Initializing AMReX (26.08-28-g19e6fba747b6)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 AMReX (26.08-28-g19e6fba747b6) initialized Successfully read inputs file ... Fixing the random seed ERF git hash: 6908a67a9 AMReX git hash: 26.08-28-g19e6fba747 Problem name (from inputs file) is: "RICO" Level 0 is land Coriolis frequency, f = 3.76e-05 1/s Thermal stratification based on gradient of potential temperature Maximum simulation length based on stop_time: 3600 s (elapsed) Adding stop time 3600 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 = 1, moisture = 1, tke = 1, momenta = 1) use_coriolis : 1 use_gravity : 1 Moisture Model: SuperDroplets 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 : Upwind_3rd moistscal_vert_adv_type : Upwind_3rd 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 : 0.17 isotropic mixing : 1 Pr_t : 0.3333333333 Sc_t : 0.3333333333 WRF lateral boundary density forcing: disabled WRF lateral boundary cloud-water/cloud-ice forcing: disabled Super-Droplets moisture model! 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) (15,15,24) (0,0,0)) ((16,0,0) (31,15,24) (0,0,0)) ((0,16,0) (15,31,24) (0,0,0)) ((16,16,0) (31,31,24) (0,0,0)) ) input_sounding file location : input_sounding Successfully opened the input_sounding file. Now reading... Successfully read the 0th input_sounding file... ideal sounding init: surface dry air density = 1.15248101072114 kg/m^3 WARNING: HSE Newton iterations did not converge to tolerance! HSE Newton tol: 1.455192e-11 1.000000e-12 WARNING: HSE Newton iterations did not converge to tolerance! HSE Newton tol: 1.455192e-11 1.000000e-12 WARNING: HSE Newton iterations did not converge to tolerance! HSE Newton tol: 1.455192e-11 1.000000e-12 WARNING: HSE Newton iterations did not converge to tolerance! HSE Newton tol: 1.455192e-11 1.000000e-12 Note: using stable Redistribute() for particle container super_droplets_moisture. SuperDropletPC(super_droplets_moisture): added 1 int-type attribute(s). SuperDropletPC(super_droplets_moisture): added 12 real-type attribute(s). Using fixed seed for SuperDropletPC random engine. SuperDropletsMoist: diagnostics_interval: 1 include cold processes: true cloud/rain radius: 4e-05 [m] kinematic mode: false dimensionality: three_d include phase change: true include particle advection: true include coalescence: true Recycle particles: false number of substeps (phase change): 1 initial phase change relaxation: false SuperDropletPC(super_droplets_moisture): Density scaling: true Nucleate particles: false Inactive particles threshold: 0.01 Recycling bounding box: [0, 12800] x [0, 12800] x [0, 4000] Advect with flow: true Advect with gravity: true Prescribed advection: false Prescribed updraft [m/s]: 0 Random initial placement: false Coalescence bin size: (1,1,1) Include Brownian coaslescence: false Coalescence kernel: Halls Kernel relative velocity: absolute_velocity Mass change time integrator: backward_euler (cfl = 1000) Ventilation factor: false Terminal velocity model(s): CloudRainShima (water), IceBohm (ice) SuperDropletPC(super_droplets_moisture) InitializeParticles at level 0: SuperDropletPC(super_droplets_moisture) Initialization: Initial number density: -1 Initial super-droplets number density: -1 Particle box: (RealBox 0 12800 0 12800 0 4000 ) Multiplicity type: sampled Particles per cell: 1 Vapour/Condensate Species material: H2O (distribution: mass_constant, value=4.1887902e-42) ice (distribution: mass_constant, value=0) Aerosols material: NH4HSO4 (distribution: mass_constant, value=2.77260785e-17) Number of physical particles per cell: 1 Number of super droplets per cell: 1 Adding particles in box with volume 6.5536e+11. Particle container size (level 0): 25600 Total number of superdroplets per cell: 1 Initialized 25600 super-droplets at level 0 in super-droplets moisture model. Based on cfl of one Compressible dt at level 0 would be: 3.210638927 (terrain aware) 3.210638927 (terrain unaware) Anelastic dt at level 0 would be: 41.06430732 (terrain aware) 41.06430732 (terrain unaware) Fixed dt at level 0 is: 2.5 smallest even ratio is: 4