Initializing AMReX (26.09-13-gb105892be1b2)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 AMReX (26.09-13-gb105892be1b2) initialized Successfully read inputs file ... 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 = 0.9856236289 0.9856236289 0 estimated timestep: dt = 0.02219407019 Multiplying dt by init_shrink: dt = 0.02219407019 grid_places() time: 0.001234966 new finest: 1 Now regridding at level lbase = 0 grid_places() time: 0.000932519 new finest: 1 STEP = 0 TIME = 0 : REGRID with lbase = 0 Level 1 32 grids 139264 cells 53.125 % of domain smallest grid: 16 x 16 x 8 biggest grid: 24 x 24 x 16 calling initialVelocityProject done calling initialVelocityProject estTimeStep :: LEV = 0 UMAX = 0.9823166801 0.9823166858 0.001347407296 estimated timestep: dt = 0.02226878594 Multiplying dt by init_shrink: dt = 0.02226878594 estTimeStep :: LEV = 1 UMAX = 0.996640903 0.9966409087 0.001453837992 estimated timestep: dt = 0.01097436389 Multiplying dt by init_shrink: dt = 0.01097436389 post_init_press(): doing initial pressure iterations with dt = 0.01097436389 post_init_press(): iter = 0 Advancing grids at level 0 : starting time = 0 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9823166801 0.9823166858 0.001347407296 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.011981319 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9821773554 0.9821773677 0.001336946401 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 Advancing grids at level 1 : starting time = 0 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.996640903 0.9966409087 0.001453837992 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.07948948 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9965080818 0.9965080738 0.001288794284 max(abs(gpx/gpy/gpz/p)) = 0 0 0 0 After sync projection and avgDown: max(abs(u/v/w)) = 0.9827405501 0.9827407404 0.01653502406 max(abs(gpx/gpy/gpz/p)) = 2.334577224 2.334579208 1.506691264 0.3855156127 post_init_press(): iter = 1 Advancing grids at level 0 : starting time = 0 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9823166801 0.9823166858 0.001347407296 max(abs(gpx/gpy/gpz/p)) = 2.334577224 2.334579208 1.506691264 0.3855156127 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.01068885 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.012180591 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9832920256 0.9832897405 0.01649294502 max(abs(gpx/gpy/gpz/p)) = 2.334577224 2.334579208 1.506691264 0.3855156127 Advancing grids at level 1 : starting time = 0 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.996640903 0.9966409087 0.001453837992 max(abs(gpx/gpy/gpz/p)) = 2.395591395 2.395813438 1.565974379 0.3855156127 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.071033982 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.09155124 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9974419652 0.9974418912 0.01717120453 max(abs(gpx/gpy/gpz/p)) = 2.395591395 2.395813438 1.565974379 0.3855156127 After sync projection and avgDown: max(abs(u/v/w)) = 0.9834686371 0.9834684325 0.01653696811 max(abs(gpx/gpy/gpz/p)) = 2.299728368 2.299706706 1.509656083 0.3878271216 post_init_press(): exiting after 2 iterations After initial iterations: max(abs(u/v/w)) = 0.9823166801 0.9823166858 0.001347407296 max(abs(gpx/gpy/gpz/p)) = 2.299728368 2.299706706 1.509656083 0.3878271216 INITIAL GRIDS Level 0 4 grids 32768 cells 100 % of domain smallest grid: 32 x 16 x 16 biggest grid: 32 x 16 x 16 Level 1 32 grids 139264 cells 53.125 % of domain smallest grid: 16 x 16 x 8 biggest grid: 24 x 24 x 16 PLOTFILE: file = TaylorGreen_plt00000 Write plotfile time = 0.006515702 seconds estTimeStep :: LEV = 0 UMAX = 0.9823166801 0.9823166858 0.001347407296 estimated timestep: dt = 0.02226878594 Multiplying dt by init_shrink: dt = 0.02226878594 estTimeStep :: LEV = 1 UMAX = 0.996640903 0.9966409087 0.001453837992 estimated timestep: dt = 0.01097436389 Multiplying dt by init_shrink: dt = 0.01097436389 [Level 0 step 1] ADVANCE at time 0 with dt = 0.02194872778 Advancing grids at level 0 : starting time = 0 with dt = 0.02194872778 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9823166801 0.9823166858 0.001347407296 max(abs(gpx/gpy/gpz/p)) = 2.299728368 2.299706706 1.509656083 0.3878271216 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.011592216 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.012535559 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9794730446 0.9794700613 0.0330138728 max(abs(gpx/gpy/gpz/p)) = 2.299728368 2.299706706 1.509656083 0.3878271216 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9839457002 0.9839421931 0.03240999662 max(abs(gpx/gpy/gpz/p)) = 2.32446236 2.324527637 1.480632518 0.3837246627 [Level 0 step 1] Advanced 32768 cells [Level 1 step 1] ADVANCE at time 0 with dt = 0.01097436389 Advancing grids at level 1 : starting time = 0 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.996640903 0.9966409087 0.001453837992 max(abs(gpx/gpy/gpz/p)) = 2.461037386 2.462759279 1.567729061 0.3878271216 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.071067778 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.088371518 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9967149256 0.9967150698 0.01719086671 max(abs(gpx/gpy/gpz/p)) = 2.461037386 2.462759279 1.567729061 0.3878271216 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9971201517 0.9971197743 0.0175266195 max(abs(gpx/gpy/gpz/p)) = 2.425957421 2.426116898 1.598320801 0.3842112139 [Level 1 step 1] Advanced 139264 cells [Level 1 step 2] ADVANCE at time 0.01097436389 with dt = 0.01097436389 Advancing grids at level 1 : starting time = 0.01097436389 with dt = 0.01097436389 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9971201517 0.9971197743 0.0175266195 max(abs(gpx/gpy/gpz/p)) = 2.425957421 2.426116898 1.598320801 0.3842112139 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.071063024 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.088437183 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9966095046 0.9966087758 0.03502363779 max(abs(gpx/gpy/gpz/p)) = 2.425957421 2.426116898 1.598320801 0.3842112139 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9966768541 0.9966761413 0.03511120169 max(abs(gpx/gpy/gpz/p)) = 2.385093623 2.385160822 1.606367534 0.3833697786 [Level 1 step 2] Advanced 139264 cells mac_sync() on level 0 [STEP 1] Coarse TimeStep time: 1.249763183 [STEP 1] FAB kilobyte spread across MPI nodes: [34332 ... 44324] STEP = 1 TIME = 0.02194872778 DT = 0.02194872778 estTimeStep :: LEV = 0 UMAX = 0.9838693707 0.9838685048 0.03322336447 estimated timestep: dt = 0.02223364265 estTimeStep :: LEV = 1 UMAX = 0.9965278895 0.996526908 0.0346431895 estimated timestep: dt = 0.01097560853 [Level 0 step 2] ADVANCE at time 0.02194872778 with dt = 0.02193817863 Advancing grids at level 0 : starting time = 0.02194872778 with dt = 0.02193817863 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9838693707 0.9838685048 0.03322336447 max(abs(gpx/gpy/gpz/p)) = 2.313613273 2.313707426 1.521358671 0.3838688319 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.010781889 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.012461075 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9782913134 0.9782908919 0.06618794026 max(abs(gpx/gpy/gpz/p)) = 2.313613273 2.313707426 1.521358671 0.3838688319 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.982619475 0.9826204948 0.06526271609 max(abs(gpx/gpy/gpz/p)) = 2.363078108 2.36301188 1.500628001 0.3796485857 [Level 0 step 2] Advanced 32768 cells [Level 1 step 3] ADVANCE at time 0.02194872778 with dt = 0.01096908931 Advancing grids at level 1 : starting time = 0.02194872778 with dt = 0.01096908931 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9965278895 0.996526908 0.0346431895 max(abs(gpx/gpy/gpz/p)) = 2.403621988 2.40357206 1.584888828 0.3834481143 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.071628476 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.088349403 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9953534627 0.995352005 0.05196584764 max(abs(gpx/gpy/gpz/p)) = 2.403621988 2.40357206 1.584888828 0.3834481143 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9955158944 0.9955154056 0.05211145111 max(abs(gpx/gpy/gpz/p)) = 2.398548199 2.398539977 1.598162807 0.3812155633 [Level 1 step 3] Advanced 139264 cells [Level 1 step 4] ADVANCE at time 0.03291781709 with dt = 0.01096908931 Advancing grids at level 1 : starting time = 0.03291781709 with dt = 0.01096908931 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 0.9955158944 0.9955154056 0.05211145111 max(abs(gpx/gpy/gpz/p)) = 2.398548199 2.398539977 1.598162807 0.3812155633 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.07103753 ... advect velocities ... advect scalars ... update scalars ... update scalars ... update velocities NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.088685849 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9939428424 0.9939439352 0.06954567165 max(abs(gpx/gpy/gpz/p)) = 2.398548199 2.398539977 1.598162807 0.3812155633 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 0.9936335281 0.9936346021 0.06969460778 max(abs(gpx/gpy/gpz/p)) = 2.412031005 2.41208214 1.611784114 0.3774398729 [Level 1 step 4] Advanced 139264 cells mac_sync() on level 0 [STEP 2] Coarse TimeStep time: 1.25613851 [STEP 2] FAB kilobyte spread across MPI nodes: [34332 ... 44324] STEP = 2 TIME = 0.04388690641 DT = 0.02193817863 PLOTFILE: file = TaylorGreen_plt00002 Write plotfile time = 0.006382962 seconds Run time = 4.090008775 AMReX (26.09-13-gb105892be1b2) finalized