Initializing AMReX (26.04-100-g9aaff4128aa5)... MPI initialized with 2 MPI processes MPI initialized with thread support level 0 OMP initialized with 2 OMP threads AMReX (26.04-100-g9aaff4128aa5) initialized Successfully read inputs file ... Using conservative advection update for tracer. Successfully read inputs file ... NavierStokesBase::init_additional_state_types()::have_divu = 0 NavierStokesBase::init_additional_state_types()::have_dsdt = 0 NavierStokesBase::init_additional_state_types: num_state_type = 3 estTimeStep :: LEV = 0 UMAX = 1 0.04993977281 0 estimated timestep: dt = 0.015625 Multiplying dt by init_shrink: dt = 0.015625 grid_places() time: 0.002223186 new finest: 1 Now regridding at level lbase = 0 grid_places() time: 0.001945964 new finest: 1 STEP = 0 TIME = 0 : REGRID with lbase = 0 Level 1 32 grids 286720 cells 13.671875 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 calling initialVelocityProject done calling initialVelocityProject estTimeStep :: LEV = 0 UMAX = 1.413884744 1.358916106 1.094692626 estimated timestep: dt = 0.01105111295 Multiplying dt by init_shrink: dt = 0.01105111295 estTimeStep :: LEV = 1 UMAX = 1.71966304 1.490634699 1.204118065 estimated timestep: dt = 0.004543041175 Multiplying dt by init_shrink: dt = 0.004543041175 post_init_press(): doing initial pressure iterations with dt = 0.004543041175 post_init_press(): iter = 0 Advancing grids at level 0 : starting time = 0 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.413884744 1.358916106 1.094692626 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.171364796 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.407989133 1.370125424 1.063106806 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 Advancing grids at level 1 : starting time = 0 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.71966304 1.490634699 1.204118065 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.53686299 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.606958999 1.496184497 1.094985102 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 After sync projection and avgDown: max(abs(u/v/w)) = 1.419000037 1.383821459 1.097603039 max(abs(gpx/gpy/gpz/p)) = 49.95673586 27.52934967 23.56950201 2.599527289 post_init_press(): iter = 1 Advancing grids at level 0 : starting time = 0 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.413884744 1.358916106 1.094692626 max(abs(gpx/gpy/gpz/p)) = 49.95673586 27.52934967 23.56950201 2.599527289 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.167325461 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 3.880000001e-07 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.40160602 1.360474196 1.166753314 max(abs(gpx/gpy/gpz/p)) = 49.95673586 27.52934967 23.56950201 2.599527289 Advancing grids at level 1 : starting time = 0 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.71966304 1.490634699 1.204118065 max(abs(gpx/gpy/gpz/p)) = 54.51358154 51.62160864 41.84755778 2.599527289 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.528366536 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.590000013e-07 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.69850031 1.503275776 1.211423099 max(abs(gpx/gpy/gpz/p)) = 54.51358154 51.62160864 41.84755778 2.599527289 After sync projection and avgDown: max(abs(u/v/w)) = 1.42565571 1.3832633 1.114571093 max(abs(gpx/gpy/gpz/p)) = 56.25917183 30.18134538 24.97234852 2.625234783 post_init_press(): exiting after 2 iterations After initial iterations: max(abs(u/v/w)) = 1.413884744 1.358916106 1.094692626 max(abs(gpx/gpy/gpz/p)) = 56.25917183 30.18134538 24.97234852 2.625234783 INITIAL GRIDS Level 0 8 grids 262144 cells 100 % of domain smallest grid: 32 x 32 x 32 biggest grid: 32 x 32 x 32 Level 1 32 grids 286720 cells 13.671875 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 PLOTFILE: file = DoubleShearLayer_plt00000 Write plotfile time = 0.031928735 seconds estTimeStep :: LEV = 0 UMAX = 1.413884744 1.358916106 1.094692626 estimated timestep: dt = 0.01105111295 Multiplying dt by init_shrink: dt = 0.01105111295 estTimeStep :: LEV = 1 UMAX = 1.71966304 1.490634699 1.204118065 estimated timestep: dt = 0.004543041175 Multiplying dt by init_shrink: dt = 0.004543041175 [Level 0 step 1] ADVANCE at time 0 with dt = 0.00908608235 Advancing grids at level 0 : starting time = 0 with dt = 0.00908608235 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.413884744 1.358916106 1.094692626 max(abs(gpx/gpy/gpz/p)) = 56.25917183 30.18134538 24.97234852 2.625234783 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.167868863 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 2.680000009e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.41754297 1.449387812 1.259818478 max(abs(gpx/gpy/gpz/p)) = 56.25917183 30.18134538 24.97234852 2.625234783 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.434848397 1.393900941 1.224072166 max(abs(gpx/gpy/gpz/p)) = 42.07560118 24.07471778 20.59994932 3.351709076 [Level 0 step 1] Advanced 262144 cells [Level 1 step 1] ADVANCE at time 0 with dt = 0.004543041175 Advancing grids at level 1 : starting time = 0 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.71966304 1.490634699 1.204118065 max(abs(gpx/gpy/gpz/p)) = 63.19960632 57.13479849 46.78870464 2.644200097 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.521936398 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.730000007e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.712538412 1.502412463 1.221983304 max(abs(gpx/gpy/gpz/p)) = 63.19960632 57.13479849 46.78870464 2.644200097 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.724113132 1.51397634 1.255291425 max(abs(gpx/gpy/gpz/p)) = 70.51753957 58.06182188 47.93406108 2.17715867 [Level 1 step 1] Advanced 286720 cells [Level 1 step 2] ADVANCE at time 0.004543041175 with dt = 0.004543041175 Advancing grids at level 1 : starting time = 0.004543041175 with dt = 0.004543041175 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.724113132 1.51397634 1.255291425 max(abs(gpx/gpy/gpz/p)) = 70.51753957 58.06182188 47.93406108 2.17715867 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.495032939 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 5.290000011e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.71798021 1.527517207 1.283613036 max(abs(gpx/gpy/gpz/p)) = 70.51753957 58.06182188 47.93406108 2.17715867 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.715320981 1.515822856 1.274384517 max(abs(gpx/gpy/gpz/p)) = 66.27270594 64.50296466 53.87246005 1.996665612 [Level 1 step 2] Advanced 286720 cells mac_sync() on level 0 [STEP 1] Coarse TimeStep time: 7.743607628 [STEP 1] FAB kilobyte spread across MPI nodes: [437452 ... 578979] STEP = 1 TIME = 0.00908608235 DT = 0.00908608235 estTimeStep :: LEV = 0 UMAX = 1.444293735 1.411794162 1.152706021 estimated timestep: dt = 0.01081843646 estTimeStep :: LEV = 1 UMAX = 1.71356846 1.515221593 1.274324161 estimated timestep: dt = 0.004559199227 Now regridding at level lbase = 0 grid_places() time: 0.002123077 new finest: 1 STEP = 1 TIME = 0.00908608235 : REGRID with lbase = 0 Level 1 32 grids 286720 cells 13.671875 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 [Level 0 step 2] ADVANCE at time 0.00908608235 with dt = 0.009062630352 Advancing grids at level 0 : starting time = 0.00908608235 with dt = 0.009062630352 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.444293735 1.411794162 1.152706021 max(abs(gpx/gpy/gpz/p)) = 60.41888218 33.87996239 28.01160601 1.840549986 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.167614695 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 2.919999993e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.401126859 1.53476437 1.332317453 max(abs(gpx/gpy/gpz/p)) = 60.41888218 33.87996239 28.01160601 1.840549986 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.448270239 1.436225524 1.257695179 max(abs(gpx/gpy/gpz/p)) = 35.05289274 23.00708136 19.32238445 2.552537005 [Level 0 step 2] Advanced 262144 cells [Level 1 step 3] ADVANCE at time 0.00908608235 with dt = 0.004531315176 Advancing grids at level 1 : starting time = 0.00908608235 with dt = 0.004531315176 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.71356846 1.515221593 1.274324161 max(abs(gpx/gpy/gpz/p)) = 66.42884117 64.52645915 53.8808912 1.995901215 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.530814137 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 5.190000003e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.708490769 1.503671985 1.285122646 max(abs(gpx/gpy/gpz/p)) = 66.42884117 64.52645915 53.8808912 1.995901215 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.70618043 1.504314074 1.286290674 max(abs(gpx/gpy/gpz/p)) = 62.39127684 65.5019409 54.600846 1.641282456 [Level 1 step 3] Advanced 286720 cells [Level 1 step 4] ADVANCE at time 0.01361739753 with dt = 0.004531315176 Advancing grids at level 1 : starting time = 0.01361739753 with dt = 0.004531315176 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.70618043 1.504314074 1.286290674 max(abs(gpx/gpy/gpz/p)) = 62.39127684 65.5019409 54.600846 1.641282456 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.53305168 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.649999982e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.700488567 1.48263095 1.292457446 max(abs(gpx/gpy/gpz/p)) = 62.39127684 65.5019409 54.600846 1.641282456 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.696883533 1.484183768 1.293395532 max(abs(gpx/gpy/gpz/p)) = 58.80642989 65.1008966 53.79880318 1.572528007 [Level 1 step 4] Advanced 286720 cells mac_sync() on level 0 [STEP 2] Coarse TimeStep time: 8.048083597 [STEP 2] FAB kilobyte spread across MPI nodes: [437452 ... 578979] STEP = 2 TIME = 0.0181487127 DT = 0.009062630352 estTimeStep :: LEV = 0 UMAX = 1.445071127 1.427690145 1.171690786 estimated timestep: dt = 0.01081261656 estTimeStep :: LEV = 1 UMAX = 1.695010201 1.483526956 1.293106627 estimated timestep: dt = 0.004609116803 Now regridding at level lbase = 0 grid_places() time: 0.00218322 new finest: 1 STEP = 2 TIME = 0.0181487127 : REGRID with lbase = 0 Level 1 29 grids 288768 cells 13.76953125 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 [Level 0 step 3] ADVANCE at time 0.0181487127 with dt = 0.009118398455 Advancing grids at level 0 : starting time = 0.0181487127 with dt = 0.009118398455 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.445071127 1.427690145 1.171690786 max(abs(gpx/gpy/gpz/p)) = 51.78129088 34.4029677 27.76227225 1.532793987 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.167678993 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 2.620000004e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.388116979 1.560642445 1.349763528 max(abs(gpx/gpy/gpz/p)) = 51.78129088 34.4029677 27.76227225 1.532793987 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.447564237 1.45799628 1.273867406 max(abs(gpx/gpy/gpz/p)) = 34.3085853 23.67067961 19.45164802 2.891468692 [Level 0 step 3] Advanced 262144 cells [Level 1 step 5] ADVANCE at time 0.0181487127 with dt = 0.004559199227 Advancing grids at level 1 : starting time = 0.0181487127 with dt = 0.004559199227 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.695010201 1.483526956 1.293106627 max(abs(gpx/gpy/gpz/p)) = 58.96594356 65.13302706 53.80752793 1.566351521 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.326266024 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.670000019e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.687530509 1.472503728 1.296521103 max(abs(gpx/gpy/gpz/p)) = 58.96594356 65.13302706 53.80752793 1.566351521 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.684340508 1.477632352 1.296115502 max(abs(gpx/gpy/gpz/p)) = 55.70436736 64.19964174 52.65115729 1.914097715 [Level 1 step 5] Advanced 288768 cells [Level 1 step 6] ADVANCE at time 0.02270791193 with dt = 0.004559199227 Advancing grids at level 1 : starting time = 0.02270791193 with dt = 0.004559199227 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.684340508 1.477632352 1.296115502 max(abs(gpx/gpy/gpz/p)) = 55.70436736 64.19964174 52.65115729 1.914097715 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.315719136 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 4.269999998e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.67712573 1.475561819 1.297330196 max(abs(gpx/gpy/gpz/p)) = 55.70436736 64.19964174 52.65115729 1.914097715 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.673285347 1.478806689 1.296898289 max(abs(gpx/gpy/gpz/p)) = 53.23226492 63.43711077 51.68447184 1.903335856 [Level 1 step 6] Advanced 288768 cells mac_sync() on level 0 [STEP 3] Coarse TimeStep time: 6.99396344 [STEP 3] FAB kilobyte spread across MPI nodes: [525915 ... 578979] STEP = 3 TIME = 0.02726711116 DT = 0.009118398455 estTimeStep :: LEV = 0 UMAX = 1.438184433 1.416323485 1.178290138 estimated timestep: dt = 0.01086439238 estTimeStep :: LEV = 1 UMAX = 1.671371186 1.478128342 1.296633443 estimated timestep: dt = 0.004674305783 Now regridding at level lbase = 0 grid_places() time: 0.009711436 new finest: 1 STEP = 3 TIME = 0.02726711116 : REGRID with lbase = 0 Level 1 30 grids 280064 cells 13.35449219 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 [Level 0 step 4] ADVANCE at time 0.02726711116 with dt = 0.009218233605 Advancing grids at level 0 : starting time = 0.02726711116 with dt = 0.009218233605 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.438184433 1.416323485 1.178290138 max(abs(gpx/gpy/gpz/p)) = 45.83505346 34.28835505 27.57887522 1.918370073 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.16805204 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 3.269999951e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.383698038 1.569316623 1.354703645 max(abs(gpx/gpy/gpz/p)) = 45.83505346 34.28835505 27.57887522 1.918370073 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.440579083 1.467010049 1.279376021 max(abs(gpx/gpy/gpz/p)) = 33.70359595 23.91440035 19.46378263 2.549292606 [Level 0 step 4] Advanced 262144 cells [Level 1 step 7] ADVANCE at time 0.02726711116 with dt = 0.004609116803 Advancing grids at level 1 : starting time = 0.02726711116 with dt = 0.004609116803 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.671371186 1.478128342 1.296633443 max(abs(gpx/gpy/gpz/p)) = 53.24270641 63.46999276 51.69319975 1.912989144 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.40752446 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.359999994e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.66277828 1.475400436 1.296766701 max(abs(gpx/gpy/gpz/p)) = 53.24270641 63.46999276 51.69319975 1.912989144 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.659814089 1.474729574 1.295937368 max(abs(gpx/gpy/gpz/p)) = 52.9354728 62.67884972 50.70346873 1.577781708 [Level 1 step 7] Advanced 280064 cells [Level 1 step 8] ADVANCE at time 0.03187622796 with dt = 0.004609116803 Advancing grids at level 1 : starting time = 0.03187622796 with dt = 0.004609116803 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.659814089 1.474729574 1.295937368 max(abs(gpx/gpy/gpz/p)) = 52.9354728 62.67884972 50.70346873 1.577781708 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.398205172 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.589999977e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.652214524 1.475271327 1.295406985 max(abs(gpx/gpy/gpz/p)) = 52.9354728 62.67884972 50.70346873 1.577781708 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.648350124 1.475090398 1.295016886 max(abs(gpx/gpy/gpz/p)) = 52.76836251 62.29280907 50.13477867 1.571349402 [Level 1 step 8] Advanced 280064 cells mac_sync() on level 0 [STEP 4] Coarse TimeStep time: 7.223964072 [STEP 4] FAB kilobyte spread across MPI nodes: [525915 ... 578979] STEP = 4 TIME = 0.03648534476 DT = 0.009218233605 estTimeStep :: LEV = 0 UMAX = 1.428098048 1.380279074 1.179863313 estimated timestep: dt = 0.01094112552 estTimeStep :: LEV = 1 UMAX = 1.64637953 1.47466543 1.294753838 estimated timestep: dt = 0.004745260652 Now regridding at level lbase = 0 grid_places() time: 0.002312325 new finest: 1 STEP = 4 TIME = 0.03648534476 : REGRID with lbase = 0 Level 1 34 grids 275968 cells 13.15917969 % of domain smallest grid: 8 x 8 x 8 biggest grid: 32 x 32 x 32 [Level 0 step 5] ADVANCE at time 0.03648534476 with dt = 0.009348611567 Advancing grids at level 0 : starting time = 0.03648534476 with dt = 0.009348611567 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.428098048 1.380279074 1.179863313 max(abs(gpx/gpy/gpz/p)) = 40.37675041 34.12036295 27.3568164 1.533743177 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.167395325 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 3.139999976e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.375186605 1.573694255 1.356045078 max(abs(gpx/gpy/gpz/p)) = 40.37675041 34.12036295 27.3568164 1.533743177 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.430568991 1.470914466 1.280588777 max(abs(gpx/gpy/gpz/p)) = 32.83629507 23.5409333 19.38120991 2.512166269 [Level 0 step 5] Advanced 262144 cells [Level 1 step 9] ADVANCE at time 0.03648534476 with dt = 0.004674305783 Advancing grids at level 1 : starting time = 0.03648534476 with dt = 0.004674305783 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.64637953 1.47466543 1.294753838 max(abs(gpx/gpy/gpz/p)) = 52.71521507 62.32795867 50.15412051 1.530527024 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.411076308 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 4.760000039e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.637369981 1.475080617 1.294090322 max(abs(gpx/gpy/gpz/p)) = 52.71521507 62.32795867 50.15412051 1.530527024 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.634275867 1.474443257 1.293309457 max(abs(gpx/gpy/gpz/p)) = 52.54006881 61.90709446 49.61663564 1.118401898 [Level 1 step 9] Advanced 275968 cells [Level 1 step 10] ADVANCE at time 0.04115965055 with dt = 0.004674305783 Advancing grids at level 1 : starting time = 0.04115965055 with dt = 0.004674305783 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.634275867 1.474443257 1.293309457 max(abs(gpx/gpy/gpz/p)) = 52.54006881 61.90709446 49.61663564 1.118401898 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.401072206 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 3.699999951e-07 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.625860115 1.474413178 1.292379363 max(abs(gpx/gpy/gpz/p)) = 52.54006881 61.90709446 49.61663564 1.118401898 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.622022261 1.474300841 1.292063449 max(abs(gpx/gpy/gpz/p)) = 52.38575113 61.90490395 49.41281774 1.11461713 [Level 1 step 10] Advanced 275968 cells mac_sync() on level 0 [STEP 5] Coarse TimeStep time: 7.715939671 [STEP 5] FAB kilobyte spread across MPI nodes: [540798 ... 578979] STEP = 5 TIME = 0.04583395633 DT = 0.009348611567 PLOTFILE: file = DoubleShearLayer_plt00005 Write plotfile time = 0.028428661 seconds Run time = 49.28261592 AMReX (26.04-100-g9aaff4128aa5) finalized