Initializing AMReX (26.09-159-g2c47443ff21b)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 OMP initialized with 2 OMP threads AMReX (26.09-159-g2c47443ff21b) initialized Successfully read inputs file ... ERF git hash: 2f3b2b5d5-dirty AMReX git hash: 26.09-159-g2c47443ff Problem name (from inputs file) is: "ABL" Level 0 is land Thermal stratification based on gradient of potential temperature Null land surface model! SOLVER CHOICE: At level 0 : compressible with implicit substepping vert_implicit_fac at level 0 : 1 1 0 (theta = 1, moisture = 1, tke = 1, momenta = 1) use_coriolis : 0 use_gravity : 0 Moisture Model: None Terrain Type: None Buildings Type: None Mesh Type: ConstantDz ABL Driver Type: None 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 Smagorinsky LES model at level 0 Smagorinsky uses Richardson number correction with Ri_crit = 0.25 Cs : 0.1 isotropic mixing : 1 Pr_t : 0.3333333333 Sc_t : 1 WRF lateral boundary density forcing: disabled WRF lateral boundary cloud-water/cloud-ice forcing: disabled 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) (31,31,63) (0,0,0)) ((0,32,0) (31,63,63) (0,0,0)) ((32,0,0) (63,31,63) (0,0,0)) ((32,32,0) (63,63,63) (0,0,0)) ) Found MOST at face (2) : Constructing primitive vars for MOST.. Adding random x-velocity perturbations Adding random y-velocity perturbations Adding random x-velocity perturbations Adding random y-velocity perturbations Adding random x-velocity perturbations Adding random y-velocity perturbations Adding random x-velocity perturbations Adding random y-velocity perturbations Based on cfl of one Compressible dt at level 0 would be: 0.1307223215 (terrain aware) 0.1307223215 (terrain unaware) Anelastic dt at level 0 would be: 1.587304249 (terrain aware) 1.587304249 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 The smooth-flow limit will be included for variable roughness models over sea: 1 If there is water, Charnock relation with C_a=0.0185 will be used MOST reference height at level 0: 8 Max value of |p_hse - p_eos| is 0, less than the tolerance 8.109692965e-09 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 checkpoint ABL-MOST-OMP_chk00000 Writing SurfaceLayer variables at level 0 for face (2) Checkpoint write time = 0.01745048 seconds. Writing native 3D plotfile ABL-MOST-OMP_plt00000 3DPlotfile write time = 0.017369905 seconds. TIME= 0 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 1 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307223215 (terrain aware) 0.1307223215 (terrain unaware) Anelastic dt at level 0 would be: 1.587304249 (terrain aware) 1.587304249 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 1] ADVANCE from elapsed time = 0 to 0.1 with dt = 0.1 Making slow rhs at time 0 for fast variables advancing from 0 to 0.03333333333333 Fast time integration at level 0 from 0 to 0.03333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0 to 0.03333333333333 with dt = 0.03333333333333 using RHS created at 0 Making slow rhs at time 0.03333333333333 for fast variables advancing from 0 to 0.05 Fast time integration at level 0 from 0 to 0.025 with dt = 0.025 Fast time integration at level 0 from 0.025 to 0.05 with dt = 0.025 Time integration of scalars at level 0 from 0 to 0.05 with dt = 0.05 using RHS created at 0.03333333333333 Making slow rhs at time 0.05 for fast variables advancing from 0 to 0.1 Fast time integration at level 0 from 0 to 0.025 with dt = 0.025 Fast time integration at level 0 from 0.025 to 0.05 with dt = 0.025 Fast time integration at level 0 from 0.05 to 0.075 with dt = 0.025 Fast time integration at level 0 from 0.075 to 0.1 with dt = 0.025 Time integration of scalars at level 0 from 0 to 0.1 with dt = 0.1 using RHS created at 0.05 Done with advance_dycore at level 0 [Level 0 step 1] Advanced 262144 cells Coarse STEP 1 ends. TIME = 0.1 DT = 0.1 Timestep time = 0.291080177 seconds. TIME= 0.1 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 2 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307003206 (terrain aware) 0.1307003206 (terrain unaware) Anelastic dt at level 0 would be: 1.584183665 (terrain aware) 1.584183665 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 2] ADVANCE from elapsed time = 0.1 to 0.2 with dt = 0.1 Making slow rhs at time 0.1 for fast variables advancing from 0.1 to 0.1333333333333 Fast time integration at level 0 from 0.1 to 0.1333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.1 to 0.1333333333333 with dt = 0.03333333333333 using RHS created at 0.1 Making slow rhs at time 0.1333333333333 for fast variables advancing from 0.1 to 0.15 Fast time integration at level 0 from 0.1 to 0.125 with dt = 0.025 Fast time integration at level 0 from 0.125 to 0.15 with dt = 0.025 Time integration of scalars at level 0 from 0.1 to 0.15 with dt = 0.05 using RHS created at 0.1333333333333 Making slow rhs at time 0.15 for fast variables advancing from 0.1 to 0.2 Fast time integration at level 0 from 0.1 to 0.125 with dt = 0.025 Fast time integration at level 0 from 0.125 to 0.15 with dt = 0.025 Fast time integration at level 0 from 0.15 to 0.175 with dt = 0.025 Fast time integration at level 0 from 0.175 to 0.2 with dt = 0.025 Time integration of scalars at level 0 from 0.1 to 0.2 with dt = 0.1 using RHS created at 0.15 Done with advance_dycore at level 0 [Level 0 step 2] Advanced 262144 cells Coarse STEP 2 ends. TIME = 0.2 DT = 0.1 Timestep time = 0.290220913 seconds. TIME= 0.2 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 3 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1306977337 (terrain aware) 0.1306977337 (terrain unaware) Anelastic dt at level 0 would be: 1.583472629 (terrain aware) 1.583472629 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 3] ADVANCE from elapsed time = 0.2 to 0.3 with dt = 0.1 Making slow rhs at time 0.2 for fast variables advancing from 0.2 to 0.2333333333333 Fast time integration at level 0 from 0.2 to 0.2333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.2 to 0.2333333333333 with dt = 0.03333333333333 using RHS created at 0.2 Making slow rhs at time 0.2333333333333 for fast variables advancing from 0.2 to 0.25 Fast time integration at level 0 from 0.2 to 0.225 with dt = 0.025 Fast time integration at level 0 from 0.225 to 0.25 with dt = 0.025 Time integration of scalars at level 0 from 0.2 to 0.25 with dt = 0.05 using RHS created at 0.2333333333333 Making slow rhs at time 0.25 for fast variables advancing from 0.2 to 0.3 Fast time integration at level 0 from 0.2 to 0.225 with dt = 0.025 Fast time integration at level 0 from 0.225 to 0.25 with dt = 0.025 Fast time integration at level 0 from 0.25 to 0.275 with dt = 0.025 Fast time integration at level 0 from 0.275 to 0.3 with dt = 0.025 Time integration of scalars at level 0 from 0.2 to 0.3 with dt = 0.1 using RHS created at 0.25 Done with advance_dycore at level 0 [Level 0 step 3] Advanced 262144 cells Coarse STEP 3 ends. TIME = 0.3 DT = 0.1 Timestep time = 0.289800353 seconds. TIME= 0.3 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 4 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.130709998 (terrain aware) 0.130709998 (terrain unaware) Anelastic dt at level 0 would be: 1.585248997 (terrain aware) 1.585248997 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 4] ADVANCE from elapsed time = 0.3 to 0.4 with dt = 0.1 Making slow rhs at time 0.3 for fast variables advancing from 0.3 to 0.3333333333333 Fast time integration at level 0 from 0.3 to 0.3333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.3 to 0.3333333333333 with dt = 0.03333333333333 using RHS created at 0.3 Making slow rhs at time 0.3333333333333 for fast variables advancing from 0.3 to 0.35 Fast time integration at level 0 from 0.3 to 0.325 with dt = 0.025 Fast time integration at level 0 from 0.325 to 0.35 with dt = 0.025 Time integration of scalars at level 0 from 0.3 to 0.35 with dt = 0.05 using RHS created at 0.3333333333333 Making slow rhs at time 0.35 for fast variables advancing from 0.3 to 0.4 Fast time integration at level 0 from 0.3 to 0.325 with dt = 0.025 Fast time integration at level 0 from 0.325 to 0.35 with dt = 0.025 Fast time integration at level 0 from 0.35 to 0.375 with dt = 0.025 Fast time integration at level 0 from 0.375 to 0.4 with dt = 0.025 Time integration of scalars at level 0 from 0.3 to 0.4 with dt = 0.1 using RHS created at 0.35 Done with advance_dycore at level 0 [Level 0 step 4] Advanced 262144 cells Coarse STEP 4 ends. TIME = 0.4 DT = 0.1 Timestep time = 0.290048317 seconds. TIME= 0.4 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 5 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307126808 (terrain aware) 0.1307126808 (terrain unaware) Anelastic dt at level 0 would be: 1.585778018 (terrain aware) 1.585778018 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 5] ADVANCE from elapsed time = 0.4 to 0.5 with dt = 0.1 Making slow rhs at time 0.4 for fast variables advancing from 0.4 to 0.4333333333333 Fast time integration at level 0 from 0.4 to 0.4333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.4 to 0.4333333333333 with dt = 0.03333333333333 using RHS created at 0.4 Making slow rhs at time 0.4333333333333 for fast variables advancing from 0.4 to 0.45 Fast time integration at level 0 from 0.4 to 0.425 with dt = 0.025 Fast time integration at level 0 from 0.425 to 0.45 with dt = 0.025 Time integration of scalars at level 0 from 0.4 to 0.45 with dt = 0.05 using RHS created at 0.4333333333333 Making slow rhs at time 0.45 for fast variables advancing from 0.4 to 0.5 Fast time integration at level 0 from 0.4 to 0.425 with dt = 0.025 Fast time integration at level 0 from 0.425 to 0.45 with dt = 0.025 Fast time integration at level 0 from 0.45 to 0.475 with dt = 0.025 Fast time integration at level 0 from 0.475 to 0.5 with dt = 0.025 Time integration of scalars at level 0 from 0.4 to 0.5 with dt = 0.1 using RHS created at 0.45 Done with advance_dycore at level 0 [Level 0 step 5] Advanced 262144 cells Coarse STEP 5 ends. TIME = 0.5 DT = 0.1 Timestep time = 0.290346551 seconds. TIME= 0.5 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 6 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307161772 (terrain aware) 0.1307161772 (terrain unaware) Anelastic dt at level 0 would be: 1.586444215 (terrain aware) 1.586444215 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 6] ADVANCE from elapsed time = 0.5 to 0.6 with dt = 0.1 Making slow rhs at time 0.5 for fast variables advancing from 0.5 to 0.5333333333333 Fast time integration at level 0 from 0.5 to 0.5333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.5 to 0.5333333333333 with dt = 0.03333333333333 using RHS created at 0.5 Making slow rhs at time 0.5333333333333 for fast variables advancing from 0.5 to 0.55 Fast time integration at level 0 from 0.5 to 0.525 with dt = 0.025 Fast time integration at level 0 from 0.525 to 0.55 with dt = 0.025 Time integration of scalars at level 0 from 0.5 to 0.55 with dt = 0.05 using RHS created at 0.5333333333333 Making slow rhs at time 0.55 for fast variables advancing from 0.5 to 0.6 Fast time integration at level 0 from 0.5 to 0.525 with dt = 0.025 Fast time integration at level 0 from 0.525 to 0.55 with dt = 0.025 Fast time integration at level 0 from 0.55 to 0.575 with dt = 0.025 Fast time integration at level 0 from 0.575 to 0.6 with dt = 0.025 Time integration of scalars at level 0 from 0.5 to 0.6 with dt = 0.1 using RHS created at 0.55 Done with advance_dycore at level 0 [Level 0 step 6] Advanced 262144 cells Coarse STEP 6 ends. TIME = 0.6 DT = 0.1 Timestep time = 0.291322535 seconds. TIME= 0.6 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 7 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.130706841 (terrain aware) 0.130706841 (terrain unaware) Anelastic dt at level 0 would be: 1.585118995 (terrain aware) 1.585118995 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 7] ADVANCE from elapsed time = 0.6 to 0.7 with dt = 0.1 Making slow rhs at time 0.6 for fast variables advancing from 0.6 to 0.6333333333333 Fast time integration at level 0 from 0.6 to 0.6333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.6 to 0.6333333333333 with dt = 0.03333333333333 using RHS created at 0.6 Making slow rhs at time 0.6333333333333 for fast variables advancing from 0.6 to 0.65 Fast time integration at level 0 from 0.6 to 0.625 with dt = 0.025 Fast time integration at level 0 from 0.625 to 0.65 with dt = 0.025 Time integration of scalars at level 0 from 0.6 to 0.65 with dt = 0.05 using RHS created at 0.6333333333333 Making slow rhs at time 0.65 for fast variables advancing from 0.6 to 0.7 Fast time integration at level 0 from 0.6 to 0.625 with dt = 0.025 Fast time integration at level 0 from 0.625 to 0.65 with dt = 0.025 Fast time integration at level 0 from 0.65 to 0.675 with dt = 0.025 Fast time integration at level 0 from 0.675 to 0.7 with dt = 0.025 Time integration of scalars at level 0 from 0.6 to 0.7 with dt = 0.1 using RHS created at 0.65 Done with advance_dycore at level 0 [Level 0 step 7] Advanced 262144 cells Coarse STEP 7 ends. TIME = 0.7 DT = 0.1 Timestep time = 0.292316725 seconds. TIME= 0.7 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 8 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307143472 (terrain aware) 0.1307143472 (terrain unaware) Anelastic dt at level 0 would be: 1.586136347 (terrain aware) 1.586136347 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 8] ADVANCE from elapsed time = 0.7 to 0.8 with dt = 0.1 Making slow rhs at time 0.7 for fast variables advancing from 0.7 to 0.7333333333333 Fast time integration at level 0 from 0.7 to 0.7333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.7 to 0.7333333333333 with dt = 0.03333333333333 using RHS created at 0.7 Making slow rhs at time 0.7333333333333 for fast variables advancing from 0.7 to 0.75 Fast time integration at level 0 from 0.7 to 0.725 with dt = 0.025 Fast time integration at level 0 from 0.725 to 0.75 with dt = 0.025 Time integration of scalars at level 0 from 0.7 to 0.75 with dt = 0.05 using RHS created at 0.7333333333333 Making slow rhs at time 0.75 for fast variables advancing from 0.7 to 0.8 Fast time integration at level 0 from 0.7 to 0.725 with dt = 0.025 Fast time integration at level 0 from 0.725 to 0.75 with dt = 0.025 Fast time integration at level 0 from 0.75 to 0.775 with dt = 0.025 Fast time integration at level 0 from 0.775 to 0.8 with dt = 0.025 Time integration of scalars at level 0 from 0.7 to 0.8 with dt = 0.1 using RHS created at 0.75 Done with advance_dycore at level 0 [Level 0 step 8] Advanced 262144 cells Coarse STEP 8 ends. TIME = 0.8 DT = 0.1 Timestep time = 0.292630819 seconds. TIME= 0.8 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 9 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307162963 (terrain aware) 0.1307162963 (terrain unaware) Anelastic dt at level 0 would be: 1.586401413 (terrain aware) 1.586401413 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 9] ADVANCE from elapsed time = 0.8 to 0.9 with dt = 0.1 Making slow rhs at time 0.8 for fast variables advancing from 0.8 to 0.8333333333333 Fast time integration at level 0 from 0.8 to 0.8333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.8 to 0.8333333333333 with dt = 0.03333333333333 using RHS created at 0.8 Making slow rhs at time 0.8333333333333 for fast variables advancing from 0.8 to 0.85 Fast time integration at level 0 from 0.8 to 0.825 with dt = 0.025 Fast time integration at level 0 from 0.825 to 0.85 with dt = 0.025 Time integration of scalars at level 0 from 0.8 to 0.85 with dt = 0.05 using RHS created at 0.8333333333333 Making slow rhs at time 0.85 for fast variables advancing from 0.8 to 0.9 Fast time integration at level 0 from 0.8 to 0.825 with dt = 0.025 Fast time integration at level 0 from 0.825 to 0.85 with dt = 0.025 Fast time integration at level 0 from 0.85 to 0.875 with dt = 0.025 Fast time integration at level 0 from 0.875 to 0.9 with dt = 0.025 Time integration of scalars at level 0 from 0.8 to 0.9 with dt = 0.1 using RHS created at 0.85 Done with advance_dycore at level 0 [Level 0 step 9] Advanced 262144 cells Coarse STEP 9 ends. TIME = 0.9 DT = 0.1 Timestep time = 0.290209833 seconds. TIME= 0.9 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Coarse STEP 10 starts ... Based on cfl of one Compressible dt at level 0 would be: 0.1307186191 (terrain aware) 0.1307186191 (terrain unaware) Anelastic dt at level 0 would be: 1.586751026 (terrain aware) 1.586751026 (terrain unaware) Fixed dt at level 0 is: 0.1 smallest even ratio is: 4 [Level 0 step 10] ADVANCE from elapsed time = 0.9 to 1 with dt = 0.1 Making slow rhs at time 0.9 for fast variables advancing from 0.9 to 0.9333333333333 Fast time integration at level 0 from 0.9 to 0.9333333333333 with dt = 0.03333333333333 Time integration of scalars at level 0 from 0.9 to 0.9333333333333 with dt = 0.03333333333333 using RHS created at 0.9 Making slow rhs at time 0.9333333333333 for fast variables advancing from 0.9 to 0.95 Fast time integration at level 0 from 0.9 to 0.925 with dt = 0.025 Fast time integration at level 0 from 0.925 to 0.95 with dt = 0.025 Time integration of scalars at level 0 from 0.9 to 0.95 with dt = 0.05 using RHS created at 0.9333333333333 Making slow rhs at time 0.95 for fast variables advancing from 0.9 to 1 Fast time integration at level 0 from 0.9 to 0.925 with dt = 0.025 Fast time integration at level 0 from 0.925 to 0.95 with dt = 0.025 Fast time integration at level 0 from 0.95 to 0.975 with dt = 0.025 Fast time integration at level 0 from 0.975 to 1 with dt = 0.025 Time integration of scalars at level 0 from 0.9 to 1 with dt = 0.1 using RHS created at 0.95 Done with advance_dycore at level 0 [Level 0 step 10] Advanced 262144 cells Coarse STEP 10 ends. TIME = 1 DT = 0.1 Timestep time = 0.289661658 seconds. TIME= 1 MASS = 1073741824 RHO THETA = 3.221225472e+11 RHO SCALAR = 0 Writing native 3D plotfile ABL-MOST-OMP_plt00010 3DPlotfile write time = 0.013959766 seconds. Writing native checkpoint ABL-MOST-OMP_chk00010 Writing SurfaceLayer variables at level 0 for face (2) Checkpoint write time = 0.015650584 seconds. Total Time: 3.15153146 Unused ParmParse Variables: [TOP]::amr.checkpoint_files_output(nvals = 1) :: [0] AMReX (26.09-159-g2c47443ff21b) finalized