 MLMG: Timers: Solve = 0.001064327 Iter = 0.000643652 Bottom = 0.000203254 Time in solve 0.00142413 Max/L2 norm of divergence after solve at level 1 : 1.218914986e-05 0.0002158095158 and volume-weighted sum -14639.83008 Time integration of scalars at level 1 from 624 to 626 with dt = 2 using RHS created at 624 Making slow rhs at time 626 for fast variables advancing from 624 to 626 No-substepping time integration at level 1 to 626 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004682410508 0.00252963393 and volume-weighted sum -14639.83105 Subtracting -2.859341976e-06 from rhs in subdomain 0 Sum after subtraction 0.05075708032 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004711003858 MLMG: Initial residual (resid0) = 0.0004711003858 MLMG: Final Iter. 2 resid, resid/bnorm = 4.679804988e-07, 0.0009933774127 MLMG: Timers: Solve = 0.001149051 Iter = 0.000899395 Bottom = 0.000414911 Time in solve 0.001504852 Max/L2 norm of divergence after solve at level 1 : 3.325360922e-06 0.0002046171285 and volume-weighted sum -14639.84961 Time integration of scalars at level 1 from 624 to 626 with dt = 2 using RHS created at 626 Done with advance_dycore at level 1 [Level 1 step 313] Advanced 5120 cells Coarse STEP 313 ends. TIME = 626 DT = 2 Timestep time = 0.019610375 seconds. Coarse STEP 314 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364733556 (terrain aware) 1.364733556 (terrain unaware) Anelastic dt at level 0 would be: 6.181358603 (terrain aware) 6.181358603 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658869286 (terrain aware) 0.2658869286 (terrain unaware) Anelastic dt at level 1 would be: 2.91930701 (terrain aware) 2.91930701 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 314] ADVANCE from elapsed time = 626 to 628 with dt = 2 Making slow rhs at time 626 for fast variables advancing from 626 to 626.6666666667 Fast time integration at level 0 from 626 to 626.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 626 to 626.6666666667 with dt = 0.6666666666666 using RHS created at 626 Making slow rhs at time 626.6666666667 for fast variables advancing from 626 to 627 Fast time integration at level 0 from 626 to 626.5 with dt = 0.5 Fast time integration at level 0 from 626.5 to 627 with dt = 0.5 Time integration of scalars at level 0 from 626 to 627 with dt = 1 using RHS created at 626.6666666667 Making slow rhs at time 627 for fast variables advancing from 626 to 628 Fast time integration at level 0 from 626 to 626.5 with dt = 0.5 Fast time integration at level 0 from 626.5 to 627 with dt = 0.5 Fast time integration at level 0 from 627 to 627.5 with dt = 0.5 Fast time integration at level 0 from 627.5 to 628 with dt = 0.5 Time integration of scalars at level 0 from 626 to 628 with dt = 2 using RHS created at 627 Done with advance_dycore at level 0 [Level 0 step 314] Advanced 4096 cells [Level 1 step 314] ADVANCE from elapsed time = 626 to 628 with dt = 2 Making slow rhs at time 626 for fast variables advancing from 626 to 628 No-substepping time integration at level 1 to 628 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005015134811 0.002535078209 and volume-weighted sum -16812.86133 Subtracting -3.283761998e-06 from rhs in subdomain 0 Sum after subtraction 0.07916241884 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005047972663 MLMG: Initial residual (resid0) = 0.0005047972663 MLMG: Final Iter. 2 resid, resid/bnorm = 5.205001798e-07, 0.001031107386 MLMG: Timers: Solve = 0.0011046 Iter = 0.000866241 Bottom = 0.000383638 Time in solve 0.00146091 Max/L2 norm of divergence after solve at level 1 : 3.800727427e-06 0.0002349880378 and volume-weighted sum -16812.86328 Time integration of scalars at level 1 from 626 to 628 with dt = 2 using RHS created at 626 Making slow rhs at time 628 for fast variables advancing from 626 to 628 No-substepping time integration at level 1 to 628 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005171950907 0.002542076167 and volume-weighted sum -16812.86133 Subtracting -3.283761998e-06 from rhs in subdomain 0 Sum after subtraction 0.07543712854 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005204788758 MLMG: Initial residual (resid0) = 0.0005204788758 MLMG: Final Iter. 2 resid, resid/bnorm = 5.140191206e-07, 0.0009875887772 MLMG: Timers: Solve = 0.001082603 Iter = 0.000845288 Bottom = 0.000354026 Time in solve 0.001432019 Max/L2 norm of divergence after solve at level 1 : 3.802095307e-06 0.0002349828574 and volume-weighted sum -16812.89062 Time integration of scalars at level 1 from 626 to 628 with dt = 2 using RHS created at 628 Done with advance_dycore at level 1 [Level 1 step 314] Advanced 5120 cells Coarse STEP 314 ends. TIME = 628 DT = 2 Timestep time = 0.019953809 seconds. Coarse STEP 315 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364927868 (terrain aware) 1.364927868 (terrain unaware) Anelastic dt at level 0 would be: 6.186744479 (terrain aware) 6.186744479 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265896633 (terrain aware) 0.265896633 (terrain unaware) Anelastic dt at level 1 would be: 2.924407379 (terrain aware) 2.924407379 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 315] ADVANCE from elapsed time = 628 to 630 with dt = 2 Making slow rhs at time 628 for fast variables advancing from 628 to 628.6666666667 Fast time integration at level 0 from 628 to 628.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 628 to 628.6666666667 with dt = 0.6666666666666 using RHS created at 628 Making slow rhs at time 628.6666666667 for fast variables advancing from 628 to 629 Fast time integration at level 0 from 628 to 628.5 with dt = 0.5 Fast time integration at level 0 from 628.5 to 629 with dt = 0.5 Time integration of scalars at level 0 from 628 to 629 with dt = 1 using RHS created at 628.6666666667 Making slow rhs at time 629 for fast variables advancing from 628 to 630 Fast time integration at level 0 from 628 to 628.5 with dt = 0.5 Fast time integration at level 0 from 628.5 to 629 with dt = 0.5 Fast time integration at level 0 from 629 to 629.5 with dt = 0.5 Fast time integration at level 0 from 629.5 to 630 with dt = 0.5 Time integration of scalars at level 0 from 628 to 630 with dt = 2 using RHS created at 629 Done with advance_dycore at level 0 [Level 0 step 315] Advanced 4096 cells [Level 1 step 315] ADVANCE from elapsed time = 628 to 630 with dt = 2 Making slow rhs at time 628 for fast variables advancing from 628 to 630 No-substepping time integration at level 1 to 630 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000537481159 0.002530561294 and volume-weighted sum -16967.22266 Subtracting -3.313910611e-06 from rhs in subdomain 0 Sum after subtraction -0.03585591912 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005407950957 MLMG: Initial residual (resid0) = 0.0005407950957 MLMG: Final Iter. 2 resid, resid/bnorm = 1.366567176e-06, 0.002526959172 MLMG: Timers: Solve = 0.001124144 Iter = 0.000885509 Bottom = 0.000399177 Time in solve 0.001491821 Max/L2 norm of divergence after solve at level 1 : 4.675399396e-06 0.0002371916198 and volume-weighted sum -16967.25195 Time integration of scalars at level 1 from 628 to 630 with dt = 2 using RHS created at 628 Making slow rhs at time 630 for fast variables advancing from 628 to 630 No-substepping time integration at level 1 to 630 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005234107375 0.002530136146 and volume-weighted sum -16967.24023 Subtracting -3.313914021e-06 from rhs in subdomain 0 Sum after subtraction -0.05145557225 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005267246743 MLMG: Initial residual (resid0) = 0.0005267246743 MLMG: Final Iter. 2 resid, resid/bnorm = 5.142774171e-07, 0.0009763685521 MLMG: Timers: Solve = 0.001082173 Iter = 0.000833571 Bottom = 0.000350739 Time in solve 0.001459347 Max/L2 norm of divergence after solve at level 1 : 3.820518032e-06 0.0002371393493 and volume-weighted sum -16967.24609 Time integration of scalars at level 1 from 628 to 630 with dt = 2 using RHS created at 630 Done with advance_dycore at level 1 [Level 1 step 315] Advanced 5120 cells Coarse STEP 315 ends. TIME = 630 DT = 2 Timestep time = 0.019961357 seconds. Coarse STEP 316 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365240047 (terrain aware) 1.365240047 (terrain unaware) Anelastic dt at level 0 would be: 6.194639114 (terrain aware) 6.194639114 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659141419 (terrain aware) 0.2659141419 (terrain unaware) Anelastic dt at level 1 would be: 2.928361253 (terrain aware) 2.928361253 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 316] ADVANCE from elapsed time = 630 to 632 with dt = 2 Making slow rhs at time 630 for fast variables advancing from 630 to 630.6666666667 Fast time integration at level 0 from 630 to 630.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 630 to 630.6666666667 with dt = 0.6666666666666 using RHS created at 630 Making slow rhs at time 630.6666666667 for fast variables advancing from 630 to 631 Fast time integration at level 0 from 630 to 630.5 with dt = 0.5 Fast time integration at level 0 from 630.5 to 631 with dt = 0.5 Time integration of scalars at level 0 from 630 to 631 with dt = 1 using RHS created at 630.6666666667 Making slow rhs at time 631 for fast variables advancing from 630 to 632 Fast time integration at level 0 from 630 to 630.5 with dt = 0.5 Fast time integration at level 0 from 630.5 to 631 with dt = 0.5 Fast time integration at level 0 from 631 to 631.5 with dt = 0.5 Fast time integration at level 0 from 631.5 to 632 with dt = 0.5 Time integration of scalars at level 0 from 630 to 632 with dt = 2 using RHS created at 631 Done with advance_dycore at level 0 [Level 0 step 316] Advanced 4096 cells [Level 1 step 316] ADVANCE from elapsed time = 630 to 632 with dt = 2 Making slow rhs at time 630 for fast variables advancing from 630 to 632 No-substepping time integration at level 1 to 632 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000461159274 0.002520548878 and volume-weighted sum -16117.11133 Subtracting -3.147873258e-06 from rhs in subdomain 0 Sum after subtraction 0.04656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004643071443 MLMG: Initial residual (resid0) = 0.0004643071443 MLMG: Final Iter. 2 resid, resid/bnorm = 1.807466106e-06, 0.003892824287 MLMG: Timers: Solve = 0.001146867 Iter = 0.000905229 Bottom = 0.000407628 Time in solve 0.001515823 Max/L2 norm of divergence after solve at level 1 : 4.951943993e-06 0.0002253523417 and volume-weighted sum -16117.10352 Time integration of scalars at level 1 from 630 to 632 with dt = 2 using RHS created at 630 Making slow rhs at time 632 for fast variables advancing from 630 to 632 No-substepping time integration at level 1 to 632 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004503205419 0.002517328365 and volume-weighted sum -16117.07031 Subtracting -3.1478653e-06 from rhs in subdomain 0 Sum after subtraction -0.02514570951 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004534684122 MLMG: Initial residual (resid0) = 0.0004534684122 MLMG: Final Iter. 2 resid, resid/bnorm = 5.169204087e-07, 0.001139925909 MLMG: Timers: Solve = 0.001576615 Iter = 0.001332479 Bottom = 0.000531785 Time in solve 0.001948905 Max/L2 norm of divergence after solve at level 1 : 3.671273589e-06 0.0002252594568 and volume-weighted sum -16117.12207 Time integration of scalars at level 1 from 630 to 632 with dt = 2 using RHS created at 632 Done with advance_dycore at level 1 [Level 1 step 316] Advanced 5120 cells Coarse STEP 316 ends. TIME = 632 DT = 2 Timestep time = 0.020371575 seconds. Coarse STEP 317 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365669647 (terrain aware) 1.365669647 (terrain unaware) Anelastic dt at level 0 would be: 6.20470455 (terrain aware) 6.20470455 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659182025 (terrain aware) 0.2659182025 (terrain unaware) Anelastic dt at level 1 would be: 2.933601991 (terrain aware) 2.933601991 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 317] ADVANCE from elapsed time = 632 to 634 with dt = 2 Making slow rhs at time 632 for fast variables advancing from 632 to 632.6666666667 Fast time integration at level 0 from 632 to 632.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 632 to 632.6666666667 with dt = 0.6666666666666 using RHS created at 632 Making slow rhs at time 632.6666666667 for fast variables advancing from 632 to 633 Fast time integration at level 0 from 632 to 632.5 with dt = 0.5 Fast time integration at level 0 from 632.5 to 633 with dt = 0.5 Time integration of scalars at level 0 from 632 to 633 with dt = 1 using RHS created at 632.6666666667 Making slow rhs at time 633 for fast variables advancing from 632 to 634 Fast time integration at level 0 from 632 to 632.5 with dt = 0.5 Fast time integration at level 0 from 632.5 to 633 with dt = 0.5 Fast time integration at level 0 from 633 to 633.5 with dt = 0.5 Fast time integration at level 0 from 633.5 to 634 with dt = 0.5 Time integration of scalars at level 0 from 632 to 634 with dt = 2 using RHS created at 633 Done with advance_dycore at level 0 [Level 0 step 317] Advanced 4096 cells [Level 1 step 317] ADVANCE from elapsed time = 632 to 634 with dt = 2 Making slow rhs at time 632 for fast variables advancing from 632 to 634 No-substepping time integration at level 1 to 634 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005105882883 0.002498746617 and volume-weighted sum -15100.4043 Subtracting -2.949297823e-06 from rhs in subdomain 0 Sum after subtraction -0.04470348358 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005135376123 MLMG: Initial residual (resid0) = 0.0005135376123 MLMG: Final Iter. 2 resid, resid/bnorm = 1.42028739e-06, 0.002765693003 MLMG: Timers: Solve = 0.001115364 Iter = 0.00086855 Bottom = 0.000384824 Time in solve 0.001516602 Max/L2 norm of divergence after solve at level 1 : 4.370216629e-06 0.0002111135836 and volume-weighted sum -15100.35645 Time integration of scalars at level 1 from 632 to 634 with dt = 2 using RHS created at 632 Making slow rhs at time 634 for fast variables advancing from 632 to 634 No-substepping time integration at level 1 to 634 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005228836089 0.002504021395 and volume-weighted sum -15100.39746 Subtracting -2.949296459e-06 from rhs in subdomain 0 Sum after subtraction -0.02142041922 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005258329329 MLMG: Initial residual (resid0) = 0.0005258329329 MLMG: Final Iter. 2 resid, resid/bnorm = 5.259298632e-07, 0.001000184333 MLMG: Timers: Solve = 0.001120501 Iter = 0.000875922 Bottom = 0.000393344 Time in solve 0.001487023 Max/L2 norm of divergence after solve at level 1 : 3.475230187e-06 0.0002110505447 and volume-weighted sum -15100.38184 Time integration of scalars at level 1 from 632 to 634 with dt = 2 using RHS created at 634 Done with advance_dycore at level 1 [Level 1 step 317] Advanced 5120 cells Coarse STEP 317 ends. TIME = 634 DT = 2 Timestep time = 0.020059507 seconds. Coarse STEP 318 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365433315 (terrain aware) 1.365433315 (terrain unaware) Anelastic dt at level 0 would be: 6.196549442 (terrain aware) 6.196549442 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659165261 (terrain aware) 0.2659165261 (terrain unaware) Anelastic dt at level 1 would be: 2.940088765 (terrain aware) 2.940088765 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 318] ADVANCE from elapsed time = 634 to 636 with dt = 2 Making slow rhs at time 634 for fast variables advancing from 634 to 634.6666666667 Fast time integration at level 0 from 634 to 634.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 634 to 634.6666666667 with dt = 0.6666666666666 using RHS created at 634 Making slow rhs at time 634.6666666667 for fast variables advancing from 634 to 635 Fast time integration at level 0 from 634 to 634.5 with dt = 0.5 Fast time integration at level 0 from 634.5 to 635 with dt = 0.5 Time integration of scalars at level 0 from 634 to 635 with dt = 1 using RHS created at 634.6666666667 Making slow rhs at time 635 for fast variables advancing from 634 to 636 Fast time integration at level 0 from 634 to 634.5 with dt = 0.5 Fast time integration at level 0 from 634.5 to 635 with dt = 0.5 Fast time integration at level 0 from 635 to 635.5 with dt = 0.5 Fast time integration at level 0 from 635.5 to 636 with dt = 0.5 Time integration of scalars at level 0 from 634 to 636 with dt = 2 using RHS created at 635 Done with advance_dycore at level 0 [Level 0 step 318] Advanced 4096 cells [Level 1 step 318] ADVANCE from elapsed time = 634 to 636 with dt = 2 Making slow rhs at time 634 for fast variables advancing from 634 to 636 No-substepping time integration at level 1 to 636 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005292613059 0.002475356916 and volume-weighted sum -13991.40625 Subtracting -2.73269643e-06 from rhs in subdomain 0 Sum after subtraction 0.05448237062 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000531993981 MLMG: Initial residual (resid0) = 0.000531993981 MLMG: Final Iter. 1 resid, resid/bnorm = 9.113849956e-06, 0.01713149063 MLMG: Timers: Solve = 0.000739786 Iter = 0.000500003 Bottom = 0.000216312 Time in solve 0.001107181 Max/L2 norm of divergence after solve at level 1 : 1.184642315e-05 0.0002047428861 and volume-weighted sum -13991.39062 Time integration of scalars at level 1 from 634 to 636 with dt = 2 using RHS created at 634 Making slow rhs at time 636 for fast variables advancing from 634 to 636 No-substepping time integration at level 1 to 636 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005043409765 0.0024694975 and volume-weighted sum -13991.36133 Subtracting -2.73268779e-06 from rhs in subdomain 0 Sum after subtraction 0.04912726581 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005070736515 MLMG: Initial residual (resid0) = 0.0005070736515 MLMG: Final Iter. 2 resid, resid/bnorm = 5.029833119e-07, 0.000991933397 MLMG: Timers: Solve = 0.00111283 Iter = 0.000874749 Bottom = 0.000384068 Time in solve 0.001476076 Max/L2 norm of divergence after solve at level 1 : 3.231922165e-06 0.0001955512271 and volume-weighted sum -13991.35742 Time integration of scalars at level 1 from 634 to 636 with dt = 2 using RHS created at 636 Done with advance_dycore at level 1 [Level 1 step 318] Advanced 5120 cells Coarse STEP 318 ends. TIME = 636 DT = 2 Timestep time = 0.019755504 seconds. Coarse STEP 319 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365099082 (terrain aware) 1.365099082 (terrain unaware) Anelastic dt at level 0 would be: 6.190668848 (terrain aware) 6.190668848 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659223003 (terrain aware) 0.2659223003 (terrain unaware) Anelastic dt at level 1 would be: 2.94462885 (terrain aware) 2.94462885 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 319] ADVANCE from elapsed time = 636 to 638 with dt = 2 Making slow rhs at time 636 for fast variables advancing from 636 to 636.6666666667 Fast time integration at level 0 from 636 to 636.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 636 to 636.6666666667 with dt = 0.6666666666666 using RHS created at 636 Making slow rhs at time 636.6666666667 for fast variables advancing from 636 to 637 Fast time integration at level 0 from 636 to 636.5 with dt = 0.5 Fast time integration at level 0 from 636.5 to 637 with dt = 0.5 Time integration of scalars at level 0 from 636 to 637 with dt = 1 using RHS created at 636.6666666667 Making slow rhs at time 637 for fast variables advancing from 636 to 638 Fast time integration at level 0 from 636 to 636.5 with dt = 0.5 Fast time integration at level 0 from 636.5 to 637 with dt = 0.5 Fast time integration at level 0 from 637 to 637.5 with dt = 0.5 Fast time integration at level 0 from 637.5 to 638 with dt = 0.5 Time integration of scalars at level 0 from 636 to 638 with dt = 2 using RHS created at 637 Done with advance_dycore at level 0 [Level 0 step 319] Advanced 4096 cells [Level 1 step 319] ADVANCE from elapsed time = 636 to 638 with dt = 2 Making slow rhs at time 636 for fast variables advancing from 636 to 638 No-substepping time integration at level 1 to 638 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004353951663 0.002469050232 and volume-weighted sum -12143.24023 Subtracting -2.371726623e-06 from rhs in subdomain 0 Sum after subtraction -0.1678708941 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004377669247 MLMG: Initial residual (resid0) = 0.0004377669247 MLMG: Final Iter. 1 resid, resid/bnorm = 9.165458323e-06, 0.02093684487 MLMG: Timers: Solve = 0.00071699 Iter = 0.000483639 Bottom = 0.000200862 Time in solve 0.001094328 Max/L2 norm of divergence after solve at level 1 : 1.065805554e-05 0.0001800346654 and volume-weighted sum -12143.2373 Time integration of scalars at level 1 from 636 to 638 with dt = 2 using RHS created at 636 Making slow rhs at time 638 for fast variables advancing from 636 to 638 No-substepping time integration at level 1 to 638 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004418287426 0.002457438502 and volume-weighted sum -12143.27051 Subtracting -2.371732535e-06 from rhs in subdomain 0 Sum after subtraction 0.1499429345 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004442004429 MLMG: Initial residual (resid0) = 0.0004442004429 MLMG: Final Iter. 2 resid, resid/bnorm = 5.047422746e-07, 0.001136293984 MLMG: Timers: Solve = 0.001114544 Iter = 0.000875759 Bottom = 0.000377512 Time in solve 0.001480389 Max/L2 norm of divergence after solve at level 1 : 2.901302651e-06 0.0001697257103 and volume-weighted sum -12143.21289 Time integration of scalars at level 1 from 636 to 638 with dt = 2 using RHS created at 638 Done with advance_dycore at level 1 [Level 1 step 319] Advanced 5120 cells Coarse STEP 319 ends. TIME = 638 DT = 2 Timestep time = 0.019668546 seconds. Coarse STEP 320 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364877502 (terrain aware) 1.364877502 (terrain unaware) Anelastic dt at level 0 would be: 6.187184361 (terrain aware) 6.187184361 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659347241 (terrain aware) 0.2659347241 (terrain unaware) Anelastic dt at level 1 would be: 2.948332981 (terrain aware) 2.948332981 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 320] ADVANCE from elapsed time = 638 to 640 with dt = 2 Making slow rhs at time 638 for fast variables advancing from 638 to 638.6666666667 Fast time integration at level 0 from 638 to 638.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 638 to 638.6666666667 with dt = 0.6666666666666 using RHS created at 638 Making slow rhs at time 638.6666666667 for fast variables advancing from 638 to 639 Fast time integration at level 0 from 638 to 638.5 with dt = 0.5 Fast time integration at level 0 from 638.5 to 639 with dt = 0.5 Time integration of scalars at level 0 from 638 to 639 with dt = 1 using RHS created at 638.6666666667 Making slow rhs at time 639 for fast variables advancing from 638 to 640 Fast time integration at level 0 from 638 to 638.5 with dt = 0.5 Fast time integration at level 0 from 638.5 to 639 with dt = 0.5 Fast time integration at level 0 from 639 to 639.5 with dt = 0.5 Fast time integration at level 0 from 639.5 to 640 with dt = 0.5 Time integration of scalars at level 0 from 638 to 640 with dt = 2 using RHS created at 639 Done with advance_dycore at level 0 [Level 0 step 320] Advanced 4096 cells [Level 1 step 320] ADVANCE from elapsed time = 638 to 640 with dt = 2 Making slow rhs at time 638 for fast variables advancing from 638 to 640 No-substepping time integration at level 1 to 640 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005189776421 0.002470730105 and volume-weighted sum -8775.989258 Subtracting -1.714060431e-06 from rhs in subdomain 0 Sum after subtraction 0.003026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005206916831 MLMG: Initial residual (resid0) = 0.0005206916831 MLMG: Final Iter. 2 resid, resid/bnorm = 1.555986273e-06, 0.00298830634 MLMG: Timers: Solve = 0.001132638 Iter = 0.000889515 Bottom = 0.000400096 Time in solve 0.00149624 Max/L2 norm of divergence after solve at level 1 : 3.218650818e-06 0.000122792655 and volume-weighted sum -8776.004883 Time integration of scalars at level 1 from 638 to 640 with dt = 2 using RHS created at 638 Making slow rhs at time 640 for fast variables advancing from 638 to 640 No-substepping time integration at level 1 to 640 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005246140063 0.002463271609 and volume-weighted sum -8775.981445 Subtracting -1.71405884e-06 from rhs in subdomain 0 Sum after subtraction 0.03888271749 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005263280473 MLMG: Initial residual (resid0) = 0.0005263280473 MLMG: Final Iter. 2 resid, resid/bnorm = 5.278070603e-07, 0.001002810081 MLMG: Timers: Solve = 0.001129466 Iter = 0.000858307 Bottom = 0.000373307 Time in solve 0.001513092 Max/L2 norm of divergence after solve at level 1 : 2.251355909e-06 0.0001226740569 and volume-weighted sum -8775.975586 Time integration of scalars at level 1 from 638 to 640 with dt = 2 using RHS created at 640 Done with advance_dycore at level 1 [Level 1 step 320] Advanced 5120 cells Coarse STEP 320 ends. TIME = 640 DT = 2 Timestep time = 0.020437036 seconds. Coarse STEP 321 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364774386 (terrain aware) 1.364774386 (terrain unaware) Anelastic dt at level 0 would be: 6.186217573 (terrain aware) 6.186217573 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659530712 (terrain aware) 0.2659530712 (terrain unaware) Anelastic dt at level 1 would be: 2.952872769 (terrain aware) 2.952872769 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 321] ADVANCE from elapsed time = 640 to 642 with dt = 2 Making slow rhs at time 640 for fast variables advancing from 640 to 640.6666666667 Fast time integration at level 0 from 640 to 640.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 640 to 640.6666666667 with dt = 0.6666666666666 using RHS created at 640 Making slow rhs at time 640.6666666667 for fast variables advancing from 640 to 641 Fast time integration at level 0 from 640 to 640.5 with dt = 0.5 Fast time integration at level 0 from 640.5 to 641 with dt = 0.5 Time integration of scalars at level 0 from 640 to 641 with dt = 1 using RHS created at 640.6666666667 Making slow rhs at time 641 for fast variables advancing from 640 to 642 Fast time integration at level 0 from 640 to 640.5 with dt = 0.5 Fast time integration at level 0 from 640.5 to 641 with dt = 0.5 Fast time integration at level 0 from 641 to 641.5 with dt = 0.5 Fast time integration at level 0 from 641.5 to 642 with dt = 0.5 Time integration of scalars at level 0 from 640 to 642 with dt = 2 using RHS created at 641 Done with advance_dycore at level 0 [Level 0 step 321] Advanced 4096 cells [Level 1 step 321] ADVANCE from elapsed time = 640 to 642 with dt = 2 Making slow rhs at time 640 for fast variables advancing from 640 to 642 No-substepping time integration at level 1 to 642 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005181953311 0.002456107177 and volume-weighted sum -3888.159912 Subtracting -7.594062481e-07 from rhs in subdomain 0 Sum after subtraction 0.0330619514 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005189547082 MLMG: Initial residual (resid0) = 0.0005189547082 MLMG: Final Iter. 2 resid, resid/bnorm = 1.633902912e-06, 0.003148449818 MLMG: Timers: Solve = 0.001159956 Iter = 0.0009205 Bottom = 0.000402801 Time in solve 0.001525282 Max/L2 norm of divergence after solve at level 1 : 2.338900231e-06 5.468479867e-05 and volume-weighted sum -3888.169434 Time integration of scalars at level 1 from 640 to 642 with dt = 2 using RHS created at 640 Making slow rhs at time 642 for fast variables advancing from 640 to 642 No-substepping time integration at level 1 to 642 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004957597703 0.002449238207 and volume-weighted sum -3888.153809 Subtracting -7.594050544e-07 from rhs in subdomain 0 Sum after subtraction 0.08917413652 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004965191474 MLMG: Initial residual (resid0) = 0.0004965191474 MLMG: Final Iter. 2 resid, resid/bnorm = 5.123574738e-07, 0.001031898777 MLMG: Timers: Solve = 0.001109571 Iter = 0.00087172 Bottom = 0.000379046 Time in solve 0.001471921 Max/L2 norm of divergence after solve at level 1 : 1.257518306e-06 5.439756569e-05 and volume-weighted sum -3888.146729 Time integration of scalars at level 1 from 640 to 642 with dt = 2 using RHS created at 642 Done with advance_dycore at level 1 [Level 1 step 321] Advanced 5120 cells Coarse STEP 321 ends. TIME = 642 DT = 2 Timestep time = 0.020720843 seconds. Coarse STEP 322 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364790479 (terrain aware) 1.364790479 (terrain unaware) Anelastic dt at level 0 would be: 6.18776193 (terrain aware) 6.18776193 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265958864 (terrain aware) 0.265958864 (terrain unaware) Anelastic dt at level 1 would be: 2.953484312 (terrain aware) 2.953484312 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 322] ADVANCE from elapsed time = 642 to 644 with dt = 2 Making slow rhs at time 642 for fast variables advancing from 642 to 642.6666666667 Fast time integration at level 0 from 642 to 642.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 642 to 642.6666666667 with dt = 0.6666666666666 using RHS created at 642 Making slow rhs at time 642.6666666667 for fast variables advancing from 642 to 643 Fast time integration at level 0 from 642 to 642.5 with dt = 0.5 Fast time integration at level 0 from 642.5 to 643 with dt = 0.5 Time integration of scalars at level 0 from 642 to 643 with dt = 1 using RHS created at 642.6666666667 Making slow rhs at time 643 for fast variables advancing from 642 to 644 Fast time integration at level 0 from 642 to 642.5 with dt = 0.5 Fast time integration at level 0 from 642.5 to 643 with dt = 0.5 Fast time integration at level 0 from 643 to 643.5 with dt = 0.5 Fast time integration at level 0 from 643.5 to 644 with dt = 0.5 Time integration of scalars at level 0 from 642 to 644 with dt = 2 using RHS created at 643 Done with advance_dycore at level 0 [Level 0 step 322] Advanced 4096 cells [Level 1 step 322] ADVANCE from elapsed time = 642 to 644 with dt = 2 Making slow rhs at time 642 for fast variables advancing from 642 to 644 No-substepping time integration at level 1 to 644 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004282109439 0.002427277854 and volume-weighted sum 1783.576782 Subtracting 3.483548312e-07 from rhs in subdomain 0 Sum after subtraction 0.008149072528 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004278626002 MLMG: Initial residual (resid0) = 0.0004278626002 MLMG: Final Iter. 1 resid, resid/bnorm = 9.393319488e-06, 0.02195405588 MLMG: Timers: Solve = 0.00088389 Iter = 0.000651036 Bottom = 0.000274675 Time in solve 0.001357914 Max/L2 norm of divergence after solve at level 1 : 9.739771485e-06 6.687345012e-05 and volume-weighted sum 1783.608398 Time integration of scalars at level 1 from 642 to 644 with dt = 2 using RHS created at 642 Making slow rhs at time 644 for fast variables advancing from 642 to 644 No-substepping time integration at level 1 to 644 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004568789154 0.002418353921 and volume-weighted sum 1783.574951 Subtracting 3.483544901e-07 from rhs in subdomain 0 Sum after subtraction 0.03911554813 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004565305717 MLMG: Initial residual (resid0) = 0.0004565305717 MLMG: Final Iter. 2 resid, resid/bnorm = 4.659723345e-07, 0.001020681579 MLMG: Timers: Solve = 0.001118041 Iter = 0.000876386 Bottom = 0.000379407 Time in solve 0.00148496 Max/L2 norm of divergence after solve at level 1 : 7.55302608e-07 2.506264536e-05 and volume-weighted sum 1783.594238 Time integration of scalars at level 1 from 642 to 644 with dt = 2 using RHS created at 644 Done with advance_dycore at level 1 [Level 1 step 322] Advanced 5120 cells Coarse STEP 322 ends. TIME = 644 DT = 2 Timestep time = 0.019610206 seconds. Coarse STEP 323 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.364924589 (terrain aware) 1.364924589 (terrain unaware) Anelastic dt at level 0 would be: 6.1917918 (terrain aware) 6.1917918 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659548221 (terrain aware) 0.2659548221 (terrain unaware) Anelastic dt at level 1 would be: 2.954962508 (terrain aware) 2.954962508 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 323] ADVANCE from elapsed time = 644 to 646 with dt = 2 Making slow rhs at time 644 for fast variables advancing from 644 to 644.6666666667 Fast time integration at level 0 from 644 to 644.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 644 to 644.6666666667 with dt = 0.6666666666666 using RHS created at 644 Making slow rhs at time 644.6666666667 for fast variables advancing from 644 to 645 Fast time integration at level 0 from 644 to 644.5 with dt = 0.5 Fast time integration at level 0 from 644.5 to 645 with dt = 0.5 Time integration of scalars at level 0 from 644 to 645 with dt = 1 using RHS created at 644.6666666667 Making slow rhs at time 645 for fast variables advancing from 644 to 646 Fast time integration at level 0 from 644 to 644.5 with dt = 0.5 Fast time integration at level 0 from 644.5 to 645 with dt = 0.5 Fast time integration at level 0 from 645 to 645.5 with dt = 0.5 Fast time integration at level 0 from 645.5 to 646 with dt = 0.5 Time integration of scalars at level 0 from 644 to 646 with dt = 2 using RHS created at 645 Done with advance_dycore at level 0 [Level 0 step 323] Advanced 4096 cells [Level 1 step 323] ADVANCE from elapsed time = 644 to 646 with dt = 2 Making slow rhs at time 644 for fast variables advancing from 644 to 646 No-substepping time integration at level 1 to 646 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005222447217 0.002409507055 and volume-weighted sum 7185.778809 Subtracting 1.403472424e-06 from rhs in subdomain 0 Sum after subtraction -0.02491287887 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005208412767 MLMG: Initial residual (resid0) = 0.0005208412767 MLMG: Final Iter. 1 resid, resid/bnorm = 9.39250458e-06, 0.01803333312 MLMG: Timers: Solve = 0.000727009 Iter = 0.000486636 Bottom = 0.000200632 Time in solve 0.001079019 Max/L2 norm of divergence after solve at level 1 : 1.080147922e-05 0.000114698938 and volume-weighted sum 7185.758301 Time integration of scalars at level 1 from 644 to 646 with dt = 2 using RHS created at 644 Making slow rhs at time 646 for fast variables advancing from 644 to 646 No-substepping time integration at level 1 to 646 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005212463439 0.002408373868 and volume-weighted sum 7185.749512 Subtracting 1.40346674e-06 from rhs in subdomain 0 Sum after subtraction -0.03585591912 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005198428989 MLMG: Initial residual (resid0) = 0.0005198428989 MLMG: Final Iter. 2 resid, resid/bnorm = 4.811208782e-07, 0.0009255120531 MLMG: Timers: Solve = 0.001077671 Iter = 0.00083358 Bottom = 0.00035469 Time in solve 0.00142924 Max/L2 norm of divergence after solve at level 1 : 1.796986908e-06 0.0001004544392 and volume-weighted sum 7185.761719 Time integration of scalars at level 1 from 644 to 646 with dt = 2 using RHS created at 646 Done with advance_dycore at level 1 [Level 1 step 323] Advanced 5120 cells Coarse STEP 323 ends. TIME = 646 DT = 2 Timestep time = 0.019292404 seconds. Coarse STEP 324 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.3651718 (terrain aware) 1.3651718 (terrain unaware) Anelastic dt at level 0 would be: 6.198215988 (terrain aware) 6.198215988 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659578954 (terrain aware) 0.2659578954 (terrain unaware) Anelastic dt at level 1 would be: 2.957457856 (terrain aware) 2.957457856 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 324] ADVANCE from elapsed time = 646 to 648 with dt = 2 Making slow rhs at time 646 for fast variables advancing from 646 to 646.6666666667 Fast time integration at level 0 from 646 to 646.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 646 to 646.6666666667 with dt = 0.6666666666666 using RHS created at 646 Making slow rhs at time 646.6666666667 for fast variables advancing from 646 to 647 Fast time integration at level 0 from 646 to 646.5 with dt = 0.5 Fast time integration at level 0 from 646.5 to 647 with dt = 0.5 Time integration of scalars at level 0 from 646 to 647 with dt = 1 using RHS created at 646.6666666667 Making slow rhs at time 647 for fast variables advancing from 646 to 648 Fast time integration at level 0 from 646 to 646.5 with dt = 0.5 Fast time integration at level 0 from 646.5 to 647 with dt = 0.5 Fast time integration at level 0 from 647 to 647.5 with dt = 0.5 Fast time integration at level 0 from 647.5 to 648 with dt = 0.5 Time integration of scalars at level 0 from 646 to 648 with dt = 2 using RHS created at 647 Done with advance_dycore at level 0 [Level 0 step 324] Advanced 4096 cells [Level 1 step 324] ADVANCE from elapsed time = 646 to 648 with dt = 2 Making slow rhs at time 646 for fast variables advancing from 646 to 648 No-substepping time integration at level 1 to 648 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005077365786 0.002411594614 and volume-weighted sum 11671.07031 Subtracting 2.279505907e-06 from rhs in subdomain 0 Sum after subtraction 0.08614733815 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005054570502 MLMG: Initial residual (resid0) = 0.0005054570502 MLMG: Final Iter. 1 resid, resid/bnorm = 9.391675121e-06, 0.01858055964 MLMG: Timers: Solve = 0.000727396 Iter = 0.000484508 Bottom = 0.000200521 Time in solve 0.001072879 Max/L2 norm of divergence after solve at level 1 : 1.167040318e-05 0.0001768377115 and volume-weighted sum 11671.13184 Time integration of scalars at level 1 from 646 to 648 with dt = 2 using RHS created at 646 Making slow rhs at time 648 for fast variables advancing from 646 to 648 No-substepping time integration at level 1 to 648 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004774760455 0.002401274862 and volume-weighted sum 11671.07324 Subtracting 2.279506589e-06 from rhs in subdomain 0 Sum after subtraction 0.1059379429 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004751965171 MLMG: Initial residual (resid0) = 0.0004751965171 MLMG: Final Iter. 1 resid, resid/bnorm = 9.71078407e-06, 0.02043530159 MLMG: Timers: Solve = 0.000723701 Iter = 0.000486756 Bottom = 0.000205228 Time in solve 0.001073274 Max/L2 norm of divergence after solve at level 1 : 1.199357212e-05 0.0001715512626 and volume-weighted sum 11671.125 Time integration of scalars at level 1 from 646 to 648 with dt = 2 using RHS created at 648 Done with advance_dycore at level 1 [Level 1 step 324] Advanced 5120 cells Coarse STEP 324 ends. TIME = 648 DT = 2 Timestep time = 0.019193487 seconds. Coarse STEP 325 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365529874 (terrain aware) 1.365529874 (terrain unaware) Anelastic dt at level 0 would be: 6.207010654 (terrain aware) 6.207010654 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265968587 (terrain aware) 0.265968587 (terrain unaware) Anelastic dt at level 1 would be: 2.961007014 (terrain aware) 2.961007014 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 325] ADVANCE from elapsed time = 648 to 650 with dt = 2 Making slow rhs at time 648 for fast variables advancing from 648 to 648.6666666667 Fast time integration at level 0 from 648 to 648.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 648 to 648.6666666667 with dt = 0.6666666666666 using RHS created at 648 Making slow rhs at time 648.6666666667 for fast variables advancing from 648 to 649 Fast time integration at level 0 from 648 to 648.5 with dt = 0.5 Fast time integration at level 0 from 648.5 to 649 with dt = 0.5 Time integration of scalars at level 0 from 648 to 649 with dt = 1 using RHS created at 648.6666666667 Making slow rhs at time 649 for fast variables advancing from 648 to 650 Fast time integration at level 0 from 648 to 648.5 with dt = 0.5 Fast time integration at level 0 from 648.5 to 649 with dt = 0.5 Fast time integration at level 0 from 649 to 649.5 with dt = 0.5 Fast time integration at level 0 from 649.5 to 650 with dt = 0.5 Time integration of scalars at level 0 from 648 to 650 with dt = 2 using RHS created at 649 Done with advance_dycore at level 0 [Level 0 step 325] Advanced 4096 cells [Level 1 step 325] ADVANCE from elapsed time = 648 to 650 with dt = 2 Making slow rhs at time 648 for fast variables advancing from 648 to 650 No-substepping time integration at level 1 to 650 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004430562258 0.002378013916 and volume-weighted sum 15056.80273 Subtracting 2.940781769e-06 from rhs in subdomain 0 Sum after subtraction -0.1122243702 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004401154874 MLMG: Initial residual (resid0) = 0.0004401154874 MLMG: Final Iter. 2 resid, resid/bnorm = 1.504766942e-06, 0.003419027431 MLMG: Timers: Solve = 0.001115924 Iter = 0.000872538 Bottom = 0.000392534 Time in solve 0.00146642 Max/L2 norm of divergence after solve at level 1 : 4.379777238e-06 0.0002105071908 and volume-weighted sum 15056.83203 Time integration of scalars at level 1 from 648 to 650 with dt = 2 using RHS created at 648 Making slow rhs at time 650 for fast variables advancing from 648 to 650 No-substepping time integration at level 1 to 650 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004743281752 0.00241676881 and volume-weighted sum 15056.80176 Subtracting 2.940781542e-06 from rhs in subdomain 0 Sum after subtraction -0.01816079021 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004713874077 MLMG: Initial residual (resid0) = 0.0004713874077 MLMG: Final Iter. 2 resid, resid/bnorm = 4.900339263e-07, 0.001039556693 MLMG: Timers: Solve = 0.001121247 Iter = 0.000886547 Bottom = 0.000397671 Time in solve 0.00146862 Max/L2 norm of divergence after solve at level 1 : 3.33506614e-06 0.0002104409359 and volume-weighted sum 15056.80957 Time integration of scalars at level 1 from 648 to 650 with dt = 2 using RHS created at 650 Done with advance_dycore at level 1 [Level 1 step 325] Advanced 5120 cells Coarse STEP 325 ends. TIME = 650 DT = 2 Timestep time = 0.020256726 seconds. Coarse STEP 326 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365995089 (terrain aware) 1.365995089 (terrain unaware) Anelastic dt at level 0 would be: 6.218112614 (terrain aware) 6.218112614 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659879399 (terrain aware) 0.2659879399 (terrain unaware) Anelastic dt at level 1 would be: 2.96574469 (terrain aware) 2.96574469 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 326] ADVANCE from elapsed time = 650 to 652 with dt = 2 Making slow rhs at time 650 for fast variables advancing from 650 to 650.6666666667 Fast time integration at level 0 from 650 to 650.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 650 to 650.6666666667 with dt = 0.6666666666666 using RHS created at 650 Making slow rhs at time 650.6666666667 for fast variables advancing from 650 to 651 Fast time integration at level 0 from 650 to 650.5 with dt = 0.5 Fast time integration at level 0 from 650.5 to 651 with dt = 0.5 Time integration of scalars at level 0 from 650 to 651 with dt = 1 using RHS created at 650.6666666667 Making slow rhs at time 651 for fast variables advancing from 650 to 652 Fast time integration at level 0 from 650 to 650.5 with dt = 0.5 Fast time integration at level 0 from 650.5 to 651 with dt = 0.5 Fast time integration at level 0 from 651 to 651.5 with dt = 0.5 Fast time integration at level 0 from 651.5 to 652 with dt = 0.5 Time integration of scalars at level 0 from 650 to 652 with dt = 2 using RHS created at 651 Done with advance_dycore at level 0 [Level 0 step 326] Advanced 4096 cells [Level 1 step 326] ADVANCE from elapsed time = 650 to 652 with dt = 2 Making slow rhs at time 650 for fast variables advancing from 650 to 652 No-substepping time integration at level 1 to 652 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005257762969 0.00243083667 and volume-weighted sum 17625.42773 Subtracting 3.442466323e-06 from rhs in subdomain 0 Sum after subtraction -0.0330619514 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005223338376 MLMG: Initial residual (resid0) = 0.0005223338376 MLMG: Final Iter. 2 resid, resid/bnorm = 1.49504308e-06, 0.002862236695 MLMG: Timers: Solve = 0.00112732 Iter = 0.000882797 Bottom = 0.000398495 Time in solve 0.001479431 Max/L2 norm of divergence after solve at level 1 : 4.878034815e-06 0.0002463949495 and volume-weighted sum 17625.43555 Time integration of scalars at level 1 from 650 to 652 with dt = 2 using RHS created at 650 Making slow rhs at time 652 for fast variables advancing from 650 to 652 No-substepping time integration at level 1 to 652 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005236491561 0.002408152213 and volume-weighted sum 17625.45898 Subtracting 3.442472462e-06 from rhs in subdomain 0 Sum after subtraction -0.01490116119 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005202066968 MLMG: Initial residual (resid0) = 0.0005202066968 MLMG: Final Iter. 2 resid, resid/bnorm = 4.881203495e-07, 0.0009383200086 MLMG: Timers: Solve = 0.001120718 Iter = 0.000877979 Bottom = 0.000392248 Time in solve 0.001472256 Max/L2 norm of divergence after solve at level 1 : 3.831461072e-06 0.0002463365381 and volume-weighted sum 17625.42969 Time integration of scalars at level 1 from 650 to 652 with dt = 2 using RHS created at 652 Done with advance_dycore at level 1 [Level 1 step 326] Advanced 5120 cells Coarse STEP 326 ends. TIME = 652 DT = 2 Timestep time = 0.01992262 seconds. Coarse STEP 327 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366156021 (terrain aware) 1.366156021 (terrain unaware) Anelastic dt at level 0 would be: 6.218649056 (terrain aware) 6.218649056 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659996932 (terrain aware) 0.2659996932 (terrain unaware) Anelastic dt at level 1 would be: 2.96690996 (terrain aware) 2.96690996 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 327] ADVANCE from elapsed time = 652 to 654 with dt = 2 Making slow rhs at time 652 for fast variables advancing from 652 to 652.6666666667 Fast time integration at level 0 from 652 to 652.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 652 to 652.6666666667 with dt = 0.6666666666666 using RHS created at 652 Making slow rhs at time 652.6666666667 for fast variables advancing from 652 to 653 Fast time integration at level 0 from 652 to 652.5 with dt = 0.5 Fast time integration at level 0 from 652.5 to 653 with dt = 0.5 Time integration of scalars at level 0 from 652 to 653 with dt = 1 using RHS created at 652.6666666667 Making slow rhs at time 653 for fast variables advancing from 652 to 654 Fast time integration at level 0 from 652 to 652.5 with dt = 0.5 Fast time integration at level 0 from 652.5 to 653 with dt = 0.5 Fast time integration at level 0 from 653 to 653.5 with dt = 0.5 Fast time integration at level 0 from 653.5 to 654 with dt = 0.5 Time integration of scalars at level 0 from 652 to 654 with dt = 2 using RHS created at 653 Done with advance_dycore at level 0 [Level 0 step 327] Advanced 4096 cells [Level 1 step 327] ADVANCE from elapsed time = 652 to 654 with dt = 2 Making slow rhs at time 652 for fast variables advancing from 652 to 654 No-substepping time integration at level 1 to 654 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000495981425 0.002395892981 and volume-weighted sum 19285.42969 Subtracting 3.766685495e-06 from rhs in subdomain 0 Sum after subtraction -0.09196810424 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004922147491 MLMG: Initial residual (resid0) = 0.0004922147491 MLMG: Final Iter. 2 resid, resid/bnorm = 8.24022834e-07, 0.001674112398 MLMG: Timers: Solve = 0.001135614 Iter = 0.000903073 Bottom = 0.00042321 Time in solve 0.001493985 Max/L2 norm of divergence after solve at level 1 : 4.549045116e-06 0.0002695528092 and volume-weighted sum 19285.48828 Time integration of scalars at level 1 from 652 to 654 with dt = 2 using RHS created at 652 Making slow rhs at time 654 for fast variables advancing from 652 to 654 No-substepping time integration at level 1 to 654 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004677344114 0.002401163569 and volume-weighted sum 19285.45898 Subtracting 3.766691179e-06 from rhs in subdomain 0 Sum after subtraction 0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004639677063 MLMG: Initial residual (resid0) = 0.0004639677063 MLMG: Final Iter. 2 resid, resid/bnorm = 4.912399163e-07, 0.001058780355 MLMG: Timers: Solve = 0.001112296 Iter = 0.00087933 Bottom = 0.000395421 Time in solve 0.001468999 Max/L2 norm of divergence after solve at level 1 : 4.161149263e-06 0.0002695346484 and volume-weighted sum 19285.50391 Time integration of scalars at level 1 from 652 to 654 with dt = 2 using RHS created at 654 Done with advance_dycore at level 1 [Level 1 step 327] Advanced 5120 cells Coarse STEP 327 ends. TIME = 654 DT = 2 Timestep time = 0.019848646 seconds. Coarse STEP 328 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365868131 (terrain aware) 1.365868131 (terrain unaware) Anelastic dt at level 0 would be: 6.213645842 (terrain aware) 6.213645842 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660001961 (terrain aware) 0.2660001961 (terrain unaware) Anelastic dt at level 1 would be: 2.969089404 (terrain aware) 2.969089404 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 328] ADVANCE from elapsed time = 654 to 656 with dt = 2 Making slow rhs at time 654 for fast variables advancing from 654 to 654.6666666667 Fast time integration at level 0 from 654 to 654.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 654 to 654.6666666667 with dt = 0.6666666666666 using RHS created at 654 Making slow rhs at time 654.6666666667 for fast variables advancing from 654 to 655 Fast time integration at level 0 from 654 to 654.5 with dt = 0.5 Fast time integration at level 0 from 654.5 to 655 with dt = 0.5 Time integration of scalars at level 0 from 654 to 655 with dt = 1 using RHS created at 654.6666666667 Making slow rhs at time 655 for fast variables advancing from 654 to 656 Fast time integration at level 0 from 654 to 654.5 with dt = 0.5 Fast time integration at level 0 from 654.5 to 655 with dt = 0.5 Fast time integration at level 0 from 655 to 655.5 with dt = 0.5 Fast time integration at level 0 from 655.5 to 656 with dt = 0.5 Time integration of scalars at level 0 from 654 to 656 with dt = 2 using RHS created at 655 Done with advance_dycore at level 0 [Level 0 step 328] Advanced 4096 cells [Level 1 step 328] ADVANCE from elapsed time = 654 to 656 with dt = 2 Making slow rhs at time 654 for fast variables advancing from 654 to 656 No-substepping time integration at level 1 to 656 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004550293088 0.002385916188 and volume-weighted sum 19447.85156 Subtracting 3.798408443e-06 from rhs in subdomain 0 Sum after subtraction -0.02072192729 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004512309097 MLMG: Initial residual (resid0) = 0.0004512309097 MLMG: Final Iter. 2 resid, resid/bnorm = 5.276433512e-07, 0.001169342198 MLMG: Timers: Solve = 0.001084475 Iter = 0.00084656 Bottom = 0.000360935 Time in solve 0.001439796 Max/L2 norm of divergence after solve at level 1 : 4.202127457e-06 0.0002718083269 and volume-weighted sum 19447.83984 Time integration of scalars at level 1 from 654 to 656 with dt = 2 using RHS created at 654 Making slow rhs at time 656 for fast variables advancing from 654 to 656 No-substepping time integration at level 1 to 656 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004799012095 0.00239167898 and volume-weighted sum 19447.82227 Subtracting 3.798402759e-06 from rhs in subdomain 0 Sum after subtraction -0.07823109627 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004761028395 MLMG: Initial residual (resid0) = 0.0004761028395 MLMG: Final Iter. 1 resid, resid/bnorm = 9.992581909e-06, 0.02098828554 MLMG: Timers: Solve = 0.000708184 Iter = 0.000475874 Bottom = 0.000199489 Time in solve 0.001069355 Max/L2 norm of divergence after solve at level 1 : 1.378543675e-05 0.0002772337466 and volume-weighted sum 19447.8125 Time integration of scalars at level 1 from 654 to 656 with dt = 2 using RHS created at 656 Done with advance_dycore at level 1 [Level 1 step 328] Advanced 5120 cells Coarse STEP 328 ends. TIME = 656 DT = 2 Timestep time = 0.019532322 seconds. Coarse STEP 329 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365701685 (terrain aware) 1.365701685 (terrain unaware) Anelastic dt at level 0 would be: 6.211167481 (terrain aware) 6.211167481 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660069575 (terrain aware) 0.2660069575 (terrain unaware) Anelastic dt at level 1 would be: 2.972253517 (terrain aware) 2.972253517 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 329] ADVANCE from elapsed time = 656 to 658 with dt = 2 Making slow rhs at time 656 for fast variables advancing from 656 to 656.6666666667 Fast time integration at level 0 from 656 to 656.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 656 to 656.6666666667 with dt = 0.6666666666666 using RHS created at 656 Making slow rhs at time 656.6666666667 for fast variables advancing from 656 to 657 Fast time integration at level 0 from 656 to 656.5 with dt = 0.5 Fast time integration at level 0 from 656.5 to 657 with dt = 0.5 Time integration of scalars at level 0 from 656 to 657 with dt = 1 using RHS created at 656.6666666667 Making slow rhs at time 657 for fast variables advancing from 656 to 658 Fast time integration at level 0 from 656 to 656.5 with dt = 0.5 Fast time integration at level 0 from 656.5 to 657 with dt = 0.5 Fast time integration at level 0 from 657 to 657.5 with dt = 0.5 Fast time integration at level 0 from 657.5 to 658 with dt = 0.5 Time integration of scalars at level 0 from 656 to 658 with dt = 2 using RHS created at 657 Done with advance_dycore at level 0 [Level 0 step 329] Advanced 4096 cells [Level 1 step 329] ADVANCE from elapsed time = 656 to 658 with dt = 2 Making slow rhs at time 656 for fast variables advancing from 656 to 658 No-substepping time integration at level 1 to 658 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005169399083 0.002341496991 and volume-weighted sum 17371.66992 Subtracting 3.392904318e-06 from rhs in subdomain 0 Sum after subtraction 0.1459848136 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005135469837 MLMG: Initial residual (resid0) = 0.0005135469837 MLMG: Final Iter. 2 resid, resid/bnorm = 1.391822479e-06, 0.002710214583 MLMG: Timers: Solve = 0.001121618 Iter = 0.000884256 Bottom = 0.000394237 Time in solve 0.001470543 Max/L2 norm of divergence after solve at level 1 : 4.782690667e-06 0.0002428350563 and volume-weighted sum 17371.6543 Time integration of scalars at level 1 from 656 to 658 with dt = 2 using RHS created at 656 Making slow rhs at time 658 for fast variables advancing from 656 to 658 No-substepping time integration at level 1 to 658 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005178805441 0.002378775273 and volume-weighted sum 17371.62695 Subtracting 3.392895906e-06 from rhs in subdomain 0 Sum after subtraction 0.01816079021 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005144876195 MLMG: Initial residual (resid0) = 0.0005144876195 MLMG: Final Iter. 1 resid, resid/bnorm = 9.63601633e-06, 0.01872934587 MLMG: Timers: Solve = 0.000719725 Iter = 0.000474611 Bottom = 0.000200181 Time in solve 0.001067586 Max/L2 norm of divergence after solve at level 1 : 1.303479075e-05 0.0002487992169 and volume-weighted sum 17371.65625 Time integration of scalars at level 1 from 656 to 658 with dt = 2 using RHS created at 658 Done with advance_dycore at level 1 [Level 1 step 329] Advanced 5120 cells Coarse STEP 329 ends. TIME = 658 DT = 2 Timestep time = 0.019569995 seconds. Coarse STEP 330 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365654001 (terrain aware) 1.365654001 (terrain unaware) Anelastic dt at level 0 would be: 6.211184767 (terrain aware) 6.211184767 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660195117 (terrain aware) 0.2660195117 (terrain unaware) Anelastic dt at level 1 would be: 2.976344779 (terrain aware) 2.976344779 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 330] ADVANCE from elapsed time = 658 to 660 with dt = 2 Making slow rhs at time 658 for fast variables advancing from 658 to 658.6666666667 Fast time integration at level 0 from 658 to 658.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 658 to 658.6666666667 with dt = 0.6666666666666 using RHS created at 658 Making slow rhs at time 658.6666666667 for fast variables advancing from 658 to 659 Fast time integration at level 0 from 658 to 658.5 with dt = 0.5 Fast time integration at level 0 from 658.5 to 659 with dt = 0.5 Time integration of scalars at level 0 from 658 to 659 with dt = 1 using RHS created at 658.6666666667 Making slow rhs at time 659 for fast variables advancing from 658 to 660 Fast time integration at level 0 from 658 to 658.5 with dt = 0.5 Fast time integration at level 0 from 658.5 to 659 with dt = 0.5 Fast time integration at level 0 from 659 to 659.5 with dt = 0.5 Fast time integration at level 0 from 659.5 to 660 with dt = 0.5 Time integration of scalars at level 0 from 658 to 660 with dt = 2 using RHS created at 659 Done with advance_dycore at level 0 [Level 0 step 330] Advanced 4096 cells [Level 1 step 330] ADVANCE from elapsed time = 658 to 660 with dt = 2 Making slow rhs at time 658 for fast variables advancing from 658 to 660 No-substepping time integration at level 1 to 660 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004768986255 0.002351837698 and volume-weighted sum 12948.87793 Subtracting 2.529077619e-06 from rhs in subdomain 0 Sum after subtraction 0.0853324309 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004743695317 MLMG: Initial residual (resid0) = 0.0004743695317 MLMG: Final Iter. 2 resid, resid/bnorm = 2.019980911e-06, 0.004258243367 MLMG: Timers: Solve = 0.001118134 Iter = 0.000875101 Bottom = 0.000384116 Time in solve 0.00149142 Max/L2 norm of divergence after solve at level 1 : 4.549045116e-06 0.0001811117691 and volume-weighted sum 12948.89551 Time integration of scalars at level 1 from 658 to 660 with dt = 2 using RHS created at 658 Making slow rhs at time 660 for fast variables advancing from 658 to 660 No-substepping time integration at level 1 to 660 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004565771669 0.002364882035 and volume-weighted sum 12948.91016 Subtracting 2.529083986e-06 from rhs in subdomain 0 Sum after subtraction -0.001164153218 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004540480732 MLMG: Initial residual (resid0) = 0.0004540480732 MLMG: Final Iter. 2 resid, resid/bnorm = 4.895173333e-07, 0.001078117872 MLMG: Timers: Solve = 0.00109292 Iter = 0.000844633 Bottom = 0.000363026 Time in solve 0.001487627 Max/L2 norm of divergence after solve at level 1 : 2.905726433e-06 0.0001809838432 and volume-weighted sum 12948.89941 Time integration of scalars at level 1 from 658 to 660 with dt = 2 using RHS created at 660 Done with advance_dycore at level 1 [Level 1 step 330] Advanced 5120 cells Coarse STEP 330 ends. TIME = 660 DT = 2 Timestep time = 0.020300364 seconds. Coarse STEP 331 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365721503 (terrain aware) 1.365721503 (terrain unaware) Anelastic dt at level 0 would be: 6.213639286 (terrain aware) 6.213639286 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660372814 (terrain aware) 0.2660372814 (terrain unaware) Anelastic dt at level 1 would be: 2.980892018 (terrain aware) 2.980892018 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 331] ADVANCE from elapsed time = 660 to 662 with dt = 2 Making slow rhs at time 660 for fast variables advancing from 660 to 660.6666666667 Fast time integration at level 0 from 660 to 660.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 660 to 660.6666666667 with dt = 0.6666666666666 using RHS created at 660 Making slow rhs at time 660.6666666667 for fast variables advancing from 660 to 661 Fast time integration at level 0 from 660 to 660.5 with dt = 0.5 Fast time integration at level 0 from 660.5 to 661 with dt = 0.5 Time integration of scalars at level 0 from 660 to 661 with dt = 1 using RHS created at 660.6666666667 Making slow rhs at time 661 for fast variables advancing from 660 to 662 Fast time integration at level 0 from 660 to 660.5 with dt = 0.5 Fast time integration at level 0 from 660.5 to 661 with dt = 0.5 Fast time integration at level 0 from 661 to 661.5 with dt = 0.5 Fast time integration at level 0 from 661.5 to 662 with dt = 0.5 Time integration of scalars at level 0 from 660 to 662 with dt = 2 using RHS created at 661 Done with advance_dycore at level 0 [Level 0 step 331] Advanced 4096 cells [Level 1 step 331] ADVANCE from elapsed time = 660 to 662 with dt = 2 Making slow rhs at time 660 for fast variables advancing from 660 to 662 No-substepping time integration at level 1 to 662 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004606638104 0.002371290233 and volume-weighted sum 6820.937012 Subtracting 1.33221431e-06 from rhs in subdomain 0 Sum after subtraction -0.01851003617 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004593315825 MLMG: Initial residual (resid0) = 0.0004593315825 MLMG: Final Iter. 2 resid, resid/bnorm = 1.92321022e-06, 0.00418697577 MLMG: Timers: Solve = 0.001111305 Iter = 0.000864936 Bottom = 0.000371943 Time in solve 0.001472714 Max/L2 norm of divergence after solve at level 1 : 3.254390322e-06 9.55769865e-05 and volume-weighted sum 6820.925781 Time integration of scalars at level 1 from 660 to 662 with dt = 2 using RHS created at 660 Making slow rhs at time 662 for fast variables advancing from 660 to 662 No-substepping time integration at level 1 to 662 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004810765386 0.002350118943 and volume-weighted sum 6820.940918 Subtracting 1.332214993e-06 from rhs in subdomain 0 Sum after subtraction -0.04074536264 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004797443107 MLMG: Initial residual (resid0) = 0.0004797443107 MLMG: Final Iter. 2 resid, resid/bnorm = 4.857583917e-07, 0.001012535999 MLMG: Timers: Solve = 0.001095018 Iter = 0.000857109 Bottom = 0.000368557 Time in solve 0.001462163 Max/L2 norm of divergence after solve at level 1 : 1.713633537e-06 9.535773279e-05 and volume-weighted sum 6820.936035 Time integration of scalars at level 1 from 660 to 662 with dt = 2 using RHS created at 662 Done with advance_dycore at level 1 [Level 1 step 331] Advanced 5120 cells Coarse STEP 331 ends. TIME = 662 DT = 2 Timestep time = 0.020790419 seconds. Coarse STEP 332 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365898529 (terrain aware) 1.365898529 (terrain unaware) Anelastic dt at level 0 would be: 6.218448189 (terrain aware) 6.218448189 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660454956 (terrain aware) 0.2660454956 (terrain unaware) Anelastic dt at level 1 would be: 2.981870726 (terrain aware) 2.981870726 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 332] ADVANCE from elapsed time = 662 to 664 with dt = 2 Making slow rhs at time 662 for fast variables advancing from 662 to 662.6666666667 Fast time integration at level 0 from 662 to 662.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 662 to 662.6666666667 with dt = 0.6666666666666 using RHS created at 662 Making slow rhs at time 662.6666666667 for fast variables advancing from 662 to 663 Fast time integration at level 0 from 662 to 662.5 with dt = 0.5 Fast time integration at level 0 from 662.5 to 663 with dt = 0.5 Time integration of scalars at level 0 from 662 to 663 with dt = 1 using RHS created at 662.6666666667 Making slow rhs at time 663 for fast variables advancing from 662 to 664 Fast time integration at level 0 from 662 to 662.5 with dt = 0.5 Fast time integration at level 0 from 662.5 to 663 with dt = 0.5 Fast time integration at level 0 from 663 to 663.5 with dt = 0.5 Fast time integration at level 0 from 663.5 to 664 with dt = 0.5 Time integration of scalars at level 0 from 662 to 664 with dt = 2 using RHS created at 663 Done with advance_dycore at level 0 [Level 0 step 332] Advanced 4096 cells [Level 1 step 332] ADVANCE from elapsed time = 662 to 664 with dt = 2 Making slow rhs at time 662 for fast variables advancing from 662 to 664 No-substepping time integration at level 1 to 664 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005144421011 0.002324078698 and volume-weighted sum 387.2984009 Subtracting 7.564421622e-08 from rhs in subdomain 0 Sum after subtraction 0.03259629011 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005143664312 MLMG: Initial residual (resid0) = 0.0005143664312 MLMG: Final Iter. 2 resid, resid/bnorm = 1.025638312e-06, 0.001993983751 MLMG: Timers: Solve = 0.001503133 Iter = 0.000912688 Bottom = 0.000374835 Time in solve 0.001876776 Max/L2 norm of divergence after solve at level 1 : 1.099077053e-06 6.834115993e-06 and volume-weighted sum 387.334198 Time integration of scalars at level 1 from 662 to 664 with dt = 2 using RHS created at 662 Making slow rhs at time 664 for fast variables advancing from 662 to 664 No-substepping time integration at level 1 to 664 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005079247057 0.002338776132 and volume-weighted sum 387.3137817 Subtracting 7.564722182e-08 from rhs in subdomain 0 Sum after subtraction 0.05564652383 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005078490358 MLMG: Initial residual (resid0) = 0.0005078490358 MLMG: Final Iter. 2 resid, resid/bnorm = 4.793755579e-07, 0.0009439332061 MLMG: Timers: Solve = 0.001090778 Iter = 0.000852707 Bottom = 0.000364035 Time in solve 0.001452929 Max/L2 norm of divergence after solve at level 1 : 4.544854164e-07 5.965063792e-06 and volume-weighted sum 387.3252563 Time integration of scalars at level 1 from 662 to 664 with dt = 2 using RHS created at 664 Done with advance_dycore at level 1 [Level 1 step 332] Advanced 5120 cells Coarse STEP 332 ends. TIME = 664 DT = 2 Timestep time = 0.019988001 seconds. Coarse STEP 333 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366179565 (terrain aware) 1.366179565 (terrain unaware) Anelastic dt at level 0 would be: 6.225525644 (terrain aware) 6.225525644 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660396469 (terrain aware) 0.2660396469 (terrain unaware) Anelastic dt at level 1 would be: 2.983808175 (terrain aware) 2.983808175 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 333] ADVANCE from elapsed time = 664 to 666 with dt = 2 Making slow rhs at time 664 for fast variables advancing from 664 to 664.6666666667 Fast time integration at level 0 from 664 to 664.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 664 to 664.6666666667 with dt = 0.6666666666666 using RHS created at 664 Making slow rhs at time 664.6666666667 for fast variables advancing from 664 to 665 Fast time integration at level 0 from 664 to 664.5 with dt = 0.5 Fast time integration at level 0 from 664.5 to 665 with dt = 0.5 Time integration of scalars at level 0 from 664 to 665 with dt = 1 using RHS created at 664.6666666667 Making slow rhs at time 665 for fast variables advancing from 664 to 666 Fast time integration at level 0 from 664 to 664.5 with dt = 0.5 Fast time integration at level 0 from 664.5 to 665 with dt = 0.5 Fast time integration at level 0 from 665 to 665.5 with dt = 0.5 Fast time integration at level 0 from 665.5 to 666 with dt = 0.5 Time integration of scalars at level 0 from 664 to 666 with dt = 2 using RHS created at 665 Done with advance_dycore at level 0 [Level 0 step 333] Advanced 4096 cells [Level 1 step 333] ADVANCE from elapsed time = 664 to 666 with dt = 2 Making slow rhs at time 664 for fast variables advancing from 664 to 666 No-substepping time integration at level 1 to 666 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004635490477 0.002313926583 and volume-weighted sum -5180.385254 Subtracting -1.011793984e-06 from rhs in subdomain 0 Sum after subtraction 0.008381903172 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004645608424 MLMG: Initial residual (resid0) = 0.0004645608424 MLMG: Final Iter. 1 resid, resid/bnorm = 9.635885363e-06, 0.02074192278 MLMG: Timers: Solve = 0.000671656 Iter = 0.00042138 Bottom = 0.000143514 Time in solve 0.001033256 Max/L2 norm of divergence after solve at level 1 : 8.629634976e-06 9.094984125e-05 and volume-weighted sum -5180.376953 Time integration of scalars at level 1 from 664 to 666 with dt = 2 using RHS created at 664 Making slow rhs at time 666 for fast variables advancing from 664 to 666 No-substepping time integration at level 1 to 666 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004336498678 0.002312447177 and volume-weighted sum -5180.354492 Subtracting -1.011787958e-06 from rhs in subdomain 0 Sum after subtraction 0.05471520126 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004346616624 MLMG: Initial residual (resid0) = 0.0004346616624 MLMG: Final Iter. 2 resid, resid/bnorm = 4.620633263e-07, 0.001063041389 MLMG: Timers: Solve = 0.001097159 Iter = 0.000861404 Bottom = 0.000376046 Time in solve 0.00146613 Max/L2 norm of divergence after solve at level 1 : 1.46246748e-06 7.243806613e-05 and volume-weighted sum -5180.373047 Time integration of scalars at level 1 from 664 to 666 with dt = 2 using RHS created at 666 Done with advance_dycore at level 1 [Level 1 step 333] Advanced 5120 cells Coarse STEP 333 ends. TIME = 666 DT = 2 Timestep time = 0.019531471 seconds. Coarse STEP 334 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366560439 (terrain aware) 1.366560439 (terrain unaware) Anelastic dt at level 0 would be: 6.234791186 (terrain aware) 6.234791186 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660399636 (terrain aware) 0.2660399636 (terrain unaware) Anelastic dt at level 1 would be: 2.986812547 (terrain aware) 2.986812547 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 334] ADVANCE from elapsed time = 666 to 668 with dt = 2 Making slow rhs at time 666 for fast variables advancing from 666 to 666.6666666667 Fast time integration at level 0 from 666 to 666.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 666 to 666.6666666667 with dt = 0.6666666666666 using RHS created at 666 Making slow rhs at time 666.6666666667 for fast variables advancing from 666 to 667 Fast time integration at level 0 from 666 to 666.5 with dt = 0.5 Fast time integration at level 0 from 666.5 to 667 with dt = 0.5 Time integration of scalars at level 0 from 666 to 667 with dt = 1 using RHS created at 666.6666666667 Making slow rhs at time 667 for fast variables advancing from 666 to 668 Fast time integration at level 0 from 666 to 666.5 with dt = 0.5 Fast time integration at level 0 from 666.5 to 667 with dt = 0.5 Fast time integration at level 0 from 667 to 667.5 with dt = 0.5 Fast time integration at level 0 from 667.5 to 668 with dt = 0.5 Time integration of scalars at level 0 from 666 to 668 with dt = 2 using RHS created at 667 Done with advance_dycore at level 0 [Level 0 step 334] Advanced 4096 cells [Level 1 step 334] ADVANCE from elapsed time = 666 to 668 with dt = 2 Making slow rhs at time 666 for fast variables advancing from 666 to 668 No-substepping time integration at level 1 to 668 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004596970975 0.002320402069 and volume-weighted sum -9484.547852 Subtracting -1.852450737e-06 from rhs in subdomain 0 Sum after subtraction -0.07194466889 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004615495563 MLMG: Initial residual (resid0) = 0.0004615495563 MLMG: Final Iter. 2 resid, resid/bnorm = 1.346720637e-06, 0.002917824546 MLMG: Timers: Solve = 0.001113636 Iter = 0.000874882 Bottom = 0.000381574 Time in solve 0.001480929 Max/L2 norm of divergence after solve at level 1 : 3.197113983e-06 0.0001326581114 and volume-weighted sum -9484.53125 Time integration of scalars at level 1 from 666 to 668 with dt = 2 using RHS created at 666 Making slow rhs at time 668 for fast variables advancing from 666 to 668 No-substepping time integration at level 1 to 668 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000479856506 0.002326532733 and volume-weighted sum -9484.568359 Subtracting -1.852454716e-06 from rhs in subdomain 0 Sum after subtraction -0.04866160452 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004817089648 MLMG: Initial residual (resid0) = 0.0004817089648 MLMG: Final Iter. 1 resid, resid/bnorm = 9.746479918e-06, 0.02023313008 MLMG: Timers: Solve = 0.00072494 Iter = 0.000485723 Bottom = 0.000200752 Time in solve 0.001087189 Max/L2 norm of divergence after solve at level 1 : 9.782612324e-06 0.0001431069104 and volume-weighted sum -9484.532227 Time integration of scalars at level 1 from 666 to 668 with dt = 2 using RHS created at 668 Done with advance_dycore at level 1 [Level 1 step 334] Advanced 5120 cells Coarse STEP 334 ends. TIME = 668 DT = 2 Timestep time = 0.019525595 seconds. Coarse STEP 335 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367039362 (terrain aware) 1.367039362 (terrain unaware) Anelastic dt at level 0 would be: 6.246205475 (terrain aware) 6.246205475 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660474142 (terrain aware) 0.2660474142 (terrain unaware) Anelastic dt at level 1 would be: 2.990950301 (terrain aware) 2.990950301 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 335] ADVANCE from elapsed time = 668 to 670 with dt = 2 Making slow rhs at time 668 for fast variables advancing from 668 to 668.6666666667 Fast time integration at level 0 from 668 to 668.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 668 to 668.6666666667 with dt = 0.6666666666666 using RHS created at 668 Making slow rhs at time 668.6666666667 for fast variables advancing from 668 to 669 Fast time integration at level 0 from 668 to 668.5 with dt = 0.5 Fast time integration at level 0 from 668.5 to 669 with dt = 0.5 Time integration of scalars at level 0 from 668 to 669 with dt = 1 using RHS created at 668.6666666667 Making slow rhs at time 669 for fast variables advancing from 668 to 670 Fast time integration at level 0 from 668 to 668.5 with dt = 0.5 Fast time integration at level 0 from 668.5 to 669 with dt = 0.5 Fast time integration at level 0 from 669 to 669.5 with dt = 0.5 Fast time integration at level 0 from 669.5 to 670 with dt = 0.5 Time integration of scalars at level 0 from 668 to 670 with dt = 2 using RHS created at 669 Done with advance_dycore at level 0 [Level 0 step 335] Advanced 4096 cells [Level 1 step 335] ADVANCE from elapsed time = 668 to 670 with dt = 2 Making slow rhs at time 668 for fast variables advancing from 668 to 670 No-substepping time integration at level 1 to 670 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005010124296 0.002284381539 and volume-weighted sum -13024.52832 Subtracting -2.54385327e-06 from rhs in subdomain 0 Sum after subtraction 0.0789295882 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000503556279 MLMG: Initial residual (resid0) = 0.000503556279 MLMG: Final Iter. 2 resid, resid/bnorm = 1.827274673e-06, 0.003628739621 MLMG: Timers: Solve = 0.001110501 Iter = 0.000868655 Bottom = 0.000382639 Time in solve 0.001470778 Max/L2 norm of divergence after solve at level 1 : 4.370231181e-06 0.0001821502956 and volume-weighted sum -13024.53223 Time integration of scalars at level 1 from 668 to 670 with dt = 2 using RHS created at 668 Making slow rhs at time 670 for fast variables advancing from 668 to 670 No-substepping time integration at level 1 to 670 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004976838827 0.002322069602 and volume-weighted sum -13024.5127 Subtracting -2.543850087e-06 from rhs in subdomain 0 Sum after subtraction 0.07683411241 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005002277321 MLMG: Initial residual (resid0) = 0.0005002277321 MLMG: Final Iter. 1 resid, resid/bnorm = 9.33172123e-06, 0.01865494624 MLMG: Timers: Solve = 0.000716198 Iter = 0.000476704 Bottom = 0.000199743 Time in solve 0.001143209 Max/L2 norm of divergence after solve at level 1 : 1.055002213e-05 0.0001898843184 and volume-weighted sum -13024.54297 Time integration of scalars at level 1 from 668 to 670 with dt = 2 using RHS created at 670 Done with advance_dycore at level 1 [Level 1 step 335] Advanced 5120 cells Coarse STEP 335 ends. TIME = 670 DT = 2 Timestep time = 0.019929292 seconds. Coarse STEP 336 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367569247 (terrain aware) 1.367569247 (terrain unaware) Anelastic dt at level 0 would be: 6.25501981 (terrain aware) 6.25501981 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660627623 (terrain aware) 0.2660627623 (terrain unaware) Anelastic dt at level 1 would be: 2.995264486 (terrain aware) 2.995264486 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 336] ADVANCE from elapsed time = 670 to 672 with dt = 2 Making slow rhs at time 670 for fast variables advancing from 670 to 670.6666666667 Fast time integration at level 0 from 670 to 670.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 670 to 670.6666666667 with dt = 0.6666666666666 using RHS created at 670 Making slow rhs at time 670.6666666667 for fast variables advancing from 670 to 671 Fast time integration at level 0 from 670 to 670.5 with dt = 0.5 Fast time integration at level 0 from 670.5 to 671 with dt = 0.5 Time integration of scalars at level 0 from 670 to 671 with dt = 1 using RHS created at 670.6666666667 Making slow rhs at time 671 for fast variables advancing from 670 to 672 Fast time integration at level 0 from 670 to 670.5 with dt = 0.5 Fast time integration at level 0 from 670.5 to 671 with dt = 0.5 Fast time integration at level 0 from 671 to 671.5 with dt = 0.5 Fast time integration at level 0 from 671.5 to 672 with dt = 0.5 Time integration of scalars at level 0 from 670 to 672 with dt = 2 using RHS created at 671 Done with advance_dycore at level 0 [Level 0 step 336] Advanced 4096 cells [Level 1 step 336] ADVANCE from elapsed time = 670 to 672 with dt = 2 Making slow rhs at time 670 for fast variables advancing from 670 to 672 No-substepping time integration at level 1 to 672 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004439931363 0.002294807229 and volume-weighted sum -16497.28906 Subtracting -3.222126679e-06 from rhs in subdomain 0 Sum after subtraction -0.07217749953 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004472152505 MLMG: Initial residual (resid0) = 0.0004472152505 MLMG: Final Iter. 2 resid, resid/bnorm = 1.542974132e-06, 0.003450182267 MLMG: Timers: Solve = 0.001147459 Iter = 0.0009087 Bottom = 0.000394651 Time in solve 0.001502624 Max/L2 norm of divergence after solve at level 1 : 4.768371582e-06 0.0002306323295 and volume-weighted sum -16497.24219 Time integration of scalars at level 1 from 670 to 672 with dt = 2 using RHS created at 670 Making slow rhs at time 672 for fast variables advancing from 670 to 672 No-substepping time integration at level 1 to 672 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004270877689 0.002319085645 and volume-weighted sum -16497.26953 Subtracting -3.222123041e-06 from rhs in subdomain 0 Sum after subtraction -0.09313225746 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004303099122 MLMG: Initial residual (resid0) = 0.0004303099122 MLMG: Final Iter. 2 resid, resid/bnorm = 4.820049071e-07, 0.001120134373 MLMG: Timers: Solve = 0.001113659 Iter = 0.000875275 Bottom = 0.000384055 Time in solve 0.001475616 Max/L2 norm of divergence after solve at level 1 : 3.712018952e-06 0.0002305711241 and volume-weighted sum -16497.26758 Time integration of scalars at level 1 from 670 to 672 with dt = 2 using RHS created at 672 Done with advance_dycore at level 1 [Level 1 step 336] Advanced 5120 cells Coarse STEP 336 ends. TIME = 672 DT = 2 Timestep time = 0.020060733 seconds. Coarse STEP 337 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367329637 (terrain aware) 1.367329637 (terrain unaware) Anelastic dt at level 0 would be: 6.250959542 (terrain aware) 6.250959542 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660741617 (terrain aware) 0.2660741617 (terrain unaware) Anelastic dt at level 1 would be: 2.99709256 (terrain aware) 2.99709256 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 337] ADVANCE from elapsed time = 672 to 674 with dt = 2 Making slow rhs at time 672 for fast variables advancing from 672 to 672.6666666667 Fast time integration at level 0 from 672 to 672.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 672 to 672.6666666667 with dt = 0.6666666666666 using RHS created at 672 Making slow rhs at time 672.6666666667 for fast variables advancing from 672 to 673 Fast time integration at level 0 from 672 to 672.5 with dt = 0.5 Fast time integration at level 0 from 672.5 to 673 with dt = 0.5 Time integration of scalars at level 0 from 672 to 673 with dt = 1 using RHS created at 672.6666666667 Making slow rhs at time 673 for fast variables advancing from 672 to 674 Fast time integration at level 0 from 672 to 672.5 with dt = 0.5 Fast time integration at level 0 from 672.5 to 673 with dt = 0.5 Fast time integration at level 0 from 673 to 673.5 with dt = 0.5 Fast time integration at level 0 from 673.5 to 674 with dt = 0.5 Time integration of scalars at level 0 from 672 to 674 with dt = 2 using RHS created at 673 Done with advance_dycore at level 0 [Level 0 step 337] Advanced 4096 cells [Level 1 step 337] ADVANCE from elapsed time = 672 to 674 with dt = 2 Making slow rhs at time 672 for fast variables advancing from 672 to 674 No-substepping time integration at level 1 to 674 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000461447984 0.002323084977 and volume-weighted sum -20029.64258 Subtracting -3.912039574e-06 from rhs in subdomain 0 Sum after subtraction 0.05355104804 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004653600336 MLMG: Initial residual (resid0) = 0.0004653600336 MLMG: Final Iter. 1 resid, resid/bnorm = 9.722658433e-06, 0.02089276724 MLMG: Timers: Solve = 0.001074062 Iter = 0.000479054 Bottom = 0.00019881 Time in solve 0.001444747 Max/L2 norm of divergence after solve at level 1 : 1.225620508e-05 0.0002864245907 and volume-weighted sum -20029.67578 Time integration of scalars at level 1 from 672 to 674 with dt = 2 using RHS created at 672 Making slow rhs at time 674 for fast variables advancing from 672 to 674 No-substepping time integration at level 1 to 674 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004753638059 0.002295442158 and volume-weighted sum -20029.6543 Subtracting -3.912041848e-06 from rhs in subdomain 0 Sum after subtraction 0.04307366908 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004792758555 MLMG: Initial residual (resid0) = 0.0004792758555 MLMG: Final Iter. 2 resid, resid/bnorm = 4.73784894e-07, 0.0009885432664 MLMG: Timers: Solve = 0.001121264 Iter = 0.000877807 Bottom = 0.000382667 Time in solve 0.001490732 Max/L2 norm of divergence after solve at level 1 : 4.417262971e-06 0.0002799333888 and volume-weighted sum -20029.67578 Time integration of scalars at level 1 from 672 to 674 with dt = 2 using RHS created at 674 Done with advance_dycore at level 1 [Level 1 step 337] Advanced 5120 cells Coarse STEP 337 ends. TIME = 674 DT = 2 Timestep time = 0.019583813 seconds. Coarse STEP 338 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367200742 (terrain aware) 1.367200742 (terrain unaware) Anelastic dt at level 0 would be: 6.249284055 (terrain aware) 6.249284055 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660704737 (terrain aware) 0.2660704737 (terrain unaware) Anelastic dt at level 1 would be: 3.000049248 (terrain aware) 3.000049248 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 338] ADVANCE from elapsed time = 674 to 676 with dt = 2 Making slow rhs at time 674 for fast variables advancing from 674 to 674.6666666667 Fast time integration at level 0 from 674 to 674.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 674 to 674.6666666667 with dt = 0.6666666666666 using RHS created at 674 Making slow rhs at time 674.6666666667 for fast variables advancing from 674 to 675 Fast time integration at level 0 from 674 to 674.5 with dt = 0.5 Fast time integration at level 0 from 674.5 to 675 with dt = 0.5 Time integration of scalars at level 0 from 674 to 675 with dt = 1 using RHS created at 674.6666666667 Making slow rhs at time 675 for fast variables advancing from 674 to 676 Fast time integration at level 0 from 674 to 674.5 with dt = 0.5 Fast time integration at level 0 from 674.5 to 675 with dt = 0.5 Fast time integration at level 0 from 675 to 675.5 with dt = 0.5 Fast time integration at level 0 from 675.5 to 676 with dt = 0.5 Time integration of scalars at level 0 from 674 to 676 with dt = 2 using RHS created at 675 Done with advance_dycore at level 0 [Level 0 step 338] Advanced 4096 cells [Level 1 step 338] ADVANCE from elapsed time = 674 to 676 with dt = 2 Making slow rhs at time 674 for fast variables advancing from 674 to 676 No-substepping time integration at level 1 to 676 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0005000252277 0.002303366549 and volume-weighted sum -22942.17969 Subtracting -4.480894404e-06 from rhs in subdomain 0 Sum after subtraction 0.07287599146 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0005045061116 MLMG: Initial residual (resid0) = 0.0005045061116 MLMG: Final Iter. 1 resid, resid/bnorm = 9.860668797e-06, 0.0195451919 MLMG: Timers: Solve = 0.000715996 Iter = 0.000475383 Bottom = 0.000192253 Time in solve 0.001079001 Max/L2 norm of divergence after solve at level 1 : 1.167133451e-05 0.0003256333584 and volume-weighted sum -22942.19531 Time integration of scalars at level 1 from 674 to 676 with dt = 2 using RHS created at 674 Making slow rhs at time 676 for fast variables advancing from 674 to 676 No-substepping time integration at level 1 to 676 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004864782095 0.002292586258 and volume-weighted sum -22942.18555 Subtracting -4.480895768e-06 from rhs in subdomain 0 Sum after subtraction 0.06449408829 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004909590934 MLMG: Initial residual (resid0) = 0.0004909590934 MLMG: Final Iter. 2 resid, resid/bnorm = 4.629491741e-07, 0.0009429485654 MLMG: Timers: Solve = 0.00111331 Iter = 0.00087818 Bottom = 0.000395346 Time in solve 0.001485542 Max/L2 norm of divergence after solve at level 1 : 4.918547347e-06 0.0003206366091 and volume-weighted sum -22942.19141 Time integration of scalars at level 1 from 674 to 676 with dt = 2 using RHS created at 676 Done with advance_dycore at level 1 [Level 1 step 338] Advanced 5120 cells Coarse STEP 338 ends. TIME = 676 DT = 2 Timestep time = 0.019642211 seconds. Coarse STEP 339 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367185095 (terrain aware) 1.367185095 (terrain unaware) Anelastic dt at level 0 would be: 6.250029709 (terrain aware) 6.250029709 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660729324 (terrain aware) 0.2660729324 (terrain unaware) Anelastic dt at level 1 would be: 3.004070178 (terrain aware) 3.004070178 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 339] ADVANCE from elapsed time = 676 to 678 with dt = 2 Making slow rhs at time 676 for fast variables advancing from 676 to 676.6666666667 Fast time integration at level 0 from 676 to 676.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 676 to 676.6666666667 with dt = 0.6666666666666 using RHS created at 676 Making slow rhs at time 676.6666666667 for fast variables advancing from 676 to 677 Fast time integration at level 0 from 676 to 676.5 with dt = 0.5 Fast time integration at level 0 from 676.5 to 677 with dt = 0.5 Time integration of scalars at level 0 from 676 to 677 with dt = 1 using RHS created at 676.6666666667 Making slow rhs at time 677 for fast variables advancing from 676 to 678 Fast time integration at level 0 from 676 to 676.5 with dt = 0.5 Fast time integration at level 0 from 676.5 to 677 with dt = 0.5 Fast time integration at level 0 from 677 to 677.5 with dt = 0.5 Fast time integration at level 0 from 677.5 to 678 with dt = 0.5 Time integration of scalars at level 0 from 676 to 678 with dt = 2 using RHS created at 677 Done with advance_dycore at level 0 [Level 0 step 339] Advanced 4096 cells [Level 1 step 339] ADVANCE from elapsed time = 676 to 678 with dt = 2 Making slow rhs at time 676 for fast variables advancing from 676 to 678 No-substepping time integration at level 1 to 678 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000435596332 0.002317572944 and volume-weighted sum -23912.91406 Subtracting -4.670490853e-06 from rhs in subdomain 0 Sum after subtraction 0.04016328603 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004402668274 MLMG: Initial residual (resid0) = 0.0004402668274 MLMG: Final Iter. 2 resid, resid/bnorm = 1.464013508e-06, 0.003325286787 MLMG: Timers: Solve = 0.00111473 Iter = 0.000875185 Bottom = 0.000378473 Time in solve 0.001476228 Max/L2 norm of divergence after solve at level 1 : 6.09876588e-06 0.0003342412529 and volume-weighted sum -23912.88672 Time integration of scalars at level 1 from 676 to 678 with dt = 2 using RHS created at 676 Making slow rhs at time 678 for fast variables advancing from 676 to 678 No-substepping time integration at level 1 to 678 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004120208323 0.002306628972 and volume-weighted sum -23912.90625 Subtracting -4.670489488e-06 from rhs in subdomain 0 Sum after subtraction 0.05098991096 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004166913277 MLMG: Initial residual (resid0) = 0.0004166913277 MLMG: Final Iter. 2 resid, resid/bnorm = 4.872717909e-07, 0.00116938306 MLMG: Timers: Solve = 0.001122867 Iter = 0.000882772 Bottom = 0.000394543 Time in solve 0.001489705 Max/L2 norm of divergence after solve at level 1 : 5.15463762e-06 0.0003342023119 and volume-weighted sum -23912.88477 Time integration of scalars at level 1 from 676 to 678 with dt = 2 using RHS created at 678 Done with advance_dycore at level 1 [Level 1 step 339] Advanced 5120 cells Coarse STEP 339 ends. TIME = 678 DT = 2 Timestep time = 0.020124773 seconds. Coarse STEP 340 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367280016 (terrain aware) 1.367280016 (terrain unaware) Anelastic dt at level 0 would be: 6.253159549 (terrain aware) 6.253159549 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660758381 (terrain aware) 0.2660758381 (terrain unaware) Anelastic dt at level 1 would be: 3.009059384 (terrain aware) 3.009059384 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 340] ADVANCE from elapsed time = 678 to 680 with dt = 2 Making slow rhs at time 678 for fast variables advancing from 678 to 678.6666666667 Fast time integration at level 0 from 678 to 678.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 678 to 678.6666666667 with dt = 0.6666666666666 using RHS created at 678 Making slow rhs at time 678.6666666667 for fast variables advancing from 678 to 679 Fast time integration at level 0 from 678 to 678.5 with dt = 0.5 Fast time integration at level 0 from 678.5 to 679 with dt = 0.5 Time integration of scalars at level 0 from 678 to 679 with dt = 1 using RHS created at 678.6666666667 Making slow rhs at time 679 for fast variables advancing from 678 to 680 Fast time integration at level 0 from 678 to 678.5 with dt = 0.5 Fast time integration at level 0 from 678.5 to 679 with dt = 0.5 Fast time integration at level 0 from 679 to 679.5 with dt = 0.5 Fast time integration at level 0 from 679.5 to 680 with dt = 0.5 Time integration of scalars at level 0 from 678 to 680 with dt = 2 using RHS created at 679 Done with advance_dycore at level 0 [Level 0 step 340] Advanced 4096 cells [Level 1 step 340] ADVANCE from elapsed time = 678 to 680 with dt = 2 Making slow rhs at time 678 for fast variables advancing from 678 to 680 No-substepping time integration at level 1 to 680 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004588626325 0.002322032116 and volume-weighted sum -21882.65039 Subtracting -4.273955255e-06 from rhs in subdomain 0 Sum after subtraction -0.1010484993 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004631366173 MLMG: Initial residual (resid0) = 0.0004631366173 MLMG: Final Iter. 2 resid, resid/bnorm = 1.686894848e-06, 0.003642326687 MLMG: Timers: Solve = 0.001144374 Iter = 0.000906569 Bottom = 0.000407163 Time in solve 0.001517773 Max/L2 norm of divergence after solve at level 1 : 5.917623639e-06 0.0003058867296 and volume-weighted sum -21882.61914 Time integration of scalars at level 1 from 678 to 680 with dt = 2 using RHS created at 678 Making slow rhs at time 680 for fast variables advancing from 678 to 680 No-substepping time integration at level 1 to 680 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004748720676 0.002295325743 and volume-weighted sum -21882.63867 Subtracting -4.273952982e-06 from rhs in subdomain 0 Sum after subtraction -0.1121079549 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004791460524 MLMG: Initial residual (resid0) = 0.0004791460524 MLMG: Final Iter. 1 resid, resid/bnorm = 9.225055692e-06, 0.01925311796 MLMG: Timers: Solve = 0.001147131 Iter = 0.000580262 Bottom = 0.000203838 Time in solve 0.001521577 Max/L2 norm of divergence after solve at level 1 : 1.18855387e-05 0.0003106317017 and volume-weighted sum -21882.60352 Time integration of scalars at level 1 from 678 to 680 with dt = 2 using RHS created at 680 Done with advance_dycore at level 1 [Level 1 step 340] Advanced 5120 cells Coarse STEP 340 ends. TIME = 680 DT = 2 Timestep time = 0.02028241 seconds. Coarse STEP 341 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367483119 (terrain aware) 1.367483119 (terrain unaware) Anelastic dt at level 0 would be: 6.258625295 (terrain aware) 6.258625295 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660710139 (terrain aware) 0.2660710139 (terrain unaware) Anelastic dt at level 1 would be: 3.012494102 (terrain aware) 3.012494102 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ((128,0,0) (143,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003439688589 0.001679755747 and volume-weighted sum -25098.5293 Subtracting -4.262657967e-06 from rhs in subdomain 0 Sum after subtraction -0.01760781743 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003397061955 MLMG: Initial residual (resid0) = 0.0003397061955 MLMG: Final Iter. 2 resid, resid/bnorm = 6.042276368e-07, 0.001778677106 MLMG: Timers: Solve = 0.001338927 Iter = 0.001079649 Bottom = 0.000478027 Time in solve 0.001729249 Max/L2 norm of divergence after solve at level 1 : 4.445901141e-06 0.000327103975 and volume-weighted sum -25098.57031 [Level 0 step 341] ADVANCE from elapsed time = 680 to 682 with dt = 2 Making slow rhs at time 680 for fast variables advancing from 680 to 680.6666666667 Fast time integration at level 0 from 680 to 680.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 680 to 680.6666666667 with dt = 0.6666666666666 using RHS created at 680 Making slow rhs at time 680.6666666667 for fast variables advancing from 680 to 681 Fast time integration at level 0 from 680 to 680.5 with dt = 0.5 Fast time integration at level 0 from 680.5 to 681 with dt = 0.5 Time integration of scalars at level 0 from 680 to 681 with dt = 1 using RHS created at 680.6666666667 Making slow rhs at time 681 for fast variables advancing from 680 to 682 Fast time integration at level 0 from 680 to 680.5 with dt = 0.5 Fast time integration at level 0 from 680.5 to 681 with dt = 0.5 Fast time integration at level 0 from 681 to 681.5 with dt = 0.5 Fast time integration at level 0 from 681.5 to 682 with dt = 0.5 Time integration of scalars at level 0 from 680 to 682 with dt = 2 using RHS created at 681 Done with advance_dycore at level 0 [Level 0 step 341] Advanced 4096 cells [Level 1 step 341] ADVANCE from elapsed time = 680 to 682 with dt = 2 Making slow rhs at time 680 for fast variables advancing from 680 to 682 No-substepping time integration at level 1 to 682 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.008572886698 0.08089140803 and volume-weighted sum -17853.28711 Subtracting -3.032148015e-06 from rhs in subdomain 0 Sum after subtraction -0.3315508366 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.008569854312 MLMG: Initial residual (resid0) = 0.008569854312 MLMG: Final Iter. 3 resid, resid/bnorm = 1.318519935e-06, 0.0001538555807 MLMG: Timers: Solve = 0.001864237 Iter = 0.001565618 Bottom = 0.000701523 Time in solve 0.002204721 Max/L2 norm of divergence after solve at level 1 : 3.996479791e-06 0.0002328478004 and volume-weighted sum -17853.2832 Time integration of scalars at level 1 from 680 to 682 with dt = 2 using RHS created at 680 Making slow rhs at time 682 for fast variables advancing from 680 to 682 No-substepping time integration at level 1 to 682 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000482853502 0.002276644809 and volume-weighted sum -17853.24609 Subtracting -3.032140967e-06 from rhs in subdomain 0 Sum after subtraction -0.1168809831 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004858856846 MLMG: Initial residual (resid0) = 0.0004858856846 MLMG: Final Iter. 1 resid, resid/bnorm = 9.130846593e-06, 0.01879217103 MLMG: Timers: Solve = 0.000898384 Iter = 0.000601935 Bottom = 0.000256384 Time in solve 0.001231672 Max/L2 norm of divergence after solve at level 1 : 1.08666718e-05 0.0002386902343 and volume-weighted sum -17853.29492 Time integration of scalars at level 1 from 680 to 682 with dt = 2 using RHS created at 682 Done with advance_dycore at level 1 [Level 1 step 341] Advanced 5888 cells Coarse STEP 341 ends. TIME = 682 DT = 2 Timestep time = 0.031620523 seconds. Coarse STEP 342 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367789934 (terrain aware) 1.367789934 (terrain unaware) Anelastic dt at level 0 would be: 6.266320254 (terrain aware) 6.266320254 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660514002 (terrain aware) 0.2660514002 (terrain unaware) Anelastic dt at level 1 would be: 3.01457639 (terrain aware) 3.01457639 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 342] ADVANCE from elapsed time = 682 to 684 with dt = 2 Making slow rhs at time 682 for fast variables advancing from 682 to 682.6666666667 Fast time integration at level 0 from 682 to 682.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 682 to 682.6666666667 with dt = 0.6666666666666 using RHS created at 682 Making slow rhs at time 682.6666666667 for fast variables advancing from 682 to 683 Fast time integration at level 0 from 682 to 682.5 with dt = 0.5 Fast time integration at level 0 from 682.5 to 683 with dt = 0.5 Time integration of scalars at level 0 from 682 to 683 with dt = 1 using RHS created at 682.6666666667 Making slow rhs at time 683 for fast variables advancing from 682 to 684 Fast time integration at level 0 from 682 to 682.5 with dt = 0.5 Fast time integration at level 0 from 682.5 to 683 with dt = 0.5 Fast time integration at level 0 from 683 to 683.5 with dt = 0.5 Fast time integration at level 0 from 683.5 to 684 with dt = 0.5 Time integration of scalars at level 0 from 682 to 684 with dt = 2 using RHS created at 683 Done with advance_dycore at level 0 [Level 0 step 342] Advanced 4096 cells [Level 1 step 342] ADVANCE from elapsed time = 682 to 684 with dt = 2 Making slow rhs at time 682 for fast variables advancing from 682 to 684 No-substepping time integration at level 1 to 684 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000421596691 0.002218278591 and volume-weighted sum -7873.59668 Subtracting -1.337227673e-06 from rhs in subdomain 0 Sum after subtraction 0.0111758709 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004229339247 MLMG: Initial residual (resid0) = 0.0004229339247 MLMG: Final Iter. 1 resid, resid/bnorm = 8.592778613e-06, 0.02031707019 MLMG: Timers: Solve = 0.000890587 Iter = 0.000590878 Bottom = 0.000247908 Time in solve 0.001234305 Max/L2 norm of divergence after solve at level 1 : 8.001923561e-06 0.0001156692742 and volume-weighted sum -7873.602051 Time integration of scalars at level 1 from 682 to 684 with dt = 2 using RHS created at 682 Making slow rhs at time 684 for fast variables advancing from 682 to 684 No-substepping time integration at level 1 to 684 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004061367363 0.002242993331 and volume-weighted sum -7873.581543 Subtracting -1.337225171e-06 from rhs in subdomain 0 Sum after subtraction 0.0293366611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.00040747397 MLMG: Initial residual (resid0) = 0.00040747397 MLMG: Final Iter. 1 resid, resid/bnorm = 9.338924428e-06, 0.02291906998 MLMG: Timers: Solve = 0.000904128 Iter = 0.000595521 Bottom = 0.00025944 Time in solve 0.001238531 Max/L2 norm of divergence after solve at level 1 : 8.607283235e-06 0.0001149911259 and volume-weighted sum -7873.589355 Time integration of scalars at level 1 from 682 to 684 with dt = 2 using RHS created at 684 Done with advance_dycore at level 1 [Level 1 step 342] Advanced 5888 cells Coarse STEP 342 ends. TIME = 684 DT = 2 Timestep time = 0.021759751 seconds. Coarse STEP 343 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368192563 (terrain aware) 1.368192563 (terrain unaware) Anelastic dt at level 0 would be: 6.276078727 (terrain aware) 6.276078727 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2660254536 (terrain aware) 0.2660254536 (terrain unaware) Anelastic dt at level 1 would be: 3.01780875 (terrain aware) 3.01780875 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 343] ADVANCE from elapsed time = 684 to 686 with dt = 2 Making slow rhs at time 684 for fast variables advancing from 684 to 684.6666666667 Fast time integration at level 0 from 684 to 684.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 684 to 684.6666666667 with dt = 0.6666666666666 using RHS created at 684 Making slow rhs at time 684.6666666667 for fast variables advancing from 684 to 685 Fast time integration at level 0 from 684 to 684.5 with dt = 0.5 Fast time integration at level 0 from 684.5 to 685 with dt = 0.5 Time integration of scalars at level 0 from 684 to 685 with dt = 1 using RHS created at 684.6666666667 Making slow rhs at time 685 for fast variables advancing from 684 to 686 Fast time integration at level 0 from 684 to 684.5 with dt = 0.5 Fast time integration at level 0 from 684.5 to 685 with dt = 0.5 Fast time integration at level 0 from 685 to 685.5 with dt = 0.5 Fast time integration at level 0 from 685.5 to 686 with dt = 0.5 Time integration of scalars at level 0 from 684 to 686 with dt = 2 using RHS created at 685 Done with advance_dycore at level 0 [Level 0 step 343] Advanced 4096 cells [Level 1 step 343] ADVANCE from elapsed time = 684 to 686 with dt = 2 Making slow rhs at time 684 for fast variables advancing from 684 to 686 No-substepping time integration at level 1 to 686 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004637613893 0.002222367097 and volume-weighted sum 3358.755615 Subtracting 5.704408181e-07 from rhs in subdomain 0 Sum after subtraction -0.08568167686 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004631909542 MLMG: Initial residual (resid0) = 0.0004631909542 MLMG: Final Iter. 1 resid, resid/bnorm = 9.397117537e-06, 0.02028778382 MLMG: Timers: Solve = 0.000899603 Iter = 0.000601373 Bottom = 0.0002647 Time in solve 0.001235015 Max/L2 norm of divergence after solve at level 1 : 9.967014194e-06 7.068176637e-05 and volume-weighted sum 3358.750732 Time integration of scalars at level 1 from 684 to 686 with dt = 2 using RHS created at 684 Making slow rhs at time 686 for fast variables advancing from 684 to 686 No-substepping time integration at level 1 to 686 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004780422896 0.002234474057 and volume-weighted sum 3358.79126 Subtracting 5.704469004e-07 from rhs in subdomain 0 Sum after subtraction -0.07217749953 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004774718545 MLMG: Initial residual (resid0) = 0.0004774718545 MLMG: Final Iter. 1 resid, resid/bnorm = 9.849238268e-06, 0.02062789351 MLMG: Timers: Solve = 0.000867033 Iter = 0.000565662 Bottom = 0.000230046 Time in solve 0.001206037 Max/L2 norm of divergence after solve at level 1 : 1.042243093e-05 6.74780531e-05 and volume-weighted sum 3358.808105 Time integration of scalars at level 1 from 684 to 686 with dt = 2 using RHS created at 686 Done with advance_dycore at level 1 [Level 1 step 343] Advanced 5888 cells Coarse STEP 343 ends. TIME = 686 DT = 2 Timestep time = 0.021700246 seconds. Coarse STEP 344 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368685344 (terrain aware) 1.368685344 (terrain unaware) Anelastic dt at level 0 would be: 6.287797596 (terrain aware) 6.287797596 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.266006734 (terrain aware) 0.266006734 (terrain unaware) Anelastic dt at level 1 would be: 3.02227582 (terrain aware) 3.02227582 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 344] ADVANCE from elapsed time = 686 to 688 with dt = 2 Making slow rhs at time 686 for fast variables advancing from 686 to 686.6666666667 Fast time integration at level 0 from 686 to 686.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 686 to 686.6666666667 with dt = 0.6666666666666 using RHS created at 686 Making slow rhs at time 686.6666666667 for fast variables advancing from 686 to 687 Fast time integration at level 0 from 686 to 686.5 with dt = 0.5 Fast time integration at level 0 from 686.5 to 687 with dt = 0.5 Time integration of scalars at level 0 from 686 to 687 with dt = 1 using RHS created at 686.6666666667 Making slow rhs at time 687 for fast variables advancing from 686 to 688 Fast time integration at level 0 from 686 to 686.5 with dt = 0.5 Fast time integration at level 0 from 686.5 to 687 with dt = 0.5 Fast time integration at level 0 from 687 to 687.5 with dt = 0.5 Fast time integration at level 0 from 687.5 to 688 with dt = 0.5 Time integration of scalars at level 0 from 686 to 688 with dt = 2 using RHS created at 687 Done with advance_dycore at level 0 [Level 0 step 344] Advanced 4096 cells [Level 1 step 344] ADVANCE from elapsed time = 686 to 688 with dt = 2 Making slow rhs at time 686 for fast variables advancing from 686 to 688 No-substepping time integration at level 1 to 688 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004947818816 0.002234502928 and volume-weighted sum 14378.19629 Subtracting 2.441949164e-06 from rhs in subdomain 0 Sum after subtraction -0.01979060471 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004923399538 MLMG: Initial residual (resid0) = 0.0004923399538 MLMG: Final Iter. 2 resid, resid/bnorm = 1.216164947e-06, 0.002470173175 MLMG: Timers: Solve = 0.001449825 Iter = 0.001149061 Bottom = 0.000557189 Time in solve 0.001786584 Max/L2 norm of divergence after solve at level 1 : 3.600260243e-06 0.000187443482 and volume-weighted sum 14378.24805 Time integration of scalars at level 1 from 686 to 688 with dt = 2 using RHS created at 686 Making slow rhs at time 688 for fast variables advancing from 686 to 688 No-substepping time integration at level 1 to 688 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004829335958 0.002254111227 and volume-weighted sum 14378.22852 Subtracting 2.441954621e-06 from rhs in subdomain 0 Sum after subtraction 0.001396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004804916389 MLMG: Initial residual (resid0) = 0.0004804916389 MLMG: Final Iter. 1 resid, resid/bnorm = 9.968178347e-06, 0.02074578963 MLMG: Timers: Solve = 0.000882194 Iter = 0.000584448 Bottom = 0.000242918 Time in solve 0.001219393 Max/L2 norm of divergence after solve at level 1 : 1.240521669e-05 0.000194807988 and volume-weighted sum 14378.22656 Time integration of scalars at level 1 from 686 to 688 with dt = 2 using RHS created at 688 Done with advance_dycore at level 1 [Level 1 step 344] Advanced 5888 cells Coarse STEP 344 ends. TIME = 688 DT = 2 Timestep time = 0.022745937 seconds. Coarse STEP 345 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369264701 (terrain aware) 1.369264701 (terrain unaware) Anelastic dt at level 0 would be: 6.301404144 (terrain aware) 6.301404144 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659958189 (terrain aware) 0.2659958189 (terrain unaware) Anelastic dt at level 1 would be: 3.027587488 (terrain aware) 3.027587488 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 345] ADVANCE from elapsed time = 688 to 690 with dt = 2 Making slow rhs at time 688 for fast variables advancing from 688 to 688.6666666667 Fast time integration at level 0 from 688 to 688.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 688 to 688.6666666667 with dt = 0.6666666666666 using RHS created at 688 Making slow rhs at time 688.6666666667 for fast variables advancing from 688 to 689 Fast time integration at level 0 from 688 to 688.5 with dt = 0.5 Fast time integration at level 0 from 688.5 to 689 with dt = 0.5 Time integration of scalars at level 0 from 688 to 689 with dt = 1 using RHS created at 688.6666666667 Making slow rhs at time 689 for fast variables advancing from 688 to 690 Fast time integration at level 0 from 688 to 688.5 with dt = 0.5 Fast time integration at level 0 from 688.5 to 689 with dt = 0.5 Fast time integration at level 0 from 689 to 689.5 with dt = 0.5 Fast time integration at level 0 from 689.5 to 690 with dt = 0.5 Time integration of scalars at level 0 from 688 to 690 with dt = 2 using RHS created at 689 Done with advance_dycore at level 0 [Level 0 step 345] Advanced 4096 cells [Level 1 step 345] ADVANCE from elapsed time = 688 to 690 with dt = 2 Making slow rhs at time 688 for fast variables advancing from 688 to 690 No-substepping time integration at level 1 to 690 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004257429391 0.002252838574 and volume-weighted sum 24039.58398 Subtracting 4.082809937e-06 from rhs in subdomain 0 Sum after subtraction -0.1024454832 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004216601665 MLMG: Initial residual (resid0) = 0.0004216601665 MLMG: Final Iter. 2 resid, resid/bnorm = 1.473194061e-06, 0.003493794706 MLMG: Timers: Solve = 0.001443634 Iter = 0.001146556 Bottom = 0.000554402 Time in solve 0.001825638 Max/L2 norm of divergence after solve at level 1 : 5.490845069e-06 0.0003133398423 and volume-weighted sum 24039.55469 Time integration of scalars at level 1 from 688 to 690 with dt = 2 using RHS created at 688 Making slow rhs at time 690 for fast variables advancing from 688 to 690 No-substepping time integration at level 1 to 690 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004022419453 0.002261969727 and volume-weighted sum 24039.56055 Subtracting 4.082805845e-06 from rhs in subdomain 0 Sum after subtraction -0.1201406121 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003981591726 MLMG: Initial residual (resid0) = 0.0003981591726 MLMG: Final Iter. 1 resid, resid/bnorm = 9.627307008e-06, 0.0241795443 MLMG: Timers: Solve = 0.00098179 Iter = 0.000681809 Bottom = 0.000307612 Time in solve 0.001316896 Max/L2 norm of divergence after solve at level 1 : 1.371093094e-05 0.0003177942708 and volume-weighted sum 24039.55078 Time integration of scalars at level 1 from 688 to 690 with dt = 2 using RHS created at 690 Done with advance_dycore at level 1 [Level 1 step 345] Advanced 5888 cells Coarse STEP 345 ends. TIME = 690 DT = 2 Timestep time = 0.022529119 seconds. Coarse STEP 346 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369468996 (terrain aware) 1.369468996 (terrain unaware) Anelastic dt at level 0 would be: 6.303385402 (terrain aware) 6.303385402 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265993118 (terrain aware) 0.265993118 (terrain unaware) Anelastic dt at level 1 would be: 3.029761567 (terrain aware) 3.029761567 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 346] ADVANCE from elapsed time = 690 to 692 with dt = 2 Making slow rhs at time 690 for fast variables advancing from 690 to 690.6666666667 Fast time integration at level 0 from 690 to 690.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 690 to 690.6666666667 with dt = 0.6666666666666 using RHS created at 690 Making slow rhs at time 690.6666666667 for fast variables advancing from 690 to 691 Fast time integration at level 0 from 690 to 690.5 with dt = 0.5 Fast time integration at level 0 from 690.5 to 691 with dt = 0.5 Time integration of scalars at level 0 from 690 to 691 with dt = 1 using RHS created at 690.6666666667 Making slow rhs at time 691 for fast variables advancing from 690 to 692 Fast time integration at level 0 from 690 to 690.5 with dt = 0.5 Fast time integration at level 0 from 690.5 to 691 with dt = 0.5 Fast time integration at level 0 from 691 to 691.5 with dt = 0.5 Fast time integration at level 0 from 691.5 to 692 with dt = 0.5 Time integration of scalars at level 0 from 690 to 692 with dt = 2 using RHS created at 691 Done with advance_dycore at level 0 [Level 0 step 346] Advanced 4096 cells [Level 1 step 346] ADVANCE from elapsed time = 690 to 692 with dt = 2 Making slow rhs at time 690 for fast variables advancing from 690 to 692 No-substepping time integration at level 1 to 692 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004639066756 0.002267362783 and volume-weighted sum 31444.79102 Subtracting 5.340487405e-06 from rhs in subdomain 0 Sum after subtraction 0.03026798368 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004585661809 MLMG: Initial residual (resid0) = 0.0004585661809 MLMG: Final Iter. 2 resid, resid/bnorm = 1.221162847e-06, 0.002663002349 MLMG: Timers: Solve = 0.001388067 Iter = 0.001089543 Bottom = 0.000498695 Time in solve 0.001725268 Max/L2 norm of divergence after solve at level 1 : 6.50412403e-06 0.000409824017 and volume-weighted sum 31444.82812 Time integration of scalars at level 1 from 690 to 692 with dt = 2 using RHS created at 690 Making slow rhs at time 692 for fast variables advancing from 690 to 692 No-substepping time integration at level 1 to 692 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004798602313 0.002270827303 and volume-weighted sum 31444.75781 Subtracting 5.340481948e-06 from rhs in subdomain 0 Sum after subtraction -0.01396983862 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004745197366 MLMG: Initial residual (resid0) = 0.0004745197366 MLMG: Final Iter. 1 resid, resid/bnorm = 9.437266272e-06, 0.01988803782 MLMG: Timers: Solve = 0.000863786 Iter = 0.000565475 Bottom = 0.000226681 Time in solve 0.001205142 Max/L2 norm of divergence after solve at level 1 : 1.477822661e-05 0.0004132544855 and volume-weighted sum 31444.83594 Time integration of scalars at level 1 from 690 to 692 with dt = 2 using RHS created at 692 Done with advance_dycore at level 1 [Level 1 step 346] Advanced 5888 cells Coarse STEP 346 ends. TIME = 692 DT = 2 Timestep time = 0.022201138 seconds. Coarse STEP 347 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369373182 (terrain aware) 1.369373182 (terrain unaware) Anelastic dt at level 0 would be: 6.302228476 (terrain aware) 6.302228476 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265998408 (terrain aware) 0.265998408 (terrain unaware) Anelastic dt at level 1 would be: 3.033302381 (terrain aware) 3.033302381 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 347] ADVANCE from elapsed time = 692 to 694 with dt = 2 Making slow rhs at time 692 for fast variables advancing from 692 to 692.6666666667 Fast time integration at level 0 from 692 to 692.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 692 to 692.6666666667 with dt = 0.6666666666666 using RHS created at 692 Making slow rhs at time 692.6666666667 for fast variables advancing from 692 to 693 Fast time integration at level 0 from 692 to 692.5 with dt = 0.5 Fast time integration at level 0 from 692.5 to 693 with dt = 0.5 Time integration of scalars at level 0 from 692 to 693 with dt = 1 using RHS created at 692.6666666667 Making slow rhs at time 693 for fast variables advancing from 692 to 694 Fast time integration at level 0 from 692 to 692.5 with dt = 0.5 Fast time integration at level 0 from 692.5 to 693 with dt = 0.5 Fast time integration at level 0 from 693 to 693.5 with dt = 0.5 Fast time integration at level 0 from 693.5 to 694 with dt = 0.5 Time integration of scalars at level 0 from 692 to 694 with dt = 2 using RHS created at 693 Done with advance_dycore at level 0 [Level 0 step 347] Advanced 4096 cells [Level 1 step 347] ADVANCE from elapsed time = 692 to 694 with dt = 2 Making slow rhs at time 692 for fast variables advancing from 692 to 694 No-substepping time integration at level 1 to 694 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004901420325 0.002275370294 and volume-weighted sum 35690.78516 Subtracting 6.061614386e-06 from rhs in subdomain 0 Sum after subtraction 0.09359791875 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004840804031 MLMG: Initial residual (resid0) = 0.0004840804031 MLMG: Final Iter. 1 resid, resid/bnorm = 8.636168786e-06, 0.01784035936 MLMG: Timers: Solve = 0.000903201 Iter = 0.000608306 Bottom = 0.000275818 Time in solve 0.001228143 Max/L2 norm of divergence after solve at level 1 : 1.469999552e-05 0.0004703286686 and volume-weighted sum 35690.73047 Time integration of scalars at level 1 from 692 to 694 with dt = 2 using RHS created at 692 Making slow rhs at time 694 for fast variables advancing from 692 to 694 No-substepping time integration at level 1 to 694 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004762988538 0.002255409723 and volume-weighted sum 35690.73047 Subtracting 6.061604836e-06 from rhs in subdomain 0 Sum after subtraction 0.06891787052 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004702372535 MLMG: Initial residual (resid0) = 0.0004702372535 MLMG: Final Iter. 1 resid, resid/bnorm = 9.047202184e-06, 0.01923965476 MLMG: Timers: Solve = 0.001151078 Iter = 0.00082655 Bottom = 0.000315843 Time in solve 0.00148057 Max/L2 norm of divergence after solve at level 1 : 1.511350274e-05 0.0004679759149 and volume-weighted sum 35690.76953 Time integration of scalars at level 1 from 692 to 694 with dt = 2 using RHS created at 694 Done with advance_dycore at level 1 [Level 1 step 347] Advanced 5888 cells Coarse STEP 347 ends. TIME = 694 DT = 2 Timestep time = 0.022460106 seconds. Coarse STEP 348 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369371245 (terrain aware) 1.369371245 (terrain unaware) Anelastic dt at level 0 would be: 6.303061749 (terrain aware) 6.303061749 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.26598604 (terrain aware) 0.26598604 (terrain unaware) Anelastic dt at level 1 would be: 3.038157775 (terrain aware) 3.038157775 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 348] ADVANCE from elapsed time = 694 to 696 with dt = 2 Making slow rhs at time 694 for fast variables advancing from 694 to 694.6666666667 Fast time integration at level 0 from 694 to 694.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 694 to 694.6666666667 with dt = 0.6666666666666 using RHS created at 694 Making slow rhs at time 694.6666666667 for fast variables advancing from 694 to 695 Fast time integration at level 0 from 694 to 694.5 with dt = 0.5 Fast time integration at level 0 from 694.5 to 695 with dt = 0.5 Time integration of scalars at level 0 from 694 to 695 with dt = 1 using RHS created at 694.6666666667 Making slow rhs at time 695 for fast variables advancing from 694 to 696 Fast time integration at level 0 from 694 to 694.5 with dt = 0.5 Fast time integration at level 0 from 694.5 to 695 with dt = 0.5 Fast time integration at level 0 from 695 to 695.5 with dt = 0.5 Fast time integration at level 0 from 695.5 to 696 with dt = 0.5 Time integration of scalars at level 0 from 694 to 696 with dt = 2 using RHS created at 695 Done with advance_dycore at level 0 [Level 0 step 348] Advanced 4096 cells [Level 1 step 348] ADVANCE from elapsed time = 694 to 696 with dt = 2 Making slow rhs at time 694 for fast variables advancing from 694 to 696 No-substepping time integration at level 1 to 696 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004194639623 0.002279034117 and volume-weighted sum 36003.42188 Subtracting 6.114711596e-06 from rhs in subdomain 0 Sum after subtraction 0.1813750714 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004133492184 MLMG: Initial residual (resid0) = 0.0004133492184 MLMG: Final Iter. 1 resid, resid/bnorm = 8.608796634e-06, 0.02082693391 MLMG: Timers: Solve = 0.000975598 Iter = 0.000685413 Bottom = 0.000269526 Time in solve 0.001422088 Max/L2 norm of divergence after solve at level 1 : 1.472234726e-05 0.0004742461315 and volume-weighted sum 36003.46094 Time integration of scalars at level 1 from 694 to 696 with dt = 2 using RHS created at 694 Making slow rhs at time 696 for fast variables advancing from 694 to 696 No-substepping time integration at level 1 to 696 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000398831442 0.002250839956 and volume-weighted sum 36003.46484 Subtracting 6.114718872e-06 from rhs in subdomain 0 Sum after subtraction -0.07916241884 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003927167272 MLMG: Initial residual (resid0) = 0.0003927167272 MLMG: Final Iter. 1 resid, resid/bnorm = 9.136434528e-06, 0.02326469496 MLMG: Timers: Solve = 0.000875122 Iter = 0.000539539 Bottom = 0.000200694 Time in solve 0.001208529 Max/L2 norm of divergence after solve at level 1 : 1.52522698e-05 0.0004720614234 and volume-weighted sum 36003.43359 Time integration of scalars at level 1 from 694 to 696 with dt = 2 using RHS created at 696 Done with advance_dycore at level 1 [Level 1 step 348] Advanced 5888 cells Coarse STEP 348 ends. TIME = 696 DT = 2 Timestep time = 0.022022981 seconds. Coarse STEP 349 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369458864 (terrain aware) 1.369458864 (terrain unaware) Anelastic dt at level 0 would be: 6.305795218 (terrain aware) 6.305795218 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659725172 (terrain aware) 0.2659725172 (terrain unaware) Anelastic dt at level 1 would be: 3.044250562 (terrain aware) 3.044250562 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 349] ADVANCE from elapsed time = 696 to 698 with dt = 2 Making slow rhs at time 696 for fast variables advancing from 696 to 696.6666666667 Fast time integration at level 0 from 696 to 696.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 696 to 696.6666666667 with dt = 0.6666666666666 using RHS created at 696 Making slow rhs at time 696.6666666667 for fast variables advancing from 696 to 697 Fast time integration at level 0 from 696 to 696.5 with dt = 0.5 Fast time integration at level 0 from 696.5 to 697 with dt = 0.5 Time integration of scalars at level 0 from 696 to 697 with dt = 1 using RHS created at 696.6666666667 Making slow rhs at time 697 for fast variables advancing from 696 to 698 Fast time integration at level 0 from 696 to 696.5 with dt = 0.5 Fast time integration at level 0 from 696.5 to 697 with dt = 0.5 Fast time integration at level 0 from 697 to 697.5 with dt = 0.5 Fast time integration at level 0 from 697.5 to 698 with dt = 0.5 Time integration of scalars at level 0 from 696 to 698 with dt = 2 using RHS created at 697 Done with advance_dycore at level 0 [Level 0 step 349] Advanced 4096 cells [Level 1 step 349] ADVANCE from elapsed time = 696 to 698 with dt = 2 Making slow rhs at time 696 for fast variables advancing from 696 to 698 No-substepping time integration at level 1 to 698 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000464739278 0.00226825336 and volume-weighted sum 32120.23828 Subtracting 5.455203336e-06 from rhs in subdomain 0 Sum after subtraction 0.01071020961 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004592840851 MLMG: Initial residual (resid0) = 0.0004592840851 MLMG: Final Iter. 1 resid, resid/bnorm = 9.561330444e-06, 0.02081790008 MLMG: Timers: Solve = 0.000895292 Iter = 0.000581611 Bottom = 0.000248781 Time in solve 0.001224226 Max/L2 norm of divergence after solve at level 1 : 1.448672265e-05 0.0004250345519 and volume-weighted sum 32120.24609 Time integration of scalars at level 1 from 696 to 698 with dt = 2 using RHS created at 696 Making slow rhs at time 698 for fast variables advancing from 696 to 698 No-substepping time integration at level 1 to 698 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004767477512 0.002235485008 and volume-weighted sum 32120.20898 Subtracting 5.455198334e-06 from rhs in subdomain 0 Sum after subtraction 0.01862645149 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004712925584 MLMG: Initial residual (resid0) = 0.0004712925584 MLMG: Final Iter. 1 resid, resid/bnorm = 9.615279851e-06, 0.02040193416 MLMG: Timers: Solve = 0.000877712 Iter = 0.000580019 Bottom = 0.000244148 Time in solve 0.00126017 Max/L2 norm of divergence after solve at level 1 : 1.506973058e-05 0.0004218382819 and volume-weighted sum 32120.20117 Time integration of scalars at level 1 from 696 to 698 with dt = 2 using RHS created at 698 Done with advance_dycore at level 1 [Level 1 step 349] Advanced 5888 cells Coarse STEP 349 ends. TIME = 698 DT = 2 Timestep time = 0.021843478 seconds. Coarse STEP 350 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369633356 (terrain aware) 1.369633356 (terrain unaware) Anelastic dt at level 0 would be: 6.310388352 (terrain aware) 6.310388352 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265965197 (terrain aware) 0.265965197 (terrain unaware) Anelastic dt at level 1 would be: 3.047682299 (terrain aware) 3.047682299 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 350] ADVANCE from elapsed time = 698 to 700 with dt = 2 Making slow rhs at time 698 for fast variables advancing from 698 to 698.6666666667 Fast time integration at level 0 from 698 to 698.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 698 to 698.6666666667 with dt = 0.6666666666666 using RHS created at 698 Making slow rhs at time 698.6666666667 for fast variables advancing from 698 to 699 Fast time integration at level 0 from 698 to 698.5 with dt = 0.5 Fast time integration at level 0 from 698.5 to 699 with dt = 0.5 Time integration of scalars at level 0 from 698 to 699 with dt = 1 using RHS created at 698.6666666667 Making slow rhs at time 699 for fast variables advancing from 698 to 700 Fast time integration at level 0 from 698 to 698.5 with dt = 0.5 Fast time integration at level 0 from 698.5 to 699 with dt = 0.5 Fast time integration at level 0 from 699 to 699.5 with dt = 0.5 Fast time integration at level 0 from 699.5 to 700 with dt = 0.5 Time integration of scalars at level 0 from 698 to 700 with dt = 2 using RHS created at 699 Done with advance_dycore at level 0 [Level 0 step 350] Advanced 4096 cells [Level 1 step 350] ADVANCE from elapsed time = 698 to 700 with dt = 2 Making slow rhs at time 698 for fast variables advancing from 698 to 700 No-substepping time integration at level 1 to 700 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004882793874 0.002236628905 and volume-weighted sum 24628.68164 Subtracting 4.182860266e-06 from rhs in subdomain 0 Sum after subtraction 0.104540959 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004840964975 MLMG: Initial residual (resid0) = 0.0004840964975 MLMG: Final Iter. 2 resid, resid/bnorm = 1.493896434e-06, 0.003085947596 MLMG: Timers: Solve = 0.001418428 Iter = 0.001120662 Bottom = 0.000523775 Time in solve 0.001749129 Max/L2 norm of divergence after solve at level 1 : 5.676643923e-06 0.0003210152208 and volume-weighted sum 24628.66797 Time integration of scalars at level 1 from 698 to 700 with dt = 2 using RHS created at 698 Making slow rhs at time 700 for fast variables advancing from 698 to 700 No-substepping time integration at level 1 to 700 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004753805697 0.002231028164 and volume-weighted sum 24628.71094 Subtracting 4.182865268e-06 from rhs in subdomain 0 Sum after subtraction -0.0698491931 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000471197709 MLMG: Initial residual (resid0) = 0.000471197709 MLMG: Final Iter. 1 resid, resid/bnorm = 9.652707377e-06, 0.02048547193 MLMG: Timers: Solve = 0.000928272 Iter = 0.000607439 Bottom = 0.00026257 Time in solve 0.001289598 Max/L2 norm of divergence after solve at level 1 : 1.383200288e-05 0.0003253385075 and volume-weighted sum 24628.66992 Time integration of scalars at level 1 from 698 to 700 with dt = 2 using RHS created at 700 Done with advance_dycore at level 1 [Level 1 step 350] Advanced 5888 cells Coarse STEP 350 ends. TIME = 700 DT = 2 Timestep time = 0.022694317 seconds. 3DPlotfile write time = 0.00691471 seconds. Coarse STEP 351 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369889507 (terrain aware) 1.369889507 (terrain unaware) Anelastic dt at level 0 would be: 6.316760684 (terrain aware) 6.316760684 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659641167 (terrain aware) 0.2659641167 (terrain unaware) Anelastic dt at level 1 would be: 3.051167681 (terrain aware) 3.051167681 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 351] ADVANCE from elapsed time = 700 to 702 with dt = 2 Making slow rhs at time 700 for fast variables advancing from 700 to 700.6666666667 Fast time integration at level 0 from 700 to 700.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 700 to 700.6666666667 with dt = 0.6666666666666 using RHS created at 700 Making slow rhs at time 700.6666666667 for fast variables advancing from 700 to 701 Fast time integration at level 0 from 700 to 700.5 with dt = 0.5 Fast time integration at level 0 from 700.5 to 701 with dt = 0.5 Time integration of scalars at level 0 from 700 to 701 with dt = 1 using RHS created at 700.6666666667 Making slow rhs at time 701 for fast variables advancing from 700 to 702 Fast time integration at level 0 from 700 to 700.5 with dt = 0.5 Fast time integration at level 0 from 700.5 to 701 with dt = 0.5 Fast time integration at level 0 from 701 to 701.5 with dt = 0.5 Fast time integration at level 0 from 701.5 to 702 with dt = 0.5 Time integration of scalars at level 0 from 700 to 702 with dt = 2 using RHS created at 701 Done with advance_dycore at level 0 [Level 0 step 351] Advanced 4096 cells [Level 1 step 351] ADVANCE from elapsed time = 700 to 702 with dt = 2 Making slow rhs at time 700 for fast variables advancing from 700 to 702 No-substepping time integration at level 1 to 702 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004151687026 0.002193560591 and volume-weighted sum 14886.39062 Subtracting 2.528259301e-06 from rhs in subdomain 0 Sum after subtraction -0.07869675756 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004126404529 MLMG: Initial residual (resid0) = 0.0004126404529 MLMG: Final Iter. 1 resid, resid/bnorm = 8.343678019e-06, 0.02022021264 MLMG: Timers: Solve = 0.00089436 Iter = 0.000583117 Bottom = 0.000254043 Time in solve 0.001220441 Max/L2 norm of divergence after solve at level 1 : 1.087039709e-05 0.0002034593053 and volume-weighted sum 14886.36621 Time integration of scalars at level 1 from 700 to 702 with dt = 2 using RHS created at 700 Making slow rhs at time 702 for fast variables advancing from 700 to 702 No-substepping time integration at level 1 to 702 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003841407597 0.002190806204 and volume-weighted sum 14886.38281 Subtracting 2.528257937e-06 from rhs in subdomain 0 Sum after subtraction 0.00954605639 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.00038161251 MLMG: Initial residual (resid0) = 0.00038161251 MLMG: Final Iter. 1 resid, resid/bnorm = 9.181436326e-06, 0.02405957878 MLMG: Timers: Solve = 0.000891624 Iter = 0.000589444 Bottom = 0.000262674 Time in solve 0.001229584 Max/L2 norm of divergence after solve at level 1 : 1.17123127e-05 0.0002008692827 and volume-weighted sum 14886.3623 Time integration of scalars at level 1 from 700 to 702 with dt = 2 using RHS created at 702 Done with advance_dycore at level 1 [Level 1 step 351] Advanced 5888 cells Coarse STEP 351 ends. TIME = 702 DT = 2 Timestep time = 0.022773323 seconds. Coarse STEP 352 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370223442 (terrain aware) 1.370223442 (terrain unaware) Anelastic dt at level 0 would be: 6.324868108 (terrain aware) 6.324868108 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265968587 (terrain aware) 0.265968587 (terrain unaware) Anelastic dt at level 1 would be: 3.055835619 (terrain aware) 3.055835619 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 352] ADVANCE from elapsed time = 702 to 704 with dt = 2 Making slow rhs at time 702 for fast variables advancing from 702 to 702.6666666667 Fast time integration at level 0 from 702 to 702.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 702 to 702.6666666667 with dt = 0.6666666666666 using RHS created at 702 Making slow rhs at time 702.6666666667 for fast variables advancing from 702 to 703 Fast time integration at level 0 from 702 to 702.5 with dt = 0.5 Fast time integration at level 0 from 702.5 to 703 with dt = 0.5 Time integration of scalars at level 0 from 702 to 703 with dt = 1 using RHS created at 702.6666666667 Making slow rhs at time 703 for fast variables advancing from 702 to 704 Fast time integration at level 0 from 702 to 702.5 with dt = 0.5 Fast time integration at level 0 from 702.5 to 703 with dt = 0.5 Fast time integration at level 0 from 703 to 703.5 with dt = 0.5 Fast time integration at level 0 from 703.5 to 704 with dt = 0.5 Time integration of scalars at level 0 from 702 to 704 with dt = 2 using RHS created at 703 Done with advance_dycore at level 0 [Level 0 step 352] Advanced 4096 cells [Level 1 step 352] ADVANCE from elapsed time = 702 to 704 with dt = 2 Making slow rhs at time 702 for fast variables advancing from 702 to 704 No-substepping time integration at level 1 to 704 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004524011165 0.002167670289 and volume-weighted sum 4538.962891 Subtracting 7.708836165e-07 from rhs in subdomain 0 Sum after subtraction 0.008381903172 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004516302433 MLMG: Initial residual (resid0) = 0.0004516302433 MLMG: Final Iter. 1 resid, resid/bnorm = 7.457711035e-06, 0.01651286893 MLMG: Timers: Solve = 0.000867056 Iter = 0.000557606 Bottom = 0.000229487 Time in solve 0.001190048 Max/L2 norm of divergence after solve at level 1 : 8.234754205e-06 7.814804849e-05 and volume-weighted sum 4539.009766 Time integration of scalars at level 1 from 702 to 704 with dt = 2 using RHS created at 702 Making slow rhs at time 704 for fast variables advancing from 702 to 704 No-substepping time integration at level 1 to 704 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004646070302 0.002176581416 and volume-weighted sum 4538.968262 Subtracting 7.708845828e-07 from rhs in subdomain 0 Sum after subtraction 0.08242204785 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000463836157 MLMG: Initial residual (resid0) = 0.000463836157 MLMG: Final Iter. 1 resid, resid/bnorm = 9.000534192e-06, 0.01940455474 MLMG: Timers: Solve = 0.000858494 Iter = 0.000563154 Bottom = 0.000224418 Time in solve 0.001189548 Max/L2 norm of divergence after solve at level 1 : 9.771436453e-06 7.849778194e-05 and volume-weighted sum 4538.977539 Time integration of scalars at level 1 from 702 to 704 with dt = 2 using RHS created at 704 Done with advance_dycore at level 1 [Level 1 step 352] Advanced 5888 cells Coarse STEP 352 ends. TIME = 704 DT = 2 Timestep time = 0.021638095 seconds. Coarse STEP 353 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370631883 (terrain aware) 1.370631883 (terrain unaware) Anelastic dt at level 0 would be: 6.334645058 (terrain aware) 6.334645058 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659466637 (terrain aware) 0.2659466637 (terrain unaware) Anelastic dt at level 1 would be: 3.058813765 (terrain aware) 3.058813765 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 353] ADVANCE from elapsed time = 704 to 706 with dt = 2 Making slow rhs at time 704 for fast variables advancing from 704 to 704.6666666667 Fast time integration at level 0 from 704 to 704.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 704 to 704.6666666667 with dt = 0.6666666666666 using RHS created at 704 Making slow rhs at time 704.6666666667 for fast variables advancing from 704 to 705 Fast time integration at level 0 from 704 to 704.5 with dt = 0.5 Fast time integration at level 0 from 704.5 to 705 with dt = 0.5 Time integration of scalars at level 0 from 704 to 705 with dt = 1 using RHS created at 704.6666666667 Making slow rhs at time 705 for fast variables advancing from 704 to 706 Fast time integration at level 0 from 704 to 704.5 with dt = 0.5 Fast time integration at level 0 from 704.5 to 705 with dt = 0.5 Fast time integration at level 0 from 705 to 705.5 with dt = 0.5 Fast time integration at level 0 from 705.5 to 706 with dt = 0.5 Time integration of scalars at level 0 from 704 to 706 with dt = 2 using RHS created at 705 Done with advance_dycore at level 0 [Level 0 step 353] Advanced 4096 cells [Level 1 step 353] ADVANCE from elapsed time = 704 to 706 with dt = 2 Making slow rhs at time 704 for fast variables advancing from 704 to 706 No-substepping time integration at level 1 to 706 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004745982587 0.002167186001 and volume-weighted sum -5297.456543 Subtracting -8.997038776e-07 from rhs in subdomain 0 Sum after subtraction -0.03399327397 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004754979745 MLMG: Initial residual (resid0) = 0.0004754979745 MLMG: Final Iter. 1 resid, resid/bnorm = 7.590388122e-06, 0.01596302912 MLMG: Timers: Solve = 0.000893133 Iter = 0.000599218 Bottom = 0.000259993 Time in solve 0.001223683 Max/L2 norm of divergence after solve at level 1 : 8.478760719e-06 8.976144454e-05 and volume-weighted sum -5297.436523 Time integration of scalars at level 1 from 704 to 706 with dt = 2 using RHS created at 704 Making slow rhs at time 706 for fast variables advancing from 704 to 706 No-substepping time integration at level 1 to 706 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004615224898 0.002171132481 and volume-weighted sum -5297.438477 Subtracting -8.997008081e-07 from rhs in subdomain 0 Sum after subtraction -0.06845220923 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004624221765 MLMG: Initial residual (resid0) = 0.0004624221765 MLMG: Final Iter. 1 resid, resid/bnorm = 8.564355085e-06, 0.01852064021 MLMG: Timers: Solve = 0.000899787 Iter = 0.000600274 Bottom = 0.000266551 Time in solve 0.001229857 Max/L2 norm of divergence after solve at level 1 : 8.411705494e-06 8.597436681e-05 and volume-weighted sum -5297.491699 Time integration of scalars at level 1 from 704 to 706 with dt = 2 using RHS created at 706 Done with advance_dycore at level 1 [Level 1 step 353] Advanced 5888 cells Coarse STEP 353 ends. TIME = 706 DT = 2 Timestep time = 0.021975678 seconds. Coarse STEP 354 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371113936 (terrain aware) 1.371113936 (terrain unaware) Anelastic dt at level 0 would be: 6.346092726 (terrain aware) 6.346092726 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659306449 (terrain aware) 0.2659306449 (terrain unaware) Anelastic dt at level 1 would be: 3.058259442 (terrain aware) 3.058259442 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 354] ADVANCE from elapsed time = 706 to 708 with dt = 2 Making slow rhs at time 706 for fast variables advancing from 706 to 706.6666666667 Fast time integration at level 0 from 706 to 706.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 706 to 706.6666666667 with dt = 0.6666666666666 using RHS created at 706 Making slow rhs at time 706.6666666667 for fast variables advancing from 706 to 707 Fast time integration at level 0 from 706 to 706.5 with dt = 0.5 Fast time integration at level 0 from 706.5 to 707 with dt = 0.5 Time integration of scalars at level 0 from 706 to 707 with dt = 1 using RHS created at 706.6666666667 Making slow rhs at time 707 for fast variables advancing from 706 to 708 Fast time integration at level 0 from 706 to 706.5 with dt = 0.5 Fast time integration at level 0 from 706.5 to 707 with dt = 0.5 Fast time integration at level 0 from 707 to 707.5 with dt = 0.5 Fast time integration at level 0 from 707.5 to 708 with dt = 0.5 Time integration of scalars at level 0 from 706 to 708 with dt = 2 using RHS created at 707 Done with advance_dycore at level 0 [Level 0 step 354] Advanced 4096 cells [Level 1 step 354] ADVANCE from elapsed time = 706 to 708 with dt = 2 Making slow rhs at time 706 for fast variables advancing from 706 to 708 No-substepping time integration at level 1 to 708 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004044305533 0.002182016382 and volume-weighted sum -14283.0498 Subtracting -2.425789717e-06 from rhs in subdomain 0 Sum after subtraction 0.07054768503 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004068563576 MLMG: Initial residual (resid0) = 0.0004068563576 MLMG: Final Iter. 2 resid, resid/bnorm = 1.230961175e-06, 0.003025542479 MLMG: Timers: Solve = 0.00144413 Iter = 0.001142845 Bottom = 0.000546829 Time in solve 0.001769383 Max/L2 norm of divergence after solve at level 1 : 3.652647138e-06 0.0001862041827 and volume-weighted sum -14283.0752 Time integration of scalars at level 1 from 706 to 708 with dt = 2 using RHS created at 706 Making slow rhs at time 708 for fast variables advancing from 706 to 708 No-substepping time integration at level 1 to 708 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003827996552 0.002192164538 and volume-weighted sum -14283.0459 Subtracting -2.425789035e-06 from rhs in subdomain 0 Sum after subtraction 0.04773028195 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003852254304 MLMG: Initial residual (resid0) = 0.0003852254304 MLMG: Final Iter. 1 resid, resid/bnorm = 8.92837852e-06, 0.02317702211 MLMG: Timers: Solve = 0.000881545 Iter = 0.000574693 Bottom = 0.000244047 Time in solve 0.001265516 Max/L2 norm of divergence after solve at level 1 : 1.043081284e-05 0.0001935408363 and volume-weighted sum -14283.08398 Time integration of scalars at level 1 from 706 to 708 with dt = 2 using RHS created at 708 Done with advance_dycore at level 1 [Level 1 step 354] Advanced 5888 cells Coarse STEP 354 ends. TIME = 708 DT = 2 Timestep time = 0.022554744 seconds. Coarse STEP 355 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371671537 (terrain aware) 1.371671537 (terrain unaware) Anelastic dt at level 0 would be: 6.356826926 (terrain aware) 6.356826926 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659216297 (terrain aware) 0.2659216297 (terrain unaware) Anelastic dt at level 1 would be: 3.058943107 (terrain aware) 3.058943107 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 355] ADVANCE from elapsed time = 708 to 710 with dt = 2 Making slow rhs at time 708 for fast variables advancing from 708 to 708.6666666667 Fast time integration at level 0 from 708 to 708.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 708 to 708.6666666667 with dt = 0.6666666666666 using RHS created at 708 Making slow rhs at time 708.6666666667 for fast variables advancing from 708 to 709 Fast time integration at level 0 from 708 to 708.5 with dt = 0.5 Fast time integration at level 0 from 708.5 to 709 with dt = 0.5 Time integration of scalars at level 0 from 708 to 709 with dt = 1 using RHS created at 708.6666666667 Making slow rhs at time 709 for fast variables advancing from 708 to 710 Fast time integration at level 0 from 708 to 708.5 with dt = 0.5 Fast time integration at level 0 from 708.5 to 709 with dt = 0.5 Fast time integration at level 0 from 709 to 709.5 with dt = 0.5 Fast time integration at level 0 from 709.5 to 710 with dt = 0.5 Time integration of scalars at level 0 from 708 to 710 with dt = 2 using RHS created at 709 Done with advance_dycore at level 0 [Level 0 step 355] Advanced 4096 cells [Level 1 step 355] ADVANCE from elapsed time = 708 to 710 with dt = 2 Making slow rhs at time 708 for fast variables advancing from 708 to 710 No-substepping time integration at level 1 to 710 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004439614713 0.002190615749 and volume-weighted sum -22657.79688 Subtracting -3.8481312e-06 from rhs in subdomain 0 Sum after subtraction 0.09126961231 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004478095798 MLMG: Initial residual (resid0) = 0.0004478095798 MLMG: Final Iter. 1 resid, resid/bnorm = 9.636739378e-06, 0.02151972614 MLMG: Timers: Solve = 0.000848134 Iter = 0.000539924 Bottom = 0.000210096 Time in solve 0.001187199 Max/L2 norm of divergence after solve at level 1 : 1.221406274e-05 0.0003032116801 and volume-weighted sum -22657.81836 Time integration of scalars at level 1 from 708 to 710 with dt = 2 using RHS created at 708 Making slow rhs at time 710 for fast variables advancing from 708 to 710 No-substepping time integration at level 1 to 710 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004584100097 0.002179458505 and volume-weighted sum -22657.76367 Subtracting -3.848125743e-06 from rhs in subdomain 0 Sum after subtraction 0.1098960638 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004622581182 MLMG: Initial residual (resid0) = 0.0004622581182 MLMG: Final Iter. 1 resid, resid/bnorm = 9.27135261e-06, 0.02005665749 MLMG: Timers: Solve = 0.000901882 Iter = 0.000598601 Bottom = 0.000267872 Time in solve 0.001237433 Max/L2 norm of divergence after solve at level 1 : 1.166202128e-05 0.0002996573166 and volume-weighted sum -22657.80859 Time integration of scalars at level 1 from 708 to 710 with dt = 2 using RHS created at 710 Done with advance_dycore at level 1 [Level 1 step 355] Advanced 5888 cells Coarse STEP 355 ends. TIME = 710 DT = 2 Timestep time = 0.021492293 seconds. Coarse STEP 356 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371519694 (terrain aware) 1.371519694 (terrain unaware) Anelastic dt at level 0 would be: 6.353966499 (terrain aware) 6.353966499 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.26591932 (terrain aware) 0.26591932 (terrain unaware) Anelastic dt at level 1 would be: 3.060817077 (terrain aware) 3.060817077 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 356] ADVANCE from elapsed time = 710 to 712 with dt = 2 Making slow rhs at time 710 for fast variables advancing from 710 to 710.6666666667 Fast time integration at level 0 from 710 to 710.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 710 to 710.6666666667 with dt = 0.6666666666666 using RHS created at 710 Making slow rhs at time 710.6666666667 for fast variables advancing from 710 to 711 Fast time integration at level 0 from 710 to 710.5 with dt = 0.5 Fast time integration at level 0 from 710.5 to 711 with dt = 0.5 Time integration of scalars at level 0 from 710 to 711 with dt = 1 using RHS created at 710.6666666667 Making slow rhs at time 711 for fast variables advancing from 710 to 712 Fast time integration at level 0 from 710 to 710.5 with dt = 0.5 Fast time integration at level 0 from 710.5 to 711 with dt = 0.5 Fast time integration at level 0 from 711 to 711.5 with dt = 0.5 Fast time integration at level 0 from 711.5 to 712 with dt = 0.5 Time integration of scalars at level 0 from 710 to 712 with dt = 2 using RHS created at 711 Done with advance_dycore at level 0 [Level 0 step 356] Advanced 4096 cells [Level 1 step 356] ADVANCE from elapsed time = 710 to 712 with dt = 2 Making slow rhs at time 710 for fast variables advancing from 710 to 712 No-substepping time integration at level 1 to 712 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004707518965 0.002197620226 and volume-weighted sum -30461.97852 Subtracting -5.173569662e-06 from rhs in subdomain 0 Sum after subtraction -0.05308538675 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004759254516 MLMG: Initial residual (resid0) = 0.0004759254516 MLMG: Final Iter. 1 resid, resid/bnorm = 8.348521078e-06, 0.01754165627 MLMG: Timers: Solve = 0.000929527 Iter = 0.000621279 Bottom = 0.000292032 Time in solve 0.001257445 Max/L2 norm of divergence after solve at level 1 : 1.237168908e-05 0.0004016941239 and volume-weighted sum -30461.97266 Time integration of scalars at level 1 from 710 to 712 with dt = 2 using RHS created at 710 Making slow rhs at time 712 for fast variables advancing from 710 to 712 No-substepping time integration at level 1 to 712 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004585459828 0.002189749153 and volume-weighted sum -30462.02344 Subtracting -5.173577392e-06 from rhs in subdomain 0 Sum after subtraction -0.06170012057 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004637195671 MLMG: Initial residual (resid0) = 0.0004637195671 MLMG: Final Iter. 1 resid, resid/bnorm = 9.22541949e-06, 0.01989439316 MLMG: Timers: Solve = 0.000844211 Iter = 0.000552016 Bottom = 0.000222714 Time in solve 0.001185731 Max/L2 norm of divergence after solve at level 1 : 1.307018101e-05 0.0004002736241 and volume-weighted sum -30461.93945 Time integration of scalars at level 1 from 710 to 712 with dt = 2 using RHS created at 712 Done with advance_dycore at level 1 [Level 1 step 356] Advanced 5888 cells Coarse STEP 356 ends. TIME = 712 DT = 2 Timestep time = 0.021773004 seconds. Coarse STEP 357 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371442208 (terrain aware) 1.371442208 (terrain unaware) Anelastic dt at level 0 would be: 6.35320356 (terrain aware) 6.35320356 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2659160604 (terrain aware) 0.2659160604 (terrain unaware) Anelastic dt at level 1 would be: 3.060529484 (terrain aware) 3.060529484 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 357] ADVANCE from elapsed time = 712 to 714 with dt = 2 Making slow rhs at time 712 for fast variables advancing from 712 to 712.6666666667 Fast time integration at level 0 from 712 to 712.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 712 to 712.6666666667 with dt = 0.6666666666666 using RHS created at 712 Making slow rhs at time 712.6666666667 for fast variables advancing from 712 to 713 Fast time integration at level 0 from 712 to 712.5 with dt = 0.5 Fast time integration at level 0 from 712.5 to 713 with dt = 0.5 Time integration of scalars at level 0 from 712 to 713 with dt = 1 using RHS created at 712.6666666667 Making slow rhs at time 713 for fast variables advancing from 712 to 714 Fast time integration at level 0 from 712 to 712.5 with dt = 0.5 Fast time integration at level 0 from 712.5 to 713 with dt = 0.5 Fast time integration at level 0 from 713 to 713.5 with dt = 0.5 Fast time integration at level 0 from 713.5 to 714 with dt = 0.5 Time integration of scalars at level 0 from 712 to 714 with dt = 2 using RHS created at 713 Done with advance_dycore at level 0 [Level 0 step 357] Advanced 4096 cells [Level 1 step 357] ADVANCE from elapsed time = 712 to 714 with dt = 2 Making slow rhs at time 712 for fast variables advancing from 712 to 714 No-substepping time integration at level 1 to 714 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004043914378 0.002208110411 and volume-weighted sum -36977.625 Subtracting -6.280167327e-06 from rhs in subdomain 0 Sum after subtraction -0.04284083843 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004106716078 MLMG: Initial residual (resid0) = 0.0004106716078 MLMG: Final Iter. 1 resid, resid/bnorm = 8.306637028e-06, 0.02022695728 MLMG: Timers: Solve = 0.00085866 Iter = 0.000554491 Bottom = 0.000224314 Time in solve 0.001182423 Max/L2 norm of divergence after solve at level 1 : 1.281686127e-05 0.0004857238673 and volume-weighted sum -36977.63281 Time integration of scalars at level 1 from 712 to 714 with dt = 2 using RHS created at 712 Making slow rhs at time 714 for fast variables advancing from 712 to 714 No-substepping time integration at level 1 to 714 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003725290298 0.002201119903 and volume-weighted sum -36977.61719 Subtracting -6.280165962e-06 from rhs in subdomain 0 Sum after subtraction -0.04540197551 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003788091999 MLMG: Initial residual (resid0) = 0.0003788091999 MLMG: Final Iter. 1 resid, resid/bnorm = 8.94616096e-06, 0.02361653559 MLMG: Timers: Solve = 0.000888832 Iter = 0.000593888 Bottom = 0.000254317 Time in solve 0.001230096 Max/L2 norm of divergence after solve at level 1 : 1.416169107e-05 0.000484661723 and volume-weighted sum -36977.63281 Time integration of scalars at level 1 from 712 to 714 with dt = 2 using RHS created at 714 Done with advance_dycore at level 1 [Level 1 step 357] Advanced 5888 cells Coarse STEP 357 ends. TIME = 714 DT = 2 Timestep time = 0.022086504 seconds. Coarse STEP 358 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371461431 (terrain aware) 1.371461431 (terrain unaware) Anelastic dt at level 0 would be: 6.354548836 (terrain aware) 6.354548836 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658922186 (terrain aware) 0.2658922186 (terrain unaware) Anelastic dt at level 1 would be: 3.059564485 (terrain aware) 3.059564485 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 358] ADVANCE from elapsed time = 714 to 716 with dt = 2 Making slow rhs at time 714 for fast variables advancing from 714 to 714.6666666667 Fast time integration at level 0 from 714 to 714.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 714 to 714.6666666667 with dt = 0.6666666666666 using RHS created at 714 Making slow rhs at time 714.6666666667 for fast variables advancing from 714 to 715 Fast time integration at level 0 from 714 to 714.5 with dt = 0.5 Fast time integration at level 0 from 714.5 to 715 with dt = 0.5 Time integration of scalars at level 0 from 714 to 715 with dt = 1 using RHS created at 714.6666666667 Making slow rhs at time 715 for fast variables advancing from 714 to 716 Fast time integration at level 0 from 714 to 714.5 with dt = 0.5 Fast time integration at level 0 from 714.5 to 715 with dt = 0.5 Fast time integration at level 0 from 715 to 715.5 with dt = 0.5 Fast time integration at level 0 from 715.5 to 716 with dt = 0.5 Time integration of scalars at level 0 from 714 to 716 with dt = 2 using RHS created at 715 Done with advance_dycore at level 0 [Level 0 step 358] Advanced 4096 cells [Level 1 step 358] ADVANCE from elapsed time = 714 to 716 with dt = 2 Making slow rhs at time 714 for fast variables advancing from 714 to 716 No-substepping time integration at level 1 to 716 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004322770983 0.002231516642 and volume-weighted sum -40775.40625 Subtracting -6.925170965e-06 from rhs in subdomain 0 Sum after subtraction -0.05355104804 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004392022674 MLMG: Initial residual (resid0) = 0.0004392022674 MLMG: Final Iter. 1 resid, resid/bnorm = 9.4213392e-06, 0.0214510262 MLMG: Timers: Solve = 0.000896527 Iter = 0.000585688 Bottom = 0.00025725 Time in solve 0.001221499 Max/L2 norm of divergence after solve at level 1 : 1.634610817e-05 0.0005362372613 and volume-weighted sum -40775.44922 Time integration of scalars at level 1 from 714 to 716 with dt = 2 using RHS created at 714 Making slow rhs at time 716 for fast variables advancing from 714 to 716 No-substepping time integration at level 1 to 716 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004462543875 0.002207985381 and volume-weighted sum -40775.40234 Subtracting -6.925170055e-06 from rhs in subdomain 0 Sum after subtraction -0.05913898349 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004531795566 MLMG: Initial residual (resid0) = 0.0004531795566 MLMG: Final Iter. 1 resid, resid/bnorm = 8.756534953e-06, 0.01932244003 MLMG: Timers: Solve = 0.000866394 Iter = 0.000573238 Bottom = 0.000239351 Time in solve 0.001191901 Max/L2 norm of divergence after solve at level 1 : 1.471117139e-05 0.0005339597119 and volume-weighted sum -40775.44141 Time integration of scalars at level 1 from 714 to 716 with dt = 2 using RHS created at 716 Done with advance_dycore at level 1 [Level 1 step 358] Advanced 5888 cells Coarse STEP 358 ends. TIME = 716 DT = 2 Timestep time = 0.021618393 seconds. Coarse STEP 359 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371580044 (terrain aware) 1.371580044 (terrain unaware) Anelastic dt at level 0 would be: 6.358039284 (terrain aware) 6.358039284 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658742813 (terrain aware) 0.2658742813 (terrain unaware) Anelastic dt at level 1 would be: 3.059699192 (terrain aware) 3.059699192 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 359] ADVANCE from elapsed time = 716 to 718 with dt = 2 Making slow rhs at time 716 for fast variables advancing from 716 to 716.6666666667 Fast time integration at level 0 from 716 to 716.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 716 to 716.6666666667 with dt = 0.6666666666666 using RHS created at 716 Making slow rhs at time 716.6666666667 for fast variables advancing from 716 to 717 Fast time integration at level 0 from 716 to 716.5 with dt = 0.5 Fast time integration at level 0 from 716.5 to 717 with dt = 0.5 Time integration of scalars at level 0 from 716 to 717 with dt = 1 using RHS created at 716.6666666667 Making slow rhs at time 717 for fast variables advancing from 716 to 718 Fast time integration at level 0 from 716 to 716.5 with dt = 0.5 Fast time integration at level 0 from 716.5 to 717 with dt = 0.5 Fast time integration at level 0 from 717 to 717.5 with dt = 0.5 Fast time integration at level 0 from 717.5 to 718 with dt = 0.5 Time integration of scalars at level 0 from 716 to 718 with dt = 2 using RHS created at 717 Done with advance_dycore at level 0 [Level 0 step 359] Advanced 4096 cells [Level 1 step 359] ADVANCE from elapsed time = 716 to 718 with dt = 2 Making slow rhs at time 716 for fast variables advancing from 716 to 718 No-substepping time integration at level 1 to 718 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000460723415 0.002247248776 and volume-weighted sum -40270.64844 Subtracting -6.839444268e-06 from rhs in subdomain 0 Sum after subtraction 0.02444721758 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004675628734 MLMG: Initial residual (resid0) = 0.0004675628734 MLMG: Final Iter. 2 resid, resid/bnorm = 1.46806974e-06, 0.00313983392 MLMG: Timers: Solve = 0.001449562 Iter = 0.001151447 Bottom = 0.000555132 Time in solve 0.001783767 Max/L2 norm of divergence after solve at level 1 : 8.273171261e-06 0.0005248449161 and volume-weighted sum -40270.64844 Time integration of scalars at level 1 from 716 to 718 with dt = 2 using RHS created at 716 Making slow rhs at time 718 for fast variables advancing from 716 to 718 No-substepping time integration at level 1 to 718 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004543494433 0.002220535418 and volume-weighted sum -40270.66016 Subtracting -6.839446542e-06 from rhs in subdomain 0 Sum after subtraction -0.06891787052 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004611889017 MLMG: Initial residual (resid0) = 0.0004611889017 MLMG: Final Iter. 1 resid, resid/bnorm = 8.240764146e-06, 0.01786852255 MLMG: Timers: Solve = 0.000900307 Iter = 0.000588669 Bottom = 0.000258101 Time in solve 0.001222677 Max/L2 norm of divergence after solve at level 1 : 1.454912126e-05 0.000527520373 and volume-weighted sum -40270.63281 Time integration of scalars at level 1 from 716 to 718 with dt = 2 using RHS created at 718 Done with advance_dycore at level 1 [Level 1 step 359] Advanced 5888 cells Coarse STEP 359 ends. TIME = 718 DT = 2 Timestep time = 0.022301025 seconds. Coarse STEP 360 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371795515 (terrain aware) 1.371795515 (terrain unaware) Anelastic dt at level 0 would be: 6.363619471 (terrain aware) 6.363619471 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658629564 (terrain aware) 0.2658629564 (terrain unaware) Anelastic dt at level 1 would be: 3.060933902 (terrain aware) 3.060933902 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 360] ADVANCE from elapsed time = 718 to 720 with dt = 2 Making slow rhs at time 718 for fast variables advancing from 718 to 718.6666666667 Fast time integration at level 0 from 718 to 718.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 718 to 718.6666666667 with dt = 0.6666666666666 using RHS created at 718 Making slow rhs at time 718.6666666667 for fast variables advancing from 718 to 719 Fast time integration at level 0 from 718 to 718.5 with dt = 0.5 Fast time integration at level 0 from 718.5 to 719 with dt = 0.5 Time integration of scalars at level 0 from 718 to 719 with dt = 1 using RHS created at 718.6666666667 Making slow rhs at time 719 for fast variables advancing from 718 to 720 Fast time integration at level 0 from 718 to 718.5 with dt = 0.5 Fast time integration at level 0 from 718.5 to 719 with dt = 0.5 Fast time integration at level 0 from 719 to 719.5 with dt = 0.5 Fast time integration at level 0 from 719.5 to 720 with dt = 0.5 Time integration of scalars at level 0 from 718 to 720 with dt = 2 using RHS created at 719 Done with advance_dycore at level 0 [Level 0 step 360] Advanced 4096 cells [Level 1 step 360] ADVANCE from elapsed time = 718 to 720 with dt = 2 Making slow rhs at time 718 for fast variables advancing from 718 to 720 No-substepping time integration at level 1 to 720 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004010014236 0.002231593709 and volume-weighted sum -34620.46094 Subtracting -5.87983368e-06 from rhs in subdomain 0 Sum after subtraction 0.004190951586 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004068812705 MLMG: Initial residual (resid0) = 0.0004068812705 MLMG: Final Iter. 1 resid, resid/bnorm = 8.669077943e-06, 0.02130616084 MLMG: Timers: Solve = 0.000906209 Iter = 0.000612332 Bottom = 0.000273736 Time in solve 0.001230347 Max/L2 norm of divergence after solve at level 1 : 1.454842277e-05 0.0004570523161 and volume-weighted sum -34620.47266 Time integration of scalars at level 1 from 718 to 720 with dt = 2 using RHS created at 718 Making slow rhs at time 720 for fast variables advancing from 718 to 720 No-substepping time integration at level 1 to 720 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003743544221 0.002180975629 and volume-weighted sum -34620.48047 Subtracting -5.879836863e-06 from rhs in subdomain 0 Sum after subtraction 0.02584420145 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000380234269 MLMG: Initial residual (resid0) = 0.000380234269 MLMG: Final Iter. 1 resid, resid/bnorm = 8.495022485e-06, 0.0223415494 MLMG: Timers: Solve = 0.000883743 Iter = 0.000575815 Bottom = 0.000243353 Time in solve 0.00121607 Max/L2 norm of divergence after solve at level 1 : 1.318193972e-05 0.0004542107636 and volume-weighted sum -34620.5 Time integration of scalars at level 1 from 718 to 720 with dt = 2 using RHS created at 720 Done with advance_dycore at level 1 [Level 1 step 360] Advanced 5888 cells Coarse STEP 360 ends. TIME = 720 DT = 2 Timestep time = 0.021927695 seconds. Coarse STEP 361 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.37210233 (terrain aware) 1.37210233 (terrain unaware) Anelastic dt at level 0 would be: 6.371201778 (terrain aware) 6.371201778 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265847068 (terrain aware) 0.265847068 (terrain unaware) Anelastic dt at level 1 would be: 3.062621011 (terrain aware) 3.062621011 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 361] ADVANCE from elapsed time = 720 to 722 with dt = 2 Making slow rhs at time 720 for fast variables advancing from 720 to 720.6666666667 Fast time integration at level 0 from 720 to 720.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 720 to 720.6666666667 with dt = 0.6666666666666 using RHS created at 720 Making slow rhs at time 720.6666666667 for fast variables advancing from 720 to 721 Fast time integration at level 0 from 720 to 720.5 with dt = 0.5 Fast time integration at level 0 from 720.5 to 721 with dt = 0.5 Time integration of scalars at level 0 from 720 to 721 with dt = 1 using RHS created at 720.6666666667 Making slow rhs at time 721 for fast variables advancing from 720 to 722 Fast time integration at level 0 from 720 to 720.5 with dt = 0.5 Fast time integration at level 0 from 720.5 to 721 with dt = 0.5 Fast time integration at level 0 from 721 to 721.5 with dt = 0.5 Fast time integration at level 0 from 721.5 to 722 with dt = 0.5 Time integration of scalars at level 0 from 720 to 722 with dt = 2 using RHS created at 721 Done with advance_dycore at level 0 [Level 0 step 361] Advanced 4096 cells [Level 1 step 361] ADVANCE from elapsed time = 720 to 722 with dt = 2 Making slow rhs at time 720 for fast variables advancing from 720 to 722 No-substepping time integration at level 1 to 722 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004305578768 0.002186293015 and volume-weighted sum -24154.71875 Subtracting -4.102364073e-06 from rhs in subdomain 0 Sum after subtraction 0.1455191523 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004346602072 MLMG: Initial residual (resid0) = 0.0004346602072 MLMG: Final Iter. 1 resid, resid/bnorm = 8.720846381e-06, 0.02006359585 MLMG: Timers: Solve = 0.000924872 Iter = 0.000630813 Bottom = 0.000296419 Time in solve 0.001253209 Max/L2 norm of divergence after solve at level 1 : 1.109391451e-05 0.000320857187 and volume-weighted sum -24154.69336 Time integration of scalars at level 1 from 720 to 722 with dt = 2 using RHS created at 720 Making slow rhs at time 722 for fast variables advancing from 720 to 722 No-substepping time integration at level 1 to 722 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004459302872 0.002151598688 and volume-weighted sum -24154.66602 Subtracting -4.102354978e-06 from rhs in subdomain 0 Sum after subtraction -0.162050128 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004500326759 MLMG: Initial residual (resid0) = 0.0004500326759 MLMG: Final Iter. 1 resid, resid/bnorm = 8.934730431e-06, 0.01985351555 MLMG: Timers: Solve = 0.000903569 Iter = 0.000601139 Bottom = 0.000269142 Time in solve 0.001226523 Max/L2 norm of divergence after solve at level 1 : 1.17495656e-05 0.0003190687858 and volume-weighted sum -24154.69336 Time integration of scalars at level 1 from 720 to 722 with dt = 2 using RHS created at 722 Done with advance_dycore at level 1 [Level 1 step 361] Advanced 5888 cells Coarse STEP 361 ends. TIME = 722 DT = 2 Timestep time = 0.022592769 seconds. Coarse STEP 362 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372495422 (terrain aware) 1.372495422 (terrain unaware) Anelastic dt at level 0 would be: 6.380650902 (terrain aware) 6.380650902 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658318689 (terrain aware) 0.2658318689 (terrain unaware) Anelastic dt at level 1 would be: 3.061098411 (terrain aware) 3.061098411 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 362] ADVANCE from elapsed time = 722 to 724 with dt = 2 Making slow rhs at time 722 for fast variables advancing from 722 to 722.6666666667 Fast time integration at level 0 from 722 to 722.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 722 to 722.6666666667 with dt = 0.6666666666666 using RHS created at 722 Making slow rhs at time 722.6666666667 for fast variables advancing from 722 to 723 Fast time integration at level 0 from 722 to 722.5 with dt = 0.5 Fast time integration at level 0 from 722.5 to 723 with dt = 0.5 Time integration of scalars at level 0 from 722 to 723 with dt = 1 using RHS created at 722.6666666667 Making slow rhs at time 723 for fast variables advancing from 722 to 724 Fast time integration at level 0 from 722 to 722.5 with dt = 0.5 Fast time integration at level 0 from 722.5 to 723 with dt = 0.5 Fast time integration at level 0 from 723 to 723.5 with dt = 0.5 Fast time integration at level 0 from 723.5 to 724 with dt = 0.5 Time integration of scalars at level 0 from 722 to 724 with dt = 2 using RHS created at 723 Done with advance_dycore at level 0 [Level 0 step 362] Advanced 4096 cells [Level 1 step 362] ADVANCE from elapsed time = 722 to 724 with dt = 2 Making slow rhs at time 722 for fast variables advancing from 722 to 724 No-substepping time integration at level 1 to 724 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004668496549 0.002138959011 and volume-weighted sum -10381.67285 Subtracting -1.763191676e-06 from rhs in subdomain 0 Sum after subtraction 0.01746229827 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004686128523 MLMG: Initial residual (resid0) = 0.0004686128523 MLMG: Final Iter. 1 resid, resid/bnorm = 8.903436537e-06, 0.01899955608 MLMG: Timers: Solve = 0.00079067 Iter = 0.000536154 Bottom = 0.000200195 Time in solve 0.00115314 Max/L2 norm of divergence after solve at level 1 : 9.572133422e-06 0.0001465726236 and volume-weighted sum -10381.67773 Time integration of scalars at level 1 from 722 to 724 with dt = 2 using RHS created at 722 Making slow rhs at time 724 for fast variables advancing from 722 to 724 No-substepping time integration at level 1 to 724 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004579480737 0.00212797313 and volume-weighted sum -10381.64648 Subtracting -1.763187242e-06 from rhs in subdomain 0 Sum after subtraction 0.07194466889 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004597112711 MLMG: Initial residual (resid0) = 0.0004597112711 MLMG: Final Iter. 1 resid, resid/bnorm = 8.929018804e-06, 0.0194231011 MLMG: Timers: Solve = 0.000874096 Iter = 0.000564889 Bottom = 0.000233846 Time in solve 0.001205554 Max/L2 norm of divergence after solve at level 1 : 9.693205357e-06 0.0001449052361 and volume-weighted sum -10381.68848 Time integration of scalars at level 1 from 722 to 724 with dt = 2 using RHS created at 724 Done with advance_dycore at level 1 [Level 1 step 362] Advanced 5888 cells Coarse STEP 362 ends. TIME = 724 DT = 2 Timestep time = 0.021574827 seconds. Coarse STEP 363 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372966597 (terrain aware) 1.372966597 (terrain unaware) Anelastic dt at level 0 would be: 6.391829753 (terrain aware) 6.391829753 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2658034635 (terrain aware) 0.2658034635 (terrain unaware) Anelastic dt at level 1 would be: 3.06090857 (terrain aware) 3.06090857 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 363] ADVANCE from elapsed time = 724 to 726 with dt = 2 Making slow rhs at time 724 for fast variables advancing from 724 to 724.6666666667 Fast time integration at level 0 from 724 to 724.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 724 to 724.6666666667 with dt = 0.6666666666666 using RHS created at 724 Making slow rhs at time 724.6666666667 for fast variables advancing from 724 to 725 Fast time integration at level 0 from 724 to 724.5 with dt = 0.5 Fast time integration at level 0 from 724.5 to 725 with dt = 0.5 Time integration of scalars at level 0 from 724 to 725 with dt = 1 using RHS created at 724.6666666667 Making slow rhs at time 725 for fast variables advancing from 724 to 726 Fast time integration at level 0 from 724 to 724.5 with dt = 0.5 Fast time integration at level 0 from 724.5 to 725 with dt = 0.5 Fast time integration at level 0 from 725 to 725.5 with dt = 0.5 Fast time integration at level 0 from 725.5 to 726 with dt = 0.5 Time integration of scalars at level 0 from 724 to 726 with dt = 2 using RHS created at 725 Done with advance_dycore at level 0 [Level 0 step 363] Advanced 4096 cells [Level 1 step 363] ADVANCE from elapsed time = 724 to 726 with dt = 2 Making slow rhs at time 724 for fast variables advancing from 724 to 726 No-substepping time integration at level 1 to 726 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000415192917 0.002125029685 and volume-weighted sum 4731.595703 Subtracting 8.035997894e-07 from rhs in subdomain 0 Sum after subtraction 0.1131556928 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000414389302 MLMG: Initial residual (resid0) = 0.000414389302 MLMG: Final Iter. 1 resid, resid/bnorm = 9.039984434e-06, 0.02181519754 MLMG: Timers: Solve = 0.000899228 Iter = 0.000605608 Bottom = 0.000268292 Time in solve 0.001225785 Max/L2 norm of divergence after solve at level 1 : 9.842216969e-06 8.806853293e-05 and volume-weighted sum 4731.640625 Time integration of scalars at level 1 from 724 to 726 with dt = 2 using RHS created at 724 Making slow rhs at time 726 for fast variables advancing from 724 to 726 No-substepping time integration at level 1 to 726 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003859233111 0.002120315097 and volume-weighted sum 4731.607422 Subtracting 8.036017789e-07 from rhs in subdomain 0 Sum after subtraction 0.1266598701 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000385119667 MLMG: Initial residual (resid0) = 0.000385119667 MLMG: Final Iter. 1 resid, resid/bnorm = 8.454800991e-06, 0.02195369825 MLMG: Timers: Solve = 0.000862727 Iter = 0.000561122 Bottom = 0.000230787 Time in solve 0.001188753 Max/L2 norm of divergence after solve at level 1 : 9.253621101e-06 8.060657274e-05 and volume-weighted sum 4731.597168 Time integration of scalars at level 1 from 724 to 726 with dt = 2 using RHS created at 726 Done with advance_dycore at level 1 [Level 1 step 363] Advanced 5888 cells Coarse STEP 363 ends. TIME = 726 DT = 2 Timestep time = 0.022070415 seconds. Coarse STEP 364 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373509595 (terrain aware) 1.373509595 (terrain unaware) Anelastic dt at level 0 would be: 6.404583955 (terrain aware) 6.404583955 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2657710349 (terrain aware) 0.2657710349 (terrain unaware) Anelastic dt at level 1 would be: 3.062096491 (terrain aware) 3.062096491 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 364] ADVANCE from elapsed time = 726 to 728 with dt = 2 Making slow rhs at time 726 for fast variables advancing from 726 to 726.6666666667 Fast time integration at level 0 from 726 to 726.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 726 to 726.6666666667 with dt = 0.6666666666666 using RHS created at 726 Making slow rhs at time 726.6666666667 for fast variables advancing from 726 to 727 Fast time integration at level 0 from 726 to 726.5 with dt = 0.5 Fast time integration at level 0 from 726.5 to 727 with dt = 0.5 Time integration of scalars at level 0 from 726 to 727 with dt = 1 using RHS created at 726.6666666667 Making slow rhs at time 727 for fast variables advancing from 726 to 728 Fast time integration at level 0 from 726 to 726.5 with dt = 0.5 Fast time integration at level 0 from 726.5 to 727 with dt = 0.5 Fast time integration at level 0 from 727 to 727.5 with dt = 0.5 Fast time integration at level 0 from 727.5 to 728 with dt = 0.5 Time integration of scalars at level 0 from 726 to 728 with dt = 2 using RHS created at 727 Done with advance_dycore at level 0 [Level 0 step 364] Advanced 4096 cells [Level 1 step 364] ADVANCE from elapsed time = 726 to 728 with dt = 2 Making slow rhs at time 726 for fast variables advancing from 726 to 728 No-substepping time integration at level 1 to 728 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004276894033 0.002144304104 and volume-weighted sum 19174.14062 Subtracting 3.256477612e-06 from rhs in subdomain 0 Sum after subtraction 0.1388834715 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004244328884 MLMG: Initial residual (resid0) = 0.0004244328884 MLMG: Final Iter. 2 resid, resid/bnorm = 1.427887582e-06, 0.003364224685 MLMG: Timers: Solve = 0.001409842 Iter = 0.00111095 Bottom = 0.000515724 Time in solve 0.001736083 Max/L2 norm of divergence after solve at level 1 : 4.624249414e-06 0.0002499380207 and volume-weighted sum 19174.17969 Time integration of scalars at level 1 from 726 to 728 with dt = 2 using RHS created at 726 Making slow rhs at time 728 for fast variables advancing from 726 to 728 No-substepping time integration at level 1 to 728 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004466623068 0.002150414512 and volume-weighted sum 19174.14453 Subtracting 3.256478294e-06 from rhs in subdomain 0 Sum after subtraction 0.1506414264 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004434057919 MLMG: Initial residual (resid0) = 0.0004434057919 MLMG: Final Iter. 1 resid, resid/bnorm = 8.528106264e-06, 0.0192331858 MLMG: Timers: Solve = 0.000864309 Iter = 0.000558679 Bottom = 0.000230075 Time in solve 0.001189948 Max/L2 norm of divergence after solve at level 1 : 1.162104309e-05 0.0002556620457 and volume-weighted sum 19174.16992 Time integration of scalars at level 1 from 726 to 728 with dt = 2 using RHS created at 728 Done with advance_dycore at level 1 [Level 1 step 364] Advanced 5888 cells Coarse STEP 364 ends. TIME = 728 DT = 2 Timestep time = 0.022220043 seconds. Coarse STEP 365 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373785416 (terrain aware) 1.373785416 (terrain unaware) Anelastic dt at level 0 would be: 6.40932014 (terrain aware) 6.40932014 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2657466901 (terrain aware) 0.2657466901 (terrain unaware) Anelastic dt at level 1 would be: 3.064682736 (terrain aware) 3.064682736 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 365] ADVANCE from elapsed time = 728 to 730 with dt = 2 Making slow rhs at time 728 for fast variables advancing from 728 to 728.6666666667 Fast time integration at level 0 from 728 to 728.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 728 to 728.6666666667 with dt = 0.6666666666666 using RHS created at 728 Making slow rhs at time 728.6666666667 for fast variables advancing from 728 to 729 Fast time integration at level 0 from 728 to 728.5 with dt = 0.5 Fast time integration at level 0 from 728.5 to 729 with dt = 0.5 Time integration of scalars at level 0 from 728 to 729 with dt = 1 using RHS created at 728.6666666667 Making slow rhs at time 729 for fast variables advancing from 728 to 730 Fast time integration at level 0 from 728 to 728.5 with dt = 0.5 Fast time integration at level 0 from 728.5 to 729 with dt = 0.5 Fast time integration at level 0 from 729 to 729.5 with dt = 0.5 Fast time integration at level 0 from 729.5 to 730 with dt = 0.5 Time integration of scalars at level 0 from 728 to 730 with dt = 2 using RHS created at 729 Done with advance_dycore at level 0 [Level 0 step 365] Advanced 4096 cells [Level 1 step 365] ADVANCE from elapsed time = 728 to 730 with dt = 2 Making slow rhs at time 728 for fast variables advancing from 728 to 730 No-substepping time integration at level 1 to 730 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000468628481 0.002177130664 and volume-weighted sum 31400.33789 Subtracting 5.33293769e-06 from rhs in subdomain 0 Sum after subtraction -0.1000007614 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004632955824 MLMG: Initial residual (resid0) = 0.0004632955824 MLMG: Final Iter. 2 resid, resid/bnorm = 1.395037771e-06, 0.003011118155 MLMG: Timers: Solve = 0.001429597 Iter = 0.00113495 Bottom = 0.000546689 Time in solve 0.001754775 Max/L2 norm of divergence after solve at level 1 : 6.668502465e-06 0.0004092492745 and volume-weighted sum 31400.28516 Time integration of scalars at level 1 from 728 to 730 with dt = 2 using RHS created at 728 Making slow rhs at time 730 for fast variables advancing from 728 to 730 No-substepping time integration at level 1 to 730 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004642754793 0.002170480555 and volume-weighted sum 31400.29297 Subtracting 5.332930414e-06 from rhs in subdomain 0 Sum after subtraction -0.1438893378 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004589425807 MLMG: Initial residual (resid0) = 0.0004589425807 MLMG: Final Iter. 1 resid, resid/bnorm = 8.507377061e-06, 0.01853690855 MLMG: Timers: Solve = 0.000888018 Iter = 0.000585596 Bottom = 0.000253503 Time in solve 0.001223309 Max/L2 norm of divergence after solve at level 1 : 1.334398985e-05 0.0004127752327 and volume-weighted sum 31400.31641 Time integration of scalars at level 1 from 728 to 730 with dt = 2 using RHS created at 730 Done with advance_dycore at level 1 [Level 1 step 365] Advanced 5888 cells Coarse STEP 365 ends. TIME = 730 DT = 2 Timestep time = 0.02213037 seconds. Coarse STEP 366 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373681704 (terrain aware) 1.373681704 (terrain unaware) Anelastic dt at level 0 would be: 6.407675648 (terrain aware) 6.407675648 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2657305596 (terrain aware) 0.2657305596 (terrain unaware) Anelastic dt at level 1 would be: 3.065006687 (terrain aware) 3.065006687 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 366] ADVANCE from elapsed time = 730 to 732 with dt = 2 Making slow rhs at time 730 for fast variables advancing from 730 to 730.6666666667 Fast time integration at level 0 from 730 to 730.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 730 to 730.6666666667 with dt = 0.6666666666666 using RHS created at 730 Making slow rhs at time 730.6666666667 for fast variables advancing from 730 to 731 Fast time integration at level 0 from 730 to 730.5 with dt = 0.5 Fast time integration at level 0 from 730.5 to 731 with dt = 0.5 Time integration of scalars at level 0 from 730 to 731 with dt = 1 using RHS created at 730.6666666667 Making slow rhs at time 731 for fast variables advancing from 730 to 732 Fast time integration at level 0 from 730 to 730.5 with dt = 0.5 Fast time integration at level 0 from 730.5 to 731 with dt = 0.5 Fast time integration at level 0 from 731 to 731.5 with dt = 0.5 Fast time integration at level 0 from 731.5 to 732 with dt = 0.5 Time integration of scalars at level 0 from 730 to 732 with dt = 2 using RHS created at 731 Done with advance_dycore at level 0 [Level 0 step 366] Advanced 4096 cells [Level 1 step 366] ADVANCE from elapsed time = 730 to 732 with dt = 2 Making slow rhs at time 730 for fast variables advancing from 730 to 732 No-substepping time integration at level 1 to 732 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004228688776 0.002211193088 and volume-weighted sum 40115.92188 Subtracting 6.813166237e-06 from rhs in subdomain 0 Sum after subtraction 0.01199077815 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004160557 MLMG: Initial residual (resid0) = 0.0004160557 MLMG: Final Iter. 1 resid, resid/bnorm = 9.916584531e-06, 0.02383475192 MLMG: Timers: Solve = 0.000902929 Iter = 0.000595913 Bottom = 0.000265107 Time in solve 0.001231213 Max/L2 norm of divergence after solve at level 1 : 1.50417909e-05 0.0005287204403 and volume-weighted sum 40115.91406 Time integration of scalars at level 1 from 730 to 732 with dt = 2 using RHS created at 730 Making slow rhs at time 732 for fast variables advancing from 730 to 732 No-substepping time integration at level 1 to 732 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003941711038 0.002170889173 and volume-weighted sum 40115.91406 Subtracting 6.813164873e-06 from rhs in subdomain 0 Sum after subtraction -0.02584420145 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003873579262 MLMG: Initial residual (resid0) = 0.0003873579262 MLMG: Final Iter. 1 resid, resid/bnorm = 8.266106306e-06, 0.0213397108 MLMG: Timers: Solve = 0.000871204 Iter = 0.000574729 Bottom = 0.000242643 Time in solve 0.001203416 Max/L2 norm of divergence after solve at level 1 : 1.508463174e-05 0.0005254053394 and volume-weighted sum 40115.88672 Time integration of scalars at level 1 from 730 to 732 with dt = 2 using RHS created at 732 Done with advance_dycore at level 1 [Level 1 step 366] Advanced 5888 cells Coarse STEP 366 ends. TIME = 732 DT = 2 Timestep time = 0.022052326 seconds. Coarse STEP 367 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373654882 (terrain aware) 1.373654882 (terrain unaware) Anelastic dt at level 0 would be: 6.407668495 (terrain aware) 6.407668495 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265722662 (terrain aware) 0.265722662 (terrain unaware) Anelastic dt at level 1 would be: 3.065335109 (terrain aware) 3.065335109 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 367] ADVANCE from elapsed time = 732 to 734 with dt = 2 Making slow rhs at time 732 for fast variables advancing from 732 to 732.6666666667 Fast time integration at level 0 from 732 to 732.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 732 to 732.6666666667 with dt = 0.6666666666666 using RHS created at 732 Making slow rhs at time 732.6666666667 for fast variables advancing from 732 to 733 Fast time integration at level 0 from 732 to 732.5 with dt = 0.5 Fast time integration at level 0 from 732.5 to 733 with dt = 0.5 Time integration of scalars at level 0 from 732 to 733 with dt = 1 using RHS created at 732.6666666667 Making slow rhs at time 733 for fast variables advancing from 732 to 734 Fast time integration at level 0 from 732 to 732.5 with dt = 0.5 Fast time integration at level 0 from 732.5 to 733 with dt = 0.5 Fast time integration at level 0 from 733 to 733.5 with dt = 0.5 Fast time integration at level 0 from 733.5 to 734 with dt = 0.5 Time integration of scalars at level 0 from 732 to 734 with dt = 2 using RHS created at 733 Done with advance_dycore at level 0 [Level 0 step 367] Advanced 4096 cells [Level 1 step 367] ADVANCE from elapsed time = 732 to 734 with dt = 2 Making slow rhs at time 732 for fast variables advancing from 732 to 734 No-substepping time integration at level 1 to 734 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004252847284 0.002235637512 and volume-weighted sum 44495.83203 Subtracting 7.557036497e-06 from rhs in subdomain 0 Sum after subtraction 0.1046573743 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004177276569 MLMG: Initial residual (resid0) = 0.0004177276569 MLMG: Final Iter. 1 resid, resid/bnorm = 9.891326044e-06, 0.02367888764 MLMG: Timers: Solve = 0.000913461 Iter = 0.000602594 Bottom = 0.000273207 Time in solve 0.001234105 Max/L2 norm of divergence after solve at level 1 : 1.586880535e-05 0.0005853688344 and volume-weighted sum 44495.82812 Time integration of scalars at level 1 from 732 to 734 with dt = 2 using RHS created at 732 Making slow rhs at time 734 for fast variables advancing from 732 to 734 No-substepping time integration at level 1 to 734 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004423689097 0.002181715099 and volume-weighted sum 44495.875 Subtracting 7.557043773e-06 from rhs in subdomain 0 Sum after subtraction -0.03608874977 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004348118673 MLMG: Initial residual (resid0) = 0.0004348118673 MLMG: Final Iter. 1 resid, resid/bnorm = 8.770533896e-06, 0.02017087117 MLMG: Timers: Solve = 0.000885369 Iter = 0.000590231 Bottom = 0.000239917 Time in solve 0.001217006 Max/L2 norm of divergence after solve at level 1 : 1.632142812e-05 0.0005822511739 and volume-weighted sum 44495.84375 Time integration of scalars at level 1 from 732 to 734 with dt = 2 using RHS created at 734 Done with advance_dycore at level 1 [Level 1 step 367] Advanced 5888 cells Coarse STEP 367 ends. TIME = 734 DT = 2 Timestep time = 0.021834007 seconds. Coarse STEP 368 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.3737048 (terrain aware) 1.3737048 (terrain unaware) Anelastic dt at level 0 would be: 6.409287357 (terrain aware) 6.409287357 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656944056 (terrain aware) 0.2656944056 (terrain unaware) Anelastic dt at level 1 would be: 3.067106857 (terrain aware) 3.067106857 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 368] ADVANCE from elapsed time = 734 to 736 with dt = 2 Making slow rhs at time 734 for fast variables advancing from 734 to 734.6666666667 Fast time integration at level 0 from 734 to 734.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 734 to 734.6666666667 with dt = 0.6666666666666 using RHS created at 734 Making slow rhs at time 734.6666666667 for fast variables advancing from 734 to 735 Fast time integration at level 0 from 734 to 734.5 with dt = 0.5 Fast time integration at level 0 from 734.5 to 735 with dt = 0.5 Time integration of scalars at level 0 from 734 to 735 with dt = 1 using RHS created at 734.6666666667 Making slow rhs at time 735 for fast variables advancing from 734 to 736 Fast time integration at level 0 from 734 to 734.5 with dt = 0.5 Fast time integration at level 0 from 734.5 to 735 with dt = 0.5 Fast time integration at level 0 from 735 to 735.5 with dt = 0.5 Fast time integration at level 0 from 735.5 to 736 with dt = 0.5 Time integration of scalars at level 0 from 734 to 736 with dt = 2 using RHS created at 735 Done with advance_dycore at level 0 [Level 0 step 368] Advanced 4096 cells [Level 1 step 368] ADVANCE from elapsed time = 734 to 736 with dt = 2 Making slow rhs at time 734 for fast variables advancing from 734 to 736 No-substepping time integration at level 1 to 736 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000471053645 0.002237574197 and volume-weighted sum 44034.37109 Subtracting 7.47866352e-06 from rhs in subdomain 0 Sum after subtraction 0.01676380634 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004635749792 MLMG: Initial residual (resid0) = 0.0004635749792 MLMG: Final Iter. 1 resid, resid/bnorm = 9.307696018e-06, 0.02007808164 MLMG: Timers: Solve = 0.00090217 Iter = 0.000601224 Bottom = 0.000267405 Time in solve 0.001234106 Max/L2 norm of divergence after solve at level 1 : 1.576170325e-05 0.0005796486512 and volume-weighted sum 44034.38281 Time integration of scalars at level 1 from 734 to 736 with dt = 2 using RHS created at 734 Making slow rhs at time 736 for fast variables advancing from 734 to 736 No-substepping time integration at level 1 to 736 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004649423063 0.002175448695 and volume-weighted sum 44034.39062 Subtracting 7.478666703e-06 from rhs in subdomain 0 Sum after subtraction -0.05168840289 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004574636405 MLMG: Initial residual (resid0) = 0.0004574636405 MLMG: Final Iter. 1 resid, resid/bnorm = 8.847775462e-06, 0.01934093609 MLMG: Timers: Solve = 0.000826276 Iter = 0.000531224 Bottom = 0.000200474 Time in solve 0.00115233 Max/L2 norm of divergence after solve at level 1 : 1.633353531e-05 0.0005763011286 and volume-weighted sum 44034.42188 Time integration of scalars at level 1 from 734 to 736 with dt = 2 using RHS created at 736 Done with advance_dycore at level 1 [Level 1 step 368] Advanced 5888 cells Coarse STEP 368 ends. TIME = 736 DT = 2 Timestep time = 0.021545628 seconds. Coarse STEP 369 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373830119 (terrain aware) 1.373830119 (terrain unaware) Anelastic dt at level 0 would be: 6.412506604 (terrain aware) 6.412506604 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656693717 (terrain aware) 0.2656693717 (terrain unaware) Anelastic dt at level 1 would be: 3.070242061 (terrain aware) 3.070242061 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 369] ADVANCE from elapsed time = 736 to 738 with dt = 2 Making slow rhs at time 736 for fast variables advancing from 736 to 736.6666666667 Fast time integration at level 0 from 736 to 736.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 736 to 736.6666666667 with dt = 0.6666666666666 using RHS created at 736 Making slow rhs at time 736.6666666667 for fast variables advancing from 736 to 737 Fast time integration at level 0 from 736 to 736.5 with dt = 0.5 Fast time integration at level 0 from 736.5 to 737 with dt = 0.5 Time integration of scalars at level 0 from 736 to 737 with dt = 1 using RHS created at 736.6666666667 Making slow rhs at time 737 for fast variables advancing from 736 to 738 Fast time integration at level 0 from 736 to 736.5 with dt = 0.5 Fast time integration at level 0 from 736.5 to 737 with dt = 0.5 Fast time integration at level 0 from 737 to 737.5 with dt = 0.5 Fast time integration at level 0 from 737.5 to 738 with dt = 0.5 Time integration of scalars at level 0 from 736 to 738 with dt = 2 using RHS created at 737 Done with advance_dycore at level 0 [Level 0 step 369] Advanced 4096 cells [Level 1 step 369] ADVANCE from elapsed time = 736 to 738 with dt = 2 Making slow rhs at time 736 for fast variables advancing from 736 to 738 No-substepping time integration at level 1 to 738 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004307795316 0.0022090571 and volume-weighted sum 38854.35938 Subtracting 6.598906111e-06 from rhs in subdomain 0 Sum after subtraction 0.04016328603 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004241806164 MLMG: Initial residual (resid0) = 0.0004241806164 MLMG: Final Iter. 1 resid, resid/bnorm = 9.475406841e-06, 0.02233814262 MLMG: Timers: Solve = 0.000886073 Iter = 0.000584511 Bottom = 0.000253285 Time in solve 0.001230282 Max/L2 norm of divergence after solve at level 1 : 1.514796168e-05 0.0005127024488 and volume-weighted sum 38854.35547 Time integration of scalars at level 1 from 736 to 738 with dt = 2 using RHS created at 736 Making slow rhs at time 738 for fast variables advancing from 736 to 738 No-substepping time integration at level 1 to 738 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004040095955 0.002153892769 and volume-weighted sum 38854.32812 Subtracting 6.598900654e-06 from rhs in subdomain 0 Sum after subtraction 0.04796311259 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003974107094 MLMG: Initial residual (resid0) = 0.0003974107094 MLMG: Final Iter. 1 resid, resid/bnorm = 8.430615708e-06, 0.02121386118 MLMG: Timers: Solve = 0.000831041 Iter = 0.00053459 Bottom = 0.000202456 Time in solve 0.001164707 Max/L2 norm of divergence after solve at level 1 : 1.502968371e-05 0.0005091548664 and volume-weighted sum 38854.35156 Time integration of scalars at level 1 from 736 to 738 with dt = 2 using RHS created at 738 Done with advance_dycore at level 1 [Level 1 step 369] Advanced 5888 cells Coarse STEP 369 ends. TIME = 738 DT = 2 Timestep time = 0.021959742 seconds. Coarse STEP 370 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374028752 (terrain aware) 1.374028752 (terrain unaware) Anelastic dt at level 0 would be: 6.417307758 (terrain aware) 6.417307758 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656511178 (terrain aware) 0.2656511178 (terrain unaware) Anelastic dt at level 1 would be: 3.072861089 (terrain aware) 3.072861089 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 370] ADVANCE from elapsed time = 738 to 740 with dt = 2 Making slow rhs at time 738 for fast variables advancing from 738 to 738.6666666667 Fast time integration at level 0 from 738 to 738.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 738 to 738.6666666667 with dt = 0.6666666666666 using RHS created at 738 Making slow rhs at time 738.6666666667 for fast variables advancing from 738 to 739 Fast time integration at level 0 from 738 to 738.5 with dt = 0.5 Fast time integration at level 0 from 738.5 to 739 with dt = 0.5 Time integration of scalars at level 0 from 738 to 739 with dt = 1 using RHS created at 738.6666666667 Making slow rhs at time 739 for fast variables advancing from 738 to 740 Fast time integration at level 0 from 738 to 738.5 with dt = 0.5 Fast time integration at level 0 from 738.5 to 739 with dt = 0.5 Fast time integration at level 0 from 739 to 739.5 with dt = 0.5 Fast time integration at level 0 from 739.5 to 740 with dt = 0.5 Time integration of scalars at level 0 from 738 to 740 with dt = 2 using RHS created at 739 Done with advance_dycore at level 0 [Level 0 step 370] Advanced 4096 cells [Level 1 step 370] ADVANCE from elapsed time = 738 to 740 with dt = 2 Making slow rhs at time 738 for fast variables advancing from 738 to 740 No-substepping time integration at level 1 to 740 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004080664366 0.002156415954 and volume-weighted sum 29896.00977 Subtracting 5.07744744e-06 from rhs in subdomain 0 Sum after subtraction 0.04493631423 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004029889824 MLMG: Initial residual (resid0) = 0.0004029889824 MLMG: Final Iter. 2 resid, resid/bnorm = 1.232122031e-06, 0.003057458438 MLMG: Timers: Solve = 0.001442368 Iter = 0.001136664 Bottom = 0.000542225 Time in solve 0.00177307 Max/L2 norm of divergence after solve at level 1 : 6.309710443e-06 0.0003896418784 and volume-weighted sum 29896.06836 Time integration of scalars at level 1 from 738 to 740 with dt = 2 using RHS created at 738 Making slow rhs at time 740 for fast variables advancing from 738 to 740 No-substepping time integration at level 1 to 740 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004303120077 0.002144748112 and volume-weighted sum 29896.02148 Subtracting 5.077449259e-06 from rhs in subdomain 0 Sum after subtraction 0.05168840289 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004252345534 MLMG: Initial residual (resid0) = 0.0004252345534 MLMG: Final Iter. 1 resid, resid/bnorm = 8.289690413e-06, 0.0194943957 MLMG: Timers: Solve = 0.000878294 Iter = 0.000581405 Bottom = 0.000249281 Time in solve 0.001218311 Max/L2 norm of divergence after solve at level 1 : 1.336634159e-05 0.0003934151027 and volume-weighted sum 29896.04883 Time integration of scalars at level 1 from 738 to 740 with dt = 2 using RHS created at 740 Done with advance_dycore at level 1 [Level 1 step 370] Advanced 5888 cells Coarse STEP 370 ends. TIME = 740 DT = 2 Timestep time = 0.022241619 seconds. Coarse STEP 371 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374298463 (terrain aware) 1.374298463 (terrain unaware) Anelastic dt at level 0 would be: 6.423692608 (terrain aware) 6.423692608 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656388616 (terrain aware) 0.2656388616 (terrain unaware) Anelastic dt at level 1 would be: 3.073407366 (terrain aware) 3.073407366 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (79,0,47) (0,0,0)) ((80,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (63,0,47) (0,0,0)) ((64,0,0) (95,0,47) (0,0,0)) ((96,0,0) (127,0,47) (0,0,0)) ((128,0,0) (143,0,47) (0,0,0)) ) Building the 3D FFT solver to be used on domain ((0,0,0) (143,0,47) (0,0,0)) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003605288221 0.001494697295 and volume-weighted sum 29238.45898 Subtracting 4.23010124e-06 from rhs in subdomain 0 Sum after subtraction -0.02339947969 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003562987258 MLMG: Initial residual (resid0) = 0.0003562987258 MLMG: Final Iter. 2 resid, resid/bnorm = 1.236136086e-06, 0.003469381249 MLMG: Timers: Solve = 0.001399554 Iter = 0.001141742 Bottom = 0.000147917 Time in solve 0.001897652 Max/L2 norm of divergence after solve at level 1 : 5.464593414e-06 0.0003517450241 and volume-weighted sum 29238.43164 [Level 0 step 371] ADVANCE from elapsed time = 740 to 742 with dt = 2 Making slow rhs at time 740 for fast variables advancing from 740 to 740.6666666667 Fast time integration at level 0 from 740 to 740.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 740 to 740.6666666667 with dt = 0.6666666666666 using RHS created at 740 Making slow rhs at time 740.6666666667 for fast variables advancing from 740 to 741 Fast time integration at level 0 from 740 to 740.5 with dt = 0.5 Fast time integration at level 0 from 740.5 to 741 with dt = 0.5 Time integration of scalars at level 0 from 740 to 741 with dt = 1 using RHS created at 740.6666666667 Making slow rhs at time 741 for fast variables advancing from 740 to 742 Fast time integration at level 0 from 740 to 740.5 with dt = 0.5 Fast time integration at level 0 from 740.5 to 741 with dt = 0.5 Fast time integration at level 0 from 741 to 741.5 with dt = 0.5 Fast time integration at level 0 from 741.5 to 742 with dt = 0.5 Time integration of scalars at level 0 from 740 to 742 with dt = 2 using RHS created at 741 Done with advance_dycore at level 0 [Level 0 step 371] Advanced 4096 cells [Level 1 step 371] ADVANCE from elapsed time = 740 to 742 with dt = 2 Making slow rhs at time 740 for fast variables advancing from 740 to 742 No-substepping time integration at level 1 to 742 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.008150333539 0.08095946163 and volume-weighted sum 20454.68945 Subtracting 2.959301128e-06 from rhs in subdomain 0 Sum after subtraction -0.2384185791 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.008153293282 MLMG: Initial residual (resid0) = 0.008153293282 MLMG: Final Iter. 3 resid, resid/bnorm = 1.727370545e-06, 0.0002118616976 MLMG: Timers: Solve = 0.001512622 Iter = 0.001309932 Bottom = 0.000116293 Time in solve 0.002143128 Max/L2 norm of divergence after solve at level 1 : 4.602828994e-06 0.0002462264965 and volume-weighted sum 20454.59766 Time integration of scalars at level 1 from 740 to 742 with dt = 2 using RHS created at 740 Making slow rhs at time 742 for fast variables advancing from 740 to 742 No-substepping time integration at level 1 to 742 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000459080562 0.002117893659 and volume-weighted sum 20454.60156 Subtracting 2.959288395e-06 from rhs in subdomain 0 Sum after subtraction 0.04144385457 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004561212845 MLMG: Initial residual (resid0) = 0.0004561212845 MLMG: Final Iter. 1 resid, resid/bnorm = 8.505427104e-06, 0.01864729263 MLMG: Timers: Solve = 0.000699708 Iter = 0.000483153 Bottom = 4.4085e-05 Time in solve 0.001186419 Max/L2 norm of divergence after solve at level 1 : 1.124618575e-05 0.0002520269481 and volume-weighted sum 20454.58203 Time integration of scalars at level 1 from 740 to 742 with dt = 2 using RHS created at 742 Done with advance_dycore at level 1 [Level 1 step 371] Advanced 6912 cells Coarse STEP 371 ends. TIME = 742 DT = 2 Timestep time = 0.036798078 seconds. Coarse STEP 372 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374637613 (terrain aware) 1.374637613 (terrain unaware) Anelastic dt at level 0 would be: 6.431659364 (terrain aware) 6.431659364 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2656261583 (terrain aware) 0.2656261583 (terrain unaware) Anelastic dt at level 1 would be: 3.075098052 (terrain aware) 3.075098052 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 372] ADVANCE from elapsed time = 742 to 744 with dt = 2 Making slow rhs at time 742 for fast variables advancing from 742 to 742.6666666667 Fast time integration at level 0 from 742 to 742.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 742 to 742.6666666667 with dt = 0.6666666666666 using RHS created at 742 Making slow rhs at time 742.6666666667 for fast variables advancing from 742 to 743 Fast time integration at level 0 from 742 to 742.5 with dt = 0.5 Fast time integration at level 0 from 742.5 to 743 with dt = 0.5 Time integration of scalars at level 0 from 742 to 743 with dt = 1 using RHS created at 742.6666666667 Making slow rhs at time 743 for fast variables advancing from 742 to 744 Fast time integration at level 0 from 742 to 742.5 with dt = 0.5 Fast time integration at level 0 from 742.5 to 743 with dt = 0.5 Fast time integration at level 0 from 743 to 743.5 with dt = 0.5 Fast time integration at level 0 from 743.5 to 744 with dt = 0.5 Time integration of scalars at level 0 from 742 to 744 with dt = 2 using RHS created at 743 Done with advance_dycore at level 0 [Level 0 step 372] Advanced 4096 cells [Level 1 step 372] ADVANCE from elapsed time = 742 to 744 with dt = 2 Making slow rhs at time 742 for fast variables advancing from 742 to 744 No-substepping time integration at level 1 to 744 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004236642271 0.002069855575 and volume-weighted sum 9742.21582 Subtracting 1.409464062e-06 from rhs in subdomain 0 Sum after subtraction 0.05459878594 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004222547577 MLMG: Initial residual (resid0) = 0.0004222547577 MLMG: Final Iter. 1 resid, resid/bnorm = 8.555251043e-06, 0.02026087604 MLMG: Timers: Solve = 0.000708221 Iter = 0.000495556 Bottom = 4.2838e-05 Time in solve 0.001197945 Max/L2 norm of divergence after solve at level 1 : 9.979587048e-06 0.0001289017819 and volume-weighted sum 9742.255859 Time integration of scalars at level 1 from 742 to 744 with dt = 2 using RHS created at 742 Making slow rhs at time 744 for fast variables advancing from 742 to 744 No-substepping time integration at level 1 to 744 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004017688334 0.002082546474 and volume-weighted sum 9742.25293 Subtracting 1.409469519e-06 from rhs in subdomain 0 Sum after subtraction -0.02619344741 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000400359364 MLMG: Initial residual (resid0) = 0.000400359364 MLMG: Final Iter. 1 resid, resid/bnorm = 8.514842193e-06, 0.02126799896 MLMG: Timers: Solve = 0.000709422 Iter = 0.00048239 Bottom = 4.3232e-05 Time in solve 0.001195211 Max/L2 norm of divergence after solve at level 1 : 9.327195585e-06 0.0001287000923 and volume-weighted sum 9742.209961 Time integration of scalars at level 1 from 742 to 744 with dt = 2 using RHS created at 744 Done with advance_dycore at level 1 [Level 1 step 372] Advanced 6912 cells Coarse STEP 372 ends. TIME = 744 DT = 2 Timestep time = 0.024898489 seconds. Coarse STEP 373 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375047097 (terrain aware) 1.375047097 (terrain unaware) Anelastic dt at level 0 would be: 6.441232466 (terrain aware) 6.441232466 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655954619 (terrain aware) 0.2655954619 (terrain unaware) Anelastic dt at level 1 would be: 3.07838942 (terrain aware) 3.07838942 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 373] ADVANCE from elapsed time = 744 to 746 with dt = 2 Making slow rhs at time 744 for fast variables advancing from 744 to 744.6666666667 Fast time integration at level 0 from 744 to 744.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 744 to 744.6666666667 with dt = 0.6666666666666 using RHS created at 744 Making slow rhs at time 744.6666666667 for fast variables advancing from 744 to 745 Fast time integration at level 0 from 744 to 744.5 with dt = 0.5 Fast time integration at level 0 from 744.5 to 745 with dt = 0.5 Time integration of scalars at level 0 from 744 to 745 with dt = 1 using RHS created at 744.6666666667 Making slow rhs at time 745 for fast variables advancing from 744 to 746 Fast time integration at level 0 from 744 to 744.5 with dt = 0.5 Fast time integration at level 0 from 744.5 to 745 with dt = 0.5 Fast time integration at level 0 from 745 to 745.5 with dt = 0.5 Fast time integration at level 0 from 745.5 to 746 with dt = 0.5 Time integration of scalars at level 0 from 744 to 746 with dt = 2 using RHS created at 745 Done with advance_dycore at level 0 [Level 0 step 373] Advanced 4096 cells [Level 1 step 373] ADVANCE from elapsed time = 744 to 746 with dt = 2 Making slow rhs at time 744 for fast variables advancing from 744 to 746 No-substepping time integration at level 1 to 746 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003920961171 0.002097900258 and volume-weighted sum -2660.281494 Subtracting -3.848786889e-07 from rhs in subdomain 0 Sum after subtraction -0.03357126936 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003924809862 MLMG: Initial residual (resid0) = 0.0003924809862 MLMG: Final Iter. 2 resid, resid/bnorm = 6.298523658e-07, 0.001604797202 MLMG: Timers: Solve = 0.001357004 Iter = 0.001143634 Bottom = 0.000154346 Time in solve 0.001907961 Max/L2 norm of divergence after solve at level 1 : 1.02960621e-06 3.218611528e-05 and volume-weighted sum -2660.291016 Time integration of scalars at level 1 from 744 to 746 with dt = 2 using RHS created at 744 Making slow rhs at time 746 for fast variables advancing from 744 to 746 No-substepping time integration at level 1 to 746 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004147738218 0.002095674863 and volume-weighted sum -2660.312256 Subtracting -3.848831511e-07 from rhs in subdomain 0 Sum after subtraction -0.04115281627 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004151586909 MLMG: Initial residual (resid0) = 0.0004151586909 MLMG: Final Iter. 1 resid, resid/bnorm = 8.8383822e-06, 0.02128916606 MLMG: Timers: Solve = 0.000698723 Iter = 0.000486622 Bottom = 4.2329e-05 Time in solve 0.00119957 Max/L2 norm of divergence after solve at level 1 : 9.220093489e-06 6.370084884e-05 and volume-weighted sum -2660.291992 Time integration of scalars at level 1 from 744 to 746 with dt = 2 using RHS created at 746 Done with advance_dycore at level 1 [Level 1 step 373] Advanced 6912 cells Coarse STEP 373 ends. TIME = 746 DT = 2 Timestep time = 0.02537354 seconds. Coarse STEP 374 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375528404 (terrain aware) 1.375528404 (terrain unaware) Anelastic dt at level 0 would be: 6.452271246 (terrain aware) 6.452271246 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655697574 (terrain aware) 0.2655697574 (terrain unaware) Anelastic dt at level 1 would be: 3.082638635 (terrain aware) 3.082638635 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 374] ADVANCE from elapsed time = 746 to 748 with dt = 2 Making slow rhs at time 746 for fast variables advancing from 746 to 746.6666666667 Fast time integration at level 0 from 746 to 746.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 746 to 746.6666666667 with dt = 0.6666666666666 using RHS created at 746 Making slow rhs at time 746.6666666667 for fast variables advancing from 746 to 747 Fast time integration at level 0 from 746 to 746.5 with dt = 0.5 Fast time integration at level 0 from 746.5 to 747 with dt = 0.5 Time integration of scalars at level 0 from 746 to 747 with dt = 1 using RHS created at 746.6666666667 Making slow rhs at time 747 for fast variables advancing from 746 to 748 Fast time integration at level 0 from 746 to 746.5 with dt = 0.5 Fast time integration at level 0 from 746.5 to 747 with dt = 0.5 Fast time integration at level 0 from 747 to 747.5 with dt = 0.5 Fast time integration at level 0 from 747.5 to 748 with dt = 0.5 Time integration of scalars at level 0 from 746 to 748 with dt = 2 using RHS created at 747 Done with advance_dycore at level 0 [Level 0 step 374] Advanced 4096 cells [Level 1 step 374] ADVANCE from elapsed time = 746 to 748 with dt = 2 Making slow rhs at time 746 for fast variables advancing from 746 to 748 No-substepping time integration at level 1 to 748 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004493761808 0.002109301044 and volume-weighted sum -16391.88477 Subtracting -2.371511073e-06 from rhs in subdomain 0 Sum after subtraction -0.05391484499 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004517476773 MLMG: Initial residual (resid0) = 0.0004517476773 MLMG: Final Iter. 2 resid, resid/bnorm = 6.394448064e-07, 0.001415491104 MLMG: Timers: Solve = 0.001067242 Iter = 0.000855912 Bottom = 8.3265e-05 Time in solve 0.001551888 Max/L2 norm of divergence after solve at level 1 : 3.010034561e-06 0.0001972016908 and volume-weighted sum -16391.87891 Time integration of scalars at level 1 from 746 to 748 with dt = 2 using RHS created at 746 Making slow rhs at time 748 for fast variables advancing from 746 to 748 No-substepping time integration at level 1 to 748 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004517175257 0.002100391313 and volume-weighted sum -16391.91016 Subtracting -2.371514711e-06 from rhs in subdomain 0 Sum after subtraction -0.04062894732 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004540890513 MLMG: Initial residual (resid0) = 0.0004540890513 MLMG: Final Iter. 1 resid, resid/bnorm = 8.851209714e-06, 0.01949223317 MLMG: Timers: Solve = 0.00108998 Iter = 0.000551893 Bottom = 6.0983e-05 Time in solve 0.001658513 Max/L2 norm of divergence after solve at level 1 : 1.12131238e-05 0.0002047566668 and volume-weighted sum -16391.9082 Time integration of scalars at level 1 from 746 to 748 with dt = 2 using RHS created at 748 Done with advance_dycore at level 1 [Level 1 step 374] Advanced 6912 cells Coarse STEP 374 ends. TIME = 748 DT = 2 Timestep time = 0.025700217 seconds. Coarse STEP 375 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375339309 (terrain aware) 1.375339309 (terrain unaware) Anelastic dt at level 0 would be: 6.447631025 (terrain aware) 6.447631025 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655487468 (terrain aware) 0.2655487468 (terrain unaware) Anelastic dt at level 1 would be: 3.083027257 (terrain aware) 3.083027257 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 375] ADVANCE from elapsed time = 748 to 750 with dt = 2 Making slow rhs at time 748 for fast variables advancing from 748 to 748.6666666667 Fast time integration at level 0 from 748 to 748.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 748 to 748.6666666667 with dt = 0.6666666666666 using RHS created at 748 Making slow rhs at time 748.6666666667 for fast variables advancing from 748 to 749 Fast time integration at level 0 from 748 to 748.5 with dt = 0.5 Fast time integration at level 0 from 748.5 to 749 with dt = 0.5 Time integration of scalars at level 0 from 748 to 749 with dt = 1 using RHS created at 748.6666666667 Making slow rhs at time 749 for fast variables advancing from 748 to 750 Fast time integration at level 0 from 748 to 748.5 with dt = 0.5 Fast time integration at level 0 from 748.5 to 749 with dt = 0.5 Fast time integration at level 0 from 749 to 749.5 with dt = 0.5 Fast time integration at level 0 from 749.5 to 750 with dt = 0.5 Time integration of scalars at level 0 from 748 to 750 with dt = 2 using RHS created at 749 Done with advance_dycore at level 0 [Level 0 step 375] Advanced 4096 cells [Level 1 step 375] ADVANCE from elapsed time = 748 to 750 with dt = 2 Making slow rhs at time 748 for fast variables advancing from 748 to 750 No-substepping time integration at level 1 to 750 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004272572696 0.002124415012 and volume-weighted sum -30583.95898 Subtracting -4.424762665e-06 from rhs in subdomain 0 Sum after subtraction -0.04129833728 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004316820414 MLMG: Initial residual (resid0) = 0.0004316820414 MLMG: Final Iter. 2 resid, resid/bnorm = 6.206937542e-07, 0.001437849365 MLMG: Timers: Solve = 0.001059163 Iter = 0.000847713 Bottom = 8.2767e-05 Time in solve 0.001553123 Max/L2 norm of divergence after solve at level 1 : 5.052192137e-06 0.0003678872017 and volume-weighted sum -30583.96289 Time integration of scalars at level 1 from 748 to 750 with dt = 2 using RHS created at 748 Making slow rhs at time 750 for fast variables advancing from 748 to 750 No-substepping time integration at level 1 to 750 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00040794909 0.002119243843 and volume-weighted sum -30583.95312 Subtracting -4.424761755e-06 from rhs in subdomain 0 Sum after subtraction 0.02910383046 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004123738618 MLMG: Initial residual (resid0) = 0.0004123738618 MLMG: Final Iter. 1 resid, resid/bnorm = 8.778828487e-06, 0.02128851786 MLMG: Timers: Solve = 0.000690696 Iter = 0.000479326 Bottom = 4.1378e-05 Time in solve 0.001193355 Max/L2 norm of divergence after solve at level 1 : 1.319684088e-05 0.0003720221284 and volume-weighted sum -30583.9707 Time integration of scalars at level 1 from 748 to 750 with dt = 2 using RHS created at 750 Done with advance_dycore at level 1 [Level 1 step 375] Advanced 6912 cells Coarse STEP 375 ends. TIME = 750 DT = 2 Timestep time = 0.025069961 seconds. Coarse STEP 376 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375197748 (terrain aware) 1.375197748 (terrain unaware) Anelastic dt at level 0 would be: 6.444992327 (terrain aware) 6.444992327 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655327467 (terrain aware) 0.2655327467 (terrain unaware) Anelastic dt at level 1 would be: 3.08417107 (terrain aware) 3.08417107 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 376] ADVANCE from elapsed time = 750 to 752 with dt = 2 Making slow rhs at time 750 for fast variables advancing from 750 to 750.6666666667 Fast time integration at level 0 from 750 to 750.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 750 to 750.6666666667 with dt = 0.6666666666666 using RHS created at 750 Making slow rhs at time 750.6666666667 for fast variables advancing from 750 to 751 Fast time integration at level 0 from 750 to 750.5 with dt = 0.5 Fast time integration at level 0 from 750.5 to 751 with dt = 0.5 Time integration of scalars at level 0 from 750 to 751 with dt = 1 using RHS created at 750.6666666667 Making slow rhs at time 751 for fast variables advancing from 750 to 752 Fast time integration at level 0 from 750 to 750.5 with dt = 0.5 Fast time integration at level 0 from 750.5 to 751 with dt = 0.5 Fast time integration at level 0 from 751 to 751.5 with dt = 0.5 Fast time integration at level 0 from 751.5 to 752 with dt = 0.5 Time integration of scalars at level 0 from 750 to 752 with dt = 2 using RHS created at 751 Done with advance_dycore at level 0 [Level 0 step 376] Advanced 4096 cells [Level 1 step 376] ADVANCE from elapsed time = 750 to 752 with dt = 2 Making slow rhs at time 750 for fast variables advancing from 750 to 752 No-substepping time integration at level 1 to 752 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003666728735 0.002145549748 and volume-weighted sum -43435.85547 Subtracting -6.284122719e-06 from rhs in subdomain 0 Sum after subtraction -0.01931039244 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003729570017 MLMG: Initial residual (resid0) = 0.0003729570017 MLMG: Final Iter. 1 resid, resid/bnorm = 9.487946954e-06, 0.02543978766 MLMG: Timers: Solve = 0.000697142 Iter = 0.000483117 Bottom = 4.3614e-05 Time in solve 0.00119069 Max/L2 norm of divergence after solve at level 1 : 1.282989979e-05 0.0005268098321 and volume-weighted sum -43435.83203 Time integration of scalars at level 1 from 750 to 752 with dt = 2 using RHS created at 750 Making slow rhs at time 752 for fast variables advancing from 750 to 752 No-substepping time integration at level 1 to 752 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003907307982 0.002127557993 and volume-weighted sum -43435.88672 Subtracting -6.284127267e-06 from rhs in subdomain 0 Sum after subtraction -0.05646143109 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003970149264 MLMG: Initial residual (resid0) = 0.0003970149264 MLMG: Final Iter. 1 resid, resid/bnorm = 8.438328223e-06, 0.02125443518 MLMG: Timers: Solve = 0.000740456 Iter = 0.000530762 Bottom = 4.5001e-05 Time in solve 0.001230282 Max/L2 norm of divergence after solve at level 1 : 1.473538578e-05 0.0005252144183 and volume-weighted sum -43435.84766 Time integration of scalars at level 1 from 750 to 752 with dt = 2 using RHS created at 752 Done with advance_dycore at level 1 [Level 1 step 376] Advanced 6912 cells Coarse STEP 376 ends. TIME = 752 DT = 2 Timestep time = 0.025093075 seconds. Coarse STEP 377 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375151405 (terrain aware) 1.375151405 (terrain unaware) Anelastic dt at level 0 would be: 6.444458269 (terrain aware) 6.444458269 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2655037453 (terrain aware) 0.2655037453 (terrain unaware) Anelastic dt at level 1 would be: 3.086261405 (terrain aware) 3.086261405 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 377] ADVANCE from elapsed time = 752 to 754 with dt = 2 Making slow rhs at time 752 for fast variables advancing from 752 to 752.6666666667 Fast time integration at level 0 from 752 to 752.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 752 to 752.6666666667 with dt = 0.6666666666666 using RHS created at 752 Making slow rhs at time 752.6666666667 for fast variables advancing from 752 to 753 Fast time integration at level 0 from 752 to 752.5 with dt = 0.5 Fast time integration at level 0 from 752.5 to 753 with dt = 0.5 Time integration of scalars at level 0 from 752 to 753 with dt = 1 using RHS created at 752.6666666667 Making slow rhs at time 753 for fast variables advancing from 752 to 754 Fast time integration at level 0 from 752 to 752.5 with dt = 0.5 Fast time integration at level 0 from 752.5 to 753 with dt = 0.5 Fast time integration at level 0 from 753 to 753.5 with dt = 0.5 Fast time integration at level 0 from 753.5 to 754 with dt = 0.5 Time integration of scalars at level 0 from 752 to 754 with dt = 2 using RHS created at 753 Done with advance_dycore at level 0 [Level 0 step 377] Advanced 4096 cells [Level 1 step 377] ADVANCE from elapsed time = 752 to 754 with dt = 2 Making slow rhs at time 752 for fast variables advancing from 752 to 754 No-substepping time integration at level 1 to 754 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004328954965 0.002182563534 and volume-weighted sum -52617.48438 Subtracting -7.612483387e-06 from rhs in subdomain 0 Sum after subtraction -0.0259897206 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004405079817 MLMG: Initial residual (resid0) = 0.0004405079817 MLMG: Final Iter. 1 resid, resid/bnorm = 8.668717783e-06, 0.01967891119 MLMG: Timers: Solve = 0.000707244 Iter = 0.000491977 Bottom = 5.2858e-05 Time in solve 0.001203576 Max/L2 norm of divergence after solve at level 1 : 1.475773752e-05 0.0006364100263 and volume-weighted sum -52617.49609 Time integration of scalars at level 1 from 752 to 754 with dt = 2 using RHS created at 752 Making slow rhs at time 754 for fast variables advancing from 752 to 754 No-substepping time integration at level 1 to 754 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004367697984 0.002153536305 and volume-weighted sum -52617.51953 Subtracting -7.612488389e-06 from rhs in subdomain 0 Sum after subtraction 0.02066371962 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004443822836 MLMG: Initial residual (resid0) = 0.0004443822836 MLMG: Final Iter. 1 resid, resid/bnorm = 8.163238817e-06, 0.01836985722 MLMG: Timers: Solve = 0.000698261 Iter = 0.000476054 Bottom = 4.2274e-05 Time in solve 0.001192128 Max/L2 norm of divergence after solve at level 1 : 1.577287912e-05 0.0006351778284 and volume-weighted sum -52617.46875 Time integration of scalars at level 1 from 752 to 754 with dt = 2 using RHS created at 754 Done with advance_dycore at level 1 [Level 1 step 377] Advanced 6912 cells Coarse STEP 377 ends. TIME = 754 DT = 2 Timestep time = 0.02486243 seconds. Coarse STEP 378 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375201473 (terrain aware) 1.375201473 (terrain unaware) Anelastic dt at level 0 would be: 6.446038985 (terrain aware) 6.446038985 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654653376 (terrain aware) 0.2654653376 (terrain unaware) Anelastic dt at level 1 would be: 3.089310481 (terrain aware) 3.089310481 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 378] ADVANCE from elapsed time = 754 to 756 with dt = 2 Making slow rhs at time 754 for fast variables advancing from 754 to 754.6666666667 Fast time integration at level 0 from 754 to 754.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 754 to 754.6666666667 with dt = 0.6666666666666 using RHS created at 754 Making slow rhs at time 754.6666666667 for fast variables advancing from 754 to 755 Fast time integration at level 0 from 754 to 754.5 with dt = 0.5 Fast time integration at level 0 from 754.5 to 755 with dt = 0.5 Time integration of scalars at level 0 from 754 to 755 with dt = 1 using RHS created at 754.6666666667 Making slow rhs at time 755 for fast variables advancing from 754 to 756 Fast time integration at level 0 from 754 to 754.5 with dt = 0.5 Fast time integration at level 0 from 754.5 to 755 with dt = 0.5 Fast time integration at level 0 from 755 to 755.5 with dt = 0.5 Fast time integration at level 0 from 755.5 to 756 with dt = 0.5 Time integration of scalars at level 0 from 754 to 756 with dt = 2 using RHS created at 755 Done with advance_dycore at level 0 [Level 0 step 378] Advanced 4096 cells [Level 1 step 378] ADVANCE from elapsed time = 754 to 756 with dt = 2 Making slow rhs at time 754 for fast variables advancing from 754 to 756 No-substepping time integration at level 1 to 756 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004224441946 0.002219096757 and volume-weighted sum -55770.59766 Subtracting -8.068663192e-06 from rhs in subdomain 0 Sum after subtraction 0.00253203325 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004305128532 MLMG: Initial residual (resid0) = 0.0004305128532 MLMG: Final Iter. 1 resid, resid/bnorm = 8.146358596e-06, 0.01892245188 MLMG: Timers: Solve = 0.000817378 Iter = 0.000473149 Bottom = 3.8203e-05 Time in solve 0.001305712 Max/L2 norm of divergence after solve at level 1 : 1.551583409e-05 0.0006744139246 and volume-weighted sum -55770.54688 Time integration of scalars at level 1 from 754 to 756 with dt = 2 using RHS created at 754 Making slow rhs at time 756 for fast variables advancing from 754 to 756 No-substepping time integration at level 1 to 756 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004055052996 0.002161919838 and volume-weighted sum -55770.57422 Subtracting -8.068659554e-06 from rhs in subdomain 0 Sum after subtraction 0.03157765418 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004135739582 MLMG: Initial residual (resid0) = 0.0004135739582 MLMG: Final Iter. 1 resid, resid/bnorm = 7.85649172e-06, 0.01899658144 MLMG: Timers: Solve = 0.000705678 Iter = 0.000490233 Bottom = 4.1283e-05 Time in solve 0.001268223 Max/L2 norm of divergence after solve at level 1 : 1.592002809e-05 0.0006729762536 and volume-weighted sum -55770.57422 Time integration of scalars at level 1 from 754 to 756 with dt = 2 using RHS created at 756 Done with advance_dycore at level 1 [Level 1 step 378] Advanced 6912 cells Coarse STEP 378 ends. TIME = 756 DT = 2 Timestep time = 0.025299296 seconds. Coarse STEP 379 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375348845 (terrain aware) 1.375348845 (terrain unaware) Anelastic dt at level 0 would be: 6.449741625 (terrain aware) 6.449741625 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654336912 (terrain aware) 0.2654336912 (terrain unaware) Anelastic dt at level 1 would be: 3.090957059 (terrain aware) 3.090957059 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 379] ADVANCE from elapsed time = 756 to 758 with dt = 2 Making slow rhs at time 756 for fast variables advancing from 756 to 756.6666666667 Fast time integration at level 0 from 756 to 756.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 756 to 756.6666666667 with dt = 0.6666666666666 using RHS created at 756 Making slow rhs at time 756.6666666667 for fast variables advancing from 756 to 757 Fast time integration at level 0 from 756 to 756.5 with dt = 0.5 Fast time integration at level 0 from 756.5 to 757 with dt = 0.5 Time integration of scalars at level 0 from 756 to 757 with dt = 1 using RHS created at 756.6666666667 Making slow rhs at time 757 for fast variables advancing from 756 to 758 Fast time integration at level 0 from 756 to 756.5 with dt = 0.5 Fast time integration at level 0 from 756.5 to 757 with dt = 0.5 Fast time integration at level 0 from 757 to 757.5 with dt = 0.5 Fast time integration at level 0 from 757.5 to 758 with dt = 0.5 Time integration of scalars at level 0 from 756 to 758 with dt = 2 using RHS created at 757 Done with advance_dycore at level 0 [Level 0 step 379] Advanced 4096 cells [Level 1 step 379] ADVANCE from elapsed time = 756 to 758 with dt = 2 Making slow rhs at time 756 for fast variables advancing from 756 to 758 No-substepping time integration at level 1 to 758 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003484170884 0.002223423915 and volume-weighted sum -51606.27344 Subtracting -7.466185252e-06 from rhs in subdomain 0 Sum after subtraction 0.008993083611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003558832686 MLMG: Initial residual (resid0) = 0.0003558832686 MLMG: Final Iter. 1 resid, resid/bnorm = 8.01312126e-06, 0.02251615003 MLMG: Timers: Solve = 0.000696761 Iter = 0.000482374 Bottom = 4.0876e-05 Time in solve 0.001189083 Max/L2 norm of divergence after solve at level 1 : 1.547299325e-05 0.0006248288555 and volume-weighted sum -51606.32031 Time integration of scalars at level 1 from 756 to 758 with dt = 2 using RHS created at 756 Making slow rhs at time 758 for fast variables advancing from 756 to 758 No-substepping time integration at level 1 to 758 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003754589707 0.002143941587 and volume-weighted sum -51606.23828 Subtracting -7.46618025e-06 from rhs in subdomain 0 Sum after subtraction -0.004278263077 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003829251509 MLMG: Initial residual (resid0) = 0.0003829251509 MLMG: Final Iter. 1 resid, resid/bnorm = 8.252492989e-06, 0.02155118994 MLMG: Timers: Solve = 0.000694726 Iter = 0.000482622 Bottom = 4.0921e-05 Time in solve 0.001183762 Max/L2 norm of divergence after solve at level 1 : 1.573562622e-05 0.0006230610306 and volume-weighted sum -51606.33203 Time integration of scalars at level 1 from 756 to 758 with dt = 2 using RHS created at 758 Done with advance_dycore at level 1 [Level 1 step 379] Advanced 6912 cells Coarse STEP 379 ends. TIME = 758 DT = 2 Timestep time = 0.024670905 seconds. Coarse STEP 380 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375589201 (terrain aware) 1.375589201 (terrain unaware) Anelastic dt at level 0 would be: 6.455471419 (terrain aware) 6.455471419 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2654095327 (terrain aware) 0.2654095327 (terrain unaware) Anelastic dt at level 1 would be: 3.091223194 (terrain aware) 3.091223194 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 380] ADVANCE from elapsed time = 758 to 760 with dt = 2 Making slow rhs at time 758 for fast variables advancing from 758 to 758.6666666667 Fast time integration at level 0 from 758 to 758.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 758 to 758.6666666667 with dt = 0.6666666666666 using RHS created at 758 Making slow rhs at time 758.6666666667 for fast variables advancing from 758 to 759 Fast time integration at level 0 from 758 to 758.5 with dt = 0.5 Fast time integration at level 0 from 758.5 to 759 with dt = 0.5 Time integration of scalars at level 0 from 758 to 759 with dt = 1 using RHS created at 758.6666666667 Making slow rhs at time 759 for fast variables advancing from 758 to 760 Fast time integration at level 0 from 758 to 758.5 with dt = 0.5 Fast time integration at level 0 from 758.5 to 759 with dt = 0.5 Fast time integration at level 0 from 759 to 759.5 with dt = 0.5 Fast time integration at level 0 from 759.5 to 760 with dt = 0.5 Time integration of scalars at level 0 from 758 to 760 with dt = 2 using RHS created at 759 Done with advance_dycore at level 0 [Level 0 step 380] Advanced 4096 cells [Level 1 step 380] ADVANCE from elapsed time = 758 to 760 with dt = 2 Making slow rhs at time 758 for fast variables advancing from 758 to 760 No-substepping time integration at level 1 to 760 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004273094237 0.002179244999 and volume-weighted sum -40404.73047 Subtracting -5.845591659e-06 from rhs in subdomain 0 Sum after subtraction -0.06289337575 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004331550153 MLMG: Initial residual (resid0) = 0.0004331550153 MLMG: Final Iter. 1 resid, resid/bnorm = 8.34173261e-06, 0.01925807633 MLMG: Timers: Solve = 0.0006911 Iter = 0.000484234 Bottom = 3.8773e-05 Time in solve 0.001187018 Max/L2 norm of divergence after solve at level 1 : 1.41710043e-05 0.0004909382551 and volume-weighted sum -40404.68359 Time integration of scalars at level 1 from 758 to 760 with dt = 2 using RHS created at 758 Making slow rhs at time 760 for fast variables advancing from 758 to 760 No-substepping time integration at level 1 to 760 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004351325333 0.002105166903 and volume-weighted sum -40404.72266 Subtracting -5.845590749e-06 from rhs in subdomain 0 Sum after subtraction -0.06695336103 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000440978125 MLMG: Initial residual (resid0) = 0.000440978125 MLMG: Final Iter. 1 resid, resid/bnorm = 8.598624845e-06, 0.0194989834 MLMG: Timers: Solve = 0.000699708 Iter = 0.000484815 Bottom = 4.2209e-05 Time in solve 0.001188931 Max/L2 norm of divergence after solve at level 1 : 1.444667578e-05 0.0004889708362 and volume-weighted sum -40404.68359 Time integration of scalars at level 1 from 758 to 760 with dt = 2 using RHS created at 760 Done with advance_dycore at level 1 [Level 1 step 380] Advanced 6912 cells Coarse STEP 380 ends. TIME = 760 DT = 2 Timestep time = 0.025001916 seconds. Coarse STEP 381 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375915835 (terrain aware) 1.375915835 (terrain unaware) Anelastic dt at level 0 would be: 6.463090085 (terrain aware) 6.463090085 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653932718 (terrain aware) 0.2653932718 (terrain unaware) Anelastic dt at level 1 would be: 3.089653208 (terrain aware) 3.089653208 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,31) (0,0,0)) ((48,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(5) m_ref->m_hash_sig(0) ((0,0,0) (31,0,47) (0,0,0)) ((32,0,0) (47,0,47) (0,0,0)) ((48,0,0) (79,0,47) (0,0,0)) ((80,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.005719802342 0.02279582061 and volume-weighted sum -38075.29688 Subtracting -6.760528777e-06 from rhs in subdomain 0 Sum after subtraction -0.06100162864 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.005726562813 MLMG: Initial residual (resid0) = 0.005726562813 MLMG: Final Iter. 4 resid, resid/bnorm = 1.396842094e-06, 0.0002439232921 MLMG: Timers: Solve = 0.002303485 Iter = 0.001906854 Bottom = 0.000789649 Time in solve 0.002586958 Max/L2 norm of divergence after solve at level 1 : 8.156290278e-06 0.0005073767388 and volume-weighted sum -38075.21484 [Level 0 step 381] ADVANCE from elapsed time = 760 to 762 with dt = 2 Making slow rhs at time 760 for fast variables advancing from 760 to 760.6666666667 Fast time integration at level 0 from 760 to 760.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 760 to 760.6666666667 with dt = 0.6666666666666 using RHS created at 760 Making slow rhs at time 760.6666666667 for fast variables advancing from 760 to 761 Fast time integration at level 0 from 760 to 760.5 with dt = 0.5 Fast time integration at level 0 from 760.5 to 761 with dt = 0.5 Time integration of scalars at level 0 from 760 to 761 with dt = 1 using RHS created at 760.6666666667 Making slow rhs at time 761 for fast variables advancing from 760 to 762 Fast time integration at level 0 from 760 to 760.5 with dt = 0.5 Fast time integration at level 0 from 760.5 to 761 with dt = 0.5 Fast time integration at level 0 from 761 to 761.5 with dt = 0.5 Fast time integration at level 0 from 761.5 to 762 with dt = 0.5 Time integration of scalars at level 0 from 760 to 762 with dt = 2 using RHS created at 761 Done with advance_dycore at level 0 [Level 0 step 381] Advanced 4096 cells [Level 1 step 381] ADVANCE from elapsed time = 760 to 762 with dt = 2 Making slow rhs at time 760 for fast variables advancing from 760 to 762 No-substepping time integration at level 1 to 762 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.01128720678 0.09067571908 and volume-weighted sum -24618.79688 Subtracting -4.371235264e-06 from rhs in subdomain 0 Sum after subtraction 0.2197921276 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.01128283516 MLMG: Initial residual (resid0) = 0.01128283516 MLMG: Final Iter. 4 resid, resid/bnorm = 2.631426469e-06, 0.0002332238655 MLMG: Timers: Solve = 0.002297003 Iter = 0.001903335 Bottom = 0.000772106 Time in solve 0.002568901 Max/L2 norm of divergence after solve at level 1 : 6.997492164e-06 0.0003281753452 and volume-weighted sum -24618.74023 Time integration of scalars at level 1 from 760 to 762 with dt = 2 using RHS created at 760 Making slow rhs at time 762 for fast variables advancing from 760 to 762 No-substepping time integration at level 1 to 762 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004176218063 0.002089856658 and volume-weighted sum -24618.77539 Subtracting -4.371231626e-06 from rhs in subdomain 0 Sum after subtraction -0.03137392923 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000421993027 MLMG: Initial residual (resid0) = 0.000421993027 MLMG: Final Iter. 1 resid, resid/bnorm = 9.262817912e-06, 0.02195016854 MLMG: Timers: Solve = 0.000913213 Iter = 0.000518815 Bottom = 0.000186378 Time in solve 0.001176471 Max/L2 norm of divergence after solve at level 1 : 1.36308372e-05 0.000332768599 and volume-weighted sum -24618.73828 Time integration of scalars at level 1 from 760 to 762 with dt = 2 using RHS created at 762 Done with advance_dycore at level 1 [Level 1 step 381] Advanced 5632 cells Coarse STEP 381 ends. TIME = 762 DT = 2 Timestep time = 0.034124183 seconds. Coarse STEP 382 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376322338 (terrain aware) 1.376322338 (terrain unaware) Anelastic dt at level 0 would be: 6.472465896 (terrain aware) 6.472465896 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653634136 (terrain aware) 0.2653634136 (terrain unaware) Anelastic dt at level 1 would be: 3.088619365 (terrain aware) 3.088619365 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 382] ADVANCE from elapsed time = 762 to 764 with dt = 2 Making slow rhs at time 762 for fast variables advancing from 762 to 762.6666666667 Fast time integration at level 0 from 762 to 762.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 762 to 762.6666666667 with dt = 0.6666666666666 using RHS created at 762 Making slow rhs at time 762.6666666667 for fast variables advancing from 762 to 763 Fast time integration at level 0 from 762 to 762.5 with dt = 0.5 Fast time integration at level 0 from 762.5 to 763 with dt = 0.5 Time integration of scalars at level 0 from 762 to 763 with dt = 1 using RHS created at 762.6666666667 Making slow rhs at time 763 for fast variables advancing from 762 to 764 Fast time integration at level 0 from 762 to 762.5 with dt = 0.5 Fast time integration at level 0 from 762.5 to 763 with dt = 0.5 Fast time integration at level 0 from 763 to 763.5 with dt = 0.5 Fast time integration at level 0 from 763.5 to 764 with dt = 0.5 Time integration of scalars at level 0 from 762 to 764 with dt = 2 using RHS created at 763 Done with advance_dycore at level 0 [Level 0 step 382] Advanced 4096 cells [Level 1 step 382] ADVANCE from elapsed time = 762 to 764 with dt = 2 Making slow rhs at time 762 for fast variables advancing from 762 to 764 No-substepping time integration at level 1 to 764 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003598704934 0.002038749633 and volume-weighted sum -7837.569336 Subtracting -1.391613864e-06 from rhs in subdomain 0 Sum after subtraction 0.03923196346 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003612620931 MLMG: Initial residual (resid0) = 0.0003612620931 MLMG: Final Iter. 1 resid, resid/bnorm = 9.615534509e-06, 0.02661650628 MLMG: Timers: Solve = 0.000943739 Iter = 0.000550036 Bottom = 0.000216826 Time in solve 0.001208026 Max/L2 norm of divergence after solve at level 1 : 1.101009548e-05 0.0001205152803 and volume-weighted sum -7837.573242 Time integration of scalars at level 1 from 762 to 764 with dt = 2 using RHS created at 762 Making slow rhs at time 764 for fast variables advancing from 762 to 764 No-substepping time integration at level 1 to 764 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003612786531 0.002042125678 and volume-weighted sum -7837.59082 Subtracting -1.391617729e-06 from rhs in subdomain 0 Sum after subtraction 0.05000038072 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003626702819 MLMG: Initial residual (resid0) = 0.0003626702819 MLMG: Final Iter. 1 resid, resid/bnorm = 8.981245628e-06, 0.02476421744 MLMG: Timers: Solve = 0.000943406 Iter = 0.000536342 Bottom = 0.000204535 Time in solve 0.001205147 Max/L2 norm of divergence after solve at level 1 : 1.037307084e-05 0.0001175617144 and volume-weighted sum -7837.574707 Time integration of scalars at level 1 from 762 to 764 with dt = 2 using RHS created at 764 Done with advance_dycore at level 1 [Level 1 step 382] Advanced 5632 cells Coarse STEP 382 ends. TIME = 764 DT = 2 Timestep time = 0.022172646 seconds. Coarse STEP 383 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376801411 (terrain aware) 1.376801411 (terrain unaware) Anelastic dt at level 0 would be: 6.483426593 (terrain aware) 6.483426593 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653291968 (terrain aware) 0.2653291968 (terrain unaware) Anelastic dt at level 1 would be: 3.087180807 (terrain aware) 3.087180807 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 383] ADVANCE from elapsed time = 764 to 766 with dt = 2 Making slow rhs at time 764 for fast variables advancing from 764 to 764.6666666667 Fast time integration at level 0 from 764 to 764.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 764 to 764.6666666667 with dt = 0.6666666666666 using RHS created at 764 Making slow rhs at time 764.6666666667 for fast variables advancing from 764 to 765 Fast time integration at level 0 from 764 to 764.5 with dt = 0.5 Fast time integration at level 0 from 764.5 to 765 with dt = 0.5 Time integration of scalars at level 0 from 764 to 765 with dt = 1 using RHS created at 764.6666666667 Making slow rhs at time 765 for fast variables advancing from 764 to 766 Fast time integration at level 0 from 764 to 764.5 with dt = 0.5 Fast time integration at level 0 from 764.5 to 765 with dt = 0.5 Fast time integration at level 0 from 765 to 765.5 with dt = 0.5 Fast time integration at level 0 from 765.5 to 766 with dt = 0.5 Time integration of scalars at level 0 from 764 to 766 with dt = 2 using RHS created at 765 Done with advance_dycore at level 0 [Level 0 step 383] Advanced 4096 cells [Level 1 step 383] ADVANCE from elapsed time = 764 to 766 with dt = 2 Making slow rhs at time 764 for fast variables advancing from 764 to 766 No-substepping time integration at level 1 to 766 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004202798009 0.002056998899 and volume-weighted sum 10238.27734 Subtracting 1.817875955e-06 from rhs in subdomain 0 Sum after subtraction -0.001629814506 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004184619174 MLMG: Initial residual (resid0) = 0.0004184619174 MLMG: Final Iter. 2 resid, resid/bnorm = 1.010039e-06, 0.002413694048 MLMG: Timers: Solve = 0.001407698 Iter = 0.000997543 Bottom = 0.000413276 Time in solve 0.001689107 Max/L2 norm of divergence after solve at level 1 : 2.783490345e-06 0.0001365183853 and volume-weighted sum 10238.32227 Time integration of scalars at level 1 from 764 to 766 with dt = 2 using RHS created at 764 Making slow rhs at time 766 for fast variables advancing from 764 to 766 No-substepping time integration at level 1 to 766 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004337690771 0.002062017331 and volume-weighted sum 10238.3125 Subtracting 1.817882207e-06 from rhs in subdomain 0 Sum after subtraction 0.006635673344 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004319511936 MLMG: Initial residual (resid0) = 0.0004319511936 MLMG: Final Iter. 1 resid, resid/bnorm = 9.405528544e-06, 0.02177451737 MLMG: Timers: Solve = 0.001057624 Iter = 0.000654803 Bottom = 0.000193256 Time in solve 0.001331082 Max/L2 norm of divergence after solve at level 1 : 9.965384379e-06 0.0001475378231 and volume-weighted sum 10238.3457 Time integration of scalars at level 1 from 764 to 766 with dt = 2 using RHS created at 766 Done with advance_dycore at level 1 [Level 1 step 383] Advanced 5632 cells Coarse STEP 383 ends. TIME = 766 DT = 2 Timestep time = 0.023047772 seconds. Coarse STEP 384 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376900354 (terrain aware) 1.376900354 (terrain unaware) Anelastic dt at level 0 would be: 6.48600509 (terrain aware) 6.48600509 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2653053177 (terrain aware) 0.2653053177 (terrain unaware) Anelastic dt at level 1 would be: 3.087238027 (terrain aware) 3.087238027 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 384] ADVANCE from elapsed time = 766 to 768 with dt = 2 Making slow rhs at time 766 for fast variables advancing from 766 to 766.6666666667 Fast time integration at level 0 from 766 to 766.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 766 to 766.6666666667 with dt = 0.6666666666666 using RHS created at 766 Making slow rhs at time 766.6666666667 for fast variables advancing from 766 to 767 Fast time integration at level 0 from 766 to 766.5 with dt = 0.5 Fast time integration at level 0 from 766.5 to 767 with dt = 0.5 Time integration of scalars at level 0 from 766 to 767 with dt = 1 using RHS created at 766.6666666667 Making slow rhs at time 767 for fast variables advancing from 766 to 768 Fast time integration at level 0 from 766 to 766.5 with dt = 0.5 Fast time integration at level 0 from 766.5 to 767 with dt = 0.5 Fast time integration at level 0 from 767 to 767.5 with dt = 0.5 Fast time integration at level 0 from 767.5 to 768 with dt = 0.5 Time integration of scalars at level 0 from 766 to 768 with dt = 2 using RHS created at 767 Done with advance_dycore at level 0 [Level 0 step 384] Advanced 4096 cells [Level 1 step 384] ADVANCE from elapsed time = 766 to 768 with dt = 2 Making slow rhs at time 766 for fast variables advancing from 766 to 768 No-substepping time integration at level 1 to 768 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004381388426 0.002091976348 and volume-weighted sum 27448.625 Subtracting 4.873690614e-06 from rhs in subdomain 0 Sum after subtraction -0.008963979781 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004332651442 MLMG: Initial residual (resid0) = 0.0004332651442 MLMG: Final Iter. 2 resid, resid/bnorm = 1.184461553e-06, 0.002733802889 MLMG: Timers: Solve = 0.001546883 Iter = 0.001154928 Bottom = 0.000434635 Time in solve 0.00181668 Max/L2 norm of divergence after solve at level 1 : 6.008194759e-06 0.0003657986235 and volume-weighted sum 27448.61133 Time integration of scalars at level 1 from 766 to 768 with dt = 2 using RHS created at 766 Making slow rhs at time 768 for fast variables advancing from 766 to 768 No-substepping time integration at level 1 to 768 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004308279604 0.002085642889 and volume-weighted sum 27448.59375 Subtracting 4.873685157e-06 from rhs in subdomain 0 Sum after subtraction 0.02421438694 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000425954262 MLMG: Initial residual (resid0) = 0.000425954262 MLMG: Final Iter. 1 resid, resid/bnorm = 9.302100807e-06, 0.02183826268 MLMG: Timers: Solve = 0.000913054 Iter = 0.00051562 Bottom = 0.000196166 Time in solve 0.001179548 Max/L2 norm of divergence after solve at level 1 : 1.320638694e-05 0.0003700479574 and volume-weighted sum 27448.60742 Time integration of scalars at level 1 from 766 to 768 with dt = 2 using RHS created at 768 Done with advance_dycore at level 1 [Level 1 step 384] Advanced 5632 cells Coarse STEP 384 ends. TIME = 768 DT = 2 Timestep time = 0.022807169 seconds. Coarse STEP 385 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376722733 (terrain aware) 1.376722733 (terrain unaware) Anelastic dt at level 0 would be: 6.482072972 (terrain aware) 6.482072972 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652921674 (terrain aware) 0.2652921674 (terrain unaware) Anelastic dt at level 1 would be: 3.0873024 (terrain aware) 3.0873024 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 385] ADVANCE from elapsed time = 768 to 770 with dt = 2 Making slow rhs at time 768 for fast variables advancing from 768 to 768.6666666667 Fast time integration at level 0 from 768 to 768.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 768 to 768.6666666667 with dt = 0.6666666666666 using RHS created at 768 Making slow rhs at time 768.6666666667 for fast variables advancing from 768 to 769 Fast time integration at level 0 from 768 to 768.5 with dt = 0.5 Fast time integration at level 0 from 768.5 to 769 with dt = 0.5 Time integration of scalars at level 0 from 768 to 769 with dt = 1 using RHS created at 768.6666666667 Making slow rhs at time 769 for fast variables advancing from 768 to 770 Fast time integration at level 0 from 768 to 768.5 with dt = 0.5 Fast time integration at level 0 from 768.5 to 769 with dt = 0.5 Fast time integration at level 0 from 769 to 769.5 with dt = 0.5 Fast time integration at level 0 from 769.5 to 770 with dt = 0.5 Time integration of scalars at level 0 from 768 to 770 with dt = 2 using RHS created at 769 Done with advance_dycore at level 0 [Level 0 step 385] Advanced 4096 cells [Level 1 step 385] ADVANCE from elapsed time = 768 to 770 with dt = 2 Making slow rhs at time 768 for fast variables advancing from 768 to 770 No-substepping time integration at level 1 to 770 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003804024309 0.002152959816 and volume-weighted sum 41858.41797 Subtracting 7.432247457e-06 from rhs in subdomain 0 Sum after subtraction -0.09185168892 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003729702148 MLMG: Initial residual (resid0) = 0.0003729702148 MLMG: Final Iter. 2 resid, resid/bnorm = 1.136130095e-06, 0.00304616848 MLMG: Timers: Solve = 0.001422384 Iter = 0.001028859 Bottom = 0.000436469 Time in solve 0.001697765 Max/L2 norm of divergence after solve at level 1 : 8.521135896e-06 0.000557794061 and volume-weighted sum 41858.36719 Time integration of scalars at level 1 from 768 to 770 with dt = 2 using RHS created at 768 Making slow rhs at time 770 for fast variables advancing from 768 to 770 No-substepping time integration at level 1 to 770 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003585107625 0.00212366553 and volume-weighted sum 41858.38281 Subtracting 7.432241091e-06 from rhs in subdomain 0 Sum after subtraction 0.04470348358 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003510785173 MLMG: Initial residual (resid0) = 0.0003510785173 MLMG: Final Iter. 1 resid, resid/bnorm = 9.09838127e-06, 0.02591551654 MLMG: Timers: Solve = 0.000957069 Iter = 0.000559299 Bottom = 0.000220274 Time in solve 0.001217201 Max/L2 norm of divergence after solve at level 1 : 1.589942258e-05 0.0005605903571 and volume-weighted sum 41858.40625 Time integration of scalars at level 1 from 768 to 770 with dt = 2 using RHS created at 770 Done with advance_dycore at level 1 [Level 1 step 385] Advanced 5632 cells Coarse STEP 385 ends. TIME = 770 DT = 2 Timestep time = 0.022966671 seconds. Coarse STEP 386 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376618275 (terrain aware) 1.376618275 (terrain unaware) Anelastic dt at level 0 would be: 6.479677461 (terrain aware) 6.479677461 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652732988 (terrain aware) 0.2652732988 (terrain unaware) Anelastic dt at level 1 would be: 3.085212065 (terrain aware) 3.085212065 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 386] ADVANCE from elapsed time = 770 to 772 with dt = 2 Making slow rhs at time 770 for fast variables advancing from 770 to 770.6666666667 Fast time integration at level 0 from 770 to 770.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 770 to 770.6666666667 with dt = 0.6666666666666 using RHS created at 770 Making slow rhs at time 770.6666666667 for fast variables advancing from 770 to 771 Fast time integration at level 0 from 770 to 770.5 with dt = 0.5 Fast time integration at level 0 from 770.5 to 771 with dt = 0.5 Time integration of scalars at level 0 from 770 to 771 with dt = 1 using RHS created at 770.6666666667 Making slow rhs at time 771 for fast variables advancing from 770 to 772 Fast time integration at level 0 from 770 to 770.5 with dt = 0.5 Fast time integration at level 0 from 770.5 to 771 with dt = 0.5 Fast time integration at level 0 from 771 to 771.5 with dt = 0.5 Fast time integration at level 0 from 771.5 to 772 with dt = 0.5 Time integration of scalars at level 0 from 770 to 772 with dt = 2 using RHS created at 771 Done with advance_dycore at level 0 [Level 0 step 386] Advanced 4096 cells [Level 1 step 386] ADVANCE from elapsed time = 770 to 772 with dt = 2 Making slow rhs at time 770 for fast variables advancing from 770 to 772 No-substepping time integration at level 1 to 772 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004164148122 0.002207997022 and volume-weighted sum 51814.83594 Subtracting 9.200077329e-06 from rhs in subdomain 0 Sum after subtraction 0.01816079021 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004072147422 MLMG: Initial residual (resid0) = 0.0004072147422 MLMG: Final Iter. 2 resid, resid/bnorm = 7.582891612e-07, 0.001862135832 MLMG: Timers: Solve = 0.001414679 Iter = 0.001001428 Bottom = 0.000414551 Time in solve 0.001694834 Max/L2 norm of divergence after solve at level 1 : 9.924173355e-06 0.0006904514739 and volume-weighted sum 51814.94922 Time integration of scalars at level 1 from 770 to 772 with dt = 2 using RHS created at 770 Making slow rhs at time 772 for fast variables advancing from 770 to 772 No-substepping time integration at level 1 to 772 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004315450788 0.002157980809 and volume-weighted sum 51814.86719 Subtracting 9.200082786e-06 from rhs in subdomain 0 Sum after subtraction 0.0623986125 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004223450087 MLMG: Initial residual (resid0) = 0.0004223450087 MLMG: Final Iter. 1 resid, resid/bnorm = 8.823215467e-06, 0.02089101449 MLMG: Timers: Solve = 0.000932105 Iter = 0.000532106 Bottom = 0.000211632 Time in solve 0.001218442 Max/L2 norm of divergence after solve at level 1 : 1.785252243e-05 0.0006927184877 and volume-weighted sum 51814.89062 Time integration of scalars at level 1 from 770 to 772 with dt = 2 using RHS created at 772 Done with advance_dycore at level 1 [Level 1 step 386] Advanced 5632 cells Coarse STEP 386 ends. TIME = 772 DT = 2 Timestep time = 0.023173207 seconds. Coarse STEP 387 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376587728 (terrain aware) 1.376587728 (terrain unaware) Anelastic dt at level 0 would be: 6.478813194 (terrain aware) 6.478813194 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652456758 (terrain aware) 0.2652456758 (terrain unaware) Anelastic dt at level 1 would be: 3.084611549 (terrain aware) 3.084611549 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 387] ADVANCE from elapsed time = 772 to 774 with dt = 2 Making slow rhs at time 772 for fast variables advancing from 772 to 772.6666666667 Fast time integration at level 0 from 772 to 772.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 772 to 772.6666666667 with dt = 0.6666666666666 using RHS created at 772 Making slow rhs at time 772.6666666667 for fast variables advancing from 772 to 773 Fast time integration at level 0 from 772 to 772.5 with dt = 0.5 Fast time integration at level 0 from 772.5 to 773 with dt = 0.5 Time integration of scalars at level 0 from 772 to 773 with dt = 1 using RHS created at 772.6666666667 Making slow rhs at time 773 for fast variables advancing from 772 to 774 Fast time integration at level 0 from 772 to 772.5 with dt = 0.5 Fast time integration at level 0 from 772.5 to 773 with dt = 0.5 Fast time integration at level 0 from 773 to 773.5 with dt = 0.5 Fast time integration at level 0 from 773.5 to 774 with dt = 0.5 Time integration of scalars at level 0 from 772 to 774 with dt = 2 using RHS created at 773 Done with advance_dycore at level 0 [Level 0 step 387] Advanced 4096 cells [Level 1 step 387] ADVANCE from elapsed time = 772 to 774 with dt = 2 Making slow rhs at time 772 for fast variables advancing from 772 to 774 No-substepping time integration at level 1 to 774 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004450678825 0.002233990235 and volume-weighted sum 56136.67969 Subtracting 9.967449841e-06 from rhs in subdomain 0 Sum after subtraction 0.02747401595 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004351004318 MLMG: Initial residual (resid0) = 0.0004351004318 MLMG: Final Iter. 2 resid, resid/bnorm = 4.606786206e-07, 0.001058786875 MLMG: Timers: Solve = 0.001435946 Iter = 0.001027883 Bottom = 0.000447479 Time in solve 0.001717903 Max/L2 norm of divergence after solve at level 1 : 1.035816967e-05 0.0007480343338 and volume-weighted sum 56136.72656 Time integration of scalars at level 1 from 772 to 774 with dt = 2 using RHS created at 772 Making slow rhs at time 774 for fast variables advancing from 772 to 774 No-substepping time integration at level 1 to 774 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004393346608 0.002172491513 and volume-weighted sum 56136.6875 Subtracting 9.96745166e-06 from rhs in subdomain 0 Sum after subtraction -0.08766073734 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004293672391 MLMG: Initial residual (resid0) = 0.0004293672391 MLMG: Final Iter. 1 resid, resid/bnorm = 8.638795407e-06, 0.0201198291 MLMG: Timers: Solve = 0.000933908 Iter = 0.000522499 Bottom = 0.000201461 Time in solve 0.001204984 Max/L2 norm of divergence after solve at level 1 : 1.861574128e-05 0.0007501310902 and volume-weighted sum 56136.66797 Time integration of scalars at level 1 from 772 to 774 with dt = 2 using RHS created at 774 Done with advance_dycore at level 1 [Level 1 step 387] Advanced 5632 cells Coarse STEP 387 ends. TIME = 774 DT = 2 Timestep time = 0.023353199 seconds. Coarse STEP 388 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376631984 (terrain aware) 1.376631984 (terrain unaware) Anelastic dt at level 0 would be: 6.479504012 (terrain aware) 6.479504012 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652275523 (terrain aware) 0.2652275523 (terrain unaware) Anelastic dt at level 1 would be: 3.085374488 (terrain aware) 3.085374488 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 388] ADVANCE from elapsed time = 774 to 776 with dt = 2 Making slow rhs at time 774 for fast variables advancing from 774 to 774.6666666667 Fast time integration at level 0 from 774 to 774.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 774 to 774.6666666667 with dt = 0.6666666666666 using RHS created at 774 Making slow rhs at time 774.6666666667 for fast variables advancing from 774 to 775 Fast time integration at level 0 from 774 to 774.5 with dt = 0.5 Fast time integration at level 0 from 774.5 to 775 with dt = 0.5 Time integration of scalars at level 0 from 774 to 775 with dt = 1 using RHS created at 774.6666666667 Making slow rhs at time 775 for fast variables advancing from 774 to 776 Fast time integration at level 0 from 774 to 774.5 with dt = 0.5 Fast time integration at level 0 from 774.5 to 775 with dt = 0.5 Fast time integration at level 0 from 775 to 775.5 with dt = 0.5 Fast time integration at level 0 from 775.5 to 776 with dt = 0.5 Time integration of scalars at level 0 from 774 to 776 with dt = 2 using RHS created at 775 Done with advance_dycore at level 0 [Level 0 step 388] Advanced 4096 cells [Level 1 step 388] ADVANCE from elapsed time = 774 to 776 with dt = 2 Making slow rhs at time 774 for fast variables advancing from 774 to 776 No-substepping time integration at level 1 to 776 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003976877779 0.002216615016 and volume-weighted sum 54407.14062 Subtracting 9.660358955e-06 from rhs in subdomain 0 Sum after subtraction 0.05296897143 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003880274307 MLMG: Initial residual (resid0) = 0.0003880274307 MLMG: Final Iter. 1 resid, resid/bnorm = 9.131763363e-06, 0.02353380807 MLMG: Timers: Solve = 0.000944591 Iter = 0.000537621 Bottom = 0.000217407 Time in solve 0.001215884 Max/L2 norm of divergence after solve at level 1 : 1.784134656e-05 0.0007295443793 and volume-weighted sum 54407.25781 Time integration of scalars at level 1 from 774 to 776 with dt = 2 using RHS created at 774 Making slow rhs at time 776 for fast variables advancing from 774 to 776 No-substepping time integration at level 1 to 776 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003736019135 0.002140176715 and volume-weighted sum 54407.23047 Subtracting 9.660374417e-06 from rhs in subdomain 0 Sum after subtraction -0.001164153218 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003639415372 MLMG: Initial residual (resid0) = 0.0003639415372 MLMG: Final Iter. 1 resid, resid/bnorm = 8.546950994e-06, 0.02348440699 MLMG: Timers: Solve = 0.00088193 Iter = 0.000483828 Bottom = 0.000162716 Time in solve 0.001149825 Max/L2 norm of divergence after solve at level 1 : 1.774542034e-05 0.0007270414499 and volume-weighted sum 54407.30078 Time integration of scalars at level 1 from 774 to 776 with dt = 2 using RHS created at 776 Done with advance_dycore at level 1 [Level 1 step 388] Advanced 5632 cells Coarse STEP 388 ends. TIME = 776 DT = 2 Timestep time = 0.022530706 seconds. Coarse STEP 389 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376751343 (terrain aware) 1.376751343 (terrain unaware) Anelastic dt at level 0 would be: 6.481782697 (terrain aware) 6.481782697 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652183881 (terrain aware) 0.2652183881 (terrain unaware) Anelastic dt at level 1 would be: 3.087359919 (terrain aware) 3.087359919 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 389] ADVANCE from elapsed time = 776 to 778 with dt = 2 Making slow rhs at time 776 for fast variables advancing from 776 to 776.6666666667 Fast time integration at level 0 from 776 to 776.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 776 to 776.6666666667 with dt = 0.6666666666666 using RHS created at 776 Making slow rhs at time 776.6666666667 for fast variables advancing from 776 to 777 Fast time integration at level 0 from 776 to 776.5 with dt = 0.5 Fast time integration at level 0 from 776.5 to 777 with dt = 0.5 Time integration of scalars at level 0 from 776 to 777 with dt = 1 using RHS created at 776.6666666667 Making slow rhs at time 777 for fast variables advancing from 776 to 778 Fast time integration at level 0 from 776 to 776.5 with dt = 0.5 Fast time integration at level 0 from 776.5 to 777 with dt = 0.5 Fast time integration at level 0 from 777 to 777.5 with dt = 0.5 Fast time integration at level 0 from 777.5 to 778 with dt = 0.5 Time integration of scalars at level 0 from 776 to 778 with dt = 2 using RHS created at 777 Done with advance_dycore at level 0 [Level 0 step 389] Advanced 4096 cells [Level 1 step 389] ADVANCE from elapsed time = 776 to 778 with dt = 2 Making slow rhs at time 776 for fast variables advancing from 776 to 778 No-substepping time integration at level 1 to 778 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000397933647 0.002161716809 and volume-weighted sum 47040.73828 Subtracting 8.352403711e-06 from rhs in subdomain 0 Sum after subtraction 0.04970934242 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003895812551 MLMG: Initial residual (resid0) = 0.0003895812551 MLMG: Final Iter. 1 resid, resid/bnorm = 9.12476844e-06, 0.02342198975 MLMG: Timers: Solve = 0.0009497 Iter = 0.00055157 Bottom = 0.000231691 Time in solve 0.001219977 Max/L2 norm of divergence after solve at level 1 : 1.745065674e-05 0.0006311807083 and volume-weighted sum 47040.85547 Time integration of scalars at level 1 from 776 to 778 with dt = 2 using RHS created at 776 Making slow rhs at time 778 for fast variables advancing from 776 to 778 No-substepping time integration at level 1 to 778 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004137996584 0.002103657462 and volume-weighted sum 47040.78125 Subtracting 8.352411896e-06 from rhs in subdomain 0 Sum after subtraction 0.00256113708 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004054472374 MLMG: Initial residual (resid0) = 0.0004054472374 MLMG: Final Iter. 1 resid, resid/bnorm = 8.874725609e-06, 0.02188873105 MLMG: Timers: Solve = 0.000922429 Iter = 0.000522652 Bottom = 0.000195292 Time in solve 0.001195114 Max/L2 norm of divergence after solve at level 1 : 1.638522372e-05 0.0006292077596 and volume-weighted sum 47040.76172 Time integration of scalars at level 1 from 776 to 778 with dt = 2 using RHS created at 778 Done with advance_dycore at level 1 [Level 1 step 389] Advanced 5632 cells Coarse STEP 389 ends. TIME = 778 DT = 2 Timestep time = 0.022457513 seconds. Coarse STEP 390 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376705894 (terrain aware) 1.376705894 (terrain unaware) Anelastic dt at level 0 would be: 6.485648655 (terrain aware) 6.485648655 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2652168607 (terrain aware) 0.2652168607 (terrain unaware) Anelastic dt at level 1 would be: 3.086032225 (terrain aware) 3.086032225 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 390] ADVANCE from elapsed time = 778 to 780 with dt = 2 Making slow rhs at time 778 for fast variables advancing from 778 to 778.6666666667 Fast time integration at level 0 from 778 to 778.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 778 to 778.6666666667 with dt = 0.6666666666666 using RHS created at 778 Making slow rhs at time 778.6666666667 for fast variables advancing from 778 to 779 Fast time integration at level 0 from 778 to 778.5 with dt = 0.5 Fast time integration at level 0 from 778.5 to 779 with dt = 0.5 Time integration of scalars at level 0 from 778 to 779 with dt = 1 using RHS created at 778.6666666667 Making slow rhs at time 779 for fast variables advancing from 778 to 780 Fast time integration at level 0 from 778 to 778.5 with dt = 0.5 Fast time integration at level 0 from 778.5 to 779 with dt = 0.5 Fast time integration at level 0 from 779 to 779.5 with dt = 0.5 Fast time integration at level 0 from 779.5 to 780 with dt = 0.5 Time integration of scalars at level 0 from 778 to 780 with dt = 2 using RHS created at 779 Done with advance_dycore at level 0 [Level 0 step 390] Advanced 4096 cells [Level 1 step 390] ADVANCE from elapsed time = 778 to 780 with dt = 2 Making slow rhs at time 778 for fast variables advancing from 778 to 780 No-substepping time integration at level 1 to 780 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004349425435 0.002091125119 and volume-weighted sum 35125.17188 Subtracting 6.236713944e-06 from rhs in subdomain 0 Sum after subtraction 0.1372536719 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004287057964 MLMG: Initial residual (resid0) = 0.0004287057964 MLMG: Final Iter. 1 resid, resid/bnorm = 9.982494703e-06, 0.02328518778 MLMG: Timers: Solve = 0.000928437 Iter = 0.00052845 Bottom = 0.000201255 Time in solve 0.001196734 Max/L2 norm of divergence after solve at level 1 : 1.622224227e-05 0.000472612679 and volume-weighted sum 35125.21875 Time integration of scalars at level 1 from 778 to 780 with dt = 2 using RHS created at 778 Making slow rhs at time 780 for fast variables advancing from 778 to 780 No-substepping time integration at level 1 to 780 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004313420504 0.002056948608 and volume-weighted sum 35125.19531 Subtracting 6.236718036e-06 from rhs in subdomain 0 Sum after subtraction 0.003725290298 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004251053324 MLMG: Initial residual (resid0) = 0.0004251053324 MLMG: Final Iter. 1 resid, resid/bnorm = 9.17277066e-06, 0.02157764137 MLMG: Timers: Solve = 0.000869628 Iter = 0.00050441 Bottom = 0.000184513 Time in solve 0.001222075 Max/L2 norm of divergence after solve at level 1 : 1.4225021e-05 0.0004712250084 and volume-weighted sum 35125.14844 Time integration of scalars at level 1 from 778 to 780 with dt = 2 using RHS created at 780 Done with advance_dycore at level 1 [Level 1 step 390] Advanced 5632 cells Coarse STEP 390 ends. TIME = 780 DT = 2 Timestep time = 0.022418221 seconds. Coarse STEP 391 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376567611 (terrain aware) 1.376567611 (terrain unaware) Anelastic dt at level 0 would be: 6.491169237 (terrain aware) 6.491169237 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2651859408 (terrain aware) 0.2651859408 (terrain unaware) Anelastic dt at level 1 would be: 3.085099711 (terrain aware) 3.085099711 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,31) (0,0,0)) ((48,0,0) (111,0,47) (0,0,0)) ((112,0,0) (159,0,31) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,31) (0,0,0)) ((48,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.003980972804 0.01185348909 and volume-weighted sum 38385.12109 Subtracting 6.815540019e-06 from rhs in subdomain 0 Sum after subtraction 0.02793967724 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.003987788223 MLMG: Initial residual (resid0) = 0.003987788223 MLMG: Final Iter. 3 resid, resid/bnorm = 1.90641731e-06, 0.0004780638264 MLMG: Timers: Solve = 0.001854416 Iter = 0.001512178 Bottom = 0.000657692 Time in solve 0.002200533 Max/L2 norm of divergence after solve at level 1 : 8.428120054e-06 0.0005115056993 and volume-weighted sum 38385.1875 [Level 0 step 391] ADVANCE from elapsed time = 780 to 782 with dt = 2 Making slow rhs at time 780 for fast variables advancing from 780 to 780.6666666667 Fast time integration at level 0 from 780 to 780.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 780 to 780.6666666667 with dt = 0.6666666666666 using RHS created at 780 Making slow rhs at time 780.6666666667 for fast variables advancing from 780 to 781 Fast time integration at level 0 from 780 to 780.5 with dt = 0.5 Fast time integration at level 0 from 780.5 to 781 with dt = 0.5 Time integration of scalars at level 0 from 780 to 781 with dt = 1 using RHS created at 780.6666666667 Making slow rhs at time 781 for fast variables advancing from 780 to 782 Fast time integration at level 0 from 780 to 780.5 with dt = 0.5 Fast time integration at level 0 from 780.5 to 781 with dt = 0.5 Fast time integration at level 0 from 781 to 781.5 with dt = 0.5 Fast time integration at level 0 from 781.5 to 782 with dt = 0.5 Time integration of scalars at level 0 from 780 to 782 with dt = 2 using RHS created at 781 Done with advance_dycore at level 0 [Level 0 step 391] Advanced 4096 cells [Level 1 step 391] ADVANCE from elapsed time = 780 to 782 with dt = 2 Making slow rhs at time 780 for fast variables advancing from 780 to 782 No-substepping time integration at level 1 to 782 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.007792569697 0.08249133825 and volume-weighted sum 15977.85156 Subtracting 2.836976591e-06 from rhs in subdomain 0 Sum after subtraction -0.9909272194 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.007795406505 MLMG: Initial residual (resid0) = 0.007795406505 MLMG: Final Iter. 3 resid, resid/bnorm = 9.914860129e-06, 0.001271884888 MLMG: Timers: Solve = 0.001916583 Iter = 0.001576507 Bottom = 0.000716868 Time in solve 0.002213823 Max/L2 norm of divergence after solve at level 1 : 1.275283284e-05 0.000214217187 and volume-weighted sum 15977.46973 Time integration of scalars at level 1 from 780 to 782 with dt = 2 using RHS created at 780 Making slow rhs at time 782 for fast variables advancing from 780 to 782 No-substepping time integration at level 1 to 782 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003818944097 0.002032303018 and volume-weighted sum 15977.46875 Subtracting 2.836908607e-06 from rhs in subdomain 0 Sum after subtraction -0.05541369319 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003790575138 MLMG: Initial residual (resid0) = 0.0003790575138 MLMG: Final Iter. 1 resid, resid/bnorm = 9.515708371e-06, 0.0251036007 MLMG: Timers: Solve = 0.000882392 Iter = 0.000542632 Bottom = 0.000207444 Time in solve 0.001180688 Max/L2 norm of divergence after solve at level 1 : 1.132208854e-05 0.0002198914444 and volume-weighted sum 15977.48145 Time integration of scalars at level 1 from 780 to 782 with dt = 2 using RHS created at 782 Done with advance_dycore at level 1 [Level 1 step 391] Advanced 5632 cells Coarse STEP 391 ends. TIME = 782 DT = 2 Timestep time = 0.032244773 seconds. Coarse STEP 392 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376510093 (terrain aware) 1.376510093 (terrain unaware) Anelastic dt at level 0 would be: 6.498383187 (terrain aware) 6.498383187 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2651611117 (terrain aware) 0.2651611117 (terrain unaware) Anelastic dt at level 1 would be: 3.085142328 (terrain aware) 3.085142328 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 392] ADVANCE from elapsed time = 782 to 784 with dt = 2 Making slow rhs at time 782 for fast variables advancing from 782 to 782.6666666667 Fast time integration at level 0 from 782 to 782.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 782 to 782.6666666667 with dt = 0.6666666666666 using RHS created at 782 Making slow rhs at time 782.6666666667 for fast variables advancing from 782 to 783 Fast time integration at level 0 from 782 to 782.5 with dt = 0.5 Fast time integration at level 0 from 782.5 to 783 with dt = 0.5 Time integration of scalars at level 0 from 782 to 783 with dt = 1 using RHS created at 782.6666666667 Making slow rhs at time 783 for fast variables advancing from 782 to 784 Fast time integration at level 0 from 782 to 782.5 with dt = 0.5 Fast time integration at level 0 from 782.5 to 783 with dt = 0.5 Fast time integration at level 0 from 783 to 783.5 with dt = 0.5 Fast time integration at level 0 from 783.5 to 784 with dt = 0.5 Time integration of scalars at level 0 from 782 to 784 with dt = 2 using RHS created at 783 Done with advance_dycore at level 0 [Level 0 step 392] Advanced 4096 cells [Level 1 step 392] ADVANCE from elapsed time = 782 to 784 with dt = 2 Making slow rhs at time 782 for fast variables advancing from 782 to 784 No-substepping time integration at level 1 to 784 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003702491522 0.001997207291 and volume-weighted sum -8218.753906 Subtracting -1.459295845e-06 from rhs in subdomain 0 Sum after subtraction -0.05506444722 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003717084473 MLMG: Initial residual (resid0) = 0.0003717084473 MLMG: Final Iter. 1 resid, resid/bnorm = 9.310243513e-06, 0.02504716627 MLMG: Timers: Solve = 0.000916158 Iter = 0.000577854 Bottom = 0.00022834 Time in solve 0.00121631 Max/L2 norm of divergence after solve at level 1 : 8.646398783e-06 0.0001237087854 and volume-weighted sum -8218.729492 Time integration of scalars at level 1 from 782 to 784 with dt = 2 using RHS created at 782 Making slow rhs at time 784 for fast variables advancing from 782 to 784 No-substepping time integration at level 1 to 784 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003922563046 0.001998883905 and volume-weighted sum -8218.712891 Subtracting -1.459288455e-06 from rhs in subdomain 0 Sum after subtraction -0.07636845112 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003937155998 MLMG: Initial residual (resid0) = 0.0003937155998 MLMG: Final Iter. 1 resid, resid/bnorm = 9.421353752e-06, 0.0239293389 MLMG: Timers: Solve = 0.000910739 Iter = 0.00055519 Bottom = 0.000203566 Time in solve 0.001206708 Max/L2 norm of divergence after solve at level 1 : 1.088902354e-05 0.0001217816316 and volume-weighted sum -8218.724609 Time integration of scalars at level 1 from 782 to 784 with dt = 2 using RHS created at 784 Done with advance_dycore at level 1 [Level 1 step 392] Advanced 5632 cells Coarse STEP 392 ends. TIME = 784 DT = 2 Timestep time = 0.021899841 seconds. Coarse STEP 393 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376536468 (terrain aware) 1.376536468 (terrain unaware) Anelastic dt at level 0 would be: 6.505283616 (terrain aware) 6.505283616 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.265147235 (terrain aware) 0.265147235 (terrain unaware) Anelastic dt at level 1 would be: 3.086744501 (terrain aware) 3.086744501 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 393] ADVANCE from elapsed time = 784 to 786 with dt = 2 Making slow rhs at time 784 for fast variables advancing from 784 to 784.6666666667 Fast time integration at level 0 from 784 to 784.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 784 to 784.6666666667 with dt = 0.6666666666666 using RHS created at 784 Making slow rhs at time 784.6666666667 for fast variables advancing from 784 to 785 Fast time integration at level 0 from 784 to 784.5 with dt = 0.5 Fast time integration at level 0 from 784.5 to 785 with dt = 0.5 Time integration of scalars at level 0 from 784 to 785 with dt = 1 using RHS created at 784.6666666667 Making slow rhs at time 785 for fast variables advancing from 784 to 786 Fast time integration at level 0 from 784 to 784.5 with dt = 0.5 Fast time integration at level 0 from 784.5 to 785 with dt = 0.5 Fast time integration at level 0 from 785 to 785.5 with dt = 0.5 Fast time integration at level 0 from 785.5 to 786 with dt = 0.5 Time integration of scalars at level 0 from 784 to 786 with dt = 2 using RHS created at 785 Done with advance_dycore at level 0 [Level 0 step 393] Advanced 4096 cells [Level 1 step 393] ADVANCE from elapsed time = 784 to 786 with dt = 2 Making slow rhs at time 784 for fast variables advancing from 784 to 786 No-substepping time integration at level 1 to 786 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004202723503 0.002069404582 and volume-weighted sum -31882.08789 Subtracting -5.660881925e-06 from rhs in subdomain 0 Sum after subtraction 0.0290456228 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.00042593322 MLMG: Initial residual (resid0) = 0.00042593322 MLMG: Final Iter. 2 resid, resid/bnorm = 2.109421985e-06, 0.004952471238 MLMG: Timers: Solve = 0.001408122 Iter = 0.001070381 Bottom = 0.00046341 Time in solve 0.001710119 Max/L2 norm of divergence after solve at level 1 : 7.507856935e-06 0.0004248667974 and volume-weighted sum -31882.08398 Time integration of scalars at level 1 from 784 to 786 with dt = 2 using RHS created at 784 Making slow rhs at time 786 for fast variables advancing from 784 to 786 No-substepping time integration at level 1 to 786 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004223082215 0.002054525074 and volume-weighted sum -31882.0293 Subtracting -5.660871466e-06 from rhs in subdomain 0 Sum after subtraction 0.09115319699 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000427969062 MLMG: Initial residual (resid0) = 0.000427969062 MLMG: Final Iter. 1 resid, resid/bnorm = 9.633462469e-06, 0.02250971645 MLMG: Timers: Solve = 0.000877246 Iter = 0.000539342 Bottom = 0.000197008 Time in solve 0.001177127 Max/L2 norm of divergence after solve at level 1 : 1.529790461e-05 0.000428339059 and volume-weighted sum -31882.07031 Time integration of scalars at level 1 from 784 to 786 with dt = 2 using RHS created at 786 Done with advance_dycore at level 1 [Level 1 step 393] Advanced 5632 cells Coarse STEP 393 ends. TIME = 786 DT = 2 Timestep time = 0.022261102 seconds. Coarse STEP 394 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376653144 (terrain aware) 1.376653144 (terrain unaware) Anelastic dt at level 0 would be: 6.498066686 (terrain aware) 6.498066686 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2651390953 (terrain aware) 0.2651390953 (terrain unaware) Anelastic dt at level 1 would be: 3.087318196 (terrain aware) 3.087318196 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 394] ADVANCE from elapsed time = 786 to 788 with dt = 2 Making slow rhs at time 786 for fast variables advancing from 786 to 786.6666666667 Fast time integration at level 0 from 786 to 786.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 786 to 786.6666666667 with dt = 0.6666666666666 using RHS created at 786 Making slow rhs at time 786.6666666667 for fast variables advancing from 786 to 787 Fast time integration at level 0 from 786 to 786.5 with dt = 0.5 Fast time integration at level 0 from 786.5 to 787 with dt = 0.5 Time integration of scalars at level 0 from 786 to 787 with dt = 1 using RHS created at 786.6666666667 Making slow rhs at time 787 for fast variables advancing from 786 to 788 Fast time integration at level 0 from 786 to 786.5 with dt = 0.5 Fast time integration at level 0 from 786.5 to 787 with dt = 0.5 Fast time integration at level 0 from 787 to 787.5 with dt = 0.5 Fast time integration at level 0 from 787.5 to 788 with dt = 0.5 Time integration of scalars at level 0 from 786 to 788 with dt = 2 using RHS created at 787 Done with advance_dycore at level 0 [Level 0 step 394] Advanced 4096 cells [Level 1 step 394] ADVANCE from elapsed time = 786 to 788 with dt = 2 Making slow rhs at time 786 for fast variables advancing from 786 to 788 No-substepping time integration at level 1 to 788 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003963615745 0.002163032535 and volume-weighted sum -52774.01953 Subtracting -9.370386579e-06 from rhs in subdomain 0 Sum after subtraction 0.0600120984 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004057319602 MLMG: Initial residual (resid0) = 0.0004057319602 MLMG: Final Iter. 2 resid, resid/bnorm = 3.204630048e-06, 0.007898392156 MLMG: Timers: Solve = 0.001404463 Iter = 0.001066909 Bottom = 0.000464174 Time in solve 0.001702148 Max/L2 norm of divergence after solve at level 1 : 1.212838106e-05 0.0007032585563 and volume-weighted sum -52773.96875 Time integration of scalars at level 1 from 786 to 788 with dt = 2 using RHS created at 786 Making slow rhs at time 788 for fast variables advancing from 786 to 788 No-substepping time integration at level 1 to 788 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003809519112 0.002124324441 and volume-weighted sum -52773.97656 Subtracting -9.370379303e-06 from rhs in subdomain 0 Sum after subtraction 0.01257285476 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003903222969 MLMG: Initial residual (resid0) = 0.0003903222969 MLMG: Final Iter. 1 resid, resid/bnorm = 9.515562851e-06, 0.02437873185 MLMG: Timers: Solve = 0.000877931 Iter = 0.000538763 Bottom = 0.000199679 Time in solve 0.001175617 Max/L2 norm of divergence after solve at level 1 : 1.888908446e-05 0.0007053319714 and volume-weighted sum -52773.92969 Time integration of scalars at level 1 from 786 to 788 with dt = 2 using RHS created at 788 Done with advance_dycore at level 1 [Level 1 step 394] Advanced 5632 cells Coarse STEP 394 ends. TIME = 788 DT = 2 Timestep time = 0.022465008 seconds. Coarse STEP 395 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.376455704 (terrain aware) 1.376455704 (terrain unaware) Anelastic dt at level 0 would be: 6.49285426 (terrain aware) 6.49285426 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.26511652 (terrain aware) 0.26511652 (terrain unaware) Anelastic dt at level 1 would be: 3.085630788 (terrain aware) 3.085630788 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 395] ADVANCE from elapsed time = 788 to 790 with dt = 2 Making slow rhs at time 788 for fast variables advancing from 788 to 788.6666666667 Fast time integration at level 0 from 788 to 788.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 788 to 788.6666666667 with dt = 0.6666666666666 using RHS created at 788 Making slow rhs at time 788.6666666667 for fast variables advancing from 788 to 789 Fast time integration at level 0 from 788 to 788.5 with dt = 0.5 Fast time integration at level 0 from 788.5 to 789 with dt = 0.5 Time integration of scalars at level 0 from 788 to 789 with dt = 1 using RHS created at 788.6666666667 Making slow rhs at time 789 for fast variables advancing from 788 to 790 Fast time integration at level 0 from 788 to 788.5 with dt = 0.5 Fast time integration at level 0 from 788.5 to 789 with dt = 0.5 Fast time integration at level 0 from 789 to 789.5 with dt = 0.5 Fast time integration at level 0 from 789.5 to 790 with dt = 0.5 Time integration of scalars at level 0 from 788 to 790 with dt = 2 using RHS created at 789 Done with advance_dycore at level 0 [Level 0 step 395] Advanced 4096 cells [Level 1 step 395] ADVANCE from elapsed time = 788 to 790 with dt = 2 Making slow rhs at time 788 for fast variables advancing from 788 to 790 No-substepping time integration at level 1 to 790 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003357511014 0.002267794684 and volume-weighted sum -68792.47656 Subtracting -1.221457296e-05 from rhs in subdomain 0 Sum after subtraction -0.01851003617 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000347965688 MLMG: Initial residual (resid0) = 0.000347965688 MLMG: Final Iter. 2 resid, resid/bnorm = 3.805467713e-06, 0.01093633007 MLMG: Timers: Solve = 0.001405416 Iter = 0.00106813 Bottom = 0.000459568 Time in solve 0.001711734 Max/L2 norm of divergence after solve at level 1 : 1.544237603e-05 0.0009167090175 and volume-weighted sum -68792.41406 Time integration of scalars at level 1 from 788 to 790 with dt = 2 using RHS created at 788 Making slow rhs at time 790 for fast variables advancing from 788 to 790 No-substepping time integration at level 1 to 790 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003619529307 0.002200279618 and volume-weighted sum -68792.5 Subtracting -1.221457751e-05 from rhs in subdomain 0 Sum after subtraction -0.1072185114 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003741675464 MLMG: Initial residual (resid0) = 0.0003741675464 MLMG: Final Iter. 1 resid, resid/bnorm = 9.318813682e-06, 0.02490545623 MLMG: Timers: Solve = 0.000874593 Iter = 0.000534541 Bottom = 0.000192114 Time in solve 0.001174015 Max/L2 norm of divergence after solve at level 1 : 2.15433538e-05 0.0009182840004 and volume-weighted sum -68792.46094 Time integration of scalars at level 1 from 788 to 790 with dt = 2 using RHS created at 790 Done with advance_dycore at level 1 [Level 1 step 395] Advanced 5632 cells Coarse STEP 395 ends. TIME = 790 DT = 2 Timestep time = 0.022604338 seconds. Coarse STEP 396 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375907937 (terrain aware) 1.375907937 (terrain unaware) Anelastic dt at level 0 would be: 6.489752434 (terrain aware) 6.489752434 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650820611 (terrain aware) 0.2650820611 (terrain unaware) Anelastic dt at level 1 would be: 3.084631516 (terrain aware) 3.084631516 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 396] ADVANCE from elapsed time = 790 to 792 with dt = 2 Making slow rhs at time 790 for fast variables advancing from 790 to 790.6666666667 Fast time integration at level 0 from 790 to 790.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 790 to 790.6666666667 with dt = 0.6666666666666 using RHS created at 790 Making slow rhs at time 790.6666666667 for fast variables advancing from 790 to 791 Fast time integration at level 0 from 790 to 790.5 with dt = 0.5 Fast time integration at level 0 from 790.5 to 791 with dt = 0.5 Time integration of scalars at level 0 from 790 to 791 with dt = 1 using RHS created at 790.6666666667 Making slow rhs at time 791 for fast variables advancing from 790 to 792 Fast time integration at level 0 from 790 to 790.5 with dt = 0.5 Fast time integration at level 0 from 790.5 to 791 with dt = 0.5 Fast time integration at level 0 from 791 to 791.5 with dt = 0.5 Fast time integration at level 0 from 791.5 to 792 with dt = 0.5 Time integration of scalars at level 0 from 790 to 792 with dt = 2 using RHS created at 791 Done with advance_dycore at level 0 [Level 0 step 396] Advanced 4096 cells [Level 1 step 396] ADVANCE from elapsed time = 790 to 792 with dt = 2 Making slow rhs at time 790 for fast variables advancing from 790 to 792 No-substepping time integration at level 1 to 792 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003974698484 0.002340408508 and volume-weighted sum -78191.35938 Subtracting -1.388340934e-05 from rhs in subdomain 0 Sum after subtraction 0.01420266926 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004113532486 MLMG: Initial residual (resid0) = 0.0004113532486 MLMG: Final Iter. 2 resid, resid/bnorm = 3.787812602e-06, 0.009208174422 MLMG: Timers: Solve = 0.001339372 Iter = 0.001048645 Bottom = 0.000420962 Time in solve 0.001692424 Max/L2 norm of divergence after solve at level 1 : 1.702783629e-05 0.001041950658 and volume-weighted sum -78191.35156 Time integration of scalars at level 1 from 790 to 792 with dt = 2 using RHS created at 790 Making slow rhs at time 792 for fast variables advancing from 790 to 792 No-substepping time integration at level 1 to 792 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004070401192 0.0022521012 and volume-weighted sum -78191.46875 Subtracting -1.388342844e-05 from rhs in subdomain 0 Sum after subtraction 0.09266659617 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004209235194 MLMG: Initial residual (resid0) = 0.0004209235194 MLMG: Final Iter. 1 resid, resid/bnorm = 9.001825674e-06, 0.02138589323 MLMG: Timers: Solve = 0.000895269 Iter = 0.00055631 Bottom = 0.000208262 Time in solve 0.001191538 Max/L2 norm of divergence after solve at level 1 : 2.289190888e-05 0.001043330063 and volume-weighted sum -78191.34375 Time integration of scalars at level 1 from 790 to 792 with dt = 2 using RHS created at 792 Done with advance_dycore at level 1 [Level 1 step 396] Advanced 5632 cells Coarse STEP 396 ends. TIME = 792 DT = 2 Timestep time = 0.022048639 seconds. Coarse STEP 397 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375463435 (terrain aware) 1.375463435 (terrain unaware) Anelastic dt at level 0 would be: 6.488784455 (terrain aware) 6.488784455 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650529107 (terrain aware) 0.2650529107 (terrain unaware) Anelastic dt at level 1 would be: 3.084253921 (terrain aware) 3.084253921 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 397] ADVANCE from elapsed time = 792 to 794 with dt = 2 Making slow rhs at time 792 for fast variables advancing from 792 to 792.6666666667 Fast time integration at level 0 from 792 to 792.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 792 to 792.6666666667 with dt = 0.6666666666666 using RHS created at 792 Making slow rhs at time 792.6666666667 for fast variables advancing from 792 to 793 Fast time integration at level 0 from 792 to 792.5 with dt = 0.5 Fast time integration at level 0 from 792.5 to 793 with dt = 0.5 Time integration of scalars at level 0 from 792 to 793 with dt = 1 using RHS created at 792.6666666667 Making slow rhs at time 793 for fast variables advancing from 792 to 794 Fast time integration at level 0 from 792 to 792.5 with dt = 0.5 Fast time integration at level 0 from 792.5 to 793 with dt = 0.5 Fast time integration at level 0 from 793 to 793.5 with dt = 0.5 Fast time integration at level 0 from 793.5 to 794 with dt = 0.5 Time integration of scalars at level 0 from 792 to 794 with dt = 2 using RHS created at 793 Done with advance_dycore at level 0 [Level 0 step 397] Advanced 4096 cells [Level 1 step 397] ADVANCE from elapsed time = 792 to 794 with dt = 2 Making slow rhs at time 792 for fast variables advancing from 792 to 794 No-substepping time integration at level 1 to 794 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003930460662 0.002356849844 and volume-weighted sum -79777.48438 Subtracting -1.416503619e-05 from rhs in subdomain 0 Sum after subtraction -0.01257285476 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004072111042 MLMG: Initial residual (resid0) = 0.0004072111042 MLMG: Final Iter. 2 resid, resid/bnorm = 2.960172424e-06, 0.007269380614 MLMG: Timers: Solve = 0.001338082 Iter = 0.001011677 Bottom = 0.000413162 Time in solve 0.001645981 Max/L2 norm of divergence after solve at level 1 : 1.65104866e-05 0.001063075382 and volume-weighted sum -79777.44531 Time integration of scalars at level 1 from 792 to 794 with dt = 2 using RHS created at 792 Making slow rhs at time 794 for fast variables advancing from 792 to 794 No-substepping time integration at level 1 to 794 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003843959421 0.002259377157 and volume-weighted sum -79777.50781 Subtracting -1.416504074e-05 from rhs in subdomain 0 Sum after subtraction 0.09429641068 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000398560951 MLMG: Initial residual (resid0) = 0.000398560951 MLMG: Final Iter. 1 resid, resid/bnorm = 9.336101357e-06, 0.02342452668 MLMG: Timers: Solve = 0.000877893 Iter = 0.000531792 Bottom = 0.000198691 Time in solve 0.001167872 Max/L2 norm of divergence after solve at level 1 : 2.350099385e-05 0.001064431039 and volume-weighted sum -79777.42969 Time integration of scalars at level 1 from 792 to 794 with dt = 2 using RHS created at 794 Done with advance_dycore at level 1 [Level 1 step 397] Advanced 5632 cells Coarse STEP 397 ends. TIME = 794 DT = 2 Timestep time = 0.022109413 seconds. Coarse STEP 398 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.375125328 (terrain aware) 1.375125328 (terrain unaware) Anelastic dt at level 0 would be: 6.489936613 (terrain aware) 6.489936613 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650298697 (terrain aware) 0.2650298697 (terrain unaware) Anelastic dt at level 1 would be: 3.084505154 (terrain aware) 3.084505154 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 398] ADVANCE from elapsed time = 794 to 796 with dt = 2 Making slow rhs at time 794 for fast variables advancing from 794 to 794.6666666667 Fast time integration at level 0 from 794 to 794.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 794 to 794.6666666667 with dt = 0.6666666666666 using RHS created at 794 Making slow rhs at time 794.6666666667 for fast variables advancing from 794 to 795 Fast time integration at level 0 from 794 to 794.5 with dt = 0.5 Fast time integration at level 0 from 794.5 to 795 with dt = 0.5 Time integration of scalars at level 0 from 794 to 795 with dt = 1 using RHS created at 794.6666666667 Making slow rhs at time 795 for fast variables advancing from 794 to 796 Fast time integration at level 0 from 794 to 794.5 with dt = 0.5 Fast time integration at level 0 from 794.5 to 795 with dt = 0.5 Fast time integration at level 0 from 795 to 795.5 with dt = 0.5 Fast time integration at level 0 from 795.5 to 796 with dt = 0.5 Time integration of scalars at level 0 from 794 to 796 with dt = 2 using RHS created at 795 Done with advance_dycore at level 0 [Level 0 step 398] Advanced 4096 cells [Level 1 step 398] ADVANCE from elapsed time = 794 to 796 with dt = 2 Making slow rhs at time 794 for fast variables advancing from 794 to 796 No-substepping time integration at level 1 to 796 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003240145743 0.002305397764 and volume-weighted sum -73031.10156 Subtracting -1.296716982e-05 from rhs in subdomain 0 Sum after subtraction 0.05651963875 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003358902468 MLMG: Initial residual (resid0) = 0.0003358902468 MLMG: Final Iter. 2 resid, resid/bnorm = 1.968015567e-06, 0.005859103054 MLMG: Timers: Solve = 0.00140513 Iter = 0.001057993 Bottom = 0.000461025 Time in solve 0.001694283 Max/L2 norm of divergence after solve at level 1 : 1.441244967e-05 0.0009731686441 and volume-weighted sum -73031.10938 Time integration of scalars at level 1 from 794 to 796 with dt = 2 using RHS created at 794 Making slow rhs at time 796 for fast variables advancing from 794 to 796 No-substepping time integration at level 1 to 796 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000340571627 0.002216621302 and volume-weighted sum -73031.14844 Subtracting -1.296717801e-05 from rhs in subdomain 0 Sum after subtraction -0.06030313671 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003535388096 MLMG: Initial residual (resid0) = 0.0003535388096 MLMG: Final Iter. 1 resid, resid/bnorm = 9.721406968e-06, 0.02749742568 MLMG: Timers: Solve = 0.000895394 Iter = 0.000540387 Bottom = 0.000207625 Time in solve 0.001180089 Max/L2 norm of divergence after solve at level 1 : 2.268701792e-05 0.0009746606229 and volume-weighted sum -73031.1875 Time integration of scalars at level 1 from 794 to 796 with dt = 2 using RHS created at 796 Done with advance_dycore at level 1 [Level 1 step 398] Advanced 5632 cells Coarse STEP 398 ends. TIME = 796 DT = 2 Timestep time = 0.022681166 seconds. Coarse STEP 399 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374890933 (terrain aware) 1.374890933 (terrain unaware) Anelastic dt at level 0 would be: 6.493081354 (terrain aware) 6.493081354 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2650099208 (terrain aware) 0.2650099208 (terrain unaware) Anelastic dt at level 1 would be: 3.081711485 (terrain aware) 3.081711485 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 399] ADVANCE from elapsed time = 796 to 798 with dt = 2 Making slow rhs at time 796 for fast variables advancing from 796 to 796.6666666667 Fast time integration at level 0 from 796 to 796.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 796 to 796.6666666667 with dt = 0.6666666666666 using RHS created at 796 Making slow rhs at time 796.6666666667 for fast variables advancing from 796 to 797 Fast time integration at level 0 from 796 to 796.5 with dt = 0.5 Fast time integration at level 0 from 796.5 to 797 with dt = 0.5 Time integration of scalars at level 0 from 796 to 797 with dt = 1 using RHS created at 796.6666666667 Making slow rhs at time 797 for fast variables advancing from 796 to 798 Fast time integration at level 0 from 796 to 796.5 with dt = 0.5 Fast time integration at level 0 from 796.5 to 797 with dt = 0.5 Fast time integration at level 0 from 797 to 797.5 with dt = 0.5 Fast time integration at level 0 from 797.5 to 798 with dt = 0.5 Time integration of scalars at level 0 from 796 to 798 with dt = 2 using RHS created at 797 Done with advance_dycore at level 0 [Level 0 step 399] Advanced 4096 cells [Level 1 step 399] ADVANCE from elapsed time = 796 to 798 with dt = 2 Making slow rhs at time 796 for fast variables advancing from 796 to 798 No-substepping time integration at level 1 to 798 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003900565207 0.002200425835 and volume-weighted sum -58437.18359 Subtracting -1.037592028e-05 from rhs in subdomain 0 Sum after subtraction -0.1487787813 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004004324728 MLMG: Initial residual (resid0) = 0.0004004324728 MLMG: Final Iter. 1 resid, resid/bnorm = 9.100138413e-06, 0.02272577584 MLMG: Timers: Solve = 0.000922674 Iter = 0.000570246 Bottom = 0.000238863 Time in solve 0.001206031 Max/L2 norm of divergence after solve at level 1 : 1.86515972e-05 0.0007826327928 and volume-weighted sum -58437.3125 Time integration of scalars at level 1 from 796 to 798 with dt = 2 using RHS created at 796 Making slow rhs at time 798 for fast variables advancing from 796 to 798 No-substepping time integration at level 1 to 798 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004025436938 0.002118440345 and volume-weighted sum -58437.19531 Subtracting -1.03759221e-05 from rhs in subdomain 0 Sum after subtraction -0.0562868081 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004129196168 MLMG: Initial residual (resid0) = 0.0004129196168 MLMG: Final Iter. 1 resid, resid/bnorm = 9.662784578e-06, 0.02340112813 MLMG: Timers: Solve = 0.00087561 Iter = 0.00053871 Bottom = 0.000199478 Time in solve 0.00116305 Max/L2 norm of divergence after solve at level 1 : 2.004206181e-05 0.0007804670604 and volume-weighted sum -58437.33203 Time integration of scalars at level 1 from 796 to 798 with dt = 2 using RHS created at 798 Done with advance_dycore at level 1 [Level 1 step 399] Advanced 5632 cells Coarse STEP 399 ends. TIME = 798 DT = 2 Timestep time = 0.021919368 seconds. Coarse STEP 400 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.37475876 (terrain aware) 1.37475876 (terrain unaware) Anelastic dt at level 0 would be: 6.498116754 (terrain aware) 6.498116754 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649662232 (terrain aware) 0.2649662232 (terrain unaware) Anelastic dt at level 1 would be: 3.078792943 (terrain aware) 3.078792943 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 400] ADVANCE from elapsed time = 798 to 800 with dt = 2 Making slow rhs at time 798 for fast variables advancing from 798 to 798.6666666667 Fast time integration at level 0 from 798 to 798.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 798 to 798.6666666667 with dt = 0.6666666666666 using RHS created at 798 Making slow rhs at time 798.6666666667 for fast variables advancing from 798 to 799 Fast time integration at level 0 from 798 to 798.5 with dt = 0.5 Fast time integration at level 0 from 798.5 to 799 with dt = 0.5 Time integration of scalars at level 0 from 798 to 799 with dt = 1 using RHS created at 798.6666666667 Making slow rhs at time 799 for fast variables advancing from 798 to 800 Fast time integration at level 0 from 798 to 798.5 with dt = 0.5 Fast time integration at level 0 from 798.5 to 799 with dt = 0.5 Fast time integration at level 0 from 799 to 799.5 with dt = 0.5 Fast time integration at level 0 from 799.5 to 800 with dt = 0.5 Time integration of scalars at level 0 from 798 to 800 with dt = 2 using RHS created at 799 Done with advance_dycore at level 0 [Level 0 step 400] Advanced 4096 cells [Level 1 step 400] ADVANCE from elapsed time = 798 to 800 with dt = 2 Making slow rhs at time 798 for fast variables advancing from 798 to 800 No-substepping time integration at level 1 to 800 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004072487354 0.002082860796 and volume-weighted sum -37512.88281 Subtracting -6.660668078e-06 from rhs in subdomain 0 Sum after subtraction 0.01449370757 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000413909409 MLMG: Initial residual (resid0) = 0.000413909409 MLMG: Final Iter. 2 resid, resid/bnorm = 4.512494343e-07, 0.001090213074 MLMG: Timers: Solve = 0.001423121 Iter = 0.001081336 Bottom = 0.000483277 Time in solve 0.001709975 Max/L2 norm of divergence after solve at level 1 : 7.116352208e-06 0.0004998710356 and volume-weighted sum -37512.89844 Time integration of scalars at level 1 from 798 to 800 with dt = 2 using RHS created at 798 Making slow rhs at time 800 for fast variables advancing from 798 to 800 No-substepping time integration at level 1 to 800 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003999192268 0.002049533417 and volume-weighted sum -37512.91406 Subtracting -6.660673534e-06 from rhs in subdomain 0 Sum after subtraction 0.07532071322 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004065799003 MLMG: Initial residual (resid0) = 0.0004065799003 MLMG: Final Iter. 2 resid, resid/bnorm = 4.799353519e-07, 0.001180420746 MLMG: Timers: Solve = 0.001363389 Iter = 0.001018632 Bottom = 0.000419159 Time in solve 0.001643943 Max/L2 norm of divergence after solve at level 1 : 7.139053196e-06 0.000499866961 and volume-weighted sum -37512.85938 Time integration of scalars at level 1 from 798 to 800 with dt = 2 using RHS created at 800 Done with advance_dycore at level 1 [Level 1 step 400] Advanced 5632 cells Coarse STEP 400 ends. TIME = 800 DT = 2 Timestep time = 0.023097133 seconds. 3DPlotfile write time = 0.006779679 seconds. Coarse STEP 401 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374722699 (terrain aware) 1.374722699 (terrain unaware) Anelastic dt at level 0 would be: 6.504835986 (terrain aware) 6.504835986 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264933422 (terrain aware) 0.264933422 (terrain unaware) Anelastic dt at level 1 would be: 3.076921358 (terrain aware) 3.076921358 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 401] ADVANCE from elapsed time = 800 to 802 with dt = 2 Making slow rhs at time 800 for fast variables advancing from 800 to 800.6666666667 Fast time integration at level 0 from 800 to 800.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 800 to 800.6666666667 with dt = 0.6666666666666 using RHS created at 800 Making slow rhs at time 800.6666666667 for fast variables advancing from 800 to 801 Fast time integration at level 0 from 800 to 800.5 with dt = 0.5 Fast time integration at level 0 from 800.5 to 801 with dt = 0.5 Time integration of scalars at level 0 from 800 to 801 with dt = 1 using RHS created at 800.6666666667 Making slow rhs at time 801 for fast variables advancing from 800 to 802 Fast time integration at level 0 from 800 to 800.5 with dt = 0.5 Fast time integration at level 0 from 800.5 to 801 with dt = 0.5 Fast time integration at level 0 from 801 to 801.5 with dt = 0.5 Fast time integration at level 0 from 801.5 to 802 with dt = 0.5 Time integration of scalars at level 0 from 800 to 802 with dt = 2 using RHS created at 801 Done with advance_dycore at level 0 [Level 0 step 401] Advanced 4096 cells [Level 1 step 401] ADVANCE from elapsed time = 800 to 802 with dt = 2 Making slow rhs at time 800 for fast variables advancing from 800 to 802 No-substepping time integration at level 1 to 802 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000355316326 0.002048043068 and volume-weighted sum -12459.66699 Subtracting -2.212298796e-06 from rhs in subdomain 0 Sum after subtraction 0.07962808013 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003575286246 MLMG: Initial residual (resid0) = 0.0003575286246 MLMG: Final Iter. 2 resid, resid/bnorm = 8.772458386e-07, 0.002453638008 MLMG: Timers: Solve = 0.001409298 Iter = 0.001069372 Bottom = 0.000465358 Time in solve 0.001697022 Max/L2 norm of divergence after solve at level 1 : 3.092223778e-06 0.0001660981216 and volume-weighted sum -12459.66602 Time integration of scalars at level 1 from 800 to 802 with dt = 2 using RHS created at 800 Making slow rhs at time 802 for fast variables advancing from 800 to 802 No-substepping time integration at level 1 to 802 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000333160162 0.001991949743 and volume-weighted sum -12459.68555 Subtracting -2.212302206e-06 from rhs in subdomain 0 Sum after subtraction -0.0064028427 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003353724605 MLMG: Initial residual (resid0) = 0.0003353724605 MLMG: Final Iter. 2 resid, resid/bnorm = 4.856835858e-07, 0.001448191586 MLMG: Timers: Solve = 0.001347814 Iter = 0.001009897 Bottom = 0.000405896 Time in solve 0.00165196 Max/L2 norm of divergence after solve at level 1 : 2.719985787e-06 0.0001660444832 and volume-weighted sum -12459.68555 Time integration of scalars at level 1 from 800 to 802 with dt = 2 using RHS created at 802 Done with advance_dycore at level 1 [Level 1 step 401] Advanced 5632 cells Coarse STEP 401 ends. TIME = 802 DT = 2 Timestep time = 0.023928811 seconds. Coarse STEP 402 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374778727 (terrain aware) 1.374778727 (terrain unaware) Anelastic dt at level 0 would be: 6.513105534 (terrain aware) 6.513105534 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649122996 (terrain aware) 0.2649122996 (terrain unaware) Anelastic dt at level 1 would be: 3.07616259 (terrain aware) 3.07616259 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 402] ADVANCE from elapsed time = 802 to 804 with dt = 2 Making slow rhs at time 802 for fast variables advancing from 802 to 802.6666666667 Fast time integration at level 0 from 802 to 802.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 802 to 802.6666666667 with dt = 0.6666666666666 using RHS created at 802 Making slow rhs at time 802.6666666667 for fast variables advancing from 802 to 803 Fast time integration at level 0 from 802 to 802.5 with dt = 0.5 Fast time integration at level 0 from 802.5 to 803 with dt = 0.5 Time integration of scalars at level 0 from 802 to 803 with dt = 1 using RHS created at 802.6666666667 Making slow rhs at time 803 for fast variables advancing from 802 to 804 Fast time integration at level 0 from 802 to 802.5 with dt = 0.5 Fast time integration at level 0 from 802.5 to 803 with dt = 0.5 Fast time integration at level 0 from 803 to 803.5 with dt = 0.5 Fast time integration at level 0 from 803.5 to 804 with dt = 0.5 Time integration of scalars at level 0 from 802 to 804 with dt = 2 using RHS created at 803 Done with advance_dycore at level 0 [Level 0 step 402] Advanced 4096 cells [Level 1 step 402] ADVANCE from elapsed time = 802 to 804 with dt = 2 Making slow rhs at time 802 for fast variables advancing from 802 to 804 No-substepping time integration at level 1 to 804 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003900751472 0.00203133747 and volume-weighted sum 14018.38477 Subtracting 2.489059852e-06 from rhs in subdomain 0 Sum after subtraction -0.02654269338 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003875861003 MLMG: Initial residual (resid0) = 0.0003875861003 MLMG: Final Iter. 2 resid, resid/bnorm = 1.66002792e-06, 0.004282991402 MLMG: Timers: Solve = 0.001395048 Iter = 0.001057706 Bottom = 0.000456785 Time in solve 0.001694569 Max/L2 norm of divergence after solve at level 1 : 3.917200956e-06 0.0001869343541 and volume-weighted sum 14018.30762 Time integration of scalars at level 1 from 802 to 804 with dt = 2 using RHS created at 802 Making slow rhs at time 804 for fast variables advancing from 802 to 804 No-substepping time integration at level 1 to 804 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004041828215 0.001991496887 and volume-weighted sum 14018.39258 Subtracting 2.489061217e-06 from rhs in subdomain 0 Sum after subtraction -0.01484295353 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004016937746 MLMG: Initial residual (resid0) = 0.0004016937746 MLMG: Final Iter. 2 resid, resid/bnorm = 4.826742952e-07, 0.001201597624 MLMG: Timers: Solve = 0.001335626 Iter = 0.000992824 Bottom = 0.000390017 Time in solve 0.001624825 Max/L2 norm of divergence after solve at level 1 : 2.929009497e-06 0.0001868114196 and volume-weighted sum 14018.33398 Time integration of scalars at level 1 from 802 to 804 with dt = 2 using RHS created at 804 Done with advance_dycore at level 1 [Level 1 step 402] Advanced 5632 cells Coarse STEP 402 ends. TIME = 804 DT = 2 Timestep time = 0.023181882 seconds. Coarse STEP 403 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374921927 (terrain aware) 1.374921927 (terrain unaware) Anelastic dt at level 0 would be: 6.511986755 (terrain aware) 6.511986755 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2649044765 (terrain aware) 0.2649044765 (terrain unaware) Anelastic dt at level 1 would be: 3.076165571 (terrain aware) 3.076165571 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 403] ADVANCE from elapsed time = 804 to 806 with dt = 2 Making slow rhs at time 804 for fast variables advancing from 804 to 804.6666666667 Fast time integration at level 0 from 804 to 804.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 804 to 804.6666666667 with dt = 0.6666666666666 using RHS created at 804 Making slow rhs at time 804.6666666667 for fast variables advancing from 804 to 805 Fast time integration at level 0 from 804 to 804.5 with dt = 0.5 Fast time integration at level 0 from 804.5 to 805 with dt = 0.5 Time integration of scalars at level 0 from 804 to 805 with dt = 1 using RHS created at 804.6666666667 Making slow rhs at time 805 for fast variables advancing from 804 to 806 Fast time integration at level 0 from 804 to 804.5 with dt = 0.5 Fast time integration at level 0 from 804.5 to 805 with dt = 0.5 Fast time integration at level 0 from 805 to 805.5 with dt = 0.5 Fast time integration at level 0 from 805.5 to 806 with dt = 0.5 Time integration of scalars at level 0 from 804 to 806 with dt = 2 using RHS created at 805 Done with advance_dycore at level 0 [Level 0 step 403] Advanced 4096 cells [Level 1 step 403] ADVANCE from elapsed time = 804 to 806 with dt = 2 Making slow rhs at time 804 for fast variables advancing from 804 to 806 No-substepping time integration at level 1 to 806 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004218388349 0.002113355557 and volume-weighted sum 39130.65234 Subtracting 6.947914244e-06 from rhs in subdomain 0 Sum after subtraction 0.03119930625 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004148909065 MLMG: Initial residual (resid0) = 0.0004148909065 MLMG: Final Iter. 2 resid, resid/bnorm = 2.354860044e-06, 0.005675853696 MLMG: Timers: Solve = 0.001403796 Iter = 0.001051912 Bottom = 0.000454505 Time in solve 0.00169309 Max/L2 norm of divergence after solve at level 1 : 8.878705557e-06 0.0005214968696 and volume-weighted sum 39130.75391 Time integration of scalars at level 1 from 804 to 806 with dt = 2 using RHS created at 804 Making slow rhs at time 806 for fast variables advancing from 804 to 806 No-substepping time integration at level 1 to 806 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004171393812 0.002047496615 and volume-weighted sum 39130.66797 Subtracting 6.947916972e-06 from rhs in subdomain 0 Sum after subtraction 0.02444721758 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004101914528 MLMG: Initial residual (resid0) = 0.0004101914528 MLMG: Final Iter. 2 resid, resid/bnorm = 4.841361942e-07, 0.001180268824 MLMG: Timers: Solve = 0.001364869 Iter = 0.001021644 Bottom = 0.000412843 Time in solve 0.001697935 Max/L2 norm of divergence after solve at level 1 : 7.390975952e-06 0.00052142411 and volume-weighted sum 39130.71094 Time integration of scalars at level 1 from 804 to 806 with dt = 2 using RHS created at 806 Done with advance_dycore at level 1 [Level 1 step 403] Advanced 5632 cells Coarse STEP 403 ends. TIME = 806 DT = 2 Timestep time = 0.022788191 seconds. Coarse STEP 404 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374926547 (terrain aware) 1.374926547 (terrain unaware) Anelastic dt at level 0 would be: 6.505056523 (terrain aware) 6.505056523 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264882013 (terrain aware) 0.264882013 (terrain unaware) Anelastic dt at level 1 would be: 3.073370113 (terrain aware) 3.073370113 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 404] ADVANCE from elapsed time = 806 to 808 with dt = 2 Making slow rhs at time 806 for fast variables advancing from 806 to 806.6666666667 Fast time integration at level 0 from 806 to 806.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 806 to 806.6666666667 with dt = 0.6666666666666 using RHS created at 806 Making slow rhs at time 806.6666666667 for fast variables advancing from 806 to 807 Fast time integration at level 0 from 806 to 806.5 with dt = 0.5 Fast time integration at level 0 from 806.5 to 807 with dt = 0.5 Time integration of scalars at level 0 from 806 to 807 with dt = 1 using RHS created at 806.6666666667 Making slow rhs at time 807 for fast variables advancing from 806 to 808 Fast time integration at level 0 from 806 to 806.5 with dt = 0.5 Fast time integration at level 0 from 806.5 to 807 with dt = 0.5 Fast time integration at level 0 from 807 to 807.5 with dt = 0.5 Fast time integration at level 0 from 807.5 to 808 with dt = 0.5 Time integration of scalars at level 0 from 806 to 808 with dt = 2 using RHS created at 807 Done with advance_dycore at level 0 [Level 0 step 404] Advanced 4096 cells [Level 1 step 404] ADVANCE from elapsed time = 806 to 808 with dt = 2 Making slow rhs at time 806 for fast variables advancing from 806 to 808 No-substepping time integration at level 1 to 808 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003843307495 0.002229025122 and volume-weighted sum 60215.74219 Subtracting 1.069171594e-05 from rhs in subdomain 0 Sum after subtraction 0.03329478204 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003736390208 MLMG: Initial residual (resid0) = 0.0003736390208 MLMG: Final Iter. 2 resid, resid/bnorm = 2.858480002e-06, 0.007650378626 MLMG: Timers: Solve = 0.001413662 Iter = 0.00106337 Bottom = 0.000458331 Time in solve 0.001708918 Max/L2 norm of divergence after solve at level 1 : 1.298665302e-05 0.0008024345734 and volume-weighted sum 60215.79688 Time integration of scalars at level 1 from 806 to 808 with dt = 2 using RHS created at 806 Making slow rhs at time 808 for fast variables advancing from 806 to 808 No-substepping time integration at level 1 to 808 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003631226718 0.002133642323 and volume-weighted sum 60215.80859 Subtracting 1.069172777e-05 from rhs in subdomain 0 Sum after subtraction 0.01113221515 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003524309432 MLMG: Initial residual (resid0) = 0.0003524309432 MLMG: Final Iter. 1 resid, resid/bnorm = 9.744435374e-06, 0.02764920518 MLMG: Timers: Solve = 0.000880174 Iter = 0.000528556 Bottom = 0.000191579 Time in solve 0.001169374 Max/L2 norm of divergence after solve at level 1 : 1.943018287e-05 0.0008041812689 and volume-weighted sum 60215.71094 Time integration of scalars at level 1 from 806 to 808 with dt = 2 using RHS created at 808 Done with advance_dycore at level 1 [Level 1 step 404] Advanced 5632 cells Coarse STEP 404 ends. TIME = 808 DT = 2 Timestep time = 0.022717583 seconds. Coarse STEP 405 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.374348233 (terrain aware) 1.374348233 (terrain unaware) Anelastic dt at level 0 would be: 6.499496602 (terrain aware) 6.499496602 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648646718 (terrain aware) 0.2648646718 (terrain unaware) Anelastic dt at level 1 would be: 3.071880295 (terrain aware) 3.071880295 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 405] ADVANCE from elapsed time = 808 to 810 with dt = 2 Making slow rhs at time 808 for fast variables advancing from 808 to 808.6666666667 Fast time integration at level 0 from 808 to 808.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 808 to 808.6666666667 with dt = 0.6666666666666 using RHS created at 808 Making slow rhs at time 808.6666666667 for fast variables advancing from 808 to 809 Fast time integration at level 0 from 808 to 808.5 with dt = 0.5 Fast time integration at level 0 from 808.5 to 809 with dt = 0.5 Time integration of scalars at level 0 from 808 to 809 with dt = 1 using RHS created at 808.6666666667 Making slow rhs at time 809 for fast variables advancing from 808 to 810 Fast time integration at level 0 from 808 to 808.5 with dt = 0.5 Fast time integration at level 0 from 808.5 to 809 with dt = 0.5 Fast time integration at level 0 from 809 to 809.5 with dt = 0.5 Fast time integration at level 0 from 809.5 to 810 with dt = 0.5 Time integration of scalars at level 0 from 808 to 810 with dt = 2 using RHS created at 809 Done with advance_dycore at level 0 [Level 0 step 405] Advanced 4096 cells [Level 1 step 405] ADVANCE from elapsed time = 808 to 810 with dt = 2 Making slow rhs at time 808 for fast variables advancing from 808 to 810 No-substepping time integration at level 1 to 810 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003823768348 0.00229486567 and volume-weighted sum 75102.33594 Subtracting 1.333493219e-05 from rhs in subdomain 0 Sum after subtraction 0.01443549991 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003690418962 MLMG: Initial residual (resid0) = 0.0003690418962 MLMG: Final Iter. 2 resid, resid/bnorm = 3.132648999e-06, 0.008488600142 MLMG: Timers: Solve = 0.001382358 Iter = 0.001032064 Bottom = 0.00043466 Time in solve 0.001664592 Max/L2 norm of divergence after solve at level 1 : 1.582625555e-05 0.001000783755 and volume-weighted sum 75102.35938 Time integration of scalars at level 1 from 808 to 810 with dt = 2 using RHS created at 808 Making slow rhs at time 810 for fast variables advancing from 808 to 810 No-substepping time integration at level 1 to 810 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004017166793 0.002213163767 and volume-weighted sum 75102.35156 Subtracting 1.333493492e-05 from rhs in subdomain 0 Sum after subtraction 0.0009022187442 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003883817408 MLMG: Initial residual (resid0) = 0.0003883817408 MLMG: Final Iter. 1 resid, resid/bnorm = 9.365565347e-06, 0.02411432937 MLMG: Timers: Solve = 0.000869388 Iter = 0.000526503 Bottom = 0.000195698 Time in solve 0.00114798 Max/L2 norm of divergence after solve at level 1 : 2.223462798e-05 0.001002186793 and volume-weighted sum 75102.375 Time integration of scalars at level 1 from 808 to 810 with dt = 2 using RHS created at 810 Done with advance_dycore at level 1 [Level 1 step 405] Advanced 5632 cells Coarse STEP 405 ends. TIME = 810 DT = 2 Timestep time = 0.022225312 seconds. Coarse STEP 406 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373857537 (terrain aware) 1.373857537 (terrain unaware) Anelastic dt at level 0 would be: 6.495306991 (terrain aware) 6.495306991 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648612817 (terrain aware) 0.2648612817 (terrain unaware) Anelastic dt at level 1 would be: 3.068588032 (terrain aware) 3.068588032 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 406] ADVANCE from elapsed time = 810 to 812 with dt = 2 Making slow rhs at time 810 for fast variables advancing from 810 to 810.6666666667 Fast time integration at level 0 from 810 to 810.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 810 to 810.6666666667 with dt = 0.6666666666666 using RHS created at 810 Making slow rhs at time 810.6666666667 for fast variables advancing from 810 to 811 Fast time integration at level 0 from 810 to 810.5 with dt = 0.5 Fast time integration at level 0 from 810.5 to 811 with dt = 0.5 Time integration of scalars at level 0 from 810 to 811 with dt = 1 using RHS created at 810.6666666667 Making slow rhs at time 811 for fast variables advancing from 810 to 812 Fast time integration at level 0 from 810 to 810.5 with dt = 0.5 Fast time integration at level 0 from 810.5 to 811 with dt = 0.5 Fast time integration at level 0 from 811 to 811.5 with dt = 0.5 Fast time integration at level 0 from 811.5 to 812 with dt = 0.5 Time integration of scalars at level 0 from 810 to 812 with dt = 2 using RHS created at 811 Done with advance_dycore at level 0 [Level 0 step 406] Advanced 4096 cells [Level 1 step 406] ADVANCE from elapsed time = 810 to 812 with dt = 2 Making slow rhs at time 810 for fast variables advancing from 810 to 812 No-substepping time integration at level 1 to 812 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004259385169 0.002360400278 and volume-weighted sum 82184.77344 Subtracting 1.459246687e-05 from rhs in subdomain 0 Sum after subtraction 0.09371433407 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004113460309 MLMG: Initial residual (resid0) = 0.0004113460309 MLMG: Final Iter. 2 resid, resid/bnorm = 2.991037036e-06, 0.007271340583 MLMG: Timers: Solve = 0.001323711 Iter = 0.000985514 Bottom = 0.000378506 Time in solve 0.001610163 Max/L2 norm of divergence after solve at level 1 : 1.693249214e-05 0.001095144427 and volume-weighted sum 82184.78906 Time integration of scalars at level 1 from 810 to 812 with dt = 2 using RHS created at 810 Making slow rhs at time 812 for fast variables advancing from 810 to 812 No-substepping time integration at level 1 to 812 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000426132232 0.002253167564 and volume-weighted sum 82184.82031 Subtracting 1.459247505e-05 from rhs in subdomain 0 Sum after subtraction -0.004132743925 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000411539746 MLMG: Initial residual (resid0) = 0.000411539746 MLMG: Final Iter. 1 resid, resid/bnorm = 9.290553862e-06, 0.02257510647 MLMG: Timers: Solve = 0.000871701 Iter = 0.000531572 Bottom = 0.000196812 Time in solve 0.001166827 Max/L2 norm of divergence after solve at level 1 : 2.354988828e-05 0.001096435357 and volume-weighted sum 82184.73438 Time integration of scalars at level 1 from 810 to 812 with dt = 2 using RHS created at 812 Done with advance_dycore at level 1 [Level 1 step 406] Advanced 5632 cells Coarse STEP 406 ends. TIME = 812 DT = 2 Timestep time = 0.021966184 seconds. Coarse STEP 407 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373457739 (terrain aware) 1.373457739 (terrain unaware) Anelastic dt at level 0 would be: 6.492517494 (terrain aware) 6.492517494 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648703528 (terrain aware) 0.2648703528 (terrain unaware) Anelastic dt at level 1 would be: 3.06182976 (terrain aware) 3.06182976 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 407] ADVANCE from elapsed time = 812 to 814 with dt = 2 Making slow rhs at time 812 for fast variables advancing from 812 to 812.6666666667 Fast time integration at level 0 from 812 to 812.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 812 to 812.6666666667 with dt = 0.6666666666666 using RHS created at 812 Making slow rhs at time 812.6666666667 for fast variables advancing from 812 to 813 Fast time integration at level 0 from 812 to 812.5 with dt = 0.5 Fast time integration at level 0 from 812.5 to 813 with dt = 0.5 Time integration of scalars at level 0 from 812 to 813 with dt = 1 using RHS created at 812.6666666667 Making slow rhs at time 813 for fast variables advancing from 812 to 814 Fast time integration at level 0 from 812 to 812.5 with dt = 0.5 Fast time integration at level 0 from 812.5 to 813 with dt = 0.5 Fast time integration at level 0 from 813 to 813.5 with dt = 0.5 Fast time integration at level 0 from 813.5 to 814 with dt = 0.5 Time integration of scalars at level 0 from 812 to 814 with dt = 2 using RHS created at 813 Done with advance_dycore at level 0 [Level 0 step 407] Advanced 4096 cells [Level 1 step 407] ADVANCE from elapsed time = 812 to 814 with dt = 2 Making slow rhs at time 812 for fast variables advancing from 812 to 814 No-substepping time integration at level 1 to 814 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003997702152 0.002339643193 and volume-weighted sum 80709.04688 Subtracting 1.433044145e-05 from rhs in subdomain 0 Sum after subtraction -0.03655441105 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003854397801 MLMG: Initial residual (resid0) = 0.0003854397801 MLMG: Final Iter. 2 resid, resid/bnorm = 2.417327778e-06, 0.006271609571 MLMG: Timers: Solve = 0.001389342 Iter = 0.001040759 Bottom = 0.000440045 Time in solve 0.001680992 Max/L2 norm of divergence after solve at level 1 : 1.617433736e-05 0.001075470354 and volume-weighted sum 80709 Time integration of scalars at level 1 from 812 to 814 with dt = 2 using RHS created at 812 Making slow rhs at time 814 for fast variables advancing from 812 to 814 No-substepping time integration at level 1 to 814 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003825463355 0.002239027061 and volume-weighted sum 80709.0625 Subtracting 1.433044417e-05 from rhs in subdomain 0 Sum after subtraction -0.04062894732 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003682159004 MLMG: Initial residual (resid0) = 0.0003682159004 MLMG: Final Iter. 1 resid, resid/bnorm = 9.645722457e-06, 0.02619583346 MLMG: Timers: Solve = 0.000882846 Iter = 0.000532866 Bottom = 0.000189434 Time in solve 0.001165681 Max/L2 norm of divergence after solve at level 1 : 2.332963049e-05 0.001076793298 and volume-weighted sum 80709.03906 Time integration of scalars at level 1 from 812 to 814 with dt = 2 using RHS created at 814 Done with advance_dycore at level 1 [Level 1 step 407] Advanced 5632 cells Coarse STEP 407 ends. TIME = 814 DT = 2 Timestep time = 0.022411932 seconds. Coarse STEP 408 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.373151967 (terrain aware) 1.373151967 (terrain unaware) Anelastic dt at level 0 would be: 6.491184734 (terrain aware) 6.491184734 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648745997 (terrain aware) 0.2648745997 (terrain unaware) Anelastic dt at level 1 would be: 3.055629089 (terrain aware) 3.055629089 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 408] ADVANCE from elapsed time = 814 to 816 with dt = 2 Making slow rhs at time 814 for fast variables advancing from 814 to 814.6666666667 Fast time integration at level 0 from 814 to 814.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 814 to 814.6666666667 with dt = 0.6666666666666 using RHS created at 814 Making slow rhs at time 814.6666666667 for fast variables advancing from 814 to 815 Fast time integration at level 0 from 814 to 814.5 with dt = 0.5 Fast time integration at level 0 from 814.5 to 815 with dt = 0.5 Time integration of scalars at level 0 from 814 to 815 with dt = 1 using RHS created at 814.6666666667 Making slow rhs at time 815 for fast variables advancing from 814 to 816 Fast time integration at level 0 from 814 to 814.5 with dt = 0.5 Fast time integration at level 0 from 814.5 to 815 with dt = 0.5 Fast time integration at level 0 from 815 to 815.5 with dt = 0.5 Fast time integration at level 0 from 815.5 to 816 with dt = 0.5 Time integration of scalars at level 0 from 814 to 816 with dt = 2 using RHS created at 815 Done with advance_dycore at level 0 [Level 0 step 408] Advanced 4096 cells [Level 1 step 408] ADVANCE from elapsed time = 814 to 816 with dt = 2 Making slow rhs at time 814 for fast variables advancing from 814 to 816 No-substepping time integration at level 1 to 816 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003602281213 0.002256117994 and volume-weighted sum 70676.39844 Subtracting 1.254907602e-05 from rhs in subdomain 0 Sum after subtraction 0.01458101906 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003476790444 MLMG: Initial residual (resid0) = 0.0003476790444 MLMG: Final Iter. 2 resid, resid/bnorm = 1.633983629e-06, 0.004699689802 MLMG: Timers: Solve = 0.00139398 Iter = 0.001056118 Bottom = 0.000460268 Time in solve 0.001680283 Max/L2 norm of divergence after solve at level 1 : 1.373281702e-05 0.0009417833644 and volume-weighted sum 70676.44531 Time integration of scalars at level 1 from 814 to 816 with dt = 2 using RHS created at 814 Making slow rhs at time 816 for fast variables advancing from 814 to 816 No-substepping time integration at level 1 to 816 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003816820681 0.002173050307 and volume-weighted sum 70676.375 Subtracting 1.254907238e-05 from rhs in subdomain 0 Sum after subtraction 0.02805609256 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003691329912 MLMG: Initial residual (resid0) = 0.0003691329912 MLMG: Final Iter. 1 resid, resid/bnorm = 9.922106983e-06, 0.02687949128 MLMG: Timers: Solve = 0.000900031 Iter = 0.000562332 Bottom = 0.000224165 Time in solve 0.001185371 Max/L2 norm of divergence after solve at level 1 : 2.152984962e-05 0.0009432986262 and volume-weighted sum 70676.49219 Time integration of scalars at level 1 from 814 to 816 with dt = 2 using RHS created at 816 Done with advance_dycore at level 1 [Level 1 step 408] Advanced 5632 cells Coarse STEP 408 ends. TIME = 816 DT = 2 Timestep time = 0.022347268 seconds. Coarse STEP 409 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372942755 (terrain aware) 1.372942755 (terrain unaware) Anelastic dt at level 0 would be: 6.491373085 (terrain aware) 6.491373085 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648668138 (terrain aware) 0.2648668138 (terrain unaware) Anelastic dt at level 1 would be: 3.050870254 (terrain aware) 3.050870254 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 409] ADVANCE from elapsed time = 816 to 818 with dt = 2 Making slow rhs at time 816 for fast variables advancing from 816 to 816.6666666667 Fast time integration at level 0 from 816 to 816.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 816 to 816.6666666667 with dt = 0.6666666666666 using RHS created at 816 Making slow rhs at time 816.6666666667 for fast variables advancing from 816 to 817 Fast time integration at level 0 from 816 to 816.5 with dt = 0.5 Fast time integration at level 0 from 816.5 to 817 with dt = 0.5 Time integration of scalars at level 0 from 816 to 817 with dt = 1 using RHS created at 816.6666666667 Making slow rhs at time 817 for fast variables advancing from 816 to 818 Fast time integration at level 0 from 816 to 816.5 with dt = 0.5 Fast time integration at level 0 from 816.5 to 817 with dt = 0.5 Fast time integration at level 0 from 817 to 817.5 with dt = 0.5 Fast time integration at level 0 from 817.5 to 818 with dt = 0.5 Time integration of scalars at level 0 from 816 to 818 with dt = 2 using RHS created at 817 Done with advance_dycore at level 0 [Level 0 step 409] Advanced 4096 cells [Level 1 step 409] ADVANCE from elapsed time = 816 to 818 with dt = 2 Making slow rhs at time 816 for fast variables advancing from 816 to 818 No-substepping time integration at level 1 to 818 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.00041054748 0.002133012051 and volume-weighted sum 53111.58203 Subtracting 9.430323189e-06 from rhs in subdomain 0 Sum after subtraction -0.02176966518 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004011171695 MLMG: Initial residual (resid0) = 0.0004011171695 MLMG: Final Iter. 1 resid, resid/bnorm = 9.789124306e-06, 0.02440465055 MLMG: Timers: Solve = 0.0010674 Iter = 0.000576283 Bottom = 0.000231932 Time in solve 0.001374378 Max/L2 norm of divergence after solve at level 1 : 1.884251833e-05 0.0007116040797 and volume-weighted sum 53111.52344 Time integration of scalars at level 1 from 816 to 818 with dt = 2 using RHS created at 816 Making slow rhs at time 818 for fast variables advancing from 816 to 818 No-substepping time integration at level 1 to 818 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0004126541317 0.002057882491 and volume-weighted sum 53111.57031 Subtracting 9.43032137e-06 from rhs in subdomain 0 Sum after subtraction -0.07404014468 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0004032238212 MLMG: Initial residual (resid0) = 0.0004032238212 MLMG: Final Iter. 1 resid, resid/bnorm = 9.835363016e-06, 0.02439182065 MLMG: Timers: Solve = 0.000843706 Iter = 0.000499577 Bottom = 0.000165317 Time in solve 0.001140522 Max/L2 norm of divergence after solve at level 1 : 1.779617742e-05 0.0007096458576 and volume-weighted sum 53111.47266 Time integration of scalars at level 1 from 816 to 818 with dt = 2 using RHS created at 818 Done with advance_dycore at level 1 [Level 1 step 409] Advanced 5632 cells Coarse STEP 409 ends. TIME = 818 DT = 2 Timestep time = 0.021923246 seconds. Coarse STEP 410 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372832337 (terrain aware) 1.372832337 (terrain unaware) Anelastic dt at level 0 would be: 6.493174337 (terrain aware) 6.493174337 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648667393 (terrain aware) 0.2648667393 (terrain unaware) Anelastic dt at level 1 would be: 3.047468915 (terrain aware) 3.047468915 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 410] ADVANCE from elapsed time = 818 to 820 with dt = 2 Making slow rhs at time 818 for fast variables advancing from 818 to 818.6666666667 Fast time integration at level 0 from 818 to 818.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 818 to 818.6666666667 with dt = 0.6666666666666 using RHS created at 818 Making slow rhs at time 818.6666666667 for fast variables advancing from 818 to 819 Fast time integration at level 0 from 818 to 818.5 with dt = 0.5 Fast time integration at level 0 from 818.5 to 819 with dt = 0.5 Time integration of scalars at level 0 from 818 to 819 with dt = 1 using RHS created at 818.6666666667 Making slow rhs at time 819 for fast variables advancing from 818 to 820 Fast time integration at level 0 from 818 to 818.5 with dt = 0.5 Fast time integration at level 0 from 818.5 to 819 with dt = 0.5 Fast time integration at level 0 from 819 to 819.5 with dt = 0.5 Fast time integration at level 0 from 819.5 to 820 with dt = 0.5 Time integration of scalars at level 0 from 818 to 820 with dt = 2 using RHS created at 819 Done with advance_dycore at level 0 [Level 0 step 410] Advanced 4096 cells [Level 1 step 410] ADVANCE from elapsed time = 818 to 820 with dt = 2 Making slow rhs at time 818 for fast variables advancing from 818 to 820 No-substepping time integration at level 1 to 820 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003953203559 0.002016554121 and volume-weighted sum 29926.22461 Subtracting 5.313605016e-06 from rhs in subdomain 0 Sum after subtraction -0.05576293916 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003900067532 MLMG: Initial residual (resid0) = 0.0003900067532 MLMG: Final Iter. 2 resid, resid/bnorm = 1.001589681e-06, 0.002568134107 MLMG: Timers: Solve = 0.001396666 Iter = 0.001057213 Bottom = 0.000449221 Time in solve 0.001697588 Max/L2 norm of divergence after solve at level 1 : 6.315065548e-06 0.0003987989912 and volume-weighted sum 29926.22461 Time integration of scalars at level 1 from 818 to 820 with dt = 2 using RHS created at 818 Making slow rhs at time 820 for fast variables advancing from 818 to 820 No-substepping time integration at level 1 to 820 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003842692822 0.001986446092 and volume-weighted sum 29926.25977 Subtracting 5.313611382e-06 from rhs in subdomain 0 Sum after subtraction -0.1171138138 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003789557086 MLMG: Initial residual (resid0) = 0.0003789557086 MLMG: Final Iter. 2 resid, resid/bnorm = 4.981986876e-07, 0.001314662048 MLMG: Timers: Solve = 0.001223086 Iter = 0.000988991 Bottom = 0.000394629 Time in solve 0.001638484 Max/L2 norm of divergence after solve at level 1 : 5.729496479e-06 0.0003987766104 and volume-weighted sum 29926.28906 Time integration of scalars at level 1 from 818 to 820 with dt = 2 using RHS created at 820 Done with advance_dycore at level 1 [Level 1 step 410] Advanced 5632 cells Coarse STEP 410 ends. TIME = 820 DT = 2 Timestep time = 0.022898722 seconds. Coarse STEP 411 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372824142 (terrain aware) 1.372824142 (terrain unaware) Anelastic dt at level 0 would be: 6.496660613 (terrain aware) 6.496660613 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648735007 (terrain aware) 0.2648735007 (terrain unaware) Anelastic dt at level 1 would be: 3.0442449 (terrain aware) 3.0442449 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(6) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,15) (0,0,0)) ((48,0,0) (79,0,47) (0,0,0)) ((80,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ((144,0,0) (159,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,31) (0,0,0)) ((48,0,0) (111,0,47) (0,0,0)) ((112,0,0) (159,0,31) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.007784145884 0.02626674809 and volume-weighted sum 26885.54688 Subtracting 4.37590279e-06 from rhs in subdomain 0 Sum after subtraction -0.03981404006 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.007788521703 MLMG: Initial residual (resid0) = 0.007788521703 MLMG: Final Iter. 4 resid, resid/bnorm = 1.419994305e-06, 0.0001823188504 MLMG: Timers: Solve = 0.002728112 Iter = 0.002402837 Bottom = 0.001286397 Time in solve 0.003123627 Max/L2 norm of divergence after solve at level 1 : 5.779322237e-06 0.000343024818 and volume-weighted sum 26885.42383 [Level 0 step 411] ADVANCE from elapsed time = 820 to 822 with dt = 2 Making slow rhs at time 820 for fast variables advancing from 820 to 820.6666666667 Fast time integration at level 0 from 820 to 820.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 820 to 820.6666666667 with dt = 0.6666666666666 using RHS created at 820 Making slow rhs at time 820.6666666667 for fast variables advancing from 820 to 821 Fast time integration at level 0 from 820 to 820.5 with dt = 0.5 Fast time integration at level 0 from 820.5 to 821 with dt = 0.5 Time integration of scalars at level 0 from 820 to 821 with dt = 1 using RHS created at 820.6666666667 Making slow rhs at time 821 for fast variables advancing from 820 to 822 Fast time integration at level 0 from 820 to 820.5 with dt = 0.5 Fast time integration at level 0 from 820.5 to 821 with dt = 0.5 Fast time integration at level 0 from 821 to 821.5 with dt = 0.5 Fast time integration at level 0 from 821.5 to 822 with dt = 0.5 Time integration of scalars at level 0 from 820 to 822 with dt = 2 using RHS created at 821 Done with advance_dycore at level 0 [Level 0 step 411] Advanced 4096 cells [Level 1 step 411] ADVANCE from elapsed time = 820 to 822 with dt = 2 Making slow rhs at time 820 for fast variables advancing from 820 to 822 No-substepping time integration at level 1 to 822 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.01506423205 0.09166262299 and volume-weighted sum 4506.293457 Subtracting 7.334461998e-07 from rhs in subdomain 0 Sum after subtraction -0.5476176739 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.01506349817 MLMG: Initial residual (resid0) = 0.01506349817 MLMG: Final Iter. 4 resid, resid/bnorm = 2.674583811e-06, 0.0001775539567 MLMG: Timers: Solve = 0.002744655 Iter = 0.002414971 Bottom = 0.001296027 Time in solve 0.003132013 Max/L2 norm of divergence after solve at level 1 : 3.407010809e-06 5.805340334e-05 and volume-weighted sum 4506.035645 Time integration of scalars at level 1 from 820 to 822 with dt = 2 using RHS created at 820 Making slow rhs at time 822 for fast variables advancing from 820 to 822 No-substepping time integration at level 1 to 822 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000346692279 0.0019386278 and volume-weighted sum 4506.022949 Subtracting 7.334021461e-07 from rhs in subdomain 0 Sum after subtraction 0.06053596735 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003459588625 MLMG: Initial residual (resid0) = 0.0003459588625 MLMG: Final Iter. 2 resid, resid/bnorm = 4.786049885e-07, 0.001383415889 MLMG: Timers: Solve = 0.001455932 Iter = 0.001141073 Bottom = 0.000523029 Time in solve 0.001842065 Max/L2 norm of divergence after solve at level 1 : 1.180917025e-06 5.7539728e-05 and volume-weighted sum 4506.051758 Time integration of scalars at level 1 from 820 to 822 with dt = 2 using RHS created at 822 Done with advance_dycore at level 1 [Level 1 step 411] Advanced 6144 cells Coarse STEP 411 ends. TIME = 822 DT = 2 Timestep time = 0.03502566 seconds. Coarse STEP 412 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372919509 (terrain aware) 1.372919509 (terrain unaware) Anelastic dt at level 0 would be: 6.501917146 (terrain aware) 6.501917146 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648978827 (terrain aware) 0.2648978827 (terrain unaware) Anelastic dt at level 1 would be: 3.039399042 (terrain aware) 3.039399042 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 412] ADVANCE from elapsed time = 822 to 824 with dt = 2 Making slow rhs at time 822 for fast variables advancing from 822 to 822.6666666667 Fast time integration at level 0 from 822 to 822.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 822 to 822.6666666667 with dt = 0.6666666666666 using RHS created at 822 Making slow rhs at time 822.6666666667 for fast variables advancing from 822 to 823 Fast time integration at level 0 from 822 to 822.5 with dt = 0.5 Fast time integration at level 0 from 822.5 to 823 with dt = 0.5 Time integration of scalars at level 0 from 822 to 823 with dt = 1 using RHS created at 822.6666666667 Making slow rhs at time 823 for fast variables advancing from 822 to 824 Fast time integration at level 0 from 822 to 822.5 with dt = 0.5 Fast time integration at level 0 from 822.5 to 823 with dt = 0.5 Fast time integration at level 0 from 823 to 823.5 with dt = 0.5 Fast time integration at level 0 from 823.5 to 824 with dt = 0.5 Time integration of scalars at level 0 from 822 to 824 with dt = 2 using RHS created at 823 Done with advance_dycore at level 0 [Level 0 step 412] Advanced 4096 cells [Level 1 step 412] ADVANCE from elapsed time = 822 to 824 with dt = 2 Making slow rhs at time 822 for fast variables advancing from 822 to 824 No-substepping time integration at level 1 to 824 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003866981715 0.001990785124 and volume-weighted sum -17187.12695 Subtracting -2.797384013e-06 from rhs in subdomain 0 Sum after subtraction -0.008381903172 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003894955444 MLMG: Initial residual (resid0) = 0.0003894955444 MLMG: Final Iter. 2 resid, resid/bnorm = 9.326729469e-07, 0.002394566312 MLMG: Timers: Solve = 0.001560818 Iter = 0.001235467 Bottom = 0.000632851 Time in solve 0.001955756 Max/L2 norm of divergence after solve at level 1 : 3.726454452e-06 0.0002193279215 and volume-weighted sum -17187.21875 Time integration of scalars at level 1 from 822 to 824 with dt = 2 using RHS created at 822 Making slow rhs at time 824 for fast variables advancing from 822 to 824 No-substepping time integration at level 1 to 824 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000394962728 0.001946700155 and volume-weighted sum -17187.16992 Subtracting -2.797390835e-06 from rhs in subdomain 0 Sum after subtraction -0.006519258022 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.00039776013 MLMG: Initial residual (resid0) = 0.00039776013 MLMG: Final Iter. 2 resid, resid/bnorm = 4.771420663e-07, 0.001199572347 MLMG: Timers: Solve = 0.001432447 Iter = 0.001108201 Bottom = 0.000505942 Time in solve 0.001826467 Max/L2 norm of divergence after solve at level 1 : 3.301072866e-06 0.00021928364 and volume-weighted sum -17187.1582 Time integration of scalars at level 1 from 822 to 824 with dt = 2 using RHS created at 824 Done with advance_dycore at level 1 [Level 1 step 412] Advanced 6144 cells Coarse STEP 412 ends. TIME = 824 DT = 2 Timestep time = 0.023265388 seconds. Coarse STEP 413 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.372918466 (terrain aware) 1.372918466 (terrain unaware) Anelastic dt at level 0 would be: 6.492868565 (terrain aware) 6.492868565 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648729792 (terrain aware) 0.2648729792 (terrain unaware) Anelastic dt at level 1 would be: 3.033095553 (terrain aware) 3.033095553 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 413] ADVANCE from elapsed time = 824 to 826 with dt = 2 Making slow rhs at time 824 for fast variables advancing from 824 to 824.6666666667 Fast time integration at level 0 from 824 to 824.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 824 to 824.6666666667 with dt = 0.6666666666666 using RHS created at 824 Making slow rhs at time 824.6666666667 for fast variables advancing from 824 to 825 Fast time integration at level 0 from 824 to 824.5 with dt = 0.5 Fast time integration at level 0 from 824.5 to 825 with dt = 0.5 Time integration of scalars at level 0 from 824 to 825 with dt = 1 using RHS created at 824.6666666667 Making slow rhs at time 825 for fast variables advancing from 824 to 826 Fast time integration at level 0 from 824 to 824.5 with dt = 0.5 Fast time integration at level 0 from 824.5 to 825 with dt = 0.5 Fast time integration at level 0 from 825 to 825.5 with dt = 0.5 Fast time integration at level 0 from 825.5 to 826 with dt = 0.5 Time integration of scalars at level 0 from 824 to 826 with dt = 2 using RHS created at 825 Done with advance_dycore at level 0 [Level 0 step 413] Advanced 4096 cells [Level 1 step 413] ADVANCE from elapsed time = 824 to 826 with dt = 2 Making slow rhs at time 824 for fast variables advancing from 824 to 826 No-substepping time integration at level 1 to 826 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003890935332 0.002033703728 and volume-weighted sum -36500.63281 Subtracting -5.940858046e-06 from rhs in subdomain 0 Sum after subtraction 0.09406358004 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003950343526 MLMG: Initial residual (resid0) = 0.0003950343526 MLMG: Final Iter. 2 resid, resid/bnorm = 6.405821296e-07, 0.001621585921 MLMG: Timers: Solve = 0.00159687 Iter = 0.00127885 Bottom = 0.000668605 Time in solve 0.001985756 Max/L2 norm of divergence after solve at level 1 : 6.604939699e-06 0.0004656845995 and volume-weighted sum -36500.63281 Time integration of scalars at level 1 from 824 to 826 with dt = 2 using RHS created at 824 Making slow rhs at time 826 for fast variables advancing from 824 to 826 No-substepping time integration at level 1 to 826 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003806520253 0.001986360177 and volume-weighted sum -36500.60547 Subtracting -5.940853953e-06 from rhs in subdomain 0 Sum after subtraction 0.08707866073 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003865928738 MLMG: Initial residual (resid0) = 0.0003865928738 MLMG: Final Iter. 1 resid, resid/bnorm = 9.978226444e-06, 0.02581068315 MLMG: Timers: Solve = 0.00100958 Iter = 0.00070372 Bottom = 0.000227641 Time in solve 0.001411991 Max/L2 norm of divergence after solve at level 1 : 1.592747867e-05 0.0004687336914 and volume-weighted sum -36500.61719 Time integration of scalars at level 1 from 824 to 826 with dt = 2 using RHS created at 826 Done with advance_dycore at level 1 [Level 1 step 413] Advanced 6144 cells Coarse STEP 413 ends. TIME = 826 DT = 2 Timestep time = 0.023027486 seconds. Coarse STEP 414 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.37231929 (terrain aware) 1.37231929 (terrain unaware) Anelastic dt at level 0 would be: 6.484260462 (terrain aware) 6.484260462 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648538684 (terrain aware) 0.2648538684 (terrain unaware) Anelastic dt at level 1 would be: 3.028095617 (terrain aware) 3.028095617 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 414] ADVANCE from elapsed time = 826 to 828 with dt = 2 Making slow rhs at time 826 for fast variables advancing from 826 to 826.6666666667 Fast time integration at level 0 from 826 to 826.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 826 to 826.6666666667 with dt = 0.6666666666666 using RHS created at 826 Making slow rhs at time 826.6666666667 for fast variables advancing from 826 to 827 Fast time integration at level 0 from 826 to 826.5 with dt = 0.5 Fast time integration at level 0 from 826.5 to 827 with dt = 0.5 Time integration of scalars at level 0 from 826 to 827 with dt = 1 using RHS created at 826.6666666667 Making slow rhs at time 827 for fast variables advancing from 826 to 828 Fast time integration at level 0 from 826 to 826.5 with dt = 0.5 Fast time integration at level 0 from 826.5 to 827 with dt = 0.5 Fast time integration at level 0 from 827 to 827.5 with dt = 0.5 Fast time integration at level 0 from 827.5 to 828 with dt = 0.5 Time integration of scalars at level 0 from 826 to 828 with dt = 2 using RHS created at 827 Done with advance_dycore at level 0 [Level 0 step 414] Advanced 4096 cells [Level 1 step 414] ADVANCE from elapsed time = 826 to 828 with dt = 2 Making slow rhs at time 826 for fast variables advancing from 826 to 828 No-substepping time integration at level 1 to 828 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000328168273 0.002046275418 and volume-weighted sum -52361.13281 Subtracting -8.522320059e-06 from rhs in subdomain 0 Sum after subtraction 0.08288770914 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003366906021 MLMG: Initial residual (resid0) = 0.0003366906021 MLMG: Final Iter. 1 resid, resid/bnorm = 9.767632946e-06, 0.02901070938 MLMG: Timers: Solve = 0.000969433 Iter = 0.000656541 Bottom = 0.000314962 Time in solve 0.001363239 Max/L2 norm of divergence after solve at level 1 : 1.553073525e-05 0.0006721963291 and volume-weighted sum -52361.11719 Time integration of scalars at level 1 from 826 to 828 with dt = 2 using RHS created at 826 Making slow rhs at time 828 for fast variables advancing from 826 to 828 No-substepping time integration at level 1 to 828 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003104135394 0.002023574198 and volume-weighted sum -52361.15234 Subtracting -8.522322787e-06 from rhs in subdomain 0 Sum after subtraction 0.08521601558 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003189358686 MLMG: Initial residual (resid0) = 0.0003189358686 MLMG: Final Iter. 1 resid, resid/bnorm = 9.471223166e-06, 0.02969632484 MLMG: Timers: Solve = 0.000881595 Iter = 0.000564775 Bottom = 0.000231549 Time in solve 0.001264353 Max/L2 norm of divergence after solve at level 1 : 1.800246537e-05 0.0006700484082 and volume-weighted sum -52361.125 Time integration of scalars at level 1 from 826 to 828 with dt = 2 using RHS created at 828 Done with advance_dycore at level 1 [Level 1 step 414] Advanced 6144 cells Coarse STEP 414 ends. TIME = 828 DT = 2 Timestep time = 0.022056018 seconds. Coarse STEP 415 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371837089 (terrain aware) 1.371837089 (terrain unaware) Anelastic dt at level 0 would be: 6.477616333 (terrain aware) 6.477616333 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648420965 (terrain aware) 0.2648420965 (terrain unaware) Anelastic dt at level 1 would be: 3.024530068 (terrain aware) 3.024530068 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 415] ADVANCE from elapsed time = 828 to 830 with dt = 2 Making slow rhs at time 828 for fast variables advancing from 828 to 828.6666666667 Fast time integration at level 0 from 828 to 828.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 828 to 828.6666666667 with dt = 0.6666666666666 using RHS created at 828 Making slow rhs at time 828.6666666667 for fast variables advancing from 828 to 829 Fast time integration at level 0 from 828 to 828.5 with dt = 0.5 Fast time integration at level 0 from 828.5 to 829 with dt = 0.5 Time integration of scalars at level 0 from 828 to 829 with dt = 1 using RHS created at 828.6666666667 Making slow rhs at time 829 for fast variables advancing from 828 to 830 Fast time integration at level 0 from 828 to 828.5 with dt = 0.5 Fast time integration at level 0 from 828.5 to 829 with dt = 0.5 Fast time integration at level 0 from 829 to 829.5 with dt = 0.5 Fast time integration at level 0 from 829.5 to 830 with dt = 0.5 Time integration of scalars at level 0 from 828 to 830 with dt = 2 using RHS created at 829 Done with advance_dycore at level 0 [Level 0 step 415] Advanced 4096 cells [Level 1 step 415] ADVANCE from elapsed time = 828 to 830 with dt = 2 Making slow rhs at time 828 for fast variables advancing from 828 to 830 No-substepping time integration at level 1 to 830 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003595743328 0.002116974443 and volume-weighted sum -63817.80078 Subtracting -1.038701157e-05 from rhs in subdomain 0 Sum after subtraction -0.02887099981 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003699613444 MLMG: Initial residual (resid0) = 0.0003699613444 MLMG: Final Iter. 1 resid, resid/bnorm = 9.772993508e-06, 0.02641625516 MLMG: Timers: Solve = 0.000920785 Iter = 0.000603109 Bottom = 0.000263266 Time in solve 0.001303545 Max/L2 norm of divergence after solve at level 1 : 1.799687743e-05 0.0008174264804 and volume-weighted sum -63817.80078 Time integration of scalars at level 1 from 828 to 830 with dt = 2 using RHS created at 828 Making slow rhs at time 830 for fast variables advancing from 828 to 830 No-substepping time integration at level 1 to 830 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003727823496 0.002073415555 and volume-weighted sum -63817.8125 Subtracting -1.038701339e-05 from rhs in subdomain 0 Sum after subtraction -0.01210719347 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003831693612 MLMG: Initial residual (resid0) = 0.0003831693612 MLMG: Final Iter. 1 resid, resid/bnorm = 9.386829333e-06, 0.02449785918 MLMG: Timers: Solve = 0.000883184 Iter = 0.000563128 Bottom = 0.000227368 Time in solve 0.001272941 Max/L2 norm of divergence after solve at level 1 : 1.977570355e-05 0.0008158475393 and volume-weighted sum -63817.79297 Time integration of scalars at level 1 from 828 to 830 with dt = 2 using RHS created at 830 Done with advance_dycore at level 1 [Level 1 step 415] Advanced 6144 cells Coarse STEP 415 ends. TIME = 830 DT = 2 Timestep time = 0.022217242 seconds. Coarse STEP 416 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371474097 (terrain aware) 1.371474097 (terrain unaware) Anelastic dt at level 0 would be: 6.472960018 (terrain aware) 6.472960018 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264837235 (terrain aware) 0.264837235 (terrain unaware) Anelastic dt at level 1 would be: 3.017945841 (terrain aware) 3.017945841 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 416] ADVANCE from elapsed time = 830 to 832 with dt = 2 Making slow rhs at time 830 for fast variables advancing from 830 to 830.6666666667 Fast time integration at level 0 from 830 to 830.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 830 to 830.6666666667 with dt = 0.6666666666666 using RHS created at 830 Making slow rhs at time 830.6666666667 for fast variables advancing from 830 to 831 Fast time integration at level 0 from 830 to 830.5 with dt = 0.5 Fast time integration at level 0 from 830.5 to 831 with dt = 0.5 Time integration of scalars at level 0 from 830 to 831 with dt = 1 using RHS created at 830.6666666667 Making slow rhs at time 831 for fast variables advancing from 830 to 832 Fast time integration at level 0 from 830 to 830.5 with dt = 0.5 Fast time integration at level 0 from 830.5 to 831 with dt = 0.5 Fast time integration at level 0 from 831 to 831.5 with dt = 0.5 Fast time integration at level 0 from 831.5 to 832 with dt = 0.5 Time integration of scalars at level 0 from 830 to 832 with dt = 2 using RHS created at 831 Done with advance_dycore at level 0 [Level 0 step 416] Advanced 4096 cells [Level 1 step 416] ADVANCE from elapsed time = 830 to 832 with dt = 2 Making slow rhs at time 830 for fast variables advancing from 830 to 832 No-substepping time integration at level 1 to 832 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003801193088 0.002154421294 and volume-weighted sum -69997.90625 Subtracting -1.139288815e-05 from rhs in subdomain 0 Sum after subtraction 0.0330619514 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000391512207 MLMG: Initial residual (resid0) = 0.000391512207 MLMG: Final Iter. 1 resid, resid/bnorm = 9.402986507e-06, 0.02401709743 MLMG: Timers: Solve = 0.000951963 Iter = 0.000635091 Bottom = 0.000298855 Time in solve 0.001339328 Max/L2 norm of divergence after solve at level 1 : 1.998059452e-05 0.0008958497783 and volume-weighted sum -69997.96875 Time integration of scalars at level 1 from 830 to 832 with dt = 2 using RHS created at 830 Making slow rhs at time 832 for fast variables advancing from 830 to 832 No-substepping time integration at level 1 to 832 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003766193986 0.002103507752 and volume-weighted sum -69997.92188 Subtracting -1.139289088e-05 from rhs in subdomain 0 Sum after subtraction 0.0661239028 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003880122968 MLMG: Initial residual (resid0) = 0.0003880122968 MLMG: Final Iter. 1 resid, resid/bnorm = 9.779963875e-06, 0.02520529367 MLMG: Timers: Solve = 0.001133769 Iter = 0.000756455 Bottom = 0.000245697 Time in solve 0.001526143 Max/L2 norm of divergence after solve at level 1 : 2.116896212e-05 0.0008945473819 and volume-weighted sum -69997.89844 Time integration of scalars at level 1 from 830 to 832 with dt = 2 using RHS created at 832 Done with advance_dycore at level 1 [Level 1 step 416] Advanced 6144 cells Coarse STEP 416 ends. TIME = 832 DT = 2 Timestep time = 0.022255806 seconds. Coarse STEP 417 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371230761 (terrain aware) 1.371230761 (terrain unaware) Anelastic dt at level 0 would be: 6.470225357 (terrain aware) 6.470225357 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2648104502 (terrain aware) 0.2648104502 (terrain unaware) Anelastic dt at level 1 would be: 3.011408999 (terrain aware) 3.011408999 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 417] ADVANCE from elapsed time = 832 to 834 with dt = 2 Making slow rhs at time 832 for fast variables advancing from 832 to 832.6666666667 Fast time integration at level 0 from 832 to 832.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 832 to 832.6666666667 with dt = 0.6666666666666 using RHS created at 832 Making slow rhs at time 832.6666666667 for fast variables advancing from 832 to 833 Fast time integration at level 0 from 832 to 832.5 with dt = 0.5 Fast time integration at level 0 from 832.5 to 833 with dt = 0.5 Time integration of scalars at level 0 from 832 to 833 with dt = 1 using RHS created at 832.6666666667 Making slow rhs at time 833 for fast variables advancing from 832 to 834 Fast time integration at level 0 from 832 to 832.5 with dt = 0.5 Fast time integration at level 0 from 832.5 to 833 with dt = 0.5 Fast time integration at level 0 from 833 to 833.5 with dt = 0.5 Fast time integration at level 0 from 833.5 to 834 with dt = 0.5 Time integration of scalars at level 0 from 832 to 834 with dt = 2 using RHS created at 833 Done with advance_dycore at level 0 [Level 0 step 417] Advanced 4096 cells [Level 1 step 417] ADVANCE from elapsed time = 832 to 834 with dt = 2 Making slow rhs at time 832 for fast variables advancing from 832 to 834 No-substepping time integration at level 1 to 834 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003386959434 0.002164964331 and volume-weighted sum -69793.58594 Subtracting -1.135963339e-05 from rhs in subdomain 0 Sum after subtraction 0.09406358004 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003500555467 MLMG: Initial residual (resid0) = 0.0003500555467 MLMG: Final Iter. 1 resid, resid/bnorm = 9.718933143e-06, 0.02776397392 MLMG: Timers: Solve = 0.00095695 Iter = 0.000638588 Bottom = 0.000305846 Time in solve 0.001338461 Max/L2 norm of divergence after solve at level 1 : 2.107024193e-05 0.0008929700707 and volume-weighted sum -69793.60938 Time integration of scalars at level 1 from 832 to 834 with dt = 2 using RHS created at 832 Making slow rhs at time 834 for fast variables advancing from 832 to 834 No-substepping time integration at level 1 to 834 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003208760172 0.00210057362 and volume-weighted sum -69793.59375 Subtracting -1.13596343e-05 from rhs in subdomain 0 Sum after subtraction 0.03352761269 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003322356497 MLMG: Initial residual (resid0) = 0.0003322356497 MLMG: Final Iter. 2 resid, resid/bnorm = 4.78335096e-07, 0.001439746469 MLMG: Timers: Solve = 0.001388318 Iter = 0.001074129 Bottom = 0.000469302 Time in solve 0.001771532 Max/L2 norm of divergence after solve at level 1 : 1.185147266e-05 0.000890412135 and volume-weighted sum -69793.57812 Time integration of scalars at level 1 from 832 to 834 with dt = 2 using RHS created at 834 Done with advance_dycore at level 1 [Level 1 step 417] Advanced 6144 cells Coarse STEP 417 ends. TIME = 834 DT = 2 Timestep time = 0.022498996 seconds. Coarse STEP 418 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371103207 (terrain aware) 1.371103207 (terrain unaware) Anelastic dt at level 0 would be: 6.466635369 (terrain aware) 6.466635369 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647854162 (terrain aware) 0.2647854162 (terrain unaware) Anelastic dt at level 1 would be: 3.006519928 (terrain aware) 3.006519928 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 418] ADVANCE from elapsed time = 834 to 836 with dt = 2 Making slow rhs at time 834 for fast variables advancing from 834 to 834.6666666667 Fast time integration at level 0 from 834 to 834.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 834 to 834.6666666667 with dt = 0.6666666666666 using RHS created at 834 Making slow rhs at time 834.6666666667 for fast variables advancing from 834 to 835 Fast time integration at level 0 from 834 to 834.5 with dt = 0.5 Fast time integration at level 0 from 834.5 to 835 with dt = 0.5 Time integration of scalars at level 0 from 834 to 835 with dt = 1 using RHS created at 834.6666666667 Making slow rhs at time 835 for fast variables advancing from 834 to 836 Fast time integration at level 0 from 834 to 834.5 with dt = 0.5 Fast time integration at level 0 from 834.5 to 835 with dt = 0.5 Fast time integration at level 0 from 835 to 835.5 with dt = 0.5 Fast time integration at level 0 from 835.5 to 836 with dt = 0.5 Time integration of scalars at level 0 from 834 to 836 with dt = 2 using RHS created at 835 Done with advance_dycore at level 0 [Level 0 step 418] Advanced 4096 cells [Level 1 step 418] ADVANCE from elapsed time = 834 to 836 with dt = 2 Making slow rhs at time 834 for fast variables advancing from 834 to 836 No-substepping time integration at level 1 to 836 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003439113498 0.002171201399 and volume-weighted sum -62436.23438 Subtracting -1.016214719e-05 from rhs in subdomain 0 Sum after subtraction 0.01909211278 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003540735052 MLMG: Initial residual (resid0) = 0.0003540735052 MLMG: Final Iter. 2 resid, resid/bnorm = 5.093784239e-07, 0.001438623411 MLMG: Timers: Solve = 0.001535772 Iter = 0.001206401 Bottom = 0.000604073 Time in solve 0.001912315 Max/L2 norm of divergence after solve at level 1 : 1.067155972e-05 0.0007965530967 and volume-weighted sum -62436.25 Time integration of scalars at level 1 from 834 to 836 with dt = 2 using RHS created at 834 Making slow rhs at time 836 for fast variables advancing from 834 to 836 No-substepping time integration at level 1 to 836 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003595948219 0.00207796297 and volume-weighted sum -62436.26172 Subtracting -1.016215174e-05 from rhs in subdomain 0 Sum after subtraction 0.03632158041 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003697569773 MLMG: Initial residual (resid0) = 0.0003697569773 MLMG: Final Iter. 2 resid, resid/bnorm = 5.07361392e-07, 0.001372148283 MLMG: Timers: Solve = 0.001450185 Iter = 0.001126114 Bottom = 0.000527628 Time in solve 0.001832616 Max/L2 norm of divergence after solve at level 1 : 1.064394019e-05 0.0007965505356 and volume-weighted sum -62436.26953 Time integration of scalars at level 1 from 834 to 836 with dt = 2 using RHS created at 836 Done with advance_dycore at level 1 [Level 1 step 418] Advanced 6144 cells Coarse STEP 418 ends. TIME = 836 DT = 2 Timestep time = 0.02314921 seconds. Coarse STEP 419 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371084282 (terrain aware) 1.371084282 (terrain unaware) Anelastic dt at level 0 would be: 6.465397977 (terrain aware) 6.465397977 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647690436 (terrain aware) 0.2647690436 (terrain unaware) Anelastic dt at level 1 would be: 3.003297999 (terrain aware) 3.003297999 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 419] ADVANCE from elapsed time = 836 to 838 with dt = 2 Making slow rhs at time 836 for fast variables advancing from 836 to 836.6666666667 Fast time integration at level 0 from 836 to 836.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 836 to 836.6666666667 with dt = 0.6666666666666 using RHS created at 836 Making slow rhs at time 836.6666666667 for fast variables advancing from 836 to 837 Fast time integration at level 0 from 836 to 836.5 with dt = 0.5 Fast time integration at level 0 from 836.5 to 837 with dt = 0.5 Time integration of scalars at level 0 from 836 to 837 with dt = 1 using RHS created at 836.6666666667 Making slow rhs at time 837 for fast variables advancing from 836 to 838 Fast time integration at level 0 from 836 to 836.5 with dt = 0.5 Fast time integration at level 0 from 836.5 to 837 with dt = 0.5 Fast time integration at level 0 from 837 to 837.5 with dt = 0.5 Fast time integration at level 0 from 837.5 to 838 with dt = 0.5 Time integration of scalars at level 0 from 836 to 838 with dt = 2 using RHS created at 837 Done with advance_dycore at level 0 [Level 0 step 419] Advanced 4096 cells [Level 1 step 419] ADVANCE from elapsed time = 836 to 838 with dt = 2 Making slow rhs at time 836 for fast variables advancing from 836 to 838 No-substepping time integration at level 1 to 838 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003823768348 0.002083773259 and volume-weighted sum -47856.05469 Subtracting -7.789071788e-06 from rhs in subdomain 0 Sum after subtraction 0.0623986125 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003901658929 MLMG: Initial residual (resid0) = 0.0003901658929 MLMG: Final Iter. 2 resid, resid/bnorm = 9.241394991e-07, 0.002368581016 MLMG: Timers: Solve = 0.001530731 Iter = 0.001225303 Bottom = 0.000617668 Time in solve 0.001918434 Max/L2 norm of divergence after solve at level 1 : 8.7141525e-06 0.000610553252 and volume-weighted sum -47856.07031 Time integration of scalars at level 1 from 836 to 838 with dt = 2 using RHS created at 836 Making slow rhs at time 838 for fast variables advancing from 836 to 838 No-substepping time integration at level 1 to 838 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003838595003 0.002011886565 and volume-weighted sum -47856.0625 Subtracting -7.789072697e-06 from rhs in subdomain 0 Sum after subtraction 0.01629814506 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003916485584 MLMG: Initial residual (resid0) = 0.0003916485584 MLMG: Final Iter. 2 resid, resid/bnorm = 5.090105333e-07, 0.001299661468 MLMG: Timers: Solve = 0.00145988 Iter = 0.001138535 Bottom = 0.000542887 Time in solve 0.001831023 Max/L2 norm of divergence after solve at level 1 : 8.288072422e-06 0.0006105410866 and volume-weighted sum -47856.0625 Time integration of scalars at level 1 from 836 to 838 with dt = 2 using RHS created at 838 Done with advance_dycore at level 1 [Level 1 step 419] Advanced 6144 cells Coarse STEP 419 ends. TIME = 838 DT = 2 Timestep time = 0.02359739 seconds. Coarse STEP 420 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371168325 (terrain aware) 1.371168325 (terrain unaware) Anelastic dt at level 0 would be: 6.466366552 (terrain aware) 6.466366552 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647627292 (terrain aware) 0.2647627292 (terrain unaware) Anelastic dt at level 1 would be: 2.999370351 (terrain aware) 2.999370351 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 420] ADVANCE from elapsed time = 838 to 840 with dt = 2 Making slow rhs at time 838 for fast variables advancing from 838 to 838.6666666667 Fast time integration at level 0 from 838 to 838.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 838 to 838.6666666667 with dt = 0.6666666666666 using RHS created at 838 Making slow rhs at time 838.6666666667 for fast variables advancing from 838 to 839 Fast time integration at level 0 from 838 to 838.5 with dt = 0.5 Fast time integration at level 0 from 838.5 to 839 with dt = 0.5 Time integration of scalars at level 0 from 838 to 839 with dt = 1 using RHS created at 838.6666666667 Making slow rhs at time 839 for fast variables advancing from 838 to 840 Fast time integration at level 0 from 838 to 838.5 with dt = 0.5 Fast time integration at level 0 from 838.5 to 839 with dt = 0.5 Fast time integration at level 0 from 839 to 839.5 with dt = 0.5 Fast time integration at level 0 from 839.5 to 840 with dt = 0.5 Time integration of scalars at level 0 from 838 to 840 with dt = 2 using RHS created at 839 Done with advance_dycore at level 0 [Level 0 step 420] Advanced 4096 cells [Level 1 step 420] ADVANCE from elapsed time = 838 to 840 with dt = 2 Making slow rhs at time 838 for fast variables advancing from 838 to 840 No-substepping time integration at level 1 to 840 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003615953028 0.002002641093 and volume-weighted sum -27106.24023 Subtracting -4.411822829e-06 from rhs in subdomain 0 Sum after subtraction -0.07776543498 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003660071234 MLMG: Initial residual (resid0) = 0.0003660071234 MLMG: Final Iter. 2 resid, resid/bnorm = 1.736918989e-06, 0.004745587707 MLMG: Timers: Solve = 0.001530416 Iter = 0.001215426 Bottom = 0.000617834 Time in solve 0.00191676 Max/L2 norm of divergence after solve at level 1 : 6.148824468e-06 0.0003458848805 and volume-weighted sum -27106.26562 Time integration of scalars at level 1 from 838 to 840 with dt = 2 using RHS created at 838 Making slow rhs at time 840 for fast variables advancing from 838 to 840 No-substepping time integration at level 1 to 840 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003475621343 0.001945501543 and volume-weighted sum -27106.24609 Subtracting -4.411823738e-06 from rhs in subdomain 0 Sum after subtraction 0.03585591912 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003519739548 MLMG: Initial residual (resid0) = 0.0003519739548 MLMG: Final Iter. 2 resid, resid/bnorm = 5.084273198e-07, 0.001444502734 MLMG: Timers: Solve = 0.001454438 Iter = 0.001138028 Bottom = 0.000532428 Time in solve 0.001841032 Max/L2 norm of divergence after solve at level 1 : 4.929723218e-06 0.0003458237043 and volume-weighted sum -27106.26367 Time integration of scalars at level 1 from 838 to 840 with dt = 2 using RHS created at 840 Done with advance_dycore at level 1 [Level 1 step 420] Advanced 6144 cells Coarse STEP 420 ends. TIME = 840 DT = 2 Timestep time = 0.023192335 seconds. Coarse STEP 421 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371346245 (terrain aware) 1.371346245 (terrain unaware) Anelastic dt at level 0 would be: 6.469340228 (terrain aware) 6.469340228 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647609597 (terrain aware) 0.2647609597 (terrain unaware) Anelastic dt at level 1 would be: 2.993990734 (terrain aware) 2.993990734 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 421] ADVANCE from elapsed time = 840 to 842 with dt = 2 Making slow rhs at time 840 for fast variables advancing from 840 to 840.6666666667 Fast time integration at level 0 from 840 to 840.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 840 to 840.6666666667 with dt = 0.6666666666666 using RHS created at 840 Making slow rhs at time 840.6666666667 for fast variables advancing from 840 to 841 Fast time integration at level 0 from 840 to 840.5 with dt = 0.5 Fast time integration at level 0 from 840.5 to 841 with dt = 0.5 Time integration of scalars at level 0 from 840 to 841 with dt = 1 using RHS created at 840.6666666667 Making slow rhs at time 841 for fast variables advancing from 840 to 842 Fast time integration at level 0 from 840 to 840.5 with dt = 0.5 Fast time integration at level 0 from 840.5 to 841 with dt = 0.5 Fast time integration at level 0 from 841 to 841.5 with dt = 0.5 Fast time integration at level 0 from 841.5 to 842 with dt = 0.5 Time integration of scalars at level 0 from 840 to 842 with dt = 2 using RHS created at 841 Done with advance_dycore at level 0 [Level 0 step 421] Advanced 4096 cells [Level 1 step 421] ADVANCE from elapsed time = 840 to 842 with dt = 2 Making slow rhs at time 840 for fast variables advancing from 840 to 842 No-substepping time integration at level 1 to 842 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003289524466 0.001953842351 and volume-weighted sum -2278.349609 Subtracting -3.708251199e-07 from rhs in subdomain 0 Sum after subtraction -0.1005828381 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003293232876 MLMG: Initial residual (resid0) = 0.0003293232876 MLMG: Final Iter. 2 resid, resid/bnorm = 2.327259153e-06, 0.007066791877 MLMG: Timers: Solve = 0.001541356 Iter = 0.00122493 Bottom = 0.000600243 Time in solve 0.001920694 Max/L2 norm of divergence after solve at level 1 : 2.698972821e-06 3.04002333e-05 and volume-weighted sum -2278.367676 Time integration of scalars at level 1 from 840 to 842 with dt = 2 using RHS created at 840 Making slow rhs at time 842 for fast variables advancing from 840 to 842 No-substepping time integration at level 1 to 842 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003498010337 0.001912140404 and volume-weighted sum -2278.349854 Subtracting -3.708251768e-07 from rhs in subdomain 0 Sum after subtraction 0.008847564459 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003501718456 MLMG: Initial residual (resid0) = 0.0003501718456 MLMG: Final Iter. 2 resid, resid/bnorm = 5.058477655e-07, 0.001444570022 MLMG: Timers: Solve = 0.001490034 Iter = 0.001168321 Bottom = 0.000555976 Time in solve 0.001869902 Max/L2 norm of divergence after solve at level 1 : 8.929055184e-07 2.916938865e-05 and volume-weighted sum -2278.35498 Time integration of scalars at level 1 from 840 to 842 with dt = 2 using RHS created at 842 Done with advance_dycore at level 1 [Level 1 step 421] Advanced 6144 cells Coarse STEP 421 ends. TIME = 842 DT = 2 Timestep time = 0.024446422 seconds. Coarse STEP 422 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.371396164 (terrain aware) 1.371396164 (terrain unaware) Anelastic dt at level 0 would be: 6.472571396 (terrain aware) 6.472571396 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647425754 (terrain aware) 0.2647425754 (terrain unaware) Anelastic dt at level 1 would be: 2.990636185 (terrain aware) 2.990636185 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 422] ADVANCE from elapsed time = 842 to 844 with dt = 2 Making slow rhs at time 842 for fast variables advancing from 842 to 842.6666666667 Fast time integration at level 0 from 842 to 842.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 842 to 842.6666666667 with dt = 0.6666666666666 using RHS created at 842 Making slow rhs at time 842.6666666667 for fast variables advancing from 842 to 843 Fast time integration at level 0 from 842 to 842.5 with dt = 0.5 Fast time integration at level 0 from 842.5 to 843 with dt = 0.5 Time integration of scalars at level 0 from 842 to 843 with dt = 1 using RHS created at 842.6666666667 Making slow rhs at time 843 for fast variables advancing from 842 to 844 Fast time integration at level 0 from 842 to 842.5 with dt = 0.5 Fast time integration at level 0 from 842.5 to 843 with dt = 0.5 Fast time integration at level 0 from 843 to 843.5 with dt = 0.5 Fast time integration at level 0 from 843.5 to 844 with dt = 0.5 Time integration of scalars at level 0 from 842 to 844 with dt = 2 using RHS created at 843 Done with advance_dycore at level 0 [Level 0 step 422] Advanced 4096 cells [Level 1 step 422] ADVANCE from elapsed time = 842 to 844 with dt = 2 Making slow rhs at time 842 for fast variables advancing from 842 to 844 No-substepping time integration at level 1 to 844 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003868155181 0.001975562423 and volume-weighted sum 23609.32227 Subtracting 3.842663318e-06 from rhs in subdomain 0 Sum after subtraction 0.01210719347 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003829728521 MLMG: Initial residual (resid0) = 0.0003829728521 MLMG: Final Iter. 2 resid, resid/bnorm = 2.577735131e-06, 0.006730855908 MLMG: Timers: Solve = 0.001568956 Iter = 0.001253804 Bottom = 0.000648053 Time in solve 0.001947083 Max/L2 norm of divergence after solve at level 1 : 6.334797945e-06 0.0003013635287 and volume-weighted sum 23609.30078 Time integration of scalars at level 1 from 842 to 844 with dt = 2 using RHS created at 842 Making slow rhs at time 844 for fast variables advancing from 842 to 844 No-substepping time integration at level 1 to 844 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003917943686 0.0019323366 and volume-weighted sum 23609.30273 Subtracting 3.842660135e-06 from rhs in subdomain 0 Sum after subtraction -0.0218860805 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003879517026 MLMG: Initial residual (resid0) = 0.0003879517026 MLMG: Final Iter. 2 resid, resid/bnorm = 5.016013347e-07, 0.001292947913 MLMG: Timers: Solve = 0.001417861 Iter = 0.001099899 Bottom = 0.000498117 Time in solve 0.001804552 Max/L2 norm of divergence after solve at level 1 : 4.302710295e-06 0.0003012121888 and volume-weighted sum 23609.35547 Time integration of scalars at level 1 from 842 to 844 with dt = 2 using RHS created at 844 Done with advance_dycore at level 1 [Level 1 step 422] Advanced 6144 cells Coarse STEP 422 ends. TIME = 844 DT = 2 Timestep time = 0.023296962 seconds. Coarse STEP 423 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370846907 (terrain aware) 1.370846907 (terrain unaware) Anelastic dt at level 0 would be: 6.459086441 (terrain aware) 6.459086441 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647364659 (terrain aware) 0.2647364659 (terrain unaware) Anelastic dt at level 1 would be: 2.989326373 (terrain aware) 2.989326373 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 423] ADVANCE from elapsed time = 844 to 846 with dt = 2 Making slow rhs at time 844 for fast variables advancing from 844 to 844.6666666667 Fast time integration at level 0 from 844 to 844.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 844 to 844.6666666667 with dt = 0.6666666666666 using RHS created at 844 Making slow rhs at time 844.6666666667 for fast variables advancing from 844 to 845 Fast time integration at level 0 from 844 to 844.5 with dt = 0.5 Fast time integration at level 0 from 844.5 to 845 with dt = 0.5 Time integration of scalars at level 0 from 844 to 845 with dt = 1 using RHS created at 844.6666666667 Making slow rhs at time 845 for fast variables advancing from 844 to 846 Fast time integration at level 0 from 844 to 844.5 with dt = 0.5 Fast time integration at level 0 from 844.5 to 845 with dt = 0.5 Fast time integration at level 0 from 845 to 845.5 with dt = 0.5 Fast time integration at level 0 from 845.5 to 846 with dt = 0.5 Time integration of scalars at level 0 from 844 to 846 with dt = 2 using RHS created at 845 Done with advance_dycore at level 0 [Level 0 step 423] Advanced 4096 cells [Level 1 step 423] ADVANCE from elapsed time = 844 to 846 with dt = 2 Making slow rhs at time 844 for fast variables advancing from 844 to 846 No-substepping time integration at level 1 to 846 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003839228302 0.002065074164 and volume-weighted sum 47435.80469 Subtracting 7.72067142e-06 from rhs in subdomain 0 Sum after subtraction -0.08172355592 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003762021661 MLMG: Initial residual (resid0) = 0.0003762021661 MLMG: Final Iter. 2 resid, resid/bnorm = 2.385254902e-06, 0.006340354215 MLMG: Timers: Solve = 0.0015594 Iter = 0.001237789 Bottom = 0.000642226 Time in solve 0.001939581 Max/L2 norm of divergence after solve at level 1 : 1.002551289e-05 0.0006052484387 and volume-weighted sum 47435.83594 Time integration of scalars at level 1 from 844 to 846 with dt = 2 using RHS created at 844 Making slow rhs at time 846 for fast variables advancing from 844 to 846 No-substepping time integration at level 1 to 846 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003726761788 0.001999148401 and volume-weighted sum 47435.80469 Subtracting 7.72067142e-06 from rhs in subdomain 0 Sum after subtraction -0.06845220923 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003649555147 MLMG: Initial residual (resid0) = 0.0003649555147 MLMG: Final Iter. 2 resid, resid/bnorm = 4.941528005e-07, 0.001354008331 MLMG: Timers: Solve = 0.001417848 Iter = 0.001087782 Bottom = 0.000482311 Time in solve 0.001796816 Max/L2 norm of divergence after solve at level 1 : 8.188188076e-06 0.000605179579 and volume-weighted sum 47435.78125 Time integration of scalars at level 1 from 844 to 846 with dt = 2 using RHS created at 846 Done with advance_dycore at level 1 [Level 1 step 423] Advanced 6144 cells Coarse STEP 423 ends. TIME = 846 DT = 2 Timestep time = 0.02348822 seconds. Coarse STEP 424 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370386908 (terrain aware) 1.370386908 (terrain unaware) Anelastic dt at level 0 would be: 6.447501086 (terrain aware) 6.447501086 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647425754 (terrain aware) 0.2647425754 (terrain unaware) Anelastic dt at level 1 would be: 2.988774434 (terrain aware) 2.988774434 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 424] ADVANCE from elapsed time = 846 to 848 with dt = 2 Making slow rhs at time 846 for fast variables advancing from 846 to 846.6666666667 Fast time integration at level 0 from 846 to 846.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 846 to 846.6666666667 with dt = 0.6666666666666 using RHS created at 846 Making slow rhs at time 846.6666666667 for fast variables advancing from 846 to 847 Fast time integration at level 0 from 846 to 846.5 with dt = 0.5 Fast time integration at level 0 from 846.5 to 847 with dt = 0.5 Time integration of scalars at level 0 from 846 to 847 with dt = 1 using RHS created at 846.6666666667 Making slow rhs at time 847 for fast variables advancing from 846 to 848 Fast time integration at level 0 from 846 to 846.5 with dt = 0.5 Fast time integration at level 0 from 846.5 to 847 with dt = 0.5 Fast time integration at level 0 from 847 to 847.5 with dt = 0.5 Fast time integration at level 0 from 847.5 to 848 with dt = 0.5 Time integration of scalars at level 0 from 846 to 848 with dt = 2 using RHS created at 847 Done with advance_dycore at level 0 [Level 0 step 424] Advanced 4096 cells [Level 1 step 424] ADVANCE from elapsed time = 846 to 848 with dt = 2 Making slow rhs at time 846 for fast variables advancing from 846 to 848 No-substepping time integration at level 1 to 848 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003216266632 0.002178119728 and volume-weighted sum 66132.71875 Subtracting 1.076378885e-05 from rhs in subdomain 0 Sum after subtraction -0.03376044333 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003108628734 MLMG: Initial residual (resid0) = 0.0003108628734 MLMG: Final Iter. 2 resid, resid/bnorm = 1.754431423e-06, 0.005643746816 MLMG: Timers: Solve = 0.001563149 Iter = 0.001245968 Bottom = 0.000627533 Time in solve 0.001941265 Max/L2 norm of divergence after solve at level 1 : 1.245498424e-05 0.0008437394281 and volume-weighted sum 66132.66406 Time integration of scalars at level 1 from 846 to 848 with dt = 2 using RHS created at 846 Making slow rhs at time 848 for fast variables advancing from 846 to 848 No-substepping time integration at level 1 to 848 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003367532045 0.002080671955 and volume-weighted sum 66132.64062 Subtracting 1.076377612e-05 from rhs in subdomain 0 Sum after subtraction -0.0004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003259894147 MLMG: Initial residual (resid0) = 0.0003259894147 MLMG: Final Iter. 1 resid, resid/bnorm = 9.81244375e-06, 0.03010049835 MLMG: Timers: Solve = 0.000882303 Iter = 0.00055748 Bottom = 0.000226182 Time in solve 0.001260311 Max/L2 norm of divergence after solve at level 1 : 2.005603164e-05 0.0008453946793 and volume-weighted sum 66132.63281 Time integration of scalars at level 1 from 846 to 848 with dt = 2 using RHS created at 848 Done with advance_dycore at level 1 [Level 1 step 424] Advanced 6144 cells Coarse STEP 424 ends. TIME = 848 DT = 2 Timestep time = 0.022786816 seconds. Coarse STEP 425 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.370016465 (terrain aware) 1.370016465 (terrain unaware) Anelastic dt at level 0 would be: 6.437818312 (terrain aware) 6.437818312 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647598607 (terrain aware) 0.2647598607 (terrain unaware) Anelastic dt at level 1 would be: 2.985632971 (terrain aware) 2.985632971 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 425] ADVANCE from elapsed time = 848 to 850 with dt = 2 Making slow rhs at time 848 for fast variables advancing from 848 to 848.6666666667 Fast time integration at level 0 from 848 to 848.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 848 to 848.6666666667 with dt = 0.6666666666666 using RHS created at 848 Making slow rhs at time 848.6666666667 for fast variables advancing from 848 to 849 Fast time integration at level 0 from 848 to 848.5 with dt = 0.5 Fast time integration at level 0 from 848.5 to 849 with dt = 0.5 Time integration of scalars at level 0 from 848 to 849 with dt = 1 using RHS created at 848.6666666667 Making slow rhs at time 849 for fast variables advancing from 848 to 850 Fast time integration at level 0 from 848 to 848.5 with dt = 0.5 Fast time integration at level 0 from 848.5 to 849 with dt = 0.5 Fast time integration at level 0 from 849 to 849.5 with dt = 0.5 Fast time integration at level 0 from 849.5 to 850 with dt = 0.5 Time integration of scalars at level 0 from 848 to 850 with dt = 2 using RHS created at 849 Done with advance_dycore at level 0 [Level 0 step 425] Advanced 4096 cells [Level 1 step 425] ADVANCE from elapsed time = 848 to 850 with dt = 2 Making slow rhs at time 848 for fast variables advancing from 848 to 850 No-substepping time integration at level 1 to 850 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003816522658 0.002224366646 and volume-weighted sum 77346.17969 Subtracting 1.258889642e-05 from rhs in subdomain 0 Sum after subtraction 0 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003690633748 MLMG: Initial residual (resid0) = 0.0003690633748 MLMG: Final Iter. 2 resid, resid/bnorm = 5.637493814e-07, 0.001527513727 MLMG: Timers: Solve = 0.001607278 Iter = 0.001280735 Bottom = 0.000658154 Time in solve 0.001989403 Max/L2 norm of divergence after solve at level 1 : 1.312734094e-05 0.0009867757326 and volume-weighted sum 77346.14062 Time integration of scalars at level 1 from 848 to 850 with dt = 2 using RHS created at 848 Making slow rhs at time 850 for fast variables advancing from 848 to 850 No-substepping time integration at level 1 to 850 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003924872726 0.002139815595 and volume-weighted sum 77346.14844 Subtracting 1.258889097e-05 from rhs in subdomain 0 Sum after subtraction 0.05913898349 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003798983817 MLMG: Initial residual (resid0) = 0.0003798983817 MLMG: Final Iter. 2 resid, resid/bnorm = 5.052598908e-07, 0.001329986961 MLMG: Timers: Solve = 0.001466787 Iter = 0.001143336 Bottom = 0.000545024 Time in solve 0.001847747 Max/L2 norm of divergence after solve at level 1 : 1.302547753e-05 0.0009867681656 and volume-weighted sum 77346.13281 Time integration of scalars at level 1 from 848 to 850 with dt = 2 using RHS created at 850 Done with advance_dycore at level 1 [Level 1 step 425] Advanced 6144 cells Coarse STEP 425 ends. TIME = 850 DT = 2 Timestep time = 0.023416832 seconds. Coarse STEP 426 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369738111 (terrain aware) 1.369738111 (terrain unaware) Anelastic dt at level 0 would be: 6.430113816 (terrain aware) 6.430113816 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647622635 (terrain aware) 0.2647622635 (terrain unaware) Anelastic dt at level 1 would be: 2.98228617 (terrain aware) 2.98228617 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 426] ADVANCE from elapsed time = 850 to 852 with dt = 2 Making slow rhs at time 850 for fast variables advancing from 850 to 850.6666666667 Fast time integration at level 0 from 850 to 850.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 850 to 850.6666666667 with dt = 0.6666666666666 using RHS created at 850 Making slow rhs at time 850.6666666667 for fast variables advancing from 850 to 851 Fast time integration at level 0 from 850 to 850.5 with dt = 0.5 Fast time integration at level 0 from 850.5 to 851 with dt = 0.5 Time integration of scalars at level 0 from 850 to 851 with dt = 1 using RHS created at 850.6666666667 Making slow rhs at time 851 for fast variables advancing from 850 to 852 Fast time integration at level 0 from 850 to 850.5 with dt = 0.5 Fast time integration at level 0 from 850.5 to 851 with dt = 0.5 Fast time integration at level 0 from 851 to 851.5 with dt = 0.5 Fast time integration at level 0 from 851.5 to 852 with dt = 0.5 Time integration of scalars at level 0 from 850 to 852 with dt = 2 using RHS created at 851 Done with advance_dycore at level 0 [Level 0 step 426] Advanced 4096 cells [Level 1 step 426] ADVANCE from elapsed time = 850 to 852 with dt = 2 Making slow rhs at time 850 for fast variables advancing from 850 to 852 No-substepping time integration at level 1 to 852 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003944281489 0.00228963769 and volume-weighted sum 79792.20312 Subtracting 1.298701227e-05 from rhs in subdomain 0 Sum after subtraction -0.08335337043 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003814411466 MLMG: Initial residual (resid0) = 0.0003814411466 MLMG: Final Iter. 2 resid, resid/bnorm = 6.844844052e-07, 0.001794469194 MLMG: Timers: Solve = 0.001518719 Iter = 0.001204981 Bottom = 0.000604383 Time in solve 0.001906881 Max/L2 norm of divergence after solve at level 1 : 1.367088407e-05 0.001017979463 and volume-weighted sum 79792.07812 Time integration of scalars at level 1 from 850 to 852 with dt = 2 using RHS created at 850 Making slow rhs at time 852 for fast variables advancing from 850 to 852 No-substepping time integration at level 1 to 852 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003856569529 0.002149746753 and volume-weighted sum 79792.14062 Subtracting 1.298700226e-05 from rhs in subdomain 0 Sum after subtraction -0.01350417733 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003726699506 MLMG: Initial residual (resid0) = 0.0003726699506 MLMG: Final Iter. 2 resid, resid/bnorm = 5.141796464e-07, 0.001379718538 MLMG: Timers: Solve = 0.001541948 Iter = 0.001215613 Bottom = 0.000617365 Time in solve 0.001921924 Max/L2 norm of divergence after solve at level 1 : 1.341849566e-05 0.001017972594 and volume-weighted sum 79792.03906 Time integration of scalars at level 1 from 850 to 852 with dt = 2 using RHS created at 852 Done with advance_dycore at level 1 [Level 1 step 426] Advanced 6144 cells Coarse STEP 426 ends. TIME = 852 DT = 2 Timestep time = 0.023629779 seconds. Coarse STEP 427 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369554082 (terrain aware) 1.369554082 (terrain unaware) Anelastic dt at level 0 would be: 6.42444601 (terrain aware) 6.42444601 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264763586 (terrain aware) 0.264763586 (terrain unaware) Anelastic dt at level 1 would be: 2.980009273 (terrain aware) 2.980009273 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 427] ADVANCE from elapsed time = 852 to 854 with dt = 2 Making slow rhs at time 852 for fast variables advancing from 852 to 852.6666666667 Fast time integration at level 0 from 852 to 852.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 852 to 852.6666666667 with dt = 0.6666666666666 using RHS created at 852 Making slow rhs at time 852.6666666667 for fast variables advancing from 852 to 853 Fast time integration at level 0 from 852 to 852.5 with dt = 0.5 Fast time integration at level 0 from 852.5 to 853 with dt = 0.5 Time integration of scalars at level 0 from 852 to 853 with dt = 1 using RHS created at 852.6666666667 Making slow rhs at time 853 for fast variables advancing from 852 to 854 Fast time integration at level 0 from 852 to 852.5 with dt = 0.5 Fast time integration at level 0 from 852.5 to 853 with dt = 0.5 Fast time integration at level 0 from 853 to 853.5 with dt = 0.5 Fast time integration at level 0 from 853.5 to 854 with dt = 0.5 Time integration of scalars at level 0 from 852 to 854 with dt = 2 using RHS created at 853 Done with advance_dycore at level 0 [Level 0 step 427] Advanced 4096 cells [Level 1 step 427] ADVANCE from elapsed time = 852 to 854 with dt = 2 Making slow rhs at time 852 for fast variables advancing from 852 to 854 No-substepping time integration at level 1 to 854 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000342560932 0.00221693865 and volume-weighted sum 73265.23438 Subtracting 1.192467971e-05 from rhs in subdomain 0 Sum after subtraction 0.02887099981 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003306362487 MLMG: Initial residual (resid0) = 0.0003306362487 MLMG: Final Iter. 2 resid, resid/bnorm = 1.803645773e-06, 0.005455075763 MLMG: Timers: Solve = 0.001815288 Iter = 0.001498581 Bottom = 0.000853453 Time in solve 0.002196253 Max/L2 norm of divergence after solve at level 1 : 1.37258321e-05 0.0009347285377 and volume-weighted sum 73265.32812 Time integration of scalars at level 1 from 852 to 854 with dt = 2 using RHS created at 852 Making slow rhs at time 854 for fast variables advancing from 852 to 854 No-substepping time integration at level 1 to 854 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003249403089 0.002107748529 and volume-weighted sum 73265.26562 Subtracting 1.192468517e-05 from rhs in subdomain 0 Sum after subtraction -0.0004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003130156256 MLMG: Initial residual (resid0) = 0.0003130156256 MLMG: Final Iter. 2 resid, resid/bnorm = 5.056999726e-07, 0.001615574234 MLMG: Timers: Solve = 0.0014387 Iter = 0.001119783 Bottom = 0.000503943 Time in solve 0.001869116 Max/L2 norm of divergence after solve at level 1 : 1.237913966e-05 0.0009347035084 and volume-weighted sum 73265.26562 Time integration of scalars at level 1 from 852 to 854 with dt = 2 using RHS created at 854 Done with advance_dycore at level 1 [Level 1 step 427] Advanced 6144 cells Coarse STEP 427 ends. TIME = 854 DT = 2 Timestep time = 0.023500706 seconds. Coarse STEP 428 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369467208 (terrain aware) 1.369467208 (terrain unaware) Anelastic dt at level 0 would be: 6.420888805 (terrain aware) 6.420888805 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647710925 (terrain aware) 0.2647710925 (terrain unaware) Anelastic dt at level 1 would be: 2.978918508 (terrain aware) 2.978918508 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 428] ADVANCE from elapsed time = 854 to 856 with dt = 2 Making slow rhs at time 854 for fast variables advancing from 854 to 854.6666666667 Fast time integration at level 0 from 854 to 854.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 854 to 854.6666666667 with dt = 0.6666666666666 using RHS created at 854 Making slow rhs at time 854.6666666667 for fast variables advancing from 854 to 855 Fast time integration at level 0 from 854 to 854.5 with dt = 0.5 Fast time integration at level 0 from 854.5 to 855 with dt = 0.5 Time integration of scalars at level 0 from 854 to 855 with dt = 1 using RHS created at 854.6666666667 Making slow rhs at time 855 for fast variables advancing from 854 to 856 Fast time integration at level 0 from 854 to 854.5 with dt = 0.5 Fast time integration at level 0 from 854.5 to 855 with dt = 0.5 Fast time integration at level 0 from 855 to 855.5 with dt = 0.5 Fast time integration at level 0 from 855.5 to 856 with dt = 0.5 Time integration of scalars at level 0 from 854 to 856 with dt = 2 using RHS created at 855 Done with advance_dycore at level 0 [Level 0 step 428] Advanced 4096 cells [Level 1 step 428] ADVANCE from elapsed time = 854 to 856 with dt = 2 Making slow rhs at time 854 for fast variables advancing from 854 to 856 No-substepping time integration at level 1 to 856 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003624316305 0.00211823592 and volume-weighted sum 58906.19922 Subtracting 9.58759756e-06 from rhs in subdomain 0 Sum after subtraction 0.1601874828 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003528440138 MLMG: Initial residual (resid0) = 0.0003528440138 MLMG: Final Iter. 2 resid, resid/bnorm = 2.600029347e-06, 0.007368778344 MLMG: Timers: Solve = 0.001551762 Iter = 0.001228692 Bottom = 0.000622233 Time in solve 0.001936586 Max/L2 norm of divergence after solve at level 1 : 1.218554098e-05 0.0007515751058 and volume-weighted sum 58906.17578 Time integration of scalars at level 1 from 854 to 856 with dt = 2 using RHS created at 854 Making slow rhs at time 856 for fast variables advancing from 854 to 856 No-substepping time integration at level 1 to 856 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003745295107 0.002029189374 and volume-weighted sum 58906.17969 Subtracting 9.587593922e-06 from rhs in subdomain 0 Sum after subtraction 0.04936009645 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003649419232 MLMG: Initial residual (resid0) = 0.0003649419232 MLMG: Final Iter. 2 resid, resid/bnorm = 5.069000508e-07, 0.001388988225 MLMG: Timers: Solve = 0.001558404 Iter = 0.001243404 Bottom = 0.000514975 Time in solve 0.001945825 Max/L2 norm of divergence after solve at level 1 : 1.003965735e-05 0.000751515443 and volume-weighted sum 58906.22656 Time integration of scalars at level 1 from 854 to 856 with dt = 2 using RHS created at 856 Done with advance_dycore at level 1 [Level 1 step 428] Advanced 6144 cells Coarse STEP 428 ends. TIME = 856 DT = 2 Timestep time = 0.023293687 seconds. Coarse STEP 429 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369479278 (terrain aware) 1.369479278 (terrain unaware) Anelastic dt at level 0 would be: 6.419511938 (terrain aware) 6.419511938 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647829016 (terrain aware) 0.2647829016 (terrain unaware) Anelastic dt at level 1 would be: 2.973737374 (terrain aware) 2.973737374 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 429] ADVANCE from elapsed time = 856 to 858 with dt = 2 Making slow rhs at time 856 for fast variables advancing from 856 to 856.6666666667 Fast time integration at level 0 from 856 to 856.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 856 to 856.6666666667 with dt = 0.6666666666666 using RHS created at 856 Making slow rhs at time 856.6666666667 for fast variables advancing from 856 to 857 Fast time integration at level 0 from 856 to 856.5 with dt = 0.5 Fast time integration at level 0 from 856.5 to 857 with dt = 0.5 Time integration of scalars at level 0 from 856 to 857 with dt = 1 using RHS created at 856.6666666667 Making slow rhs at time 857 for fast variables advancing from 856 to 858 Fast time integration at level 0 from 856 to 856.5 with dt = 0.5 Fast time integration at level 0 from 856.5 to 857 with dt = 0.5 Fast time integration at level 0 from 857 to 857.5 with dt = 0.5 Fast time integration at level 0 from 857.5 to 858 with dt = 0.5 Time integration of scalars at level 0 from 856 to 858 with dt = 2 using RHS created at 857 Done with advance_dycore at level 0 [Level 0 step 429] Advanced 4096 cells [Level 1 step 429] ADVANCE from elapsed time = 856 to 858 with dt = 2 Making slow rhs at time 856 for fast variables advancing from 856 to 858 No-substepping time integration at level 1 to 858 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003851670772 0.002015169011 and volume-weighted sum 38822.44922 Subtracting 6.318758096e-06 from rhs in subdomain 0 Sum after subtraction -0.03073364496 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003788483154 MLMG: Initial residual (resid0) = 0.0003788483154 MLMG: Final Iter. 2 resid, resid/bnorm = 2.823119985e-06, 0.007451847661 MLMG: Timers: Solve = 0.001862115 Iter = 0.001547011 Bottom = 0.000628263 Time in solve 0.0022341 Max/L2 norm of divergence after solve at level 1 : 9.143375792e-06 0.0004954012693 and volume-weighted sum 38822.44141 Time integration of scalars at level 1 from 856 to 858 with dt = 2 using RHS created at 856 Making slow rhs at time 858 for fast variables advancing from 856 to 858 No-substepping time integration at level 1 to 858 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003819670528 0.001944955555 and volume-weighted sum 38822.38672 Subtracting 6.318747637e-06 from rhs in subdomain 0 Sum after subtraction -0.01350417733 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003756482911 MLMG: Initial residual (resid0) = 0.0003756482911 MLMG: Final Iter. 2 resid, resid/bnorm = 5.075835361e-07, 0.001351220184 MLMG: Timers: Solve = 0.001495922 Iter = 0.001173861 Bottom = 0.000576819 Time in solve 0.001868531 Max/L2 norm of divergence after solve at level 1 : 6.768852472e-06 0.0004952931777 and volume-weighted sum 38822.41797 Time integration of scalars at level 1 from 856 to 858 with dt = 2 using RHS created at 858 Done with advance_dycore at level 1 [Level 1 step 429] Advanced 6144 cells Coarse STEP 429 ends. TIME = 858 DT = 2 Timestep time = 0.023279505 seconds. Coarse STEP 430 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369591633 (terrain aware) 1.369591633 (terrain unaware) Anelastic dt at level 0 would be: 6.420379185 (terrain aware) 6.420379185 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647916002 (terrain aware) 0.2647916002 (terrain unaware) Anelastic dt at level 1 would be: 2.969171957 (terrain aware) 2.969171957 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 430] ADVANCE from elapsed time = 858 to 860 with dt = 2 Making slow rhs at time 858 for fast variables advancing from 858 to 858.6666666667 Fast time integration at level 0 from 858 to 858.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 858 to 858.6666666667 with dt = 0.6666666666666 using RHS created at 858 Making slow rhs at time 858.6666666667 for fast variables advancing from 858 to 859 Fast time integration at level 0 from 858 to 858.5 with dt = 0.5 Fast time integration at level 0 from 858.5 to 859 with dt = 0.5 Time integration of scalars at level 0 from 858 to 859 with dt = 1 using RHS created at 858.6666666667 Making slow rhs at time 859 for fast variables advancing from 858 to 860 Fast time integration at level 0 from 858 to 858.5 with dt = 0.5 Fast time integration at level 0 from 858.5 to 859 with dt = 0.5 Fast time integration at level 0 from 859 to 859.5 with dt = 0.5 Fast time integration at level 0 from 859.5 to 860 with dt = 0.5 Time integration of scalars at level 0 from 858 to 860 with dt = 2 using RHS created at 859 Done with advance_dycore at level 0 [Level 0 step 430] Advanced 4096 cells [Level 1 step 430] ADVANCE from elapsed time = 858 to 860 with dt = 2 Making slow rhs at time 858 for fast variables advancing from 858 to 860 No-substepping time integration at level 1 to 860 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003474503756 0.001946010394 and volume-weighted sum 15732.93262 Subtracting 2.560698704e-06 from rhs in subdomain 0 Sum after subtraction 0.006519258022 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000344889675 MLMG: Initial residual (resid0) = 0.000344889675 MLMG: Final Iter. 2 resid, resid/bnorm = 2.561791916e-06, 0.00742785912 MLMG: Timers: Solve = 0.001511072 Iter = 0.001194468 Bottom = 0.000597235 Time in solve 0.001885733 Max/L2 norm of divergence after solve at level 1 : 5.123671144e-06 0.0002009586315 and volume-weighted sum 15732.95508 Time integration of scalars at level 1 from 858 to 860 with dt = 2 using RHS created at 858 Making slow rhs at time 860 for fast variables advancing from 858 to 860 No-substepping time integration at level 1 to 860 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003308951855 0.001887821825 and volume-weighted sum 15732.94922 Subtracting 2.560701432e-06 from rhs in subdomain 0 Sum after subtraction 0.03399327397 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003283344849 MLMG: Initial residual (resid0) = 0.0003283344849 MLMG: Final Iter. 2 resid, resid/bnorm = 5.020292519e-07, 0.001529017696 MLMG: Timers: Solve = 0.001501742 Iter = 0.00118256 Bottom = 0.000584357 Time in solve 0.001888501 Max/L2 norm of divergence after solve at level 1 : 3.010034561e-06 0.000200732291 and volume-weighted sum 15732.95898 Time integration of scalars at level 1 from 858 to 860 with dt = 2 using RHS created at 860 Done with advance_dycore at level 1 [Level 1 step 430] Advanced 6144 cells Coarse STEP 430 ends. TIME = 860 DT = 2 Timestep time = 0.023652735 seconds. Coarse STEP 431 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.369665841 (terrain aware) 1.369665841 (terrain unaware) Anelastic dt at level 0 would be: 6.423538231 (terrain aware) 6.423538231 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647758981 (terrain aware) 0.2647758981 (terrain unaware) Anelastic dt at level 1 would be: 2.965560511 (terrain aware) 2.965560511 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 431] ADVANCE from elapsed time = 860 to 862 with dt = 2 Making slow rhs at time 860 for fast variables advancing from 860 to 860.6666666667 Fast time integration at level 0 from 860 to 860.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 860 to 860.6666666667 with dt = 0.6666666666666 using RHS created at 860 Making slow rhs at time 860.6666666667 for fast variables advancing from 860 to 861 Fast time integration at level 0 from 860 to 860.5 with dt = 0.5 Fast time integration at level 0 from 860.5 to 861 with dt = 0.5 Time integration of scalars at level 0 from 860 to 861 with dt = 1 using RHS created at 860.6666666667 Making slow rhs at time 861 for fast variables advancing from 860 to 862 Fast time integration at level 0 from 860 to 860.5 with dt = 0.5 Fast time integration at level 0 from 860.5 to 861 with dt = 0.5 Fast time integration at level 0 from 861 to 861.5 with dt = 0.5 Fast time integration at level 0 from 861.5 to 862 with dt = 0.5 Time integration of scalars at level 0 from 860 to 862 with dt = 2 using RHS created at 861 Done with advance_dycore at level 0 [Level 0 step 431] Advanced 4096 cells [Level 1 step 431] ADVANCE from elapsed time = 860 to 862 with dt = 2 Making slow rhs at time 860 for fast variables advancing from 860 to 862 No-substepping time integration at level 1 to 862 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003276299685 0.001930581406 and volume-weighted sum -7748.750977 Subtracting -1.261189936e-06 from rhs in subdomain 0 Sum after subtraction 0.1145526767 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003288911248 MLMG: Initial residual (resid0) = 0.0003288911248 MLMG: Final Iter. 2 resid, resid/bnorm = 1.749324611e-06, 0.005318856332 MLMG: Timers: Solve = 0.001527563 Iter = 0.001198333 Bottom = 0.000600375 Time in solve 0.001903276 Max/L2 norm of divergence after solve at level 1 : 2.986198524e-06 9.913065878e-05 and volume-weighted sum -7748.747559 Time integration of scalars at level 1 from 860 to 862 with dt = 2 using RHS created at 860 Making slow rhs at time 862 for fast variables advancing from 860 to 862 No-substepping time integration at level 1 to 862 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003446415067 0.001876505092 and volume-weighted sum -7748.736816 Subtracting -1.261187663e-06 from rhs in subdomain 0 Sum after subtraction 0.1220032573 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000345902663 MLMG: Initial residual (resid0) = 0.000345902663 MLMG: Final Iter. 2 resid, resid/bnorm = 5.204483386e-07, 0.001504609245 MLMG: Timers: Solve = 0.001466569 Iter = 0.001139393 Bottom = 0.000531733 Time in solve 0.001870604 Max/L2 norm of divergence after solve at level 1 : 1.784414053e-06 9.888596833e-05 and volume-weighted sum -7748.755859 Time integration of scalars at level 1 from 860 to 862 with dt = 2 using RHS created at 862 Done with advance_dycore at level 1 [Level 1 step 431] Advanced 6144 cells Coarse STEP 431 ends. TIME = 862 DT = 2 Timestep time = 0.024207618 seconds. Coarse STEP 432 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36910362 (terrain aware) 1.36910362 (terrain unaware) Anelastic dt at level 0 would be: 6.4108186 (terrain aware) 6.4108186 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264763139 (terrain aware) 0.264763139 (terrain unaware) Anelastic dt at level 1 would be: 2.962950722 (terrain aware) 2.962950722 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 432] ADVANCE from elapsed time = 862 to 864 with dt = 2 Making slow rhs at time 862 for fast variables advancing from 862 to 862.6666666667 Fast time integration at level 0 from 862 to 862.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 862 to 862.6666666667 with dt = 0.6666666666666 using RHS created at 862 Making slow rhs at time 862.6666666667 for fast variables advancing from 862 to 863 Fast time integration at level 0 from 862 to 862.5 with dt = 0.5 Fast time integration at level 0 from 862.5 to 863 with dt = 0.5 Time integration of scalars at level 0 from 862 to 863 with dt = 1 using RHS created at 862.6666666667 Making slow rhs at time 863 for fast variables advancing from 862 to 864 Fast time integration at level 0 from 862 to 862.5 with dt = 0.5 Fast time integration at level 0 from 862.5 to 863 with dt = 0.5 Fast time integration at level 0 from 863 to 863.5 with dt = 0.5 Fast time integration at level 0 from 863.5 to 864 with dt = 0.5 Time integration of scalars at level 0 from 862 to 864 with dt = 2 using RHS created at 863 Done with advance_dycore at level 0 [Level 0 step 432] Advanced 4096 cells [Level 1 step 432] ADVANCE from elapsed time = 862 to 864 with dt = 2 Making slow rhs at time 862 for fast variables advancing from 862 to 864 No-substepping time integration at level 1 to 864 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003659222275 0.001960351365 and volume-weighted sum -29513.4043 Subtracting -4.803614047e-06 from rhs in subdomain 0 Sum after subtraction -0.02002343535 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003707258438 MLMG: Initial residual (resid0) = 0.0003707258438 MLMG: Final Iter. 2 resid, resid/bnorm = 1.163286584e-06, 0.003137862077 MLMG: Timers: Solve = 0.001679767 Iter = 0.001360017 Bottom = 0.000714648 Time in solve 0.002062145 Max/L2 norm of divergence after solve at level 1 : 5.958077963e-06 0.0003765657602 and volume-weighted sum -29513.44141 Time integration of scalars at level 1 from 862 to 864 with dt = 2 using RHS created at 862 Making slow rhs at time 864 for fast variables advancing from 862 to 864 No-substepping time integration at level 1 to 864 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003684423864 0.001908621169 and volume-weighted sum -29513.42188 Subtracting -4.803616775e-06 from rhs in subdomain 0 Sum after subtraction -0.005587935448 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003732460027 MLMG: Initial residual (resid0) = 0.0003732460027 MLMG: Final Iter. 1 resid, resid/bnorm = 9.834890079e-06, 0.02634961903 MLMG: Timers: Solve = 0.000920364 Iter = 0.000596576 Bottom = 0.000264695 Time in solve 0.001356336 Max/L2 norm of divergence after solve at level 1 : 1.465342939e-05 0.0003801606363 and volume-weighted sum -29513.45117 Time integration of scalars at level 1 from 862 to 864 with dt = 2 using RHS created at 864 Done with advance_dycore at level 1 [Level 1 step 432] Advanced 6144 cells Coarse STEP 432 ends. TIME = 864 DT = 2 Timestep time = 0.02300998 seconds. Coarse STEP 433 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368646452 (terrain aware) 1.368646452 (terrain unaware) Anelastic dt at level 0 would be: 6.39923861 (terrain aware) 6.39923861 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647537699 (terrain aware) 0.2647537699 (terrain unaware) Anelastic dt at level 1 would be: 2.958571569 (terrain aware) 2.958571569 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 433] ADVANCE from elapsed time = 864 to 866 with dt = 2 Making slow rhs at time 864 for fast variables advancing from 864 to 864.6666666667 Fast time integration at level 0 from 864 to 864.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 864 to 864.6666666667 with dt = 0.6666666666666 using RHS created at 864 Making slow rhs at time 864.6666666667 for fast variables advancing from 864 to 865 Fast time integration at level 0 from 864 to 864.5 with dt = 0.5 Fast time integration at level 0 from 864.5 to 865 with dt = 0.5 Time integration of scalars at level 0 from 864 to 865 with dt = 1 using RHS created at 864.6666666667 Making slow rhs at time 865 for fast variables advancing from 864 to 866 Fast time integration at level 0 from 864 to 864.5 with dt = 0.5 Fast time integration at level 0 from 864.5 to 865 with dt = 0.5 Fast time integration at level 0 from 865 to 865.5 with dt = 0.5 Fast time integration at level 0 from 865.5 to 866 with dt = 0.5 Time integration of scalars at level 0 from 864 to 866 with dt = 2 using RHS created at 865 Done with advance_dycore at level 0 [Level 0 step 433] Advanced 4096 cells [Level 1 step 433] ADVANCE from elapsed time = 864 to 866 with dt = 2 Making slow rhs at time 864 for fast variables advancing from 864 to 866 No-substepping time integration at level 1 to 866 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003452394158 0.001979083288 and volume-weighted sum -48046.64453 Subtracting -7.820091923e-06 from rhs in subdomain 0 Sum after subtraction 0.007450580597 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003530594986 MLMG: Initial residual (resid0) = 0.0003530594986 MLMG: Final Iter. 2 resid, resid/bnorm = 7.593425266e-07, 0.002150749555 MLMG: Timers: Solve = 0.001576711 Iter = 0.001252299 Bottom = 0.000649796 Time in solve 0.0019528 Max/L2 norm of divergence after solve at level 1 : 8.580682334e-06 0.0006129823159 and volume-weighted sum -48046.67969 Time integration of scalars at level 1 from 864 to 866 with dt = 2 using RHS created at 864 Making slow rhs at time 866 for fast variables advancing from 864 to 866 No-substepping time integration at level 1 to 866 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003355871886 0.001967635239 and volume-weighted sum -48046.64453 Subtracting -7.820091923e-06 from rhs in subdomain 0 Sum after subtraction -0.0004656612873 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003434072714 MLMG: Initial residual (resid0) = 0.0003434072714 MLMG: Final Iter. 2 resid, resid/bnorm = 5.071055966e-07, 0.001476688543 MLMG: Timers: Solve = 0.001409853 Iter = 0.001099118 Bottom = 0.000504721 Time in solve 0.001790779 Max/L2 norm of divergence after solve at level 1 : 8.326605894e-06 0.0006129726535 and volume-weighted sum -48046.71875 Time integration of scalars at level 1 from 864 to 866 with dt = 2 using RHS created at 866 Done with advance_dycore at level 1 [Level 1 step 433] Advanced 6144 cells Coarse STEP 433 ends. TIME = 866 DT = 2 Timestep time = 0.02355836 seconds. Coarse STEP 434 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368296573 (terrain aware) 1.368296573 (terrain unaware) Anelastic dt at level 0 would be: 6.39009645 (terrain aware) 6.39009645 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647493926 (terrain aware) 0.2647493926 (terrain unaware) Anelastic dt at level 1 would be: 2.952875749 (terrain aware) 2.952875749 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 434] ADVANCE from elapsed time = 866 to 868 with dt = 2 Making slow rhs at time 866 for fast variables advancing from 866 to 866.6666666667 Fast time integration at level 0 from 866 to 866.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 866 to 866.6666666667 with dt = 0.6666666666666 using RHS created at 866 Making slow rhs at time 866.6666666667 for fast variables advancing from 866 to 867 Fast time integration at level 0 from 866 to 866.5 with dt = 0.5 Fast time integration at level 0 from 866.5 to 867 with dt = 0.5 Time integration of scalars at level 0 from 866 to 867 with dt = 1 using RHS created at 866.6666666667 Making slow rhs at time 867 for fast variables advancing from 866 to 868 Fast time integration at level 0 from 866 to 866.5 with dt = 0.5 Fast time integration at level 0 from 866.5 to 867 with dt = 0.5 Fast time integration at level 0 from 867 to 867.5 with dt = 0.5 Fast time integration at level 0 from 867.5 to 868 with dt = 0.5 Time integration of scalars at level 0 from 866 to 868 with dt = 2 using RHS created at 867 Done with advance_dycore at level 0 [Level 0 step 434] Advanced 4096 cells [Level 1 step 434] ADVANCE from elapsed time = 866 to 868 with dt = 2 Making slow rhs at time 866 for fast variables advancing from 866 to 868 No-substepping time integration at level 1 to 868 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003047585487 0.002094834577 and volume-weighted sum -62342.73047 Subtracting -1.014692862e-05 from rhs in subdomain 0 Sum after subtraction -0.02281740308 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003012075904 MLMG: Initial residual (resid0) = 0.0003012075904 MLMG: Final Iter. 2 resid, resid/bnorm = 6.17040314e-07, 0.002048555063 MLMG: Timers: Solve = 0.001525728 Iter = 0.001209803 Bottom = 0.000607856 Time in solve 0.001901416 Max/L2 norm of divergence after solve at level 1 : 1.076853368e-05 0.0007953608292 and volume-weighted sum -62342.63281 Time integration of scalars at level 1 from 866 to 868 with dt = 2 using RHS created at 866 Making slow rhs at time 868 for fast variables advancing from 866 to 868 No-substepping time integration at level 1 to 868 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003128480166 0.002029610332 and volume-weighted sum -62342.71484 Subtracting -1.014692589e-05 from rhs in subdomain 0 Sum after subtraction -0.020256266 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003229949507 MLMG: Initial residual (resid0) = 0.0003229949507 MLMG: Final Iter. 2 resid, resid/bnorm = 5.154546443e-07, 0.001595859765 MLMG: Timers: Solve = 0.001460716 Iter = 0.001145121 Bottom = 0.000538826 Time in solve 0.00189307 Max/L2 norm of divergence after solve at level 1 : 1.064769458e-05 0.0007953567547 and volume-weighted sum -62342.65625 Time integration of scalars at level 1 from 866 to 868 with dt = 2 using RHS created at 868 Done with advance_dycore at level 1 [Level 1 step 434] Advanced 6144 cells Coarse STEP 434 ends. TIME = 868 DT = 2 Timestep time = 0.023117648 seconds. Coarse STEP 435 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368053237 (terrain aware) 1.368053237 (terrain unaware) Anelastic dt at level 0 would be: 6.383341456 (terrain aware) 6.383341456 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647314554 (terrain aware) 0.2647314554 (terrain unaware) Anelastic dt at level 1 would be: 2.94842656 (terrain aware) 2.94842656 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 435] ADVANCE from elapsed time = 868 to 870 with dt = 2 Making slow rhs at time 868 for fast variables advancing from 868 to 868.6666666667 Fast time integration at level 0 from 868 to 868.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 868 to 868.6666666667 with dt = 0.6666666666666 using RHS created at 868 Making slow rhs at time 868.6666666667 for fast variables advancing from 868 to 869 Fast time integration at level 0 from 868 to 868.5 with dt = 0.5 Fast time integration at level 0 from 868.5 to 869 with dt = 0.5 Time integration of scalars at level 0 from 868 to 869 with dt = 1 using RHS created at 868.6666666667 Making slow rhs at time 869 for fast variables advancing from 868 to 870 Fast time integration at level 0 from 868 to 868.5 with dt = 0.5 Fast time integration at level 0 from 868.5 to 869 with dt = 0.5 Fast time integration at level 0 from 869 to 869.5 with dt = 0.5 Fast time integration at level 0 from 869.5 to 870 with dt = 0.5 Time integration of scalars at level 0 from 868 to 870 with dt = 2 using RHS created at 869 Done with advance_dycore at level 0 [Level 0 step 435] Advanced 4096 cells [Level 1 step 435] ADVANCE from elapsed time = 868 to 870 with dt = 2 Making slow rhs at time 868 for fast variables advancing from 868 to 870 No-substepping time integration at level 1 to 870 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003470014781 0.002127202693 and volume-weighted sum -71481.6875 Subtracting -1.163438901e-05 from rhs in subdomain 0 Sum after subtraction -0.02118758857 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003586358798 MLMG: Initial residual (resid0) = 0.0003586358798 MLMG: Final Iter. 2 resid, resid/bnorm = 5.498238238e-07, 0.001533097704 MLMG: Timers: Solve = 0.001491957 Iter = 0.001170132 Bottom = 0.000566547 Time in solve 0.001879862 Max/L2 norm of divergence after solve at level 1 : 1.216531382e-05 0.0009119535098 and volume-weighted sum -71481.65625 Time integration of scalars at level 1 from 868 to 870 with dt = 2 using RHS created at 868 Making slow rhs at time 870 for fast variables advancing from 868 to 870 No-substepping time integration at level 1 to 870 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003545992076 0.002076212782 and volume-weighted sum -71481.67188 Subtracting -1.163438628e-05 from rhs in subdomain 0 Sum after subtraction -0.0218860805 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003662335803 MLMG: Initial residual (resid0) = 0.0003662335803 MLMG: Final Iter. 2 resid, resid/bnorm = 5.151678693e-07, 0.001406664727 MLMG: Timers: Solve = 0.001810133 Iter = 0.001465518 Bottom = 0.000742795 Time in solve 0.00220894 Max/L2 norm of divergence after solve at level 1 : 1.215963857e-05 0.0009119513561 and volume-weighted sum -71481.67969 Time integration of scalars at level 1 from 868 to 870 with dt = 2 using RHS created at 870 Done with advance_dycore at level 1 [Level 1 step 435] Advanced 6144 cells Coarse STEP 435 ends. TIME = 870 DT = 2 Timestep time = 0.023552571 seconds. Coarse STEP 436 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367913017 (terrain aware) 1.367913017 (terrain unaware) Anelastic dt at level 0 would be: 6.378902698 (terrain aware) 6.378902698 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2647043911 (terrain aware) 0.2647043911 (terrain unaware) Anelastic dt at level 1 would be: 2.945317284 (terrain aware) 2.945317284 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 436] ADVANCE from elapsed time = 870 to 872 with dt = 2 Making slow rhs at time 870 for fast variables advancing from 870 to 870.6666666667 Fast time integration at level 0 from 870 to 870.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 870 to 870.6666666667 with dt = 0.6666666666666 using RHS created at 870 Making slow rhs at time 870.6666666667 for fast variables advancing from 870 to 871 Fast time integration at level 0 from 870 to 870.5 with dt = 0.5 Fast time integration at level 0 from 870.5 to 871 with dt = 0.5 Time integration of scalars at level 0 from 870 to 871 with dt = 1 using RHS created at 870.6666666667 Making slow rhs at time 871 for fast variables advancing from 870 to 872 Fast time integration at level 0 from 870 to 870.5 with dt = 0.5 Fast time integration at level 0 from 870.5 to 871 with dt = 0.5 Fast time integration at level 0 from 871 to 871.5 with dt = 0.5 Fast time integration at level 0 from 871.5 to 872 with dt = 0.5 Time integration of scalars at level 0 from 870 to 872 with dt = 2 using RHS created at 871 Done with advance_dycore at level 0 [Level 0 step 436] Advanced 4096 cells [Level 1 step 436] ADVANCE from elapsed time = 870 to 872 with dt = 2 Making slow rhs at time 870 for fast variables advancing from 870 to 872 No-substepping time integration at level 1 to 872 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003476440907 0.002153686946 and volume-weighted sum -74428.83594 Subtracting -1.211406834e-05 from rhs in subdomain 0 Sum after subtraction 0.0586733222 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003597581526 MLMG: Initial residual (resid0) = 0.0003597581526 MLMG: Final Iter. 2 resid, resid/bnorm = 4.949072263e-07, 0.00137566647 MLMG: Timers: Solve = 0.001962656 Iter = 0.001648595 Bottom = 0.000894945 Time in solve 0.002342962 Max/L2 norm of divergence after solve at level 1 : 1.262320438e-05 0.0009495503618 and volume-weighted sum -74428.80469 Time integration of scalars at level 1 from 870 to 872 with dt = 2 using RHS created at 870 Making slow rhs at time 872 for fast variables advancing from 870 to 872 No-substepping time integration at level 1 to 872 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003406144679 0.002091237344 and volume-weighted sum -74428.85156 Subtracting -1.211407107e-05 from rhs in subdomain 0 Sum after subtraction 0.07916241884 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003527285298 MLMG: Initial residual (resid0) = 0.0003527285298 MLMG: Final Iter. 2 resid, resid/bnorm = 5.174847502e-07, 0.001467090682 MLMG: Timers: Solve = 0.001379471 Iter = 0.001065583 Bottom = 0.000470464 Time in solve 0.001761431 Max/L2 norm of divergence after solve at level 1 : 1.261002035e-05 0.0009495485574 and volume-weighted sum -74428.83594 Time integration of scalars at level 1 from 870 to 872 with dt = 2 using RHS created at 872 Done with advance_dycore at level 1 [Level 1 step 436] Advanced 6144 cells Coarse STEP 436 ends. TIME = 872 DT = 2 Timestep time = 0.023218608 seconds. Coarse STEP 437 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367872337 (terrain aware) 1.367872337 (terrain unaware) Anelastic dt at level 0 would be: 6.376637721 (terrain aware) 6.376637721 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646838275 (terrain aware) 0.2646838275 (terrain unaware) Anelastic dt at level 1 would be: 2.942627327 (terrain aware) 2.942627327 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 437] ADVANCE from elapsed time = 872 to 874 with dt = 2 Making slow rhs at time 872 for fast variables advancing from 872 to 872.6666666667 Fast time integration at level 0 from 872 to 872.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 872 to 872.6666666667 with dt = 0.6666666666666 using RHS created at 872 Making slow rhs at time 872.6666666667 for fast variables advancing from 872 to 873 Fast time integration at level 0 from 872 to 872.5 with dt = 0.5 Fast time integration at level 0 from 872.5 to 873 with dt = 0.5 Time integration of scalars at level 0 from 872 to 873 with dt = 1 using RHS created at 872.6666666667 Making slow rhs at time 873 for fast variables advancing from 872 to 874 Fast time integration at level 0 from 872 to 872.5 with dt = 0.5 Fast time integration at level 0 from 872.5 to 873 with dt = 0.5 Fast time integration at level 0 from 873 to 873.5 with dt = 0.5 Fast time integration at level 0 from 873.5 to 874 with dt = 0.5 Time integration of scalars at level 0 from 872 to 874 with dt = 2 using RHS created at 873 Done with advance_dycore at level 0 [Level 0 step 437] Advanced 4096 cells [Level 1 step 437] ADVANCE from elapsed time = 872 to 874 with dt = 2 Making slow rhs at time 872 for fast variables advancing from 872 to 874 No-substepping time integration at level 1 to 874 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002978928387 0.002142535755 and volume-weighted sum -70297.83594 Subtracting -1.144170528e-05 from rhs in subdomain 0 Sum after subtraction 0.01234002411 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003045903868 MLMG: Initial residual (resid0) = 0.0003045903868 MLMG: Final Iter. 2 resid, resid/bnorm = 7.671285402e-07, 0.002518557943 MLMG: Timers: Solve = 0.001465007 Iter = 0.001150845 Bottom = 0.0005537 Time in solve 0.00184922 Max/L2 norm of divergence after solve at level 1 : 1.220940612e-05 0.0008968516486 and volume-weighted sum -70297.78906 Time integration of scalars at level 1 from 872 to 874 with dt = 2 using RHS created at 872 Making slow rhs at time 874 for fast variables advancing from 872 to 874 No-substepping time integration at level 1 to 874 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003010109067 0.002066441812 and volume-weighted sum -70297.84375 Subtracting -1.144170619e-05 from rhs in subdomain 0 Sum after subtraction 0.09802170098 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002961432619 MLMG: Initial residual (resid0) = 0.0002961432619 MLMG: Final Iter. 2 resid, resid/bnorm = 5.192438266e-07, 0.001753353514 MLMG: Timers: Solve = 0.001427318 Iter = 0.001100963 Bottom = 0.000494707 Time in solve 0.001815202 Max/L2 norm of divergence after solve at level 1 : 1.196091762e-05 0.000896845595 and volume-weighted sum -70297.78906 Time integration of scalars at level 1 from 872 to 874 with dt = 2 using RHS created at 874 Done with advance_dycore at level 1 [Level 1 step 437] Advanced 6144 cells Coarse STEP 437 ends. TIME = 874 DT = 2 Timestep time = 0.022920839 seconds. Coarse STEP 438 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367925087 (terrain aware) 1.367925087 (terrain unaware) Anelastic dt at level 0 would be: 6.376415396 (terrain aware) 6.376415396 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646709194 (terrain aware) 0.2646709194 (terrain unaware) Anelastic dt at level 1 would be: 2.937142507 (terrain aware) 2.937142507 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 438] ADVANCE from elapsed time = 874 to 876 with dt = 2 Making slow rhs at time 874 for fast variables advancing from 874 to 874.6666666667 Fast time integration at level 0 from 874 to 874.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 874 to 874.6666666667 with dt = 0.6666666666666 using RHS created at 874 Making slow rhs at time 874.6666666667 for fast variables advancing from 874 to 875 Fast time integration at level 0 from 874 to 874.5 with dt = 0.5 Fast time integration at level 0 from 874.5 to 875 with dt = 0.5 Time integration of scalars at level 0 from 874 to 875 with dt = 1 using RHS created at 874.6666666667 Making slow rhs at time 875 for fast variables advancing from 874 to 876 Fast time integration at level 0 from 874 to 874.5 with dt = 0.5 Fast time integration at level 0 from 874.5 to 875 with dt = 0.5 Fast time integration at level 0 from 875 to 875.5 with dt = 0.5 Fast time integration at level 0 from 875.5 to 876 with dt = 0.5 Time integration of scalars at level 0 from 874 to 876 with dt = 2 using RHS created at 875 Done with advance_dycore at level 0 [Level 0 step 438] Advanced 4096 cells [Level 1 step 438] ADVANCE from elapsed time = 874 to 876 with dt = 2 Making slow rhs at time 874 for fast variables advancing from 874 to 876 No-substepping time integration at level 1 to 876 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003322530538 0.002091946779 and volume-weighted sum -58632.68359 Subtracting -9.543079614e-06 from rhs in subdomain 0 Sum after subtraction -0.02002343535 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003417961416 MLMG: Initial residual (resid0) = 0.0003417961416 MLMG: Final Iter. 2 resid, resid/bnorm = 1.539878099e-06, 0.004505252931 MLMG: Timers: Solve = 0.001583094 Iter = 0.001268909 Bottom = 0.000638307 Time in solve 0.001965475 Max/L2 norm of divergence after solve at level 1 : 1.10816909e-05 0.0007480496424 and volume-weighted sum -58632.66406 Time integration of scalars at level 1 from 874 to 876 with dt = 2 using RHS created at 874 Making slow rhs at time 876 for fast variables advancing from 874 to 876 No-substepping time integration at level 1 to 876 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003446079791 0.002004513983 and volume-weighted sum -58632.6875 Subtracting -9.543080523e-06 from rhs in subdomain 0 Sum after subtraction -0.02305023372 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003541510669 MLMG: Initial residual (resid0) = 0.0003541510669 MLMG: Final Iter. 2 resid, resid/bnorm = 5.191523087e-07, 0.001465906389 MLMG: Timers: Solve = 0.001467919 Iter = 0.001141259 Bottom = 0.000546542 Time in solve 0.001846688 Max/L2 norm of divergence after solve at level 1 : 1.007854007e-05 0.0007480264758 and volume-weighted sum -58632.71094 Time integration of scalars at level 1 from 874 to 876 with dt = 2 using RHS created at 876 Done with advance_dycore at level 1 [Level 1 step 438] Advanced 6144 cells Coarse STEP 438 ends. TIME = 876 DT = 2 Timestep time = 0.023152933 seconds. Coarse STEP 439 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.368065456 (terrain aware) 1.368065456 (terrain unaware) Anelastic dt at level 0 would be: 6.378096843 (terrain aware) 6.378096843 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646665794 (terrain aware) 0.2646665794 (terrain unaware) Anelastic dt at level 1 would be: 2.933301882 (terrain aware) 2.933301882 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 439] ADVANCE from elapsed time = 876 to 878 with dt = 2 Making slow rhs at time 876 for fast variables advancing from 876 to 876.6666666667 Fast time integration at level 0 from 876 to 876.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 876 to 876.6666666667 with dt = 0.6666666666666 using RHS created at 876 Making slow rhs at time 876.6666666667 for fast variables advancing from 876 to 877 Fast time integration at level 0 from 876 to 876.5 with dt = 0.5 Fast time integration at level 0 from 876.5 to 877 with dt = 0.5 Time integration of scalars at level 0 from 876 to 877 with dt = 1 using RHS created at 876.6666666667 Making slow rhs at time 877 for fast variables advancing from 876 to 878 Fast time integration at level 0 from 876 to 876.5 with dt = 0.5 Fast time integration at level 0 from 876.5 to 877 with dt = 0.5 Fast time integration at level 0 from 877 to 877.5 with dt = 0.5 Fast time integration at level 0 from 877.5 to 878 with dt = 0.5 Time integration of scalars at level 0 from 876 to 878 with dt = 2 using RHS created at 877 Done with advance_dycore at level 0 [Level 0 step 439] Advanced 4096 cells [Level 1 step 439] ADVANCE from elapsed time = 876 to 878 with dt = 2 Making slow rhs at time 876 for fast variables advancing from 876 to 878 No-substepping time integration at level 1 to 878 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003539249301 0.00201286329 and volume-weighted sum -39891.56641 Subtracting -6.49276808e-06 from rhs in subdomain 0 Sum after subtraction -0.02357410267 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003604177036 MLMG: Initial residual (resid0) = 0.0003604177036 MLMG: Final Iter. 2 resid, resid/bnorm = 2.252807462e-06, 0.006250545848 MLMG: Timers: Solve = 0.001530047 Iter = 0.0012165 Bottom = 0.000614895 Time in solve 0.001921643 Max/L2 norm of divergence after solve at level 1 : 8.745118976e-06 0.0005090034683 and volume-weighted sum -39891.61719 Time integration of scalars at level 1 from 876 to 878 with dt = 2 using RHS created at 876 Making slow rhs at time 878 for fast variables advancing from 876 to 878 No-substepping time integration at level 1 to 878 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003515258431 0.001925360179 and volume-weighted sum -39891.57031 Subtracting -6.492768534e-06 from rhs in subdomain 0 Sum after subtraction -0.06286427379 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003580186167 MLMG: Initial residual (resid0) = 0.0003580186167 MLMG: Final Iter. 2 resid, resid/bnorm = 5.164554295e-07, 0.001442537876 MLMG: Timers: Solve = 0.001438769 Iter = 0.001124418 Bottom = 0.000523012 Time in solve 0.001824421 Max/L2 norm of divergence after solve at level 1 : 7.020076737e-06 0.0005089336773 and volume-weighted sum -39891.5625 Time integration of scalars at level 1 from 876 to 878 with dt = 2 using RHS created at 878 Done with advance_dycore at level 1 [Level 1 step 439] Advanced 6144 cells Coarse STEP 439 ends. TIME = 878 DT = 2 Timestep time = 0.023086039 seconds. Coarse STEP 440 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36828644 (terrain aware) 1.36828644 (terrain unaware) Anelastic dt at level 0 would be: 6.381525898 (terrain aware) 6.381525898 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.264643166 (terrain aware) 0.264643166 (terrain unaware) Anelastic dt at level 1 would be: 2.931176082 (terrain aware) 2.931176082 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 440] ADVANCE from elapsed time = 878 to 880 with dt = 2 Making slow rhs at time 878 for fast variables advancing from 878 to 878.6666666667 Fast time integration at level 0 from 878 to 878.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 878 to 878.6666666667 with dt = 0.6666666666666 using RHS created at 878 Making slow rhs at time 878.6666666667 for fast variables advancing from 878 to 879 Fast time integration at level 0 from 878 to 878.5 with dt = 0.5 Fast time integration at level 0 from 878.5 to 879 with dt = 0.5 Time integration of scalars at level 0 from 878 to 879 with dt = 1 using RHS created at 878.6666666667 Making slow rhs at time 879 for fast variables advancing from 878 to 880 Fast time integration at level 0 from 878 to 878.5 with dt = 0.5 Fast time integration at level 0 from 878.5 to 879 with dt = 0.5 Fast time integration at level 0 from 879 to 879.5 with dt = 0.5 Fast time integration at level 0 from 879.5 to 880 with dt = 0.5 Time integration of scalars at level 0 from 878 to 880 with dt = 2 using RHS created at 879 Done with advance_dycore at level 0 [Level 0 step 440] Advanced 4096 cells [Level 1 step 440] ADVANCE from elapsed time = 878 to 880 with dt = 2 Making slow rhs at time 878 for fast variables advancing from 878 to 880 No-substepping time integration at level 1 to 880 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003198105842 0.001937187626 and volume-weighted sum -15730.80957 Subtracting -2.560353096e-06 from rhs in subdomain 0 Sum after subtraction 0.06717164069 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003223709355 MLMG: Initial residual (resid0) = 0.0003223709355 MLMG: Final Iter. 2 resid, resid/bnorm = 2.650438773e-06, 0.008221705444 MLMG: Timers: Solve = 0.001562681 Iter = 0.001250679 Bottom = 0.000621035 Time in solve 0.001946591 Max/L2 norm of divergence after solve at level 1 : 5.211797543e-06 0.000200947994 and volume-weighted sum -15730.80176 Time integration of scalars at level 1 from 878 to 880 with dt = 2 using RHS created at 878 Making slow rhs at time 880 for fast variables advancing from 878 to 880 No-substepping time integration at level 1 to 880 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003046561033 0.001864754595 and volume-weighted sum -15730.79785 Subtracting -2.560351277e-06 from rhs in subdomain 0 Sum after subtraction 0.01979060471 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003072164545 MLMG: Initial residual (resid0) = 0.0003072164545 MLMG: Final Iter. 2 resid, resid/bnorm = 5.119086381e-07, 0.001666279975 MLMG: Timers: Solve = 0.001889462 Iter = 0.001280149 Bottom = 0.000503295 Time in solve 0.002267706 Max/L2 norm of divergence after solve at level 1 : 3.076624125e-06 0.0002007060102 and volume-weighted sum -15730.83887 Time integration of scalars at level 1 from 878 to 880 with dt = 2 using RHS created at 880 Done with advance_dycore at level 1 [Level 1 step 440] Advanced 6144 cells Coarse STEP 440 ends. TIME = 880 DT = 2 Timestep time = 0.0236982 seconds. Coarse STEP 441 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367782781 (terrain aware) 1.367782781 (terrain unaware) Anelastic dt at level 0 would be: 6.373688484 (terrain aware) 6.373688484 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646263091 (terrain aware) 0.2646263091 (terrain unaware) Anelastic dt at level 1 would be: 2.930791036 (terrain aware) 2.930791036 (terrain unaware) Fixed dt at level 1 is: 2 Creating new distribution map on level: 1 REMAKING WITH NEW BA AT LEVEL 1 (BoxArray maxbox(6) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,15) (0,0,0)) ((48,0,0) (79,0,47) (0,0,0)) ((80,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ((144,0,0) (175,0,47) (0,0,0)) ) OLD BA AT LEVEL 1 (BoxArray maxbox(6) m_ref->m_hash_sig(0) ((0,0,0) (31,0,15) (0,0,0)) ((32,0,0) (47,0,15) (0,0,0)) ((48,0,0) (79,0,47) (0,0,0)) ((80,0,0) (111,0,47) (0,0,0)) ((112,0,0) (143,0,47) (0,0,0)) ((144,0,0) (159,0,47) (0,0,0)) ) Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002883661073 0.001445884467 and volume-weighted sum -8629.991211 Subtracting -1.248551939e-06 from rhs in subdomain 0 Sum after subtraction -0.03725290298 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002896146616 MLMG: Initial residual (resid0) = 0.0002896146616 MLMG: Final Iter. 2 resid, resid/bnorm = 1.78758637e-06, 0.0061722924 MLMG: Timers: Solve = 0.001735099 Iter = 0.001415475 Bottom = 0.000739733 Time in solve 0.002147072 Max/L2 norm of divergence after solve at level 1 : 3.036344424e-06 0.0001043240918 and volume-weighted sum -8629.989258 [Level 0 step 441] ADVANCE from elapsed time = 880 to 882 with dt = 2 Making slow rhs at time 880 for fast variables advancing from 880 to 880.6666666667 Fast time integration at level 0 from 880 to 880.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 880 to 880.6666666667 with dt = 0.6666666666666 using RHS created at 880 Making slow rhs at time 880.6666666667 for fast variables advancing from 880 to 881 Fast time integration at level 0 from 880 to 880.5 with dt = 0.5 Fast time integration at level 0 from 880.5 to 881 with dt = 0.5 Time integration of scalars at level 0 from 880 to 881 with dt = 1 using RHS created at 880.6666666667 Making slow rhs at time 881 for fast variables advancing from 880 to 882 Fast time integration at level 0 from 880 to 880.5 with dt = 0.5 Fast time integration at level 0 from 880.5 to 881 with dt = 0.5 Fast time integration at level 0 from 881 to 881.5 with dt = 0.5 Fast time integration at level 0 from 881.5 to 882 with dt = 0.5 Time integration of scalars at level 0 from 880 to 882 with dt = 2 using RHS created at 881 Done with advance_dycore at level 0 [Level 0 step 441] Advanced 4096 cells [Level 1 step 441] ADVANCE from elapsed time = 880 to 882 with dt = 2 Making slow rhs at time 880 for fast variables advancing from 880 to 882 No-substepping time integration at level 1 to 882 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.007592800073 0.0723124817 and volume-weighted sum 21224.43945 Subtracting 3.070665343e-06 from rhs in subdomain 0 Sum after subtraction -0.5513429642 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.007595870644 MLMG: Initial residual (resid0) = 0.007595870644 MLMG: Final Iter. 3 resid, resid/bnorm = 1.02352351e-06, 0.000134747359 MLMG: Timers: Solve = 0.002391546 Iter = 0.002077061 Bottom = 0.001115399 Time in solve 0.002825392 Max/L2 norm of divergence after solve at level 1 : 4.095025361e-06 0.0002554228413 and volume-weighted sum 21224.26172 Time integration of scalars at level 1 from 880 to 882 with dt = 2 using RHS created at 880 Making slow rhs at time 882 for fast variables advancing from 880 to 882 No-substepping time integration at level 1 to 882 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003419741988 0.001868904685 and volume-weighted sum 21224.31641 Subtracting 3.070647608e-06 from rhs in subdomain 0 Sum after subtraction -0.03515742719 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000338903541 MLMG: Initial residual (resid0) = 0.000338903541 MLMG: Final Iter. 1 resid, resid/bnorm = 9.967072401e-06, 0.02940976247 MLMG: Timers: Solve = 0.000927836 Iter = 0.000607623 Bottom = 0.000237949 Time in solve 0.001323458 Max/L2 norm of divergence after solve at level 1 : 1.258729026e-05 0.0002605938062 and volume-weighted sum 21224.32031 Time integration of scalars at level 1 from 880 to 882 with dt = 2 using RHS created at 882 Done with advance_dycore at level 1 [Level 1 step 441] Advanced 6912 cells Coarse STEP 441 ends. TIME = 882 DT = 2 Timestep time = 0.035451626 seconds. Coarse STEP 442 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.367299983 (terrain aware) 1.367299983 (terrain unaware) Anelastic dt at level 0 would be: 6.361414099 (terrain aware) 6.361414099 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646160645 (terrain aware) 0.2646160645 (terrain unaware) Anelastic dt at level 1 would be: 2.926767425 (terrain aware) 2.926767425 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 442] ADVANCE from elapsed time = 882 to 884 with dt = 2 Making slow rhs at time 882 for fast variables advancing from 882 to 882.6666666667 Fast time integration at level 0 from 882 to 882.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 882 to 882.6666666667 with dt = 0.6666666666666 using RHS created at 882 Making slow rhs at time 882.6666666667 for fast variables advancing from 882 to 883 Fast time integration at level 0 from 882 to 882.5 with dt = 0.5 Fast time integration at level 0 from 882.5 to 883 with dt = 0.5 Time integration of scalars at level 0 from 882 to 883 with dt = 1 using RHS created at 882.6666666667 Making slow rhs at time 883 for fast variables advancing from 882 to 884 Fast time integration at level 0 from 882 to 882.5 with dt = 0.5 Fast time integration at level 0 from 882.5 to 883 with dt = 0.5 Fast time integration at level 0 from 883 to 883.5 with dt = 0.5 Fast time integration at level 0 from 883.5 to 884 with dt = 0.5 Time integration of scalars at level 0 from 882 to 884 with dt = 2 using RHS created at 883 Done with advance_dycore at level 0 [Level 0 step 442] Advanced 4096 cells [Level 1 step 442] ADVANCE from elapsed time = 882 to 884 with dt = 2 Making slow rhs at time 882 for fast variables advancing from 882 to 884 No-substepping time integration at level 1 to 884 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003640707582 0.001974330284 and volume-weighted sum 49476.03516 Subtracting 7.157991149e-06 from rhs in subdomain 0 Sum after subtraction -0.06170012057 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003569127584 MLMG: Initial residual (resid0) = 0.0003569127584 MLMG: Final Iter. 2 resid, resid/bnorm = 2.461303438e-06, 0.006896092556 MLMG: Timers: Solve = 0.001699202 Iter = 0.001371465 Bottom = 0.000697623 Time in solve 0.002085844 Max/L2 norm of divergence after solve at level 1 : 9.540352039e-06 0.0005951835774 and volume-weighted sum 49475.98438 Time integration of scalars at level 1 from 882 to 884 with dt = 2 using RHS created at 882 Making slow rhs at time 884 for fast variables advancing from 882 to 884 No-substepping time integration at level 1 to 884 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003670081496 0.001942936215 and volume-weighted sum 49476.03125 Subtracting 7.157990694e-06 from rhs in subdomain 0 Sum after subtraction -0.07369089872 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003598501498 MLMG: Initial residual (resid0) = 0.0003598501498 MLMG: Final Iter. 2 resid, resid/bnorm = 5.162794423e-07, 0.001434706734 MLMG: Timers: Solve = 0.001575101 Iter = 0.001251403 Bottom = 0.000580889 Time in solve 0.00195971 Max/L2 norm of divergence after solve at level 1 : 7.623806596e-06 0.0005951098283 and volume-weighted sum 49476 Time integration of scalars at level 1 from 882 to 884 with dt = 2 using RHS created at 884 Done with advance_dycore at level 1 [Level 1 step 442] Advanced 6912 cells Coarse STEP 442 ends. TIME = 884 DT = 2 Timestep time = 0.024992417 seconds. Coarse STEP 443 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366892139 (terrain aware) 1.366892139 (terrain unaware) Anelastic dt at level 0 would be: 6.350768114 (terrain aware) 6.350768114 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646217642 (terrain aware) 0.2646217642 (terrain unaware) Anelastic dt at level 1 would be: 2.924797789 (terrain aware) 2.924797789 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 443] ADVANCE from elapsed time = 884 to 886 with dt = 2 Making slow rhs at time 884 for fast variables advancing from 884 to 884.6666666667 Fast time integration at level 0 from 884 to 884.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 884 to 884.6666666667 with dt = 0.6666666666666 using RHS created at 884 Making slow rhs at time 884.6666666667 for fast variables advancing from 884 to 885 Fast time integration at level 0 from 884 to 884.5 with dt = 0.5 Fast time integration at level 0 from 884.5 to 885 with dt = 0.5 Time integration of scalars at level 0 from 884 to 885 with dt = 1 using RHS created at 884.6666666667 Making slow rhs at time 885 for fast variables advancing from 884 to 886 Fast time integration at level 0 from 884 to 884.5 with dt = 0.5 Fast time integration at level 0 from 884.5 to 885 with dt = 0.5 Fast time integration at level 0 from 885 to 885.5 with dt = 0.5 Fast time integration at level 0 from 885.5 to 886 with dt = 0.5 Time integration of scalars at level 0 from 884 to 886 with dt = 2 using RHS created at 885 Done with advance_dycore at level 0 [Level 0 step 443] Advanced 4096 cells [Level 1 step 443] ADVANCE from elapsed time = 884 to 886 with dt = 2 Making slow rhs at time 884 for fast variables advancing from 884 to 886 No-substepping time integration at level 1 to 886 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000351196155 0.002159248572 and volume-weighted sum 72373.44531 Subtracting 1.047069509e-05 from rhs in subdomain 0 Sum after subtraction -0.00512227416 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003407254699 MLMG: Initial residual (resid0) = 0.0003407254699 MLMG: Final Iter. 2 resid, resid/bnorm = 1.742875156e-06, 0.005115189124 MLMG: Timers: Solve = 0.001676063 Iter = 0.001360699 Bottom = 0.000683579 Time in solve 0.00205682 Max/L2 norm of divergence after solve at level 1 : 1.214980148e-05 0.0008705507498 and volume-weighted sum 72373.46094 Time integration of scalars at level 1 from 884 to 886 with dt = 2 using RHS created at 884 Making slow rhs at time 886 for fast variables advancing from 884 to 886 No-substepping time integration at level 1 to 886 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003361273557 0.002039860701 and volume-weighted sum 72373.46875 Subtracting 1.047069873e-05 from rhs in subdomain 0 Sum after subtraction -0.09383074939 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003256566706 MLMG: Initial residual (resid0) = 0.0003256566706 MLMG: Final Iter. 2 resid, resid/bnorm = 5.216197678e-07, 0.001601747586 MLMG: Timers: Solve = 0.00158176 Iter = 0.001264829 Bottom = 0.000595474 Time in solve 0.002031601 Max/L2 norm of divergence after solve at level 1 : 1.094117761e-05 0.0008705210057 and volume-weighted sum 72373.50781 Time integration of scalars at level 1 from 884 to 886 with dt = 2 using RHS created at 886 Done with advance_dycore at level 1 [Level 1 step 443] Advanced 6912 cells Coarse STEP 443 ends. TIME = 886 DT = 2 Timestep time = 0.025328199 seconds. Coarse STEP 444 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36656178 (terrain aware) 1.36656178 (terrain unaware) Anelastic dt at level 0 would be: 6.341810728 (terrain aware) 6.341810728 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646301834 (terrain aware) 0.2646301834 (terrain unaware) Anelastic dt at level 1 would be: 2.924505429 (terrain aware) 2.924505429 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 444] ADVANCE from elapsed time = 886 to 888 with dt = 2 Making slow rhs at time 886 for fast variables advancing from 886 to 886.6666666667 Fast time integration at level 0 from 886 to 886.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 886 to 886.6666666667 with dt = 0.6666666666666 using RHS created at 886 Making slow rhs at time 886.6666666667 for fast variables advancing from 886 to 887 Fast time integration at level 0 from 886 to 886.5 with dt = 0.5 Fast time integration at level 0 from 886.5 to 887 with dt = 0.5 Time integration of scalars at level 0 from 886 to 887 with dt = 1 using RHS created at 886.6666666667 Making slow rhs at time 887 for fast variables advancing from 886 to 888 Fast time integration at level 0 from 886 to 886.5 with dt = 0.5 Fast time integration at level 0 from 886.5 to 887 with dt = 0.5 Fast time integration at level 0 from 887 to 887.5 with dt = 0.5 Fast time integration at level 0 from 887.5 to 888 with dt = 0.5 Time integration of scalars at level 0 from 886 to 888 with dt = 2 using RHS created at 887 Done with advance_dycore at level 0 [Level 0 step 444] Advanced 4096 cells [Level 1 step 444] ADVANCE from elapsed time = 886 to 888 with dt = 2 Making slow rhs at time 886 for fast variables advancing from 886 to 888 No-substepping time integration at level 1 to 888 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003128442913 0.002247086726 and volume-weighted sum 86922.23438 Subtracting 1.257555505e-05 from rhs in subdomain 0 Sum after subtraction 0.03329478204 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003002687299 MLMG: Initial residual (resid0) = 0.0003002687299 MLMG: Final Iter. 2 resid, resid/bnorm = 5.068686733e-07, 0.001688050106 MLMG: Timers: Solve = 0.001727973 Iter = 0.001391333 Bottom = 0.000734243 Time in solve 0.002177754 Max/L2 norm of divergence after solve at level 1 : 1.307576895e-05 0.001045521465 and volume-weighted sum 86922.17188 Time integration of scalars at level 1 from 886 to 888 with dt = 2 using RHS created at 886 Making slow rhs at time 888 for fast variables advancing from 886 to 888 No-substepping time integration at level 1 to 888 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003304127604 0.002116833813 and volume-weighted sum 86922.33594 Subtracting 1.25755696e-05 from rhs in subdomain 0 Sum after subtraction 0.01420266926 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000317837199 MLMG: Initial residual (resid0) = 0.000317837199 MLMG: Final Iter. 2 resid, resid/bnorm = 5.217475518e-07, 0.001641555922 MLMG: Timers: Solve = 0.00155086 Iter = 0.001226191 Bottom = 0.000566524 Time in solve 0.001935573 Max/L2 norm of divergence after solve at level 1 : 1.303851604e-05 0.001045513782 and volume-weighted sum 86922.25781 Time integration of scalars at level 1 from 886 to 888 with dt = 2 using RHS created at 888 Done with advance_dycore at level 1 [Level 1 step 444] Advanced 6912 cells Coarse STEP 444 ends. TIME = 888 DT = 2 Timestep time = 0.025227524 seconds. Coarse STEP 445 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366313527 (terrain aware) 1.366313527 (terrain unaware) Anelastic dt at level 0 would be: 6.33465221 (terrain aware) 6.33465221 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646215221 (terrain aware) 0.2646215221 (terrain unaware) Anelastic dt at level 1 would be: 2.925754146 (terrain aware) 2.925754146 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 445] ADVANCE from elapsed time = 888 to 890 with dt = 2 Making slow rhs at time 888 for fast variables advancing from 888 to 888.6666666667 Fast time integration at level 0 from 888 to 888.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 888 to 888.6666666667 with dt = 0.6666666666666 using RHS created at 888 Making slow rhs at time 888.6666666667 for fast variables advancing from 888 to 889 Fast time integration at level 0 from 888 to 888.5 with dt = 0.5 Fast time integration at level 0 from 888.5 to 889 with dt = 0.5 Time integration of scalars at level 0 from 888 to 889 with dt = 1 using RHS created at 888.6666666667 Making slow rhs at time 889 for fast variables advancing from 888 to 890 Fast time integration at level 0 from 888 to 888.5 with dt = 0.5 Fast time integration at level 0 from 888.5 to 889 with dt = 0.5 Fast time integration at level 0 from 889 to 889.5 with dt = 0.5 Fast time integration at level 0 from 889.5 to 890 with dt = 0.5 Time integration of scalars at level 0 from 888 to 890 with dt = 2 using RHS created at 889 Done with advance_dycore at level 0 [Level 0 step 445] Advanced 4096 cells [Level 1 step 445] ADVANCE from elapsed time = 888 to 890 with dt = 2 Making slow rhs at time 888 for fast variables advancing from 888 to 890 No-substepping time integration at level 1 to 890 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003648046404 0.0022849862 and volume-weighted sum 91349.24219 Subtracting 1.321603577e-05 from rhs in subdomain 0 Sum after subtraction -0.02968590707 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.000351588591 MLMG: Initial residual (resid0) = 0.000351588591 MLMG: Final Iter. 2 resid, resid/bnorm = 8.169291732e-07, 0.002323537134 MLMG: Timers: Solve = 0.001529439 Iter = 0.001215886 Bottom = 0.000551222 Time in solve 0.001912352 Max/L2 norm of divergence after solve at level 1 : 1.403328497e-05 0.001098770532 and volume-weighted sum 91349.20312 Time integration of scalars at level 1 from 888 to 890 with dt = 2 using RHS created at 888 Making slow rhs at time 890 for fast variables advancing from 888 to 890 No-substepping time integration at level 1 to 890 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.000368675217 0.002139822347 and volume-weighted sum 91349.22656 Subtracting 1.321603395e-05 from rhs in subdomain 0 Sum after subtraction -0.0218860805 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003554591967 MLMG: Initial residual (resid0) = 0.0003554591967 MLMG: Final Iter. 2 resid, resid/bnorm = 5.153779057e-07, 0.001449893345 MLMG: Timers: Solve = 0.001577777 Iter = 0.001265693 Bottom = 0.00058511 Time in solve 0.001961449 Max/L2 norm of divergence after solve at level 1 : 1.369416714e-05 0.001098762383 and volume-weighted sum 91349.21094 Time integration of scalars at level 1 from 888 to 890 with dt = 2 using RHS created at 890 Done with advance_dycore at level 1 [Level 1 step 445] Advanced 6912 cells Coarse STEP 445 ends. TIME = 890 DT = 2 Timestep time = 0.025320328 seconds. Coarse STEP 446 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36615319 (terrain aware) 1.36615319 (terrain unaware) Anelastic dt at level 0 would be: 6.329416538 (terrain aware) 6.329416538 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.26461938 (terrain aware) 0.26461938 (terrain unaware) Anelastic dt at level 1 would be: 2.924670235 (terrain aware) 2.924670235 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 446] ADVANCE from elapsed time = 890 to 892 with dt = 2 Making slow rhs at time 890 for fast variables advancing from 890 to 890.6666666667 Fast time integration at level 0 from 890 to 890.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 890 to 890.6666666667 with dt = 0.6666666666666 using RHS created at 890 Making slow rhs at time 890.6666666667 for fast variables advancing from 890 to 891 Fast time integration at level 0 from 890 to 890.5 with dt = 0.5 Fast time integration at level 0 from 890.5 to 891 with dt = 0.5 Time integration of scalars at level 0 from 890 to 891 with dt = 1 using RHS created at 890.6666666667 Making slow rhs at time 891 for fast variables advancing from 890 to 892 Fast time integration at level 0 from 890 to 890.5 with dt = 0.5 Fast time integration at level 0 from 890.5 to 891 with dt = 0.5 Fast time integration at level 0 from 891 to 891.5 with dt = 0.5 Fast time integration at level 0 from 891.5 to 892 with dt = 0.5 Time integration of scalars at level 0 from 890 to 892 with dt = 2 using RHS created at 891 Done with advance_dycore at level 0 [Level 0 step 446] Advanced 4096 cells [Level 1 step 446] ADVANCE from elapsed time = 890 to 892 with dt = 2 Making slow rhs at time 890 for fast variables advancing from 890 to 892 No-substepping time integration at level 1 to 892 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003607738763 0.00223914464 and volume-weighted sum 85371.26562 Subtracting 1.235116724e-05 from rhs in subdomain 0 Sum after subtraction 0.01714215614 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003484227054 MLMG: Initial residual (resid0) = 0.0003484227054 MLMG: Final Iter. 2 resid, resid/bnorm = 2.031250688e-06, 0.005829846021 MLMG: Timers: Solve = 0.00167177 Iter = 0.001356439 Bottom = 0.000703413 Time in solve 0.002069461 Max/L2 norm of divergence after solve at level 1 : 1.43838115e-05 0.001026889775 and volume-weighted sum 85371.20312 Time integration of scalars at level 1 from 890 to 892 with dt = 2 using RHS created at 890 Making slow rhs at time 892 for fast variables advancing from 890 to 892 No-substepping time integration at level 1 to 892 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003505256027 0.002099814592 and volume-weighted sum 85371.25781 Subtracting 1.235116542e-05 from rhs in subdomain 0 Sum after subtraction -0.05343463272 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003381744318 MLMG: Initial residual (resid0) = 0.0003381744318 MLMG: Final Iter. 2 resid, resid/bnorm = 5.317542673e-07, 0.001572425943 MLMG: Timers: Solve = 0.001626659 Iter = 0.001307153 Bottom = 0.000651381 Time in solve 0.002014526 Max/L2 norm of divergence after solve at level 1 : 1.280009747e-05 0.001026860788 and volume-weighted sum 85371.1875 Time integration of scalars at level 1 from 890 to 892 with dt = 2 using RHS created at 892 Done with advance_dycore at level 1 [Level 1 step 446] Advanced 6912 cells Coarse STEP 446 ends. TIME = 892 DT = 2 Timestep time = 0.025549622 seconds. Coarse STEP 447 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.36608539 (terrain aware) 1.36608539 (terrain unaware) Anelastic dt at level 0 would be: 6.326229478 (terrain aware) 6.326229478 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646218946 (terrain aware) 0.2646218946 (terrain unaware) Anelastic dt at level 1 would be: 2.923349695 (terrain aware) 2.923349695 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 447] ADVANCE from elapsed time = 892 to 894 with dt = 2 Making slow rhs at time 892 for fast variables advancing from 892 to 892.6666666667 Fast time integration at level 0 from 892 to 892.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 892 to 892.6666666667 with dt = 0.6666666666666 using RHS created at 892 Making slow rhs at time 892.6666666667 for fast variables advancing from 892 to 893 Fast time integration at level 0 from 892 to 892.5 with dt = 0.5 Fast time integration at level 0 from 892.5 to 893 with dt = 0.5 Time integration of scalars at level 0 from 892 to 893 with dt = 1 using RHS created at 892.6666666667 Making slow rhs at time 893 for fast variables advancing from 892 to 894 Fast time integration at level 0 from 892 to 892.5 with dt = 0.5 Fast time integration at level 0 from 892.5 to 893 with dt = 0.5 Fast time integration at level 0 from 893 to 893.5 with dt = 0.5 Fast time integration at level 0 from 893.5 to 894 with dt = 0.5 Time integration of scalars at level 0 from 892 to 894 with dt = 2 using RHS created at 893 Done with advance_dycore at level 0 [Level 0 step 447] Advanced 4096 cells [Level 1 step 447] ADVANCE from elapsed time = 892 to 894 with dt = 2 Making slow rhs at time 892 for fast variables advancing from 892 to 894 No-substepping time integration at level 1 to 894 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003016777337 0.002131934743 and volume-weighted sum 70217.3125 Subtracting 1.015875478e-05 from rhs in subdomain 0 Sum after subtraction -0.0293366611 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002915189834 MLMG: Initial residual (resid0) = 0.0002915189834 MLMG: Final Iter. 2 resid, resid/bnorm = 2.963068482e-06, 0.01016423851 MLMG: Timers: Solve = 0.001628084 Iter = 0.001299214 Bottom = 0.000641993 Time in solve 0.002006071 Max/L2 norm of divergence after solve at level 1 : 1.312256791e-05 0.0008446559659 and volume-weighted sum 70217.34375 Time integration of scalars at level 1 from 892 to 894 with dt = 2 using RHS created at 892 Making slow rhs at time 894 for fast variables advancing from 892 to 894 No-substepping time integration at level 1 to 894 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003025867045 0.00201283535 and volume-weighted sum 70217.35938 Subtracting 1.015876114e-05 from rhs in subdomain 0 Sum after subtraction 0.05098991096 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002924279543 MLMG: Initial residual (resid0) = 0.0002924279543 MLMG: Final Iter. 2 resid, resid/bnorm = 5.131178114e-07, 0.001754681114 MLMG: Timers: Solve = 0.001522823 Iter = 0.001193634 Bottom = 0.000539299 Time in solve 0.00190027 Max/L2 norm of divergence after solve at level 1 : 1.062825322e-05 0.0008445857093 and volume-weighted sum 70217.34375 Time integration of scalars at level 1 from 892 to 894 with dt = 2 using RHS created at 894 Done with advance_dycore at level 1 [Level 1 step 447] Advanced 6912 cells Coarse STEP 447 ends. TIME = 894 DT = 2 Timestep time = 0.024983441 seconds. Coarse STEP 448 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366114894 (terrain aware) 1.366114894 (terrain unaware) Anelastic dt at level 0 would be: 6.325207854 (terrain aware) 6.325207854 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646270169 (terrain aware) 0.2646270169 (terrain unaware) Anelastic dt at level 1 would be: 2.923015611 (terrain aware) 2.923015611 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 448] ADVANCE from elapsed time = 894 to 896 with dt = 2 Making slow rhs at time 894 for fast variables advancing from 894 to 894.6666666667 Fast time integration at level 0 from 894 to 894.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 894 to 894.6666666667 with dt = 0.6666666666666 using RHS created at 894 Making slow rhs at time 894.6666666667 for fast variables advancing from 894 to 895 Fast time integration at level 0 from 894 to 894.5 with dt = 0.5 Fast time integration at level 0 from 894.5 to 895 with dt = 0.5 Time integration of scalars at level 0 from 894 to 895 with dt = 1 using RHS created at 894.6666666667 Making slow rhs at time 895 for fast variables advancing from 894 to 896 Fast time integration at level 0 from 894 to 894.5 with dt = 0.5 Fast time integration at level 0 from 894.5 to 895 with dt = 0.5 Fast time integration at level 0 from 895 to 895.5 with dt = 0.5 Fast time integration at level 0 from 895.5 to 896 with dt = 0.5 Time integration of scalars at level 0 from 894 to 896 with dt = 2 using RHS created at 895 Done with advance_dycore at level 0 [Level 0 step 448] Advanced 4096 cells [Level 1 step 448] ADVANCE from elapsed time = 894 to 896 with dt = 2 Making slow rhs at time 894 for fast variables advancing from 894 to 896 No-substepping time integration at level 1 to 896 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003437455744 0.002012313344 and volume-weighted sum 48216.20703 Subtracting 6.975724318e-06 from rhs in subdomain 0 Sum after subtraction -0.02270098776 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003367698519 MLMG: Initial residual (resid0) = 0.0003367698519 MLMG: Final Iter. 2 resid, resid/bnorm = 3.352171689e-06, 0.009953894652 MLMG: Timers: Solve = 0.001611008 Iter = 0.001298142 Bottom = 0.000641916 Time in solve 0.001991012 Max/L2 norm of divergence after solve at level 1 : 1.032708678e-05 0.0005800874787 and volume-weighted sum 48216.21875 Time integration of scalars at level 1 from 894 to 896 with dt = 2 using RHS created at 894 Making slow rhs at time 896 for fast variables advancing from 894 to 896 No-substepping time integration at level 1 to 896 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003523174673 0.001912623295 and volume-weighted sum 48216.1875 Subtracting 6.97572159e-06 from rhs in subdomain 0 Sum after subtraction -0.002444721758 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003453417448 MLMG: Initial residual (resid0) = 0.0003453417448 MLMG: Final Iter. 1 resid, resid/bnorm = 9.930343367e-06, 0.02875512093 MLMG: Timers: Solve = 0.000979452 Iter = 0.000664452 Bottom = 0.00030199 Time in solve 0.001363275 Max/L2 norm of divergence after solve at level 1 : 1.659104601e-05 0.0005822876119 and volume-weighted sum 48216.21484 Time integration of scalars at level 1 from 894 to 896 with dt = 2 using RHS created at 896 Done with advance_dycore at level 1 [Level 1 step 448] Advanced 6912 cells Coarse STEP 448 ends. TIME = 896 DT = 2 Timestep time = 0.024740991 seconds. Coarse STEP 449 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.366244534 (terrain aware) 1.366244534 (terrain unaware) Anelastic dt at level 0 would be: 6.326450611 (terrain aware) 6.326450611 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2646171076 (terrain aware) 0.2646171076 (terrain unaware) Anelastic dt at level 1 would be: 2.923482911 (terrain aware) 2.923482911 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 449] ADVANCE from elapsed time = 896 to 898 with dt = 2 Making slow rhs at time 896 for fast variables advancing from 896 to 896.6666666667 Fast time integration at level 0 from 896 to 896.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 896 to 896.6666666667 with dt = 0.6666666666666 using RHS created at 896 Making slow rhs at time 896.6666666667 for fast variables advancing from 896 to 897 Fast time integration at level 0 from 896 to 896.5 with dt = 0.5 Fast time integration at level 0 from 896.5 to 897 with dt = 0.5 Time integration of scalars at level 0 from 896 to 897 with dt = 1 using RHS created at 896.6666666667 Making slow rhs at time 897 for fast variables advancing from 896 to 898 Fast time integration at level 0 from 896 to 896.5 with dt = 0.5 Fast time integration at level 0 from 896.5 to 897 with dt = 0.5 Fast time integration at level 0 from 897 to 897.5 with dt = 0.5 Fast time integration at level 0 from 897.5 to 898 with dt = 0.5 Time integration of scalars at level 0 from 896 to 898 with dt = 2 using RHS created at 897 Done with advance_dycore at level 0 [Level 0 step 449] Advanced 4096 cells [Level 1 step 449] ADVANCE from elapsed time = 896 to 898 with dt = 2 Making slow rhs at time 896 for fast variables advancing from 896 to 898 No-substepping time integration at level 1 to 898 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003506653011 0.001886695973 and volume-weighted sum 22362.34375 Subtracting 3.235292752e-06 from rhs in subdomain 0 Sum after subtraction -0.02305023372 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003474300029 MLMG: Initial residual (resid0) = 0.0003474300029 MLMG: Final Iter. 2 resid, resid/bnorm = 3.220763574e-06, 0.009270251729 MLMG: Timers: Solve = 0.001676613 Iter = 0.001325882 Bottom = 0.000665181 Time in solve 0.002070469 Max/L2 norm of divergence after solve at level 1 : 6.455229595e-06 0.0002692546695 and volume-weighted sum 22362.33789 Time integration of scalars at level 1 from 896 to 898 with dt = 2 using RHS created at 896 Making slow rhs at time 898 for fast variables advancing from 896 to 898 No-substepping time integration at level 1 to 898 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003487635404 0.00183918851 and volume-weighted sum 22362.31445 Subtracting 3.235288659e-06 from rhs in subdomain 0 Sum after subtraction -0.03416789696 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003455282422 MLMG: Initial residual (resid0) = 0.0003455282422 MLMG: Final Iter. 1 resid, resid/bnorm = 9.559305909e-06, 0.02766577341 MLMG: Timers: Solve = 0.001038065 Iter = 0.000708157 Bottom = 0.000352622 Time in solve 0.001434168 Max/L2 norm of divergence after solve at level 1 : 1.279939897e-05 0.0002739730699 and volume-weighted sum 22362.32812 Time integration of scalars at level 1 from 896 to 898 with dt = 2 using RHS created at 898 Done with advance_dycore at level 1 [Level 1 step 449] Advanced 6912 cells Coarse STEP 449 ends. TIME = 898 DT = 2 Timestep time = 0.024589873 seconds. Coarse STEP 450 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.365921775 (terrain aware) 1.365921775 (terrain unaware) Anelastic dt at level 0 would be: 6.322333122 (terrain aware) 6.322333122 (terrain unaware) Fixed dt at level 0 is: 2 Fixed fast dt at level 0 is: 0.5 smallest even ratio is: 4 Based on cfl of one Compressible dt at level 1 would be: 0.2645925766 (terrain aware) 0.2645925766 (terrain unaware) Anelastic dt at level 1 would be: 2.922135846 (terrain aware) 2.922135846 (terrain unaware) Fixed dt at level 1 is: 2 [Level 0 step 450] ADVANCE from elapsed time = 898 to 900 with dt = 2 Making slow rhs at time 898 for fast variables advancing from 898 to 898.6666666667 Fast time integration at level 0 from 898 to 898.6666666667 with dt = 0.6666666666667 Time integration of scalars at level 0 from 898 to 898.6666666667 with dt = 0.6666666666666 using RHS created at 898 Making slow rhs at time 898.6666666667 for fast variables advancing from 898 to 899 Fast time integration at level 0 from 898 to 898.5 with dt = 0.5 Fast time integration at level 0 from 898.5 to 899 with dt = 0.5 Time integration of scalars at level 0 from 898 to 899 with dt = 1 using RHS created at 898.6666666667 Making slow rhs at time 899 for fast variables advancing from 898 to 900 Fast time integration at level 0 from 898 to 898.5 with dt = 0.5 Fast time integration at level 0 from 898.5 to 899 with dt = 0.5 Fast time integration at level 0 from 899 to 899.5 with dt = 0.5 Fast time integration at level 0 from 899.5 to 900 with dt = 0.5 Time integration of scalars at level 0 from 898 to 900 with dt = 2 using RHS created at 899 Done with advance_dycore at level 0 [Level 0 step 450] Advanced 4096 cells [Level 1 step 450] ADVANCE from elapsed time = 898 to 900 with dt = 2 Making slow rhs at time 898 for fast variables advancing from 898 to 900 No-substepping time integration at level 1 to 900 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0003071688116 0.001874924172 and volume-weighted sum -4365.641113 Subtracting -6.316031431e-07 from rhs in subdomain 0 Sum after subtraction -0.006752088666 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0003078004229 MLMG: Initial residual (resid0) = 0.0003078004229 MLMG: Final Iter. 2 resid, resid/bnorm = 2.609532658e-06, 0.008478002623 MLMG: Timers: Solve = 0.001606822 Iter = 0.001293957 Bottom = 0.000634522 Time in solve 0.001994577 Max/L2 norm of divergence after solve at level 1 : 3.180466592e-06 5.350555512e-05 and volume-weighted sum -4365.626953 Time integration of scalars at level 1 from 898 to 900 with dt = 2 using RHS created at 898 Making slow rhs at time 900 for fast variables advancing from 898 to 900 No-substepping time integration at level 1 to 900 with dt = 2 Max/L2 norm of divergence before solve in subdomain 0 at level 1 : 0.0002946089953 0.001817063894 and volume-weighted sum -4365.617676 Subtracting -6.315997894e-07 from rhs in subdomain 0 Sum after subtraction 0.03370223567 in subdomain 0 Solving in subdomain 0 of 1 bins at level 1 MLMG: Initial rhs = 0.0002952406066 MLMG: Initial residual (resid0) = 0.0002952406066 MLMG: Final Iter. 1 resid, resid/bnorm = 9.762108675e-06, 0.03306492418 MLMG: Timers: Solve = 0.000948172 Iter = 0.000621813 Bottom = 0.000266175 Time in solve 0.001330287 Max/L2 norm of divergence after solve at level 1 : 1.040101051e-05 7.39511961e-05 and volume-weighted sum -4365.646973 Time integration of scalars at level 1 from 898 to 900 with dt = 2 using RHS created at 900 Done with advance_dycore at level 1 [Level 1 step 450] Advanced 6912 cells Coarse STEP 450 ends. TIME = 900 DT = 2 Timestep time = 0.024495528 seconds. 3DPlotfile write time = 0.007257633 seconds. Total Time: 9.052428667 Unused ParmParse Variables: [TOP]::amr.checkpoint_files_output(nvals = 1) :: [0] AMReX (26.09-187-ga2b976ced0f8) finalized