Initializing AMReX (26.08-36-gf2cbba4afc9e)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 Initializing CUDA... CUDA initialized with 1 device. AMReX (26.08-36-gf2cbba4afc9e) initialized Successfully read inputs file ... ERF git hash: a3d24dff AMReX git hash: 26.08-36-gf2cbba4afc Problem name (from inputs file) is: "ABL" Level 0 is land Coriolis frequency, f = 0.000139 1/s Thermal stratification based on gradient of potential temperature SHOC hands vertical diffusion of momentum to the host; keeping the vertical implicit solve on (theta = 0, moisture = 0, tke = 0, momenta = 1). Maximum simulation length based on stop_time: 32400 s (elapsed) Adding stop time 32400 to start_time 0 Null land surface model! SOLVER CHOICE: At level 0 : compressible with implicit substepping vert_implicit_fac at level 0 : 1 1 0 (theta = 0, moisture = 0, tke = 0, momenta = 1) use_coriolis : 1 use_gravity : 1 Moisture Model: None Terrain Type: None Buildings Type: None Mesh Type: ConstantDz ABL Driver Type: Geostrophic Wind (-0,0.001112,-0.0003399725178) Radiation Model: None Gradp_type : 0 Buoyancy_type at level 0 : 1 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 : 0 alpha_C : 0 dynamic_viscosity : 0 Not using any molecular diffusivity, i.e. using the modeled turbulent diffusivity Sponge choices: Rayleigh damping : None w damping : 0 (coeff = -1 * dz/dt**2) Turbulence Settings at level 0 Using native SHOC PBL model at level 0 WRF lateral boundary density forcing: disabled WRF lateral boundary cloud-water/cloud-ice forcing: disabled Restart from native checkpoint chk00000_shoc BA FROM SCRATCH AT LEVEL 0 (BoxArray maxbox(4) m_ref->m_hash_sig(0) ((0,0,0) (0,0,63) (0,0,0)) ((1,0,0) (1,0,63) (0,0,0)) ((0,1,0) (0,1,63) (0,0,0)) ((1,1,0) (1,1,63) (0,0,0)) ) Reading LMASK data Restart time = 0.113173868 seconds. If there is water, Charnock relation with C_a=0.0185 will be used Reference height for MOST set to 3.125 Reading MOST variables Max value of |p_hse - p_eos| is 0, less than the tolerance 1.007594678e-08 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 1e-08 Min/max value of -dp'/dz + buoyancy are zero Writing native 3D plotfile ABL-SHOC_plt00000 3DPlotfile write time = 0.020578424 seconds. TIME= 0 MASS = 82741817.94 RHO THETA = 2.201850377e+10 RHO SCALAR = 0 Coarse STEP 1 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711054174 (terrain aware) 1.711054174 (terrain unaware) Anelastic dt at level 0 would be: 25 (terrain aware) 25 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 1] ADVANCE from elapsed time = 0 to 1 with dt = 1 Surface temp at t=0: 265 Making slow rhs at time 0 for fast variables advancing from 0 to 0.3333333333333 Fast time integration at level 0 from 0 to 0.3333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 0 to 0.3333333333333 with dt = 0.3333333333333 using RHS created at 0 Making slow rhs at time 0.3333333333333 for fast variables advancing from 0 to 0.5 Fast time integration at level 0 from 0 to 0.25 with dt = 0.25 Fast time integration at level 0 from 0.25 to 0.5 with dt = 0.25 Time integration of scalars at level 0 from 0 to 0.5 with dt = 0.5 using RHS created at 0.3333333333333 Making slow rhs at time 0.5 for fast variables advancing from 0 to 1 Fast time integration at level 0 from 0 to 0.25 with dt = 0.25 Fast time integration at level 0 from 0.25 to 0.5 with dt = 0.25 Fast time integration at level 0 from 0.5 to 0.75 with dt = 0.25 Fast time integration at level 0 from 0.75 to 1 with dt = 0.25 Time integration of scalars at level 0 from 0 to 1 with dt = 1 using RHS created at 0.5 Done with advance_dycore at level 0 [Level 0 step 1] Advanced 256 cells Coarse STEP 1 ends. TIME = 1 DT = 1 Timestep time = 0.36287068 seconds. TIME= 1 MASS = 82741817.94 RHO THETA = 2.201850508e+10 RHO SCALAR = 0 Coarse STEP 2 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71123768 (terrain aware) 1.71123768 (terrain unaware) Anelastic dt at level 0 would be: 24.99352754 (terrain aware) 24.99352754 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 2] ADVANCE from elapsed time = 1 to 2 with dt = 1 Surface temp at t=1: 264.9999306 Making slow rhs at time 1 for fast variables advancing from 1 to 1.333333333333 Fast time integration at level 0 from 1 to 1.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 1 to 1.333333333333 with dt = 0.3333333333333 using RHS created at 1 Making slow rhs at time 1.333333333333 for fast variables advancing from 1 to 1.5 Fast time integration at level 0 from 1 to 1.25 with dt = 0.25 Fast time integration at level 0 from 1.25 to 1.5 with dt = 0.25 Time integration of scalars at level 0 from 1 to 1.5 with dt = 0.5 using RHS created at 1.333333333333 Making slow rhs at time 1.5 for fast variables advancing from 1 to 2 Fast time integration at level 0 from 1 to 1.25 with dt = 0.25 Fast time integration at level 0 from 1.25 to 1.5 with dt = 0.25 Fast time integration at level 0 from 1.5 to 1.75 with dt = 0.25 Fast time integration at level 0 from 1.75 to 2 with dt = 0.25 Time integration of scalars at level 0 from 1 to 2 with dt = 1 using RHS created at 1.5 Done with advance_dycore at level 0 [Level 0 step 2] Advanced 256 cells Coarse STEP 2 ends. TIME = 2 DT = 1 Timestep time = 0.319452296 seconds. TIME= 2 MASS = 82741817.94 RHO THETA = 2.201850636e+10 RHO SCALAR = 0 Coarse STEP 3 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711239522 (terrain aware) 1.711239522 (terrain unaware) Anelastic dt at level 0 would be: 24.98426344 (terrain aware) 24.98426344 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 3] ADVANCE from elapsed time = 2 to 3 with dt = 1 Surface temp at t=2: 264.9998611 Making slow rhs at time 2 for fast variables advancing from 2 to 2.333333333333 Fast time integration at level 0 from 2 to 2.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 2 to 2.333333333333 with dt = 0.3333333333333 using RHS created at 2 Making slow rhs at time 2.333333333333 for fast variables advancing from 2 to 2.5 Fast time integration at level 0 from 2 to 2.25 with dt = 0.25 Fast time integration at level 0 from 2.25 to 2.5 with dt = 0.25 Time integration of scalars at level 0 from 2 to 2.5 with dt = 0.5 using RHS created at 2.333333333333 Making slow rhs at time 2.5 for fast variables advancing from 2 to 3 Fast time integration at level 0 from 2 to 2.25 with dt = 0.25 Fast time integration at level 0 from 2.25 to 2.5 with dt = 0.25 Fast time integration at level 0 from 2.5 to 2.75 with dt = 0.25 Fast time integration at level 0 from 2.75 to 3 with dt = 0.25 Time integration of scalars at level 0 from 2 to 3 with dt = 1 using RHS created at 2.5 Done with advance_dycore at level 0 [Level 0 step 3] Advanced 256 cells Coarse STEP 3 ends. TIME = 3 DT = 1 Timestep time = 0.319250245 seconds. TIME= 3 MASS = 82741817.94 RHO THETA = 2.201850759e+10 RHO SCALAR = 0 Coarse STEP 4 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711240241 (terrain aware) 1.711240241 (terrain unaware) Anelastic dt at level 0 would be: 24.97572092 (terrain aware) 24.97572092 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 4] ADVANCE from elapsed time = 3 to 4 with dt = 1 Surface temp at t=3: 264.9997917 Making slow rhs at time 3 for fast variables advancing from 3 to 3.333333333333 Fast time integration at level 0 from 3 to 3.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 3 to 3.333333333333 with dt = 0.3333333333333 using RHS created at 3 Making slow rhs at time 3.333333333333 for fast variables advancing from 3 to 3.5 Fast time integration at level 0 from 3 to 3.25 with dt = 0.25 Fast time integration at level 0 from 3.25 to 3.5 with dt = 0.25 Time integration of scalars at level 0 from 3 to 3.5 with dt = 0.5 using RHS created at 3.333333333333 Making slow rhs at time 3.5 for fast variables advancing from 3 to 4 Fast time integration at level 0 from 3 to 3.25 with dt = 0.25 Fast time integration at level 0 from 3.25 to 3.5 with dt = 0.25 Fast time integration at level 0 from 3.5 to 3.75 with dt = 0.25 Fast time integration at level 0 from 3.75 to 4 with dt = 0.25 Time integration of scalars at level 0 from 3 to 4 with dt = 1 using RHS created at 3.5 Done with advance_dycore at level 0 [Level 0 step 4] Advanced 256 cells Coarse STEP 4 ends. TIME = 4 DT = 1 Timestep time = 0.319417647 seconds. TIME= 4 MASS = 82741817.94 RHO THETA = 2.201850879e+10 RHO SCALAR = 0 Coarse STEP 5 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711241539 (terrain aware) 1.711241539 (terrain unaware) Anelastic dt at level 0 would be: 24.96877291 (terrain aware) 24.96877291 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 5] ADVANCE from elapsed time = 4 to 5 with dt = 1 Surface temp at t=4: 264.9997222 Making slow rhs at time 4 for fast variables advancing from 4 to 4.333333333333 Fast time integration at level 0 from 4 to 4.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 4 to 4.333333333333 with dt = 0.3333333333333 using RHS created at 4 Making slow rhs at time 4.333333333333 for fast variables advancing from 4 to 4.5 Fast time integration at level 0 from 4 to 4.25 with dt = 0.25 Fast time integration at level 0 from 4.25 to 4.5 with dt = 0.25 Time integration of scalars at level 0 from 4 to 4.5 with dt = 0.5 using RHS created at 4.333333333333 Making slow rhs at time 4.5 for fast variables advancing from 4 to 5 Fast time integration at level 0 from 4 to 4.25 with dt = 0.25 Fast time integration at level 0 from 4.25 to 4.5 with dt = 0.25 Fast time integration at level 0 from 4.5 to 4.75 with dt = 0.25 Fast time integration at level 0 from 4.75 to 5 with dt = 0.25 Time integration of scalars at level 0 from 4 to 5 with dt = 1 using RHS created at 4.5 Done with advance_dycore at level 0 [Level 0 step 5] Advanced 256 cells Coarse STEP 5 ends. TIME = 5 DT = 1 Timestep time = 0.31933804 seconds. TIME= 5 MASS = 82741817.94 RHO THETA = 2.201850997e+10 RHO SCALAR = 0 Coarse STEP 6 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711242772 (terrain aware) 1.711242772 (terrain unaware) Anelastic dt at level 0 would be: 24.96310792 (terrain aware) 24.96310792 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 6] ADVANCE from elapsed time = 5 to 6 with dt = 1 Surface temp at t=5: 264.9996528 Making slow rhs at time 5 for fast variables advancing from 5 to 5.333333333333 Fast time integration at level 0 from 5 to 5.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 5 to 5.333333333333 with dt = 0.3333333333333 using RHS created at 5 Making slow rhs at time 5.333333333333 for fast variables advancing from 5 to 5.5 Fast time integration at level 0 from 5 to 5.25 with dt = 0.25 Fast time integration at level 0 from 5.25 to 5.5 with dt = 0.25 Time integration of scalars at level 0 from 5 to 5.5 with dt = 0.5 using RHS created at 5.333333333333 Making slow rhs at time 5.5 for fast variables advancing from 5 to 6 Fast time integration at level 0 from 5 to 5.25 with dt = 0.25 Fast time integration at level 0 from 5.25 to 5.5 with dt = 0.25 Fast time integration at level 0 from 5.5 to 5.75 with dt = 0.25 Fast time integration at level 0 from 5.75 to 6 with dt = 0.25 Time integration of scalars at level 0 from 5 to 6 with dt = 1 using RHS created at 5.5 Done with advance_dycore at level 0 [Level 0 step 6] Advanced 256 cells Coarse STEP 6 ends. TIME = 6 DT = 1 Timestep time = 0.319376124 seconds. TIME= 6 MASS = 82741817.94 RHO THETA = 2.201851107e+10 RHO SCALAR = 0 Coarse STEP 7 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711243998 (terrain aware) 1.711243998 (terrain unaware) Anelastic dt at level 0 would be: 24.95839986 (terrain aware) 24.95839986 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 7] ADVANCE from elapsed time = 6 to 7 with dt = 1 Surface temp at t=6: 264.9995833 Making slow rhs at time 6 for fast variables advancing from 6 to 6.333333333333 Fast time integration at level 0 from 6 to 6.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 6 to 6.333333333333 with dt = 0.3333333333333 using RHS created at 6 Making slow rhs at time 6.333333333333 for fast variables advancing from 6 to 6.5 Fast time integration at level 0 from 6 to 6.25 with dt = 0.25 Fast time integration at level 0 from 6.25 to 6.5 with dt = 0.25 Time integration of scalars at level 0 from 6 to 6.5 with dt = 0.5 using RHS created at 6.333333333333 Making slow rhs at time 6.5 for fast variables advancing from 6 to 7 Fast time integration at level 0 from 6 to 6.25 with dt = 0.25 Fast time integration at level 0 from 6.25 to 6.5 with dt = 0.25 Fast time integration at level 0 from 6.5 to 6.75 with dt = 0.25 Fast time integration at level 0 from 6.75 to 7 with dt = 0.25 Time integration of scalars at level 0 from 6 to 7 with dt = 1 using RHS created at 6.5 Done with advance_dycore at level 0 [Level 0 step 7] Advanced 256 cells Coarse STEP 7 ends. TIME = 7 DT = 1 Timestep time = 0.319312093 seconds. TIME= 7 MASS = 82741817.94 RHO THETA = 2.201851216e+10 RHO SCALAR = 0 Coarse STEP 8 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711245118 (terrain aware) 1.711245118 (terrain unaware) Anelastic dt at level 0 would be: 24.95434851 (terrain aware) 24.95434851 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 8] ADVANCE from elapsed time = 7 to 8 with dt = 1 Surface temp at t=7: 264.9995139 Making slow rhs at time 7 for fast variables advancing from 7 to 7.333333333333 Fast time integration at level 0 from 7 to 7.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 7 to 7.333333333333 with dt = 0.3333333333333 using RHS created at 7 Making slow rhs at time 7.333333333333 for fast variables advancing from 7 to 7.5 Fast time integration at level 0 from 7 to 7.25 with dt = 0.25 Fast time integration at level 0 from 7.25 to 7.5 with dt = 0.25 Time integration of scalars at level 0 from 7 to 7.5 with dt = 0.5 using RHS created at 7.333333333333 Making slow rhs at time 7.5 for fast variables advancing from 7 to 8 Fast time integration at level 0 from 7 to 7.25 with dt = 0.25 Fast time integration at level 0 from 7.25 to 7.5 with dt = 0.25 Fast time integration at level 0 from 7.5 to 7.75 with dt = 0.25 Fast time integration at level 0 from 7.75 to 8 with dt = 0.25 Time integration of scalars at level 0 from 7 to 8 with dt = 1 using RHS created at 7.5 Done with advance_dycore at level 0 [Level 0 step 8] Advanced 256 cells Coarse STEP 8 ends. TIME = 8 DT = 1 Timestep time = 0.319332326 seconds. TIME= 8 MASS = 82741817.94 RHO THETA = 2.201851332e+10 RHO SCALAR = 0 Coarse STEP 9 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711246295 (terrain aware) 1.711246295 (terrain unaware) Anelastic dt at level 0 would be: 24.9507787 (terrain aware) 24.9507787 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 9] ADVANCE from elapsed time = 8 to 9 with dt = 1 Surface temp at t=8: 264.9994444 Making slow rhs at time 8 for fast variables advancing from 8 to 8.333333333333 Fast time integration at level 0 from 8 to 8.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 8 to 8.333333333333 with dt = 0.3333333333333 using RHS created at 8 Making slow rhs at time 8.333333333333 for fast variables advancing from 8 to 8.5 Fast time integration at level 0 from 8 to 8.25 with dt = 0.25 Fast time integration at level 0 from 8.25 to 8.5 with dt = 0.25 Time integration of scalars at level 0 from 8 to 8.5 with dt = 0.5 using RHS created at 8.333333333333 Making slow rhs at time 8.5 for fast variables advancing from 8 to 9 Fast time integration at level 0 from 8 to 8.25 with dt = 0.25 Fast time integration at level 0 from 8.25 to 8.5 with dt = 0.25 Fast time integration at level 0 from 8.5 to 8.75 with dt = 0.25 Fast time integration at level 0 from 8.75 to 9 with dt = 0.25 Time integration of scalars at level 0 from 8 to 9 with dt = 1 using RHS created at 8.5 Done with advance_dycore at level 0 [Level 0 step 9] Advanced 256 cells Coarse STEP 9 ends. TIME = 9 DT = 1 Timestep time = 0.319288135 seconds. TIME= 9 MASS = 82741817.94 RHO THETA = 2.201851442e+10 RHO SCALAR = 0 Coarse STEP 10 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711247642 (terrain aware) 1.711247642 (terrain unaware) Anelastic dt at level 0 would be: 24.94759248 (terrain aware) 24.94759248 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 10] ADVANCE from elapsed time = 9 to 10 with dt = 1 Surface temp at t=9: 264.999375 Making slow rhs at time 9 for fast variables advancing from 9 to 9.333333333333 Fast time integration at level 0 from 9 to 9.333333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 9 to 9.333333333333 with dt = 0.3333333333333 using RHS created at 9 Making slow rhs at time 9.333333333333 for fast variables advancing from 9 to 9.5 Fast time integration at level 0 from 9 to 9.25 with dt = 0.25 Fast time integration at level 0 from 9.25 to 9.5 with dt = 0.25 Time integration of scalars at level 0 from 9 to 9.5 with dt = 0.5 using RHS created at 9.333333333333 Making slow rhs at time 9.5 for fast variables advancing from 9 to 10 Fast time integration at level 0 from 9 to 9.25 with dt = 0.25 Fast time integration at level 0 from 9.25 to 9.5 with dt = 0.25 Fast time integration at level 0 from 9.5 to 9.75 with dt = 0.25 Fast time integration at level 0 from 9.75 to 10 with dt = 0.25 Time integration of scalars at level 0 from 9 to 10 with dt = 1 using RHS created at 9.5 Done with advance_dycore at level 0 [Level 0 step 10] Advanced 256 cells Coarse STEP 10 ends. TIME = 10 DT = 1 Timestep time = 0.319339144 seconds. TIME= 10 MASS = 82741817.94 RHO THETA = 2.201851554e+10 RHO SCALAR = 0 Coarse STEP 11 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711248857 (terrain aware) 1.711248857 (terrain unaware) Anelastic dt at level 0 would be: 24.94471733 (terrain aware) 24.94471733 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 11] ADVANCE from elapsed time = 10 to 11 with dt = 1 Surface temp at t=10: 264.9993056 Making slow rhs at time 10 for fast variables advancing from 10 to 10.33333333333 Fast time integration at level 0 from 10 to 10.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 10 to 10.33333333333 with dt = 0.3333333333333 using RHS created at 10 Making slow rhs at time 10.33333333333 for fast variables advancing from 10 to 10.5 Fast time integration at level 0 from 10 to 10.25 with dt = 0.25 Fast time integration at level 0 from 10.25 to 10.5 with dt = 0.25 Time integration of scalars at level 0 from 10 to 10.5 with dt = 0.5 using RHS created at 10.33333333333 Making slow rhs at time 10.5 for fast variables advancing from 10 to 11 Fast time integration at level 0 from 10 to 10.25 with dt = 0.25 Fast time integration at level 0 from 10.25 to 10.5 with dt = 0.25 Fast time integration at level 0 from 10.5 to 10.75 with dt = 0.25 Fast time integration at level 0 from 10.75 to 11 with dt = 0.25 Time integration of scalars at level 0 from 10 to 11 with dt = 1 using RHS created at 10.5 Done with advance_dycore at level 0 [Level 0 step 11] Advanced 256 cells Coarse STEP 11 ends. TIME = 11 DT = 1 Timestep time = 0.319441941 seconds. TIME= 11 MASS = 82741817.94 RHO THETA = 2.201851674e+10 RHO SCALAR = 0 Coarse STEP 12 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711250129 (terrain aware) 1.711250129 (terrain unaware) Anelastic dt at level 0 would be: 24.94210392 (terrain aware) 24.94210392 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 12] ADVANCE from elapsed time = 11 to 12 with dt = 1 Surface temp at t=11: 264.9992361 Making slow rhs at time 11 for fast variables advancing from 11 to 11.33333333333 Fast time integration at level 0 from 11 to 11.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 11 to 11.33333333333 with dt = 0.3333333333333 using RHS created at 11 Making slow rhs at time 11.33333333333 for fast variables advancing from 11 to 11.5 Fast time integration at level 0 from 11 to 11.25 with dt = 0.25 Fast time integration at level 0 from 11.25 to 11.5 with dt = 0.25 Time integration of scalars at level 0 from 11 to 11.5 with dt = 0.5 using RHS created at 11.33333333333 Making slow rhs at time 11.5 for fast variables advancing from 11 to 12 Fast time integration at level 0 from 11 to 11.25 with dt = 0.25 Fast time integration at level 0 from 11.25 to 11.5 with dt = 0.25 Fast time integration at level 0 from 11.5 to 11.75 with dt = 0.25 Fast time integration at level 0 from 11.75 to 12 with dt = 0.25 Time integration of scalars at level 0 from 11 to 12 with dt = 1 using RHS created at 11.5 Done with advance_dycore at level 0 [Level 0 step 12] Advanced 256 cells Coarse STEP 12 ends. TIME = 12 DT = 1 Timestep time = 0.319297666 seconds. TIME= 12 MASS = 82741817.94 RHO THETA = 2.201851791e+10 RHO SCALAR = 0 Coarse STEP 13 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711251436 (terrain aware) 1.711251436 (terrain unaware) Anelastic dt at level 0 would be: 24.93970981 (terrain aware) 24.93970981 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 13] ADVANCE from elapsed time = 12 to 13 with dt = 1 Surface temp at t=12: 264.9991667 Making slow rhs at time 12 for fast variables advancing from 12 to 12.33333333333 Fast time integration at level 0 from 12 to 12.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 12 to 12.33333333333 with dt = 0.3333333333333 using RHS created at 12 Making slow rhs at time 12.33333333333 for fast variables advancing from 12 to 12.5 Fast time integration at level 0 from 12 to 12.25 with dt = 0.25 Fast time integration at level 0 from 12.25 to 12.5 with dt = 0.25 Time integration of scalars at level 0 from 12 to 12.5 with dt = 0.5 using RHS created at 12.33333333333 Making slow rhs at time 12.5 for fast variables advancing from 12 to 13 Fast time integration at level 0 from 12 to 12.25 with dt = 0.25 Fast time integration at level 0 from 12.25 to 12.5 with dt = 0.25 Fast time integration at level 0 from 12.5 to 12.75 with dt = 0.25 Fast time integration at level 0 from 12.75 to 13 with dt = 0.25 Time integration of scalars at level 0 from 12 to 13 with dt = 1 using RHS created at 12.5 Done with advance_dycore at level 0 [Level 0 step 13] Advanced 256 cells Coarse STEP 13 ends. TIME = 13 DT = 1 Timestep time = 0.319356346 seconds. TIME= 13 MASS = 82741817.94 RHO THETA = 2.201851912e+10 RHO SCALAR = 0 Coarse STEP 14 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711252715 (terrain aware) 1.711252715 (terrain unaware) Anelastic dt at level 0 would be: 24.93750138 (terrain aware) 24.93750138 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 14] ADVANCE from elapsed time = 13 to 14 with dt = 1 Surface temp at t=13: 264.9990972 Making slow rhs at time 13 for fast variables advancing from 13 to 13.33333333333 Fast time integration at level 0 from 13 to 13.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 13 to 13.33333333333 with dt = 0.3333333333333 using RHS created at 13 Making slow rhs at time 13.33333333333 for fast variables advancing from 13 to 13.5 Fast time integration at level 0 from 13 to 13.25 with dt = 0.25 Fast time integration at level 0 from 13.25 to 13.5 with dt = 0.25 Time integration of scalars at level 0 from 13 to 13.5 with dt = 0.5 using RHS created at 13.33333333333 Making slow rhs at time 13.5 for fast variables advancing from 13 to 14 Fast time integration at level 0 from 13 to 13.25 with dt = 0.25 Fast time integration at level 0 from 13.25 to 13.5 with dt = 0.25 Fast time integration at level 0 from 13.5 to 13.75 with dt = 0.25 Fast time integration at level 0 from 13.75 to 14 with dt = 0.25 Time integration of scalars at level 0 from 13 to 14 with dt = 1 using RHS created at 13.5 Done with advance_dycore at level 0 [Level 0 step 14] Advanced 256 cells Coarse STEP 14 ends. TIME = 14 DT = 1 Timestep time = 0.31932716 seconds. TIME= 14 MASS = 82741817.94 RHO THETA = 2.201852038e+10 RHO SCALAR = 0 Coarse STEP 15 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711254053 (terrain aware) 1.711254053 (terrain unaware) Anelastic dt at level 0 would be: 24.93545377 (terrain aware) 24.93545377 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 15] ADVANCE from elapsed time = 14 to 15 with dt = 1 Surface temp at t=14: 264.9990278 Making slow rhs at time 14 for fast variables advancing from 14 to 14.33333333333 Fast time integration at level 0 from 14 to 14.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 14 to 14.33333333333 with dt = 0.3333333333333 using RHS created at 14 Making slow rhs at time 14.33333333333 for fast variables advancing from 14 to 14.5 Fast time integration at level 0 from 14 to 14.25 with dt = 0.25 Fast time integration at level 0 from 14.25 to 14.5 with dt = 0.25 Time integration of scalars at level 0 from 14 to 14.5 with dt = 0.5 using RHS created at 14.33333333333 Making slow rhs at time 14.5 for fast variables advancing from 14 to 15 Fast time integration at level 0 from 14 to 14.25 with dt = 0.25 Fast time integration at level 0 from 14.25 to 14.5 with dt = 0.25 Fast time integration at level 0 from 14.5 to 14.75 with dt = 0.25 Fast time integration at level 0 from 14.75 to 15 with dt = 0.25 Time integration of scalars at level 0 from 14 to 15 with dt = 1 using RHS created at 14.5 Done with advance_dycore at level 0 [Level 0 step 15] Advanced 256 cells Coarse STEP 15 ends. TIME = 15 DT = 1 Timestep time = 0.319307757 seconds. TIME= 15 MASS = 82741817.94 RHO THETA = 2.201852168e+10 RHO SCALAR = 0 Coarse STEP 16 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711255341 (terrain aware) 1.711255341 (terrain unaware) Anelastic dt at level 0 would be: 24.93354337 (terrain aware) 24.93354337 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 16] ADVANCE from elapsed time = 15 to 16 with dt = 1 Surface temp at t=15: 264.9989583 Making slow rhs at time 15 for fast variables advancing from 15 to 15.33333333333 Fast time integration at level 0 from 15 to 15.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 15 to 15.33333333333 with dt = 0.3333333333333 using RHS created at 15 Making slow rhs at time 15.33333333333 for fast variables advancing from 15 to 15.5 Fast time integration at level 0 from 15 to 15.25 with dt = 0.25 Fast time integration at level 0 from 15.25 to 15.5 with dt = 0.25 Time integration of scalars at level 0 from 15 to 15.5 with dt = 0.5 using RHS created at 15.33333333333 Making slow rhs at time 15.5 for fast variables advancing from 15 to 16 Fast time integration at level 0 from 15 to 15.25 with dt = 0.25 Fast time integration at level 0 from 15.25 to 15.5 with dt = 0.25 Fast time integration at level 0 from 15.5 to 15.75 with dt = 0.25 Fast time integration at level 0 from 15.75 to 16 with dt = 0.25 Time integration of scalars at level 0 from 15 to 16 with dt = 1 using RHS created at 15.5 Done with advance_dycore at level 0 [Level 0 step 16] Advanced 256 cells Coarse STEP 16 ends. TIME = 16 DT = 1 Timestep time = 0.319336808 seconds. TIME= 16 MASS = 82741817.94 RHO THETA = 2.201852311e+10 RHO SCALAR = 0 Coarse STEP 17 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711256669 (terrain aware) 1.711256669 (terrain unaware) Anelastic dt at level 0 would be: 24.9317537 (terrain aware) 24.9317537 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 17] ADVANCE from elapsed time = 16 to 17 with dt = 1 Surface temp at t=16: 264.9988889 Making slow rhs at time 16 for fast variables advancing from 16 to 16.33333333333 Fast time integration at level 0 from 16 to 16.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 16 to 16.33333333333 with dt = 0.3333333333333 using RHS created at 16 Making slow rhs at time 16.33333333333 for fast variables advancing from 16 to 16.5 Fast time integration at level 0 from 16 to 16.25 with dt = 0.25 Fast time integration at level 0 from 16.25 to 16.5 with dt = 0.25 Time integration of scalars at level 0 from 16 to 16.5 with dt = 0.5 using RHS created at 16.33333333333 Making slow rhs at time 16.5 for fast variables advancing from 16 to 17 Fast time integration at level 0 from 16 to 16.25 with dt = 0.25 Fast time integration at level 0 from 16.25 to 16.5 with dt = 0.25 Fast time integration at level 0 from 16.5 to 16.75 with dt = 0.25 Fast time integration at level 0 from 16.75 to 17 with dt = 0.25 Time integration of scalars at level 0 from 16 to 17 with dt = 1 using RHS created at 16.5 Done with advance_dycore at level 0 [Level 0 step 17] Advanced 256 cells Coarse STEP 17 ends. TIME = 17 DT = 1 Timestep time = 0.31933907 seconds. TIME= 17 MASS = 82741817.94 RHO THETA = 2.20185246e+10 RHO SCALAR = 0 Coarse STEP 18 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711258026 (terrain aware) 1.711258026 (terrain unaware) Anelastic dt at level 0 would be: 24.93007139 (terrain aware) 24.93007139 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 18] ADVANCE from elapsed time = 17 to 18 with dt = 1 Surface temp at t=17: 264.9988194 Making slow rhs at time 17 for fast variables advancing from 17 to 17.33333333333 Fast time integration at level 0 from 17 to 17.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 17 to 17.33333333333 with dt = 0.3333333333333 using RHS created at 17 Making slow rhs at time 17.33333333333 for fast variables advancing from 17 to 17.5 Fast time integration at level 0 from 17 to 17.25 with dt = 0.25 Fast time integration at level 0 from 17.25 to 17.5 with dt = 0.25 Time integration of scalars at level 0 from 17 to 17.5 with dt = 0.5 using RHS created at 17.33333333333 Making slow rhs at time 17.5 for fast variables advancing from 17 to 18 Fast time integration at level 0 from 17 to 17.25 with dt = 0.25 Fast time integration at level 0 from 17.25 to 17.5 with dt = 0.25 Fast time integration at level 0 from 17.5 to 17.75 with dt = 0.25 Fast time integration at level 0 from 17.75 to 18 with dt = 0.25 Time integration of scalars at level 0 from 17 to 18 with dt = 1 using RHS created at 17.5 Done with advance_dycore at level 0 [Level 0 step 18] Advanced 256 cells Coarse STEP 18 ends. TIME = 18 DT = 1 Timestep time = 0.319514704 seconds. TIME= 18 MASS = 82741817.94 RHO THETA = 2.201852609e+10 RHO SCALAR = 0 Coarse STEP 19 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711259324 (terrain aware) 1.711259324 (terrain unaware) Anelastic dt at level 0 would be: 24.92848361 (terrain aware) 24.92848361 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 19] ADVANCE from elapsed time = 18 to 19 with dt = 1 Surface temp at t=18: 264.99875 Making slow rhs at time 18 for fast variables advancing from 18 to 18.33333333333 Fast time integration at level 0 from 18 to 18.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 18 to 18.33333333333 with dt = 0.3333333333333 using RHS created at 18 Making slow rhs at time 18.33333333333 for fast variables advancing from 18 to 18.5 Fast time integration at level 0 from 18 to 18.25 with dt = 0.25 Fast time integration at level 0 from 18.25 to 18.5 with dt = 0.25 Time integration of scalars at level 0 from 18 to 18.5 with dt = 0.5 using RHS created at 18.33333333333 Making slow rhs at time 18.5 for fast variables advancing from 18 to 19 Fast time integration at level 0 from 18 to 18.25 with dt = 0.25 Fast time integration at level 0 from 18.25 to 18.5 with dt = 0.25 Fast time integration at level 0 from 18.5 to 18.75 with dt = 0.25 Fast time integration at level 0 from 18.75 to 19 with dt = 0.25 Time integration of scalars at level 0 from 18 to 19 with dt = 1 using RHS created at 18.5 Done with advance_dycore at level 0 [Level 0 step 19] Advanced 256 cells Coarse STEP 19 ends. TIME = 19 DT = 1 Timestep time = 0.321554247 seconds. TIME= 19 MASS = 82741817.94 RHO THETA = 2.201852766e+10 RHO SCALAR = 0 Coarse STEP 20 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711260669 (terrain aware) 1.711260669 (terrain unaware) Anelastic dt at level 0 would be: 24.92698072 (terrain aware) 24.92698072 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 20] ADVANCE from elapsed time = 19 to 20 with dt = 1 Surface temp at t=19: 264.9986806 Making slow rhs at time 19 for fast variables advancing from 19 to 19.33333333333 Fast time integration at level 0 from 19 to 19.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 19 to 19.33333333333 with dt = 0.3333333333333 using RHS created at 19 Making slow rhs at time 19.33333333333 for fast variables advancing from 19 to 19.5 Fast time integration at level 0 from 19 to 19.25 with dt = 0.25 Fast time integration at level 0 from 19.25 to 19.5 with dt = 0.25 Time integration of scalars at level 0 from 19 to 19.5 with dt = 0.5 using RHS created at 19.33333333333 Making slow rhs at time 19.5 for fast variables advancing from 19 to 20 Fast time integration at level 0 from 19 to 19.25 with dt = 0.25 Fast time integration at level 0 from 19.25 to 19.5 with dt = 0.25 Fast time integration at level 0 from 19.5 to 19.75 with dt = 0.25 Fast time integration at level 0 from 19.75 to 20 with dt = 0.25 Time integration of scalars at level 0 from 19 to 20 with dt = 1 using RHS created at 19.5 Done with advance_dycore at level 0 [Level 0 step 20] Advanced 256 cells Coarse STEP 20 ends. TIME = 20 DT = 1 Timestep time = 0.321527577 seconds. TIME= 20 MASS = 82741817.94 RHO THETA = 2.201852931e+10 RHO SCALAR = 0 Coarse STEP 21 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711261997 (terrain aware) 1.711261997 (terrain unaware) Anelastic dt at level 0 would be: 24.92555179 (terrain aware) 24.92555179 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 21] ADVANCE from elapsed time = 20 to 21 with dt = 1 Surface temp at t=20: 264.9986111 Making slow rhs at time 20 for fast variables advancing from 20 to 20.33333333333 Fast time integration at level 0 from 20 to 20.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 20 to 20.33333333333 with dt = 0.3333333333333 using RHS created at 20 Making slow rhs at time 20.33333333333 for fast variables advancing from 20 to 20.5 Fast time integration at level 0 from 20 to 20.25 with dt = 0.25 Fast time integration at level 0 from 20.25 to 20.5 with dt = 0.25 Time integration of scalars at level 0 from 20 to 20.5 with dt = 0.5 using RHS created at 20.33333333333 Making slow rhs at time 20.5 for fast variables advancing from 20 to 21 Fast time integration at level 0 from 20 to 20.25 with dt = 0.25 Fast time integration at level 0 from 20.25 to 20.5 with dt = 0.25 Fast time integration at level 0 from 20.5 to 20.75 with dt = 0.25 Fast time integration at level 0 from 20.75 to 21 with dt = 0.25 Time integration of scalars at level 0 from 20 to 21 with dt = 1 using RHS created at 20.5 Done with advance_dycore at level 0 [Level 0 step 21] Advanced 256 cells Coarse STEP 21 ends. TIME = 21 DT = 1 Timestep time = 0.32144555 seconds. TIME= 21 MASS = 82741817.94 RHO THETA = 2.201853104e+10 RHO SCALAR = 0 Coarse STEP 22 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711263328 (terrain aware) 1.711263328 (terrain unaware) Anelastic dt at level 0 would be: 24.92419032 (terrain aware) 24.92419032 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 22] ADVANCE from elapsed time = 21 to 22 with dt = 1 Surface temp at t=21: 264.9985417 Making slow rhs at time 21 for fast variables advancing from 21 to 21.33333333333 Fast time integration at level 0 from 21 to 21.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 21 to 21.33333333333 with dt = 0.3333333333333 using RHS created at 21 Making slow rhs at time 21.33333333333 for fast variables advancing from 21 to 21.5 Fast time integration at level 0 from 21 to 21.25 with dt = 0.25 Fast time integration at level 0 from 21.25 to 21.5 with dt = 0.25 Time integration of scalars at level 0 from 21 to 21.5 with dt = 0.5 using RHS created at 21.33333333333 Making slow rhs at time 21.5 for fast variables advancing from 21 to 22 Fast time integration at level 0 from 21 to 21.25 with dt = 0.25 Fast time integration at level 0 from 21.25 to 21.5 with dt = 0.25 Fast time integration at level 0 from 21.5 to 21.75 with dt = 0.25 Fast time integration at level 0 from 21.75 to 22 with dt = 0.25 Time integration of scalars at level 0 from 21 to 22 with dt = 1 using RHS created at 21.5 Done with advance_dycore at level 0 [Level 0 step 22] Advanced 256 cells Coarse STEP 22 ends. TIME = 22 DT = 1 Timestep time = 0.321273254 seconds. TIME= 22 MASS = 82741817.94 RHO THETA = 2.201853286e+10 RHO SCALAR = 0 Coarse STEP 23 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711264673 (terrain aware) 1.711264673 (terrain unaware) Anelastic dt at level 0 would be: 24.92289073 (terrain aware) 24.92289073 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 23] ADVANCE from elapsed time = 22 to 23 with dt = 1 Surface temp at t=22: 264.9984722 Making slow rhs at time 22 for fast variables advancing from 22 to 22.33333333333 Fast time integration at level 0 from 22 to 22.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 22 to 22.33333333333 with dt = 0.3333333333333 using RHS created at 22 Making slow rhs at time 22.33333333333 for fast variables advancing from 22 to 22.5 Fast time integration at level 0 from 22 to 22.25 with dt = 0.25 Fast time integration at level 0 from 22.25 to 22.5 with dt = 0.25 Time integration of scalars at level 0 from 22 to 22.5 with dt = 0.5 using RHS created at 22.33333333333 Making slow rhs at time 22.5 for fast variables advancing from 22 to 23 Fast time integration at level 0 from 22 to 22.25 with dt = 0.25 Fast time integration at level 0 from 22.25 to 22.5 with dt = 0.25 Fast time integration at level 0 from 22.5 to 22.75 with dt = 0.25 Fast time integration at level 0 from 22.75 to 23 with dt = 0.25 Time integration of scalars at level 0 from 22 to 23 with dt = 1 using RHS created at 22.5 Done with advance_dycore at level 0 [Level 0 step 23] Advanced 256 cells Coarse STEP 23 ends. TIME = 23 DT = 1 Timestep time = 0.321421058 seconds. TIME= 23 MASS = 82741817.94 RHO THETA = 2.201853477e+10 RHO SCALAR = 0 Coarse STEP 24 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711265984 (terrain aware) 1.711265984 (terrain unaware) Anelastic dt at level 0 would be: 24.92164611 (terrain aware) 24.92164611 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 24] ADVANCE from elapsed time = 23 to 24 with dt = 1 Surface temp at t=23: 264.9984028 Making slow rhs at time 23 for fast variables advancing from 23 to 23.33333333333 Fast time integration at level 0 from 23 to 23.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 23 to 23.33333333333 with dt = 0.3333333333333 using RHS created at 23 Making slow rhs at time 23.33333333333 for fast variables advancing from 23 to 23.5 Fast time integration at level 0 from 23 to 23.25 with dt = 0.25 Fast time integration at level 0 from 23.25 to 23.5 with dt = 0.25 Time integration of scalars at level 0 from 23 to 23.5 with dt = 0.5 using RHS created at 23.33333333333 Making slow rhs at time 23.5 for fast variables advancing from 23 to 24 Fast time integration at level 0 from 23 to 23.25 with dt = 0.25 Fast time integration at level 0 from 23.25 to 23.5 with dt = 0.25 Fast time integration at level 0 from 23.5 to 23.75 with dt = 0.25 Fast time integration at level 0 from 23.75 to 24 with dt = 0.25 Time integration of scalars at level 0 from 23 to 24 with dt = 1 using RHS created at 23.5 Done with advance_dycore at level 0 [Level 0 step 24] Advanced 256 cells Coarse STEP 24 ends. TIME = 24 DT = 1 Timestep time = 0.321459042 seconds. TIME= 24 MASS = 82741817.94 RHO THETA = 2.201853684e+10 RHO SCALAR = 0 Coarse STEP 25 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711267335 (terrain aware) 1.711267335 (terrain unaware) Anelastic dt at level 0 would be: 24.92045333 (terrain aware) 24.92045333 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 25] ADVANCE from elapsed time = 24 to 25 with dt = 1 Surface temp at t=24: 264.9983333 Making slow rhs at time 24 for fast variables advancing from 24 to 24.33333333333 Fast time integration at level 0 from 24 to 24.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 24 to 24.33333333333 with dt = 0.3333333333333 using RHS created at 24 Making slow rhs at time 24.33333333333 for fast variables advancing from 24 to 24.5 Fast time integration at level 0 from 24 to 24.25 with dt = 0.25 Fast time integration at level 0 from 24.25 to 24.5 with dt = 0.25 Time integration of scalars at level 0 from 24 to 24.5 with dt = 0.5 using RHS created at 24.33333333333 Making slow rhs at time 24.5 for fast variables advancing from 24 to 25 Fast time integration at level 0 from 24 to 24.25 with dt = 0.25 Fast time integration at level 0 from 24.25 to 24.5 with dt = 0.25 Fast time integration at level 0 from 24.5 to 24.75 with dt = 0.25 Fast time integration at level 0 from 24.75 to 25 with dt = 0.25 Time integration of scalars at level 0 from 24 to 25 with dt = 1 using RHS created at 24.5 Done with advance_dycore at level 0 [Level 0 step 25] Advanced 256 cells Coarse STEP 25 ends. TIME = 25 DT = 1 Timestep time = 0.321334834 seconds. TIME= 25 MASS = 82741817.94 RHO THETA = 2.201853901e+10 RHO SCALAR = 0 Coarse STEP 26 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71126868 (terrain aware) 1.71126868 (terrain unaware) Anelastic dt at level 0 would be: 24.9193087 (terrain aware) 24.9193087 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 26] ADVANCE from elapsed time = 25 to 26 with dt = 1 Surface temp at t=25: 264.9982639 Making slow rhs at time 25 for fast variables advancing from 25 to 25.33333333333 Fast time integration at level 0 from 25 to 25.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 25 to 25.33333333333 with dt = 0.3333333333333 using RHS created at 25 Making slow rhs at time 25.33333333333 for fast variables advancing from 25 to 25.5 Fast time integration at level 0 from 25 to 25.25 with dt = 0.25 Fast time integration at level 0 from 25.25 to 25.5 with dt = 0.25 Time integration of scalars at level 0 from 25 to 25.5 with dt = 0.5 using RHS created at 25.33333333333 Making slow rhs at time 25.5 for fast variables advancing from 25 to 26 Fast time integration at level 0 from 25 to 25.25 with dt = 0.25 Fast time integration at level 0 from 25.25 to 25.5 with dt = 0.25 Fast time integration at level 0 from 25.5 to 25.75 with dt = 0.25 Fast time integration at level 0 from 25.75 to 26 with dt = 0.25 Time integration of scalars at level 0 from 25 to 26 with dt = 1 using RHS created at 25.5 Done with advance_dycore at level 0 [Level 0 step 26] Advanced 256 cells Coarse STEP 26 ends. TIME = 26 DT = 1 Timestep time = 0.321476417 seconds. TIME= 26 MASS = 82741817.94 RHO THETA = 2.201854128e+10 RHO SCALAR = 0 Coarse STEP 27 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71126998 (terrain aware) 1.71126998 (terrain unaware) Anelastic dt at level 0 would be: 24.91820807 (terrain aware) 24.91820807 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 27] ADVANCE from elapsed time = 26 to 27 with dt = 1 Surface temp at t=26: 264.9981944 Making slow rhs at time 26 for fast variables advancing from 26 to 26.33333333333 Fast time integration at level 0 from 26 to 26.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 26 to 26.33333333333 with dt = 0.3333333333333 using RHS created at 26 Making slow rhs at time 26.33333333333 for fast variables advancing from 26 to 26.5 Fast time integration at level 0 from 26 to 26.25 with dt = 0.25 Fast time integration at level 0 from 26.25 to 26.5 with dt = 0.25 Time integration of scalars at level 0 from 26 to 26.5 with dt = 0.5 using RHS created at 26.33333333333 Making slow rhs at time 26.5 for fast variables advancing from 26 to 27 Fast time integration at level 0 from 26 to 26.25 with dt = 0.25 Fast time integration at level 0 from 26.25 to 26.5 with dt = 0.25 Fast time integration at level 0 from 26.5 to 26.75 with dt = 0.25 Fast time integration at level 0 from 26.75 to 27 with dt = 0.25 Time integration of scalars at level 0 from 26 to 27 with dt = 1 using RHS created at 26.5 Done with advance_dycore at level 0 [Level 0 step 27] Advanced 256 cells Coarse STEP 27 ends. TIME = 27 DT = 1 Timestep time = 0.321462089 seconds. TIME= 27 MASS = 82741817.94 RHO THETA = 2.201854365e+10 RHO SCALAR = 0 Coarse STEP 28 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711271306 (terrain aware) 1.711271306 (terrain unaware) Anelastic dt at level 0 would be: 24.91714836 (terrain aware) 24.91714836 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 28] ADVANCE from elapsed time = 27 to 28 with dt = 1 Surface temp at t=27: 264.998125 Making slow rhs at time 27 for fast variables advancing from 27 to 27.33333333333 Fast time integration at level 0 from 27 to 27.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 27 to 27.33333333333 with dt = 0.3333333333333 using RHS created at 27 Making slow rhs at time 27.33333333333 for fast variables advancing from 27 to 27.5 Fast time integration at level 0 from 27 to 27.25 with dt = 0.25 Fast time integration at level 0 from 27.25 to 27.5 with dt = 0.25 Time integration of scalars at level 0 from 27 to 27.5 with dt = 0.5 using RHS created at 27.33333333333 Making slow rhs at time 27.5 for fast variables advancing from 27 to 28 Fast time integration at level 0 from 27 to 27.25 with dt = 0.25 Fast time integration at level 0 from 27.25 to 27.5 with dt = 0.25 Fast time integration at level 0 from 27.5 to 27.75 with dt = 0.25 Fast time integration at level 0 from 27.75 to 28 with dt = 0.25 Time integration of scalars at level 0 from 27 to 28 with dt = 1 using RHS created at 27.5 Done with advance_dycore at level 0 [Level 0 step 28] Advanced 256 cells Coarse STEP 28 ends. TIME = 28 DT = 1 Timestep time = 0.321454031 seconds. TIME= 28 MASS = 82741817.94 RHO THETA = 2.201854607e+10 RHO SCALAR = 0 Coarse STEP 29 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711272612 (terrain aware) 1.711272612 (terrain unaware) Anelastic dt at level 0 would be: 24.91612445 (terrain aware) 24.91612445 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 29] ADVANCE from elapsed time = 28 to 29 with dt = 1 Surface temp at t=28: 264.9980556 Making slow rhs at time 28 for fast variables advancing from 28 to 28.33333333333 Fast time integration at level 0 from 28 to 28.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 28 to 28.33333333333 with dt = 0.3333333333333 using RHS created at 28 Making slow rhs at time 28.33333333333 for fast variables advancing from 28 to 28.5 Fast time integration at level 0 from 28 to 28.25 with dt = 0.25 Fast time integration at level 0 from 28.25 to 28.5 with dt = 0.25 Time integration of scalars at level 0 from 28 to 28.5 with dt = 0.5 using RHS created at 28.33333333333 Making slow rhs at time 28.5 for fast variables advancing from 28 to 29 Fast time integration at level 0 from 28 to 28.25 with dt = 0.25 Fast time integration at level 0 from 28.25 to 28.5 with dt = 0.25 Fast time integration at level 0 from 28.5 to 28.75 with dt = 0.25 Fast time integration at level 0 from 28.75 to 29 with dt = 0.25 Time integration of scalars at level 0 from 28 to 29 with dt = 1 using RHS created at 28.5 Done with advance_dycore at level 0 [Level 0 step 29] Advanced 256 cells Coarse STEP 29 ends. TIME = 29 DT = 1 Timestep time = 0.32133197 seconds. TIME= 29 MASS = 82741817.94 RHO THETA = 2.201854859e+10 RHO SCALAR = 0 Coarse STEP 30 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711273912 (terrain aware) 1.711273912 (terrain unaware) Anelastic dt at level 0 would be: 24.91513483 (terrain aware) 24.91513483 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 30] ADVANCE from elapsed time = 29 to 30 with dt = 1 Surface temp at t=29: 264.9979861 Making slow rhs at time 29 for fast variables advancing from 29 to 29.33333333333 Fast time integration at level 0 from 29 to 29.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 29 to 29.33333333333 with dt = 0.3333333333333 using RHS created at 29 Making slow rhs at time 29.33333333333 for fast variables advancing from 29 to 29.5 Fast time integration at level 0 from 29 to 29.25 with dt = 0.25 Fast time integration at level 0 from 29.25 to 29.5 with dt = 0.25 Time integration of scalars at level 0 from 29 to 29.5 with dt = 0.5 using RHS created at 29.33333333333 Making slow rhs at time 29.5 for fast variables advancing from 29 to 30 Fast time integration at level 0 from 29 to 29.25 with dt = 0.25 Fast time integration at level 0 from 29.25 to 29.5 with dt = 0.25 Fast time integration at level 0 from 29.5 to 29.75 with dt = 0.25 Fast time integration at level 0 from 29.75 to 30 with dt = 0.25 Time integration of scalars at level 0 from 29 to 30 with dt = 1 using RHS created at 29.5 Done with advance_dycore at level 0 [Level 0 step 30] Advanced 256 cells Coarse STEP 30 ends. TIME = 30 DT = 1 Timestep time = 0.321312458 seconds. TIME= 30 MASS = 82741817.94 RHO THETA = 2.201855122e+10 RHO SCALAR = 0 Coarse STEP 31 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711275205 (terrain aware) 1.711275205 (terrain unaware) Anelastic dt at level 0 would be: 24.91417616 (terrain aware) 24.91417616 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 31] ADVANCE from elapsed time = 30 to 31 with dt = 1 Surface temp at t=30: 264.9979167 Making slow rhs at time 30 for fast variables advancing from 30 to 30.33333333333 Fast time integration at level 0 from 30 to 30.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 30 to 30.33333333333 with dt = 0.3333333333333 using RHS created at 30 Making slow rhs at time 30.33333333333 for fast variables advancing from 30 to 30.5 Fast time integration at level 0 from 30 to 30.25 with dt = 0.25 Fast time integration at level 0 from 30.25 to 30.5 with dt = 0.25 Time integration of scalars at level 0 from 30 to 30.5 with dt = 0.5 using RHS created at 30.33333333333 Making slow rhs at time 30.5 for fast variables advancing from 30 to 31 Fast time integration at level 0 from 30 to 30.25 with dt = 0.25 Fast time integration at level 0 from 30.25 to 30.5 with dt = 0.25 Fast time integration at level 0 from 30.5 to 30.75 with dt = 0.25 Fast time integration at level 0 from 30.75 to 31 with dt = 0.25 Time integration of scalars at level 0 from 30 to 31 with dt = 1 using RHS created at 30.5 Done with advance_dycore at level 0 [Level 0 step 31] Advanced 256 cells Coarse STEP 31 ends. TIME = 31 DT = 1 Timestep time = 0.32141752 seconds. TIME= 31 MASS = 82741817.94 RHO THETA = 2.201855402e+10 RHO SCALAR = 0 Coarse STEP 32 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711276488 (terrain aware) 1.711276488 (terrain unaware) Anelastic dt at level 0 would be: 24.9132458 (terrain aware) 24.9132458 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 32] ADVANCE from elapsed time = 31 to 32 with dt = 1 Surface temp at t=31: 264.9978472 Making slow rhs at time 31 for fast variables advancing from 31 to 31.33333333333 Fast time integration at level 0 from 31 to 31.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 31 to 31.33333333333 with dt = 0.3333333333333 using RHS created at 31 Making slow rhs at time 31.33333333333 for fast variables advancing from 31 to 31.5 Fast time integration at level 0 from 31 to 31.25 with dt = 0.25 Fast time integration at level 0 from 31.25 to 31.5 with dt = 0.25 Time integration of scalars at level 0 from 31 to 31.5 with dt = 0.5 using RHS created at 31.33333333333 Making slow rhs at time 31.5 for fast variables advancing from 31 to 32 Fast time integration at level 0 from 31 to 31.25 with dt = 0.25 Fast time integration at level 0 from 31.25 to 31.5 with dt = 0.25 Fast time integration at level 0 from 31.5 to 31.75 with dt = 0.25 Fast time integration at level 0 from 31.75 to 32 with dt = 0.25 Time integration of scalars at level 0 from 31 to 32 with dt = 1 using RHS created at 31.5 Done with advance_dycore at level 0 [Level 0 step 32] Advanced 256 cells Coarse STEP 32 ends. TIME = 32 DT = 1 Timestep time = 0.321377381 seconds. TIME= 32 MASS = 82741817.94 RHO THETA = 2.201855686e+10 RHO SCALAR = 0 Coarse STEP 33 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711277795 (terrain aware) 1.711277795 (terrain unaware) Anelastic dt at level 0 would be: 24.9123444 (terrain aware) 24.9123444 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 33] ADVANCE from elapsed time = 32 to 33 with dt = 1 Surface temp at t=32: 264.9977778 Making slow rhs at time 32 for fast variables advancing from 32 to 32.33333333333 Fast time integration at level 0 from 32 to 32.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 32 to 32.33333333333 with dt = 0.3333333333333 using RHS created at 32 Making slow rhs at time 32.33333333333 for fast variables advancing from 32 to 32.5 Fast time integration at level 0 from 32 to 32.25 with dt = 0.25 Fast time integration at level 0 from 32.25 to 32.5 with dt = 0.25 Time integration of scalars at level 0 from 32 to 32.5 with dt = 0.5 using RHS created at 32.33333333333 Making slow rhs at time 32.5 for fast variables advancing from 32 to 33 Fast time integration at level 0 from 32 to 32.25 with dt = 0.25 Fast time integration at level 0 from 32.25 to 32.5 with dt = 0.25 Fast time integration at level 0 from 32.5 to 32.75 with dt = 0.25 Fast time integration at level 0 from 32.75 to 33 with dt = 0.25 Time integration of scalars at level 0 from 32 to 33 with dt = 1 using RHS created at 32.5 Done with advance_dycore at level 0 [Level 0 step 33] Advanced 256 cells Coarse STEP 33 ends. TIME = 33 DT = 1 Timestep time = 0.3213712 seconds. TIME= 33 MASS = 82741817.94 RHO THETA = 2.201855981e+10 RHO SCALAR = 0 Coarse STEP 34 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711279053 (terrain aware) 1.711279053 (terrain unaware) Anelastic dt at level 0 would be: 24.91146997 (terrain aware) 24.91146997 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 34] ADVANCE from elapsed time = 33 to 34 with dt = 1 Surface temp at t=33: 264.9977083 Making slow rhs at time 33 for fast variables advancing from 33 to 33.33333333333 Fast time integration at level 0 from 33 to 33.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 33 to 33.33333333333 with dt = 0.3333333333333 using RHS created at 33 Making slow rhs at time 33.33333333333 for fast variables advancing from 33 to 33.5 Fast time integration at level 0 from 33 to 33.25 with dt = 0.25 Fast time integration at level 0 from 33.25 to 33.5 with dt = 0.25 Time integration of scalars at level 0 from 33 to 33.5 with dt = 0.5 using RHS created at 33.33333333333 Making slow rhs at time 33.5 for fast variables advancing from 33 to 34 Fast time integration at level 0 from 33 to 33.25 with dt = 0.25 Fast time integration at level 0 from 33.25 to 33.5 with dt = 0.25 Fast time integration at level 0 from 33.5 to 33.75 with dt = 0.25 Fast time integration at level 0 from 33.75 to 34 with dt = 0.25 Time integration of scalars at level 0 from 33 to 34 with dt = 1 using RHS created at 33.5 Done with advance_dycore at level 0 [Level 0 step 34] Advanced 256 cells Coarse STEP 34 ends. TIME = 34 DT = 1 Timestep time = 0.321398448 seconds. TIME= 34 MASS = 82741817.94 RHO THETA = 2.201856287e+10 RHO SCALAR = 0 Coarse STEP 35 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711280306 (terrain aware) 1.711280306 (terrain unaware) Anelastic dt at level 0 would be: 24.91061887 (terrain aware) 24.91061887 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 35] ADVANCE from elapsed time = 34 to 35 with dt = 1 Surface temp at t=34: 264.9976389 Making slow rhs at time 34 for fast variables advancing from 34 to 34.33333333333 Fast time integration at level 0 from 34 to 34.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 34 to 34.33333333333 with dt = 0.3333333333333 using RHS created at 34 Making slow rhs at time 34.33333333333 for fast variables advancing from 34 to 34.5 Fast time integration at level 0 from 34 to 34.25 with dt = 0.25 Fast time integration at level 0 from 34.25 to 34.5 with dt = 0.25 Time integration of scalars at level 0 from 34 to 34.5 with dt = 0.5 using RHS created at 34.33333333333 Making slow rhs at time 34.5 for fast variables advancing from 34 to 35 Fast time integration at level 0 from 34 to 34.25 with dt = 0.25 Fast time integration at level 0 from 34.25 to 34.5 with dt = 0.25 Fast time integration at level 0 from 34.5 to 34.75 with dt = 0.25 Fast time integration at level 0 from 34.75 to 35 with dt = 0.25 Time integration of scalars at level 0 from 34 to 35 with dt = 1 using RHS created at 34.5 Done with advance_dycore at level 0 [Level 0 step 35] Advanced 256 cells Coarse STEP 35 ends. TIME = 35 DT = 1 Timestep time = 0.32142298 seconds. TIME= 35 MASS = 82741817.94 RHO THETA = 2.201856609e+10 RHO SCALAR = 0 Coarse STEP 36 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711281592 (terrain aware) 1.711281592 (terrain unaware) Anelastic dt at level 0 would be: 24.90979118 (terrain aware) 24.90979118 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 36] ADVANCE from elapsed time = 35 to 36 with dt = 1 Surface temp at t=35: 264.9975694 Making slow rhs at time 35 for fast variables advancing from 35 to 35.33333333333 Fast time integration at level 0 from 35 to 35.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 35 to 35.33333333333 with dt = 0.3333333333333 using RHS created at 35 Making slow rhs at time 35.33333333333 for fast variables advancing from 35 to 35.5 Fast time integration at level 0 from 35 to 35.25 with dt = 0.25 Fast time integration at level 0 from 35.25 to 35.5 with dt = 0.25 Time integration of scalars at level 0 from 35 to 35.5 with dt = 0.5 using RHS created at 35.33333333333 Making slow rhs at time 35.5 for fast variables advancing from 35 to 36 Fast time integration at level 0 from 35 to 35.25 with dt = 0.25 Fast time integration at level 0 from 35.25 to 35.5 with dt = 0.25 Fast time integration at level 0 from 35.5 to 35.75 with dt = 0.25 Fast time integration at level 0 from 35.75 to 36 with dt = 0.25 Time integration of scalars at level 0 from 35 to 36 with dt = 1 using RHS created at 35.5 Done with advance_dycore at level 0 [Level 0 step 36] Advanced 256 cells Coarse STEP 36 ends. TIME = 36 DT = 1 Timestep time = 0.321397585 seconds. TIME= 36 MASS = 82741817.94 RHO THETA = 2.201856934e+10 RHO SCALAR = 0 Coarse STEP 37 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711282815 (terrain aware) 1.711282815 (terrain unaware) Anelastic dt at level 0 would be: 24.90898627 (terrain aware) 24.90898627 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 37] ADVANCE from elapsed time = 36 to 37 with dt = 1 Surface temp at t=36: 264.9975 Making slow rhs at time 36 for fast variables advancing from 36 to 36.33333333333 Fast time integration at level 0 from 36 to 36.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 36 to 36.33333333333 with dt = 0.3333333333333 using RHS created at 36 Making slow rhs at time 36.33333333333 for fast variables advancing from 36 to 36.5 Fast time integration at level 0 from 36 to 36.25 with dt = 0.25 Fast time integration at level 0 from 36.25 to 36.5 with dt = 0.25 Time integration of scalars at level 0 from 36 to 36.5 with dt = 0.5 using RHS created at 36.33333333333 Making slow rhs at time 36.5 for fast variables advancing from 36 to 37 Fast time integration at level 0 from 36 to 36.25 with dt = 0.25 Fast time integration at level 0 from 36.25 to 36.5 with dt = 0.25 Fast time integration at level 0 from 36.5 to 36.75 with dt = 0.25 Fast time integration at level 0 from 36.75 to 37 with dt = 0.25 Time integration of scalars at level 0 from 36 to 37 with dt = 1 using RHS created at 36.5 Done with advance_dycore at level 0 [Level 0 step 37] Advanced 256 cells Coarse STEP 37 ends. TIME = 37 DT = 1 Timestep time = 0.321372032 seconds. TIME= 37 MASS = 82741817.94 RHO THETA = 2.20185727e+10 RHO SCALAR = 0 Coarse STEP 38 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711284015 (terrain aware) 1.711284015 (terrain unaware) Anelastic dt at level 0 would be: 24.90820123 (terrain aware) 24.90820123 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 38] ADVANCE from elapsed time = 37 to 38 with dt = 1 Surface temp at t=37: 264.9974306 Making slow rhs at time 37 for fast variables advancing from 37 to 37.33333333333 Fast time integration at level 0 from 37 to 37.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 37 to 37.33333333333 with dt = 0.3333333333333 using RHS created at 37 Making slow rhs at time 37.33333333333 for fast variables advancing from 37 to 37.5 Fast time integration at level 0 from 37 to 37.25 with dt = 0.25 Fast time integration at level 0 from 37.25 to 37.5 with dt = 0.25 Time integration of scalars at level 0 from 37 to 37.5 with dt = 0.5 using RHS created at 37.33333333333 Making slow rhs at time 37.5 for fast variables advancing from 37 to 38 Fast time integration at level 0 from 37 to 37.25 with dt = 0.25 Fast time integration at level 0 from 37.25 to 37.5 with dt = 0.25 Fast time integration at level 0 from 37.5 to 37.75 with dt = 0.25 Fast time integration at level 0 from 37.75 to 38 with dt = 0.25 Time integration of scalars at level 0 from 37 to 38 with dt = 1 using RHS created at 37.5 Done with advance_dycore at level 0 [Level 0 step 38] Advanced 256 cells Coarse STEP 38 ends. TIME = 38 DT = 1 Timestep time = 0.32143559 seconds. TIME= 38 MASS = 82741817.94 RHO THETA = 2.201857615e+10 RHO SCALAR = 0 Coarse STEP 39 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711285223 (terrain aware) 1.711285223 (terrain unaware) Anelastic dt at level 0 would be: 24.90743175 (terrain aware) 24.90743175 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 39] ADVANCE from elapsed time = 38 to 39 with dt = 1 Surface temp at t=38: 264.9973611 Making slow rhs at time 38 for fast variables advancing from 38 to 38.33333333333 Fast time integration at level 0 from 38 to 38.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 38 to 38.33333333333 with dt = 0.3333333333333 using RHS created at 38 Making slow rhs at time 38.33333333333 for fast variables advancing from 38 to 38.5 Fast time integration at level 0 from 38 to 38.25 with dt = 0.25 Fast time integration at level 0 from 38.25 to 38.5 with dt = 0.25 Time integration of scalars at level 0 from 38 to 38.5 with dt = 0.5 using RHS created at 38.33333333333 Making slow rhs at time 38.5 for fast variables advancing from 38 to 39 Fast time integration at level 0 from 38 to 38.25 with dt = 0.25 Fast time integration at level 0 from 38.25 to 38.5 with dt = 0.25 Fast time integration at level 0 from 38.5 to 38.75 with dt = 0.25 Fast time integration at level 0 from 38.75 to 39 with dt = 0.25 Time integration of scalars at level 0 from 38 to 39 with dt = 1 using RHS created at 38.5 Done with advance_dycore at level 0 [Level 0 step 39] Advanced 256 cells Coarse STEP 39 ends. TIME = 39 DT = 1 Timestep time = 0.3212423 seconds. TIME= 39 MASS = 82741817.94 RHO THETA = 2.201857969e+10 RHO SCALAR = 0 Coarse STEP 40 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711286467 (terrain aware) 1.711286467 (terrain unaware) Anelastic dt at level 0 would be: 24.90668312 (terrain aware) 24.90668312 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 40] ADVANCE from elapsed time = 39 to 40 with dt = 1 Surface temp at t=39: 264.9972917 Making slow rhs at time 39 for fast variables advancing from 39 to 39.33333333333 Fast time integration at level 0 from 39 to 39.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 39 to 39.33333333333 with dt = 0.3333333333333 using RHS created at 39 Making slow rhs at time 39.33333333333 for fast variables advancing from 39 to 39.5 Fast time integration at level 0 from 39 to 39.25 with dt = 0.25 Fast time integration at level 0 from 39.25 to 39.5 with dt = 0.25 Time integration of scalars at level 0 from 39 to 39.5 with dt = 0.5 using RHS created at 39.33333333333 Making slow rhs at time 39.5 for fast variables advancing from 39 to 40 Fast time integration at level 0 from 39 to 39.25 with dt = 0.25 Fast time integration at level 0 from 39.25 to 39.5 with dt = 0.25 Fast time integration at level 0 from 39.5 to 39.75 with dt = 0.25 Fast time integration at level 0 from 39.75 to 40 with dt = 0.25 Time integration of scalars at level 0 from 39 to 40 with dt = 1 using RHS created at 39.5 Done with advance_dycore at level 0 [Level 0 step 40] Advanced 256 cells Coarse STEP 40 ends. TIME = 40 DT = 1 Timestep time = 0.321319554 seconds. TIME= 40 MASS = 82741817.94 RHO THETA = 2.201858331e+10 RHO SCALAR = 0 Coarse STEP 41 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711287665 (terrain aware) 1.711287665 (terrain unaware) Anelastic dt at level 0 would be: 24.90595384 (terrain aware) 24.90595384 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 41] ADVANCE from elapsed time = 40 to 41 with dt = 1 Surface temp at t=40: 264.9972222 Making slow rhs at time 40 for fast variables advancing from 40 to 40.33333333333 Fast time integration at level 0 from 40 to 40.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 40 to 40.33333333333 with dt = 0.3333333333333 using RHS created at 40 Making slow rhs at time 40.33333333333 for fast variables advancing from 40 to 40.5 Fast time integration at level 0 from 40 to 40.25 with dt = 0.25 Fast time integration at level 0 from 40.25 to 40.5 with dt = 0.25 Time integration of scalars at level 0 from 40 to 40.5 with dt = 0.5 using RHS created at 40.33333333333 Making slow rhs at time 40.5 for fast variables advancing from 40 to 41 Fast time integration at level 0 from 40 to 40.25 with dt = 0.25 Fast time integration at level 0 from 40.25 to 40.5 with dt = 0.25 Fast time integration at level 0 from 40.5 to 40.75 with dt = 0.25 Fast time integration at level 0 from 40.75 to 41 with dt = 0.25 Time integration of scalars at level 0 from 40 to 41 with dt = 1 using RHS created at 40.5 Done with advance_dycore at level 0 [Level 0 step 41] Advanced 256 cells Coarse STEP 41 ends. TIME = 41 DT = 1 Timestep time = 0.321521253 seconds. TIME= 41 MASS = 82741817.94 RHO THETA = 2.201858702e+10 RHO SCALAR = 0 Coarse STEP 42 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.7112888 (terrain aware) 1.7112888 (terrain unaware) Anelastic dt at level 0 would be: 24.90523687 (terrain aware) 24.90523687 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 42] ADVANCE from elapsed time = 41 to 42 with dt = 1 Surface temp at t=41: 264.9971528 Making slow rhs at time 41 for fast variables advancing from 41 to 41.33333333333 Fast time integration at level 0 from 41 to 41.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 41 to 41.33333333333 with dt = 0.3333333333333 using RHS created at 41 Making slow rhs at time 41.33333333333 for fast variables advancing from 41 to 41.5 Fast time integration at level 0 from 41 to 41.25 with dt = 0.25 Fast time integration at level 0 from 41.25 to 41.5 with dt = 0.25 Time integration of scalars at level 0 from 41 to 41.5 with dt = 0.5 using RHS created at 41.33333333333 Making slow rhs at time 41.5 for fast variables advancing from 41 to 42 Fast time integration at level 0 from 41 to 41.25 with dt = 0.25 Fast time integration at level 0 from 41.25 to 41.5 with dt = 0.25 Fast time integration at level 0 from 41.5 to 41.75 with dt = 0.25 Fast time integration at level 0 from 41.75 to 42 with dt = 0.25 Time integration of scalars at level 0 from 41 to 42 with dt = 1 using RHS created at 41.5 Done with advance_dycore at level 0 [Level 0 step 42] Advanced 256 cells Coarse STEP 42 ends. TIME = 42 DT = 1 Timestep time = 0.321402112 seconds. TIME= 42 MASS = 82741817.94 RHO THETA = 2.201859081e+10 RHO SCALAR = 0 Coarse STEP 43 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711290028 (terrain aware) 1.711290028 (terrain unaware) Anelastic dt at level 0 would be: 24.90453887 (terrain aware) 24.90453887 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 43] ADVANCE from elapsed time = 42 to 43 with dt = 1 Surface temp at t=42: 264.9970833 Making slow rhs at time 42 for fast variables advancing from 42 to 42.33333333333 Fast time integration at level 0 from 42 to 42.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 42 to 42.33333333333 with dt = 0.3333333333333 using RHS created at 42 Making slow rhs at time 42.33333333333 for fast variables advancing from 42 to 42.5 Fast time integration at level 0 from 42 to 42.25 with dt = 0.25 Fast time integration at level 0 from 42.25 to 42.5 with dt = 0.25 Time integration of scalars at level 0 from 42 to 42.5 with dt = 0.5 using RHS created at 42.33333333333 Making slow rhs at time 42.5 for fast variables advancing from 42 to 43 Fast time integration at level 0 from 42 to 42.25 with dt = 0.25 Fast time integration at level 0 from 42.25 to 42.5 with dt = 0.25 Fast time integration at level 0 from 42.5 to 42.75 with dt = 0.25 Fast time integration at level 0 from 42.75 to 43 with dt = 0.25 Time integration of scalars at level 0 from 42 to 43 with dt = 1 using RHS created at 42.5 Done with advance_dycore at level 0 [Level 0 step 43] Advanced 256 cells Coarse STEP 43 ends. TIME = 43 DT = 1 Timestep time = 0.321438241 seconds. TIME= 43 MASS = 82741817.94 RHO THETA = 2.201859467e+10 RHO SCALAR = 0 Coarse STEP 44 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71129118 (terrain aware) 1.71129118 (terrain unaware) Anelastic dt at level 0 would be: 24.90385719 (terrain aware) 24.90385719 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 44] ADVANCE from elapsed time = 43 to 44 with dt = 1 Surface temp at t=43: 264.9970139 Making slow rhs at time 43 for fast variables advancing from 43 to 43.33333333333 Fast time integration at level 0 from 43 to 43.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 43 to 43.33333333333 with dt = 0.3333333333333 using RHS created at 43 Making slow rhs at time 43.33333333333 for fast variables advancing from 43 to 43.5 Fast time integration at level 0 from 43 to 43.25 with dt = 0.25 Fast time integration at level 0 from 43.25 to 43.5 with dt = 0.25 Time integration of scalars at level 0 from 43 to 43.5 with dt = 0.5 using RHS created at 43.33333333333 Making slow rhs at time 43.5 for fast variables advancing from 43 to 44 Fast time integration at level 0 from 43 to 43.25 with dt = 0.25 Fast time integration at level 0 from 43.25 to 43.5 with dt = 0.25 Fast time integration at level 0 from 43.5 to 43.75 with dt = 0.25 Fast time integration at level 0 from 43.75 to 44 with dt = 0.25 Time integration of scalars at level 0 from 43 to 44 with dt = 1 using RHS created at 43.5 Done with advance_dycore at level 0 [Level 0 step 44] Advanced 256 cells Coarse STEP 44 ends. TIME = 44 DT = 1 Timestep time = 0.321354519 seconds. TIME= 44 MASS = 82741817.94 RHO THETA = 2.20185986e+10 RHO SCALAR = 0 Coarse STEP 45 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71129229 (terrain aware) 1.71129229 (terrain unaware) Anelastic dt at level 0 would be: 24.90319034 (terrain aware) 24.90319034 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 45] ADVANCE from elapsed time = 44 to 45 with dt = 1 Surface temp at t=44: 264.9969444 Making slow rhs at time 44 for fast variables advancing from 44 to 44.33333333333 Fast time integration at level 0 from 44 to 44.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 44 to 44.33333333333 with dt = 0.3333333333333 using RHS created at 44 Making slow rhs at time 44.33333333333 for fast variables advancing from 44 to 44.5 Fast time integration at level 0 from 44 to 44.25 with dt = 0.25 Fast time integration at level 0 from 44.25 to 44.5 with dt = 0.25 Time integration of scalars at level 0 from 44 to 44.5 with dt = 0.5 using RHS created at 44.33333333333 Making slow rhs at time 44.5 for fast variables advancing from 44 to 45 Fast time integration at level 0 from 44 to 44.25 with dt = 0.25 Fast time integration at level 0 from 44.25 to 44.5 with dt = 0.25 Fast time integration at level 0 from 44.5 to 44.75 with dt = 0.25 Fast time integration at level 0 from 44.75 to 45 with dt = 0.25 Time integration of scalars at level 0 from 44 to 45 with dt = 1 using RHS created at 44.5 Done with advance_dycore at level 0 [Level 0 step 45] Advanced 256 cells Coarse STEP 45 ends. TIME = 45 DT = 1 Timestep time = 0.32150361 seconds. TIME= 45 MASS = 82741817.94 RHO THETA = 2.201860265e+10 RHO SCALAR = 0 Coarse STEP 46 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711293441 (terrain aware) 1.711293441 (terrain unaware) Anelastic dt at level 0 would be: 24.90253948 (terrain aware) 24.90253948 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 46] ADVANCE from elapsed time = 45 to 46 with dt = 1 Surface temp at t=45: 264.996875 Making slow rhs at time 45 for fast variables advancing from 45 to 45.33333333333 Fast time integration at level 0 from 45 to 45.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 45 to 45.33333333333 with dt = 0.3333333333333 using RHS created at 45 Making slow rhs at time 45.33333333333 for fast variables advancing from 45 to 45.5 Fast time integration at level 0 from 45 to 45.25 with dt = 0.25 Fast time integration at level 0 from 45.25 to 45.5 with dt = 0.25 Time integration of scalars at level 0 from 45 to 45.5 with dt = 0.5 using RHS created at 45.33333333333 Making slow rhs at time 45.5 for fast variables advancing from 45 to 46 Fast time integration at level 0 from 45 to 45.25 with dt = 0.25 Fast time integration at level 0 from 45.25 to 45.5 with dt = 0.25 Fast time integration at level 0 from 45.5 to 45.75 with dt = 0.25 Fast time integration at level 0 from 45.75 to 46 with dt = 0.25 Time integration of scalars at level 0 from 45 to 46 with dt = 1 using RHS created at 45.5 Done with advance_dycore at level 0 [Level 0 step 46] Advanced 256 cells Coarse STEP 46 ends. TIME = 46 DT = 1 Timestep time = 0.321455078 seconds. TIME= 46 MASS = 82741817.94 RHO THETA = 2.20186067e+10 RHO SCALAR = 0 Coarse STEP 47 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711294504 (terrain aware) 1.711294504 (terrain unaware) Anelastic dt at level 0 would be: 24.90190273 (terrain aware) 24.90190273 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 47] ADVANCE from elapsed time = 46 to 47 with dt = 1 Surface temp at t=46: 264.9968056 Making slow rhs at time 46 for fast variables advancing from 46 to 46.33333333333 Fast time integration at level 0 from 46 to 46.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 46 to 46.33333333333 with dt = 0.3333333333333 using RHS created at 46 Making slow rhs at time 46.33333333333 for fast variables advancing from 46 to 46.5 Fast time integration at level 0 from 46 to 46.25 with dt = 0.25 Fast time integration at level 0 from 46.25 to 46.5 with dt = 0.25 Time integration of scalars at level 0 from 46 to 46.5 with dt = 0.5 using RHS created at 46.33333333333 Making slow rhs at time 46.5 for fast variables advancing from 46 to 47 Fast time integration at level 0 from 46 to 46.25 with dt = 0.25 Fast time integration at level 0 from 46.25 to 46.5 with dt = 0.25 Fast time integration at level 0 from 46.5 to 46.75 with dt = 0.25 Fast time integration at level 0 from 46.75 to 47 with dt = 0.25 Time integration of scalars at level 0 from 46 to 47 with dt = 1 using RHS created at 46.5 Done with advance_dycore at level 0 [Level 0 step 47] Advanced 256 cells Coarse STEP 47 ends. TIME = 47 DT = 1 Timestep time = 0.321446675 seconds. TIME= 47 MASS = 82741817.94 RHO THETA = 2.201861079e+10 RHO SCALAR = 0 Coarse STEP 48 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.71129556 (terrain aware) 1.71129556 (terrain unaware) Anelastic dt at level 0 would be: 24.90127877 (terrain aware) 24.90127877 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 48] ADVANCE from elapsed time = 47 to 48 with dt = 1 Surface temp at t=47: 264.9967361 Making slow rhs at time 47 for fast variables advancing from 47 to 47.33333333333 Fast time integration at level 0 from 47 to 47.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 47 to 47.33333333333 with dt = 0.3333333333333 using RHS created at 47 Making slow rhs at time 47.33333333333 for fast variables advancing from 47 to 47.5 Fast time integration at level 0 from 47 to 47.25 with dt = 0.25 Fast time integration at level 0 from 47.25 to 47.5 with dt = 0.25 Time integration of scalars at level 0 from 47 to 47.5 with dt = 0.5 using RHS created at 47.33333333333 Making slow rhs at time 47.5 for fast variables advancing from 47 to 48 Fast time integration at level 0 from 47 to 47.25 with dt = 0.25 Fast time integration at level 0 from 47.25 to 47.5 with dt = 0.25 Fast time integration at level 0 from 47.5 to 47.75 with dt = 0.25 Fast time integration at level 0 from 47.75 to 48 with dt = 0.25 Time integration of scalars at level 0 from 47 to 48 with dt = 1 using RHS created at 47.5 Done with advance_dycore at level 0 [Level 0 step 48] Advanced 256 cells Coarse STEP 48 ends. TIME = 48 DT = 1 Timestep time = 0.321545344 seconds. TIME= 48 MASS = 82741817.94 RHO THETA = 2.2018615e+10 RHO SCALAR = 0 Coarse STEP 49 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711296618 (terrain aware) 1.711296618 (terrain unaware) Anelastic dt at level 0 would be: 24.9006646 (terrain aware) 24.9006646 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 49] ADVANCE from elapsed time = 48 to 49 with dt = 1 Surface temp at t=48: 264.9966667 Making slow rhs at time 48 for fast variables advancing from 48 to 48.33333333333 Fast time integration at level 0 from 48 to 48.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 48 to 48.33333333333 with dt = 0.3333333333333 using RHS created at 48 Making slow rhs at time 48.33333333333 for fast variables advancing from 48 to 48.5 Fast time integration at level 0 from 48 to 48.25 with dt = 0.25 Fast time integration at level 0 from 48.25 to 48.5 with dt = 0.25 Time integration of scalars at level 0 from 48 to 48.5 with dt = 0.5 using RHS created at 48.33333333333 Making slow rhs at time 48.5 for fast variables advancing from 48 to 49 Fast time integration at level 0 from 48 to 48.25 with dt = 0.25 Fast time integration at level 0 from 48.25 to 48.5 with dt = 0.25 Fast time integration at level 0 from 48.5 to 48.75 with dt = 0.25 Fast time integration at level 0 from 48.75 to 49 with dt = 0.25 Time integration of scalars at level 0 from 48 to 49 with dt = 1 using RHS created at 48.5 Done with advance_dycore at level 0 [Level 0 step 49] Advanced 256 cells Coarse STEP 49 ends. TIME = 49 DT = 1 Timestep time = 0.321419099 seconds. TIME= 49 MASS = 82741817.94 RHO THETA = 2.201861923e+10 RHO SCALAR = 0 Coarse STEP 50 starts ... Based on cfl of one Compressible dt at level 0 would be: 1.711297695 (terrain aware) 1.711297695 (terrain unaware) Anelastic dt at level 0 would be: 24.90006811 (terrain aware) 24.90006811 (terrain unaware) Fixed dt at level 0 is: 1 smallest even ratio is: 4 [Level 0 step 50] ADVANCE from elapsed time = 49 to 50 with dt = 1 Surface temp at t=49: 264.9965972 Making slow rhs at time 49 for fast variables advancing from 49 to 49.33333333333 Fast time integration at level 0 from 49 to 49.33333333333 with dt = 0.3333333333333 Time integration of scalars at level 0 from 49 to 49.33333333333 with dt = 0.3333333333333 using RHS created at 49 Making slow rhs at time 49.33333333333 for fast variables advancing from 49 to 49.5 Fast time integration at level 0 from 49 to 49.25 with dt = 0.25 Fast time integration at level 0 from 49.25 to 49.5 with dt = 0.25 Time integration of scalars at level 0 from 49 to 49.5 with dt = 0.5 using RHS created at 49.33333333333 Making slow rhs at time 49.5 for fast variables advancing from 49 to 50 Fast time integration at level 0 from 49 to 49.25 with dt = 0.25 Fast time integration at level 0 from 49.25 to 49.5 with dt = 0.25 Fast time integration at level 0 from 49.5 to 49.75 with dt = 0.25 Fast time integration at level 0 from 49.75 to 50 with dt = 0.25 Time integration of scalars at level 0 from 49 to 50 with dt = 1 using RHS created at 49.5 Done with advance_dycore at level 0 [Level 0 step 50] Advanced 256 cells Coarse STEP 50 ends. TIME = 50 DT = 1 Timestep time = 0.321552995 seconds. TIME= 50 MASS = 82741817.94 RHO THETA = 2.201862355e+10 RHO SCALAR = 0 Writing native 3D plotfile ABL-SHOC_plt00050 3DPlotfile write time = 0.019807 seconds. Total Time: 17.06854232 Unused ParmParse Variables: [TOP]::amr.checkpoint_files_output(nvals = 1) :: [0] [TOP]::prob.KE_0(nvals = 1) :: [0.4] [TOP]::prob.KE_decay_height(nvals = 1) :: [250.] [TOP]::prob.KE_decay_order(nvals = 1) :: [3] Total GPU global memory (MB) spread across MPI: [7965 ... 7965] Free GPU global memory (MB) spread across MPI: [7235 ... 7291] [The Arena] max space (MB) allocated spread across MPI: [17 ... 17] [The Arena] max space (MB) used spread across MPI: [10 ... 10] [The Device Arena] max space (MB) allocated spread across MPI: [8 ... 8] [The Device Arena] max space (MB) used spread across MPI: [0 ... 0] [The Pinned Arena] max space (MB) allocated spread across MPI: [8 ... 8] [The Pinned Arena] max space (MB) used spread across MPI: [0 ... 0] AMReX (26.08-36-gf2cbba4afc9e) finalized