Initializing AMReX (26.09-13-gb105892be1b2)... MPI initialized with 2 MPI processes MPI initialized with thread support level 0 OMP initialized with 2 OMP threads AMReX (26.09-13-gb105892be1b2) initialized Using default ref_ratio = 2 at all levels Successfully read inputs file ... xlo set to mass inflow. xhi set to pressure outflow. ylo set to no-slip wall. yhi set to no-slip wall. 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 0 estimated timestep: dt = 0.01875 Multiplying dt by init_shrink: dt = 0.005625 grid_places() time: 0.00039999 new finest: 1 grid_places() time: 0.000237591 new finest: 2 Now regridding at level lbase = 0 grid_places() time: 0.000429172 new finest: 2 STEP = 0 TIME = 0 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 calling initialVelocityProject done calling initialVelocityProject calling initialPressureProject done calling initialPressureProject estTimeStep :: LEV = 0 UMAX = 1 0 0 estimated timestep: dt = 0.01875 Multiplying dt by init_shrink: dt = 0.005625 estTimeStep :: LEV = 1 UMAX = 1 0 0 estimated timestep: dt = 0.009375 Multiplying dt by init_shrink: dt = 0.0028125 estTimeStep :: LEV = 2 UMAX = 1 0 0 estimated timestep: dt = 0.0046875 Multiplying dt by init_shrink: dt = 0.00140625 post_init_press(): doing initial pressure iterations with dt = 0.00140625 post_init_press(): iter = 0 Advancing grids at level 0 : starting time = 0 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 3.981356914e-07 1.038246946e-06 1.000001188 1 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.007406561 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.000000001 1.437583855e-09 1.652879486e-09 max(abs(gpx/gpy/gpz/p)) = 3.981356914e-07 1.038246946e-06 1.000001188 1 Advancing grids at level 1 : starting time = 0 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 2.146928374e-06 1.019365658e-05 1.000007337 0.7500000002 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.006071018 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.000000003 1.392828748e-08 1.007327091e-08 max(abs(gpx/gpy/gpz/p)) = 2.146928374e-06 1.019365658e-05 1.000007337 0.7500000002 Advancing grids at level 2 : starting time = 0 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 4.607698489e-05 2.709468543e-05 1.000013559 0.6249999996 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.009590832 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.000000059 3.810189772e-08 1.906748241e-08 max(abs(gpx/gpy/gpz/p)) = 4.607698489e-05 2.709468543e-05 1.000013559 0.6249999996 After sync projection and avgDown: max(abs(u/v/w)) = 1.000000001 1.351481395e-09 1.376973005e-09 max(abs(gpx/gpy/gpz/p)) = 4.301327101e-07 9.66878148e-07 1.000000977 1 post_init_press(): exiting after 1 iterations After initial iterations: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 4.301327101e-07 9.66878148e-07 1.000000977 1 INITIAL GRIDS Level 0 2 grids 8192 cells 100 % of domain smallest grid: 16 x 16 x 16 biggest grid: 16 x 16 x 16 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 PLOTFILE: file = Poiseuille_plt00000 Write plotfile time = 0.009330792 seconds estTimeStep :: LEV = 0 UMAX = 1 0 0 estimated timestep: dt = 0.01875 Multiplying dt by init_shrink: dt = 0.005625 estTimeStep :: LEV = 1 UMAX = 1 0 0 estimated timestep: dt = 0.009375 Multiplying dt by init_shrink: dt = 0.0028125 estTimeStep :: LEV = 2 UMAX = 1 0 0 estimated timestep: dt = 0.0046875 Multiplying dt by init_shrink: dt = 0.00140625 [Level 0 step 1] ADVANCE at time 0 with dt = 0.005625 Advancing grids at level 0 : starting time = 0 with dt = 0.005625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 4.301327101e-07 9.66878148e-07 1.000000977 1 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.007074937 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.017924512 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 0.9995863598 0.126735504 4.445683984e-10 max(abs(gpx/gpy/gpz/p)) = 4.301327101e-07 9.66878148e-07 1.000000977 1 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.13541465 0.2424780624 4.399494781e-09 max(abs(gpx/gpy/gpz/p)) = 40.87110607 35.36620507 1.000000116 53.91247744 [Level 0 step 1] Advanced 8192 cells [Level 1 step 1] ADVANCE at time 0 with dt = 0.0028125 Advancing grids at level 1 : starting time = 0 with dt = 0.0028125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 2.679830117e-06 9.787927732e-06 1.00000568 0.7500000003 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.006696067 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.013239179 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.043539033 0.03789502288 0.0007478228262 max(abs(gpx/gpy/gpz/p)) = 2.679830117e-06 9.787927732e-06 1.00000568 0.7500000003 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.108423623 0.0892337327 0.008316170896 max(abs(gpx/gpy/gpz/p)) = 24.43110159 19.38067466 3.751617567 46.47793569 [Level 1 step 1] Advanced 4096 cells [Level 2 step 1] ADVANCE at time 0 with dt = 0.00140625 Advancing grids at level 2 : starting time = 0 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1 0 0 max(abs(gpx/gpy/gpz/p)) = 3.950262281e-05 2.799664512e-05 1.000011767 0.6249999996 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.009692159 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.02105701 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.032019185 0.01243164524 0.001285474689 max(abs(gpx/gpy/gpz/p)) = 3.950262281e-05 2.799664512e-05 1.000011767 0.6249999996 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.06365275 0.0247068316 0.005156263205 max(abs(gpx/gpy/gpz/p)) = 22.65421354 9.10893532 3.912250488 44.34955306 [Level 2 step 1] Advanced 6144 cells [Level 2 step 2] ADVANCE at time 0.00140625 with dt = 0.00140625 Advancing grids at level 2 : starting time = 0.00140625 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.06365275 0.0247068316 0.005156263205 max(abs(gpx/gpy/gpz/p)) = 22.65421354 9.10893532 3.912250488 44.34955306 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.012271362 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021228698 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.075448954 0.03053741381 0.003013520685 max(abs(gpx/gpy/gpz/p)) = 22.65421354 9.10893532 3.912250488 44.34955306 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.076289735 0.03264015876 0.005918941301 max(abs(gpx/gpy/gpz/p)) = 22.70400153 11.42755051 4.924215569 44.34955306 [Level 2 step 2] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000263973 new finest: 2 TIME = 0.0028125 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 2] ADVANCE at time 0.0028125 with dt = 0.0028125 Advancing grids at level 1 : starting time = 0.0028125 with dt = 0.0028125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.108406981 0.08913641325 0.00846661654 max(abs(gpx/gpy/gpz/p)) = 24.44052159 19.36639107 3.799717611 46.47793569 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009137811 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014664756 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.135793652 0.1062738543 0.004757168178 max(abs(gpx/gpy/gpz/p)) = 24.44052159 19.36639107 3.799717611 46.47793569 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.138789545 0.11323868 0.02140308662 max(abs(gpx/gpy/gpz/p)) = 24.29369413 23.4436425 9.161302257 46.47793569 [Level 1 step 2] Advanced 4096 cells [Level 2 step 3] ADVANCE at time 0.0028125 with dt = 0.00140625 Advancing grids at level 2 : starting time = 0.0028125 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.072790102 0.02974391356 0.003795125292 max(abs(gpx/gpy/gpz/p)) = 22.33437523 12.40729236 4.173725655 44.33274096 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.012441257 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020746362 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.099282996 0.03916929579 0.004262568821 max(abs(gpx/gpy/gpz/p)) = 22.33437523 12.40729236 4.173725655 44.33274096 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.097392377 0.04011409787 0.004864640664 max(abs(gpx/gpy/gpz/p)) = 20.98270368 13.46745754 5.121519935 43.7818339 [Level 2 step 3] Advanced 6144 cells [Level 2 step 4] ADVANCE at time 0.00421875 with dt = 0.00140625 Advancing grids at level 2 : starting time = 0.00421875 with dt = 0.00140625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.097392377 0.04011409787 0.004864640664 max(abs(gpx/gpy/gpz/p)) = 20.98270368 13.46745754 5.121519935 43.7818339 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.01234159 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020787425 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.125951945 0.04965740812 0.007034079432 max(abs(gpx/gpy/gpz/p)) = 20.98270368 13.46745754 5.121519935 43.7818339 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.125961889 0.0500766526 0.008583691 max(abs(gpx/gpy/gpz/p)) = 20.99578153 15.63164343 7.217603581 43.7818339 [Level 2 step 4] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 1] Coarse TimeStep time: 0.644886444 [STEP 1] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 1 TIME = 0.005625 DT = 0.005625 estTimeStep :: LEV = 0 UMAX = 1.13541476 0.2436300042 0.009677941554 estimated timestep: dt = 0.01644584424 estTimeStep :: LEV = 1 UMAX = 1.12859894 0.1125590561 0.01103259958 estimated timestep: dt = 0.008306759528 estTimeStep :: LEV = 2 UMAX = 1.118965252 0.05054044641 0.005014166265 estimated timestep: dt = 0.004189138127 Now regridding at level lbase = 0 grid_places() time: 0.000339706 new finest: 2 STEP = 1 TIME = 0.005625 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 2] ADVANCE at time 0.005625 with dt = 0.0061875 Advancing grids at level 0 : starting time = 0.005625 with dt = 0.0061875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.13541476 0.2436300042 0.009677941554 max(abs(gpx/gpy/gpz/p)) = 41.59490888 35.58273727 6.314691107 54.10251478 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013306237 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.017822158 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.275389938 0.1628878256 0.01100841789 max(abs(gpx/gpy/gpz/p)) = 41.59490888 35.58273727 6.314691107 54.10251478 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.250782884 0.2884466642 0.003675122073 max(abs(gpx/gpy/gpz/p)) = 64.18993044 60.30276161 4.582633807 52.49056461 [Level 0 step 2] Advanced 8192 cells [Level 1 step 3] ADVANCE at time 0.005625 with dt = 0.00309375 Advancing grids at level 1 : starting time = 0.005625 with dt = 0.00309375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.12859894 0.1125590561 0.01103259958 max(abs(gpx/gpy/gpz/p)) = 24.14052858 26.87924827 7.404659758 46.70371914 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.0088774 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014683824 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.182075378 0.1361157042 0.009661966487 max(abs(gpx/gpy/gpz/p)) = 24.14052858 26.87924827 7.404659758 46.70371914 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.178511136 0.1580343378 0.004444342197 max(abs(gpx/gpy/gpz/p)) = 21.66822222 34.15803121 5.922671004 40.31586816 [Level 1 step 3] Advanced 4096 cells [Level 2 step 5] ADVANCE at time 0.005625 with dt = 0.001546875 Advancing grids at level 2 : starting time = 0.005625 with dt = 0.001546875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.118965252 0.05054044641 0.005014166265 max(abs(gpx/gpy/gpz/p)) = 20.30542498 16.510569 6.631772167 43.79049682 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.012951434 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020857867 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.141652093 0.06114754403 0.004269621521 max(abs(gpx/gpy/gpz/p)) = 20.30542498 16.510569 6.631772167 43.79049682 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.137802136 0.06364494212 0.001828639827 max(abs(gpx/gpy/gpz/p)) = 17.64226463 17.32798639 5.246903224 36.67491265 [Level 2 step 5] Advanced 6144 cells [Level 2 step 6] ADVANCE at time 0.007171875 with dt = 0.001546875 Advancing grids at level 2 : starting time = 0.007171875 with dt = 0.001546875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.137802136 0.06364494212 0.001828639827 max(abs(gpx/gpy/gpz/p)) = 17.64226463 17.32798639 5.246903224 36.67491265 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013281263 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020790108 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.162682565 0.07302581517 0.00231819589 max(abs(gpx/gpy/gpz/p)) = 17.64226463 17.32798639 5.246903224 36.67491265 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.162673108 0.07294908029 0.002686908452 max(abs(gpx/gpy/gpz/p)) = 17.64492657 18.75397131 6.711175614 36.67491265 [Level 2 step 6] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.00026204 new finest: 2 TIME = 0.00871875 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 4] ADVANCE at time 0.00871875 with dt = 0.00309375 Advancing grids at level 1 : starting time = 0.00871875 with dt = 0.00309375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.179087236 0.1580292135 0.004799972159 max(abs(gpx/gpy/gpz/p)) = 21.67029892 34.0271577 6.22661496 40.31586816 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.00927695 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014709031 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.230445004 0.1779753128 0.004749442936 max(abs(gpx/gpy/gpz/p)) = 21.67029892 34.0271577 6.22661496 40.31586816 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.230636938 0.1832395018 0.01316549483 max(abs(gpx/gpy/gpz/p)) = 21.65259907 38.28879638 9.596321572 40.31586816 [Level 1 step 4] Advanced 4096 cells [Level 2 step 7] ADVANCE at time 0.00871875 with dt = 0.001546875 Advancing grids at level 2 : starting time = 0.00871875 with dt = 0.001546875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.163590187 0.07263824024 0.002907880715 max(abs(gpx/gpy/gpz/p)) = 17.7483291 19.20704828 5.989371383 36.67861874 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013253769 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020896239 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.185030359 0.08112021742 0.003646841751 max(abs(gpx/gpy/gpz/p)) = 17.7483291 19.20704828 5.989371383 36.67861874 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.185134957 0.08127623995 0.00387184408 max(abs(gpx/gpy/gpz/p)) = 17.68243073 18.77150717 6.299653809 36.47485033 [Level 2 step 7] Advanced 6144 cells [Level 2 step 8] ADVANCE at time 0.010265625 with dt = 0.001546875 Advancing grids at level 2 : starting time = 0.010265625 with dt = 0.001546875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.185134957 0.08127623995 0.00387184408 max(abs(gpx/gpy/gpz/p)) = 17.68243073 18.77150717 6.299653809 36.47485033 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013243874 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021028833 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.206674838 0.0896290954 0.004721434474 max(abs(gpx/gpy/gpz/p)) = 17.68243073 18.77150717 6.299653809 36.47485033 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.206675137 0.08950501708 0.004970704005 max(abs(gpx/gpy/gpz/p)) = 17.68273285 20.32833104 7.21512286 36.47485033 [Level 2 step 8] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 2] Coarse TimeStep time: 0.670541634 [STEP 2] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 2 TIME = 0.0118125 DT = 0.0061875 estTimeStep :: LEV = 0 UMAX = 1.250783447 0.2893183742 0.006551902715 estimated timestep: dt = 0.01319454029 estTimeStep :: LEV = 1 UMAX = 1.232842128 0.1806166379 0.006766836289 estimated timestep: dt = 0.007604379981 estTimeStep :: LEV = 2 UMAX = 1.208104358 0.09043675715 0.003121607881 estimated timestep: dt = 0.003880045601 Now regridding at level lbase = 0 grid_places() time: 0.000567408 new finest: 2 STEP = 2 TIME = 0.0118125 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 3] ADVANCE at time 0.0118125 with dt = 0.00680625 Advancing grids at level 0 : starting time = 0.0118125 with dt = 0.00680625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.250783447 0.2893183742 0.006551902715 max(abs(gpx/gpy/gpz/p)) = 64.61955977 60.44723388 6.471746465 52.48592213 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013493523 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.018000812 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.36325016 0.2397078089 0.007204772887 max(abs(gpx/gpy/gpz/p)) = 64.61955977 60.44723388 6.471746465 52.48592213 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.333374024 0.2865512006 0.004903661625 max(abs(gpx/gpy/gpz/p)) = 81.18199666 76.74903178 4.904285549 47.71124799 [Level 0 step 3] Advanced 8192 cells [Level 1 step 5] ADVANCE at time 0.0118125 with dt = 0.003403125 Advancing grids at level 1 : starting time = 0.0118125 with dt = 0.003403125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.232842128 0.1806166379 0.006766836289 max(abs(gpx/gpy/gpz/p)) = 21.59816143 40.63397126 8.25268381 40.3989279 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.00913682 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014758226 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.276553478 0.2012011965 0.006921428241 max(abs(gpx/gpy/gpz/p)) = 21.59816143 40.63397126 8.25268381 40.3989279 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.269592245 0.2055862173 0.004182690664 max(abs(gpx/gpy/gpz/p)) = 18.67005897 43.3009305 7.727313229 32.5763808 [Level 1 step 5] Advanced 4096 cells [Level 2 step 9] ADVANCE at time 0.0118125 with dt = 0.0017015625 Advancing grids at level 2 : starting time = 0.0118125 with dt = 0.0017015625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.208104358 0.09043675715 0.003121607881 max(abs(gpx/gpy/gpz/p)) = 17.70396567 20.78265617 6.748570437 36.41120128 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013201912 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020896751 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.225748649 0.09749028096 0.002833970665 max(abs(gpx/gpy/gpz/p)) = 17.70396567 20.78265617 6.748570437 36.41120128 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.221594016 0.09729514214 0.002163455722 max(abs(gpx/gpy/gpz/p)) = 14.1331399 19.76617502 6.175406519 28.61810199 [Level 2 step 9] Advanced 6144 cells [Level 2 step 10] ADVANCE at time 0.0135140625 with dt = 0.0017015625 Advancing grids at level 2 : starting time = 0.0135140625 with dt = 0.0017015625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.221594016 0.09729514214 0.002163455722 max(abs(gpx/gpy/gpz/p)) = 14.1331399 19.76617502 6.175406519 28.61810199 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.01335542 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020811934 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.238626235 0.1040398917 0.002155873618 max(abs(gpx/gpy/gpz/p)) = 14.1331399 19.76617502 6.175406519 28.61810199 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.237876186 0.1039333966 0.002001380308 max(abs(gpx/gpy/gpz/p)) = 14.1152673 20.41257137 6.540377484 28.61810199 [Level 2 step 10] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000262587 new finest: 2 TIME = 0.015215625 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 6] ADVANCE at time 0.015215625 with dt = 0.003403125 Advancing grids at level 1 : starting time = 0.015215625 with dt = 0.003403125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.270329352 0.2059304905 0.004301737325 max(abs(gpx/gpy/gpz/p)) = 18.6702138 43.34552417 7.793876543 32.5763808 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009163972 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014655885 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.307601119 0.221049792 0.004031557252 max(abs(gpx/gpy/gpz/p)) = 18.6702138 43.34552417 7.793876543 32.5763808 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.306558742 0.2243471914 0.009030118599 max(abs(gpx/gpy/gpz/p)) = 18.65909938 46.09307148 9.549624269 32.5763808 [Level 1 step 6] Advanced 4096 cells [Level 2 step 11] ADVANCE at time 0.015215625 with dt = 0.0017015625 Advancing grids at level 2 : starting time = 0.015215625 with dt = 0.0017015625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.239999363 0.1044033259 0.001995987503 max(abs(gpx/gpy/gpz/p)) = 14.21066272 20.60043669 6.201520972 28.62992419 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.0132771 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020871468 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.255006902 0.1097731447 0.002101653007 max(abs(gpx/gpy/gpz/p)) = 14.21066272 20.60043669 6.201520972 28.62992419 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.255367588 0.1101679626 0.002526806374 max(abs(gpx/gpy/gpz/p)) = 14.31597775 19.96722481 6.414529616 28.59318423 [Level 2 step 11] Advanced 6144 cells [Level 2 step 12] ADVANCE at time 0.0169171875 with dt = 0.0017015625 Advancing grids at level 2 : starting time = 0.0169171875 with dt = 0.0017015625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.255367588 0.1101679626 0.002526806374 max(abs(gpx/gpy/gpz/p)) = 14.31597775 19.96722481 6.414529616 28.59318423 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013236474 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021096632 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.270025365 0.1154845074 0.002446957158 max(abs(gpx/gpy/gpz/p)) = 14.31597775 19.96722481 6.414529616 28.59318423 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.269932362 0.1154216299 0.002711003035 max(abs(gpx/gpy/gpz/p)) = 14.3118505 20.70880371 6.920178945 28.59318423 [Level 2 step 12] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 3] Coarse TimeStep time: 0.674028348 [STEP 3] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 3 TIME = 0.01861875 DT = 0.00680625 estTimeStep :: LEV = 0 UMAX = 1.333411077 0.2869741414 0.003820789011 estimated timestep: dt = 0.01176374626 estTimeStep :: LEV = 1 UMAX = 1.309599441 0.2230951969 0.004416289471 estimated timestep: dt = 0.007158677461 estTimeStep :: LEV = 2 UMAX = 1.272110541 0.1165595938 0.001375515199 estimated timestep: dt = 0.003684821285 Now regridding at level lbase = 0 grid_places() time: 0.000347036 new finest: 2 STEP = 3 TIME = 0.01861875 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 4] ADVANCE at time 0.01861875 with dt = 0.007486875 Advancing grids at level 0 : starting time = 0.01861875 with dt = 0.007486875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.333411077 0.2869741414 0.003820789011 max(abs(gpx/gpy/gpz/p)) = 81.29451146 76.81197635 6.171031725 47.6896162 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013466415 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.017996848 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.407604001 0.2768937754 0.004575353735 max(abs(gpx/gpy/gpz/p)) = 81.29451146 76.81197635 6.171031725 47.6896162 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.39074581 0.3033853473 0.007076144929 max(abs(gpx/gpy/gpz/p)) = 95.34731538 87.99710426 4.792114051 45.5771052 [Level 0 step 4] Advanced 8192 cells [Level 1 step 7] ADVANCE at time 0.01861875 with dt = 0.0037434375 Advancing grids at level 1 : starting time = 0.01861875 with dt = 0.0037434375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.309599441 0.2230951969 0.004416289471 max(abs(gpx/gpy/gpz/p)) = 18.61477714 47.68076693 8.675124812 32.64401511 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009114846 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.01466235 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.339286935 0.2341137945 0.004296790665 max(abs(gpx/gpy/gpz/p)) = 18.61477714 47.68076693 8.675124812 32.64401511 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.334855731 0.2351981014 0.00539819538 max(abs(gpx/gpy/gpz/p)) = 16.96567508 48.51961724 9.073569659 28.49138576 [Level 1 step 7] Advanced 4096 cells [Level 2 step 13] ADVANCE at time 0.01861875 with dt = 0.00187171875 Advancing grids at level 2 : starting time = 0.01861875 with dt = 0.00187171875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.272110541 0.1165595938 0.001375515199 max(abs(gpx/gpy/gpz/p)) = 14.41433867 21.18072266 6.562871 28.56786354 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013486761 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.02109976 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.283710613 0.1205943744 0.00150643522 max(abs(gpx/gpy/gpz/p)) = 14.41433867 21.18072266 6.562871 28.56786354 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.281268539 0.1202870115 0.001657167378 max(abs(gpx/gpy/gpz/p)) = 12.52337567 20.01355306 6.57299449 24.59765528 [Level 2 step 13] Advanced 6144 cells [Level 2 step 14] ADVANCE at time 0.02049046875 with dt = 0.00187171875 Advancing grids at level 2 : starting time = 0.02049046875 with dt = 0.00187171875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.281268539 0.1202870115 0.001657167378 max(abs(gpx/gpy/gpz/p)) = 12.52337567 20.01355306 6.57299449 24.59765528 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013255539 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021264706 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.292343153 0.1242253826 0.001689251198 max(abs(gpx/gpy/gpz/p)) = 12.52337567 20.01355306 6.57299449 24.59765528 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.291908217 0.1240041413 0.001642201383 max(abs(gpx/gpy/gpz/p)) = 12.49371036 20.33842078 6.769284883 24.59765528 [Level 2 step 14] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.00025929 new finest: 2 TIME = 0.0223621875 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 8] ADVANCE at time 0.0223621875 with dt = 0.0037434375 Advancing grids at level 1 : starting time = 0.0223621875 with dt = 0.0037434375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.335392575 0.2355429522 0.005445851584 max(abs(gpx/gpy/gpz/p)) = 16.96591407 48.5950682 9.093060885 28.49138576 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.008930199 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014714086 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.360257532 0.2433281095 0.003684879862 max(abs(gpx/gpy/gpz/p)) = 16.96591407 48.5950682 9.093060885 28.49138576 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.359201274 0.2443047044 0.007259862891 max(abs(gpx/gpy/gpz/p)) = 16.96986518 50.27935782 10.20560104 28.49138576 [Level 1 step 8] Advanced 4096 cells [Level 2 step 15] ADVANCE at time 0.0223621875 with dt = 0.00187171875 Advancing grids at level 2 : starting time = 0.0223621875 with dt = 0.00187171875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.293274687 0.1247467945 0.001483025978 max(abs(gpx/gpy/gpz/p)) = 12.59787334 20.60198923 6.60359399 24.60641248 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013027057 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020909228 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.302748621 0.1277109002 0.001524273937 max(abs(gpx/gpy/gpz/p)) = 12.59787334 20.60198923 6.60359399 24.60641248 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.303023873 0.1280585923 0.001721537402 max(abs(gpx/gpy/gpz/p)) = 12.67696397 20.05366242 6.743572251 24.60611484 [Level 2 step 15] Advanced 6144 cells [Level 2 step 16] ADVANCE at time 0.02423390625 with dt = 0.00187171875 Advancing grids at level 2 : starting time = 0.02423390625 with dt = 0.00187171875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.303023873 0.1280585923 0.001721537402 max(abs(gpx/gpy/gpz/p)) = 12.67696397 20.05366242 6.743572251 24.60611484 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013224773 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020836756 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.312201282 0.1309188476 0.001639202951 max(abs(gpx/gpy/gpz/p)) = 12.67696397 20.05366242 6.743572251 24.60611484 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.312139049 0.1309247293 0.001784415988 max(abs(gpx/gpy/gpz/p)) = 12.66152545 20.40209377 7.046363775 24.60611484 [Level 2 step 16] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 4] Coarse TimeStep time: 0.673289419 [STEP 4] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 4 TIME = 0.026105625 DT = 0.007486875 estTimeStep :: LEV = 0 UMAX = 1.390820256 0.3037304963 0.002170488295 estimated timestep: dt = 0.01085784545 estTimeStep :: LEV = 1 UMAX = 1.361424764 0.2445292989 0.003345202803 estimated timestep: dt = 0.006886168261 estTimeStep :: LEV = 2 UMAX = 1.313820471 0.132127198 0.001530627207 estimated timestep: dt = 0.003567839064 Now regridding at level lbase = 0 grid_places() time: 0.000363892 new finest: 2 STEP = 4 TIME = 0.026105625 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 5] ADVANCE at time 0.026105625 with dt = 0.0082355625 Advancing grids at level 0 : starting time = 0.026105625 with dt = 0.0082355625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.390820256 0.3037304963 0.002170488295 max(abs(gpx/gpy/gpz/p)) = 95.42566847 88.02728023 6.195549945 45.56792073 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013203862 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.01806175 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.438085544 0.2940351506 0.004037646553 max(abs(gpx/gpy/gpz/p)) = 95.42566847 88.02728023 6.195549945 45.56792073 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.429481656 0.3107750678 0.009008199143 max(abs(gpx/gpy/gpz/p)) = 106.0474258 95.98867136 4.843023473 45.01740452 [Level 0 step 5] Advanced 8192 cells [Level 1 step 9] ADVANCE at time 0.026105625 with dt = 0.00411778125 Advancing grids at level 1 : starting time = 0.026105625 with dt = 0.00411778125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.361424764 0.2445292989 0.003345202803 max(abs(gpx/gpy/gpz/p)) = 16.96859965 51.68916003 9.583362621 28.56591181 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.00895464 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014686578 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.38042502 0.2515115335 0.003578700909 max(abs(gpx/gpy/gpz/p)) = 16.96859965 51.68916003 9.583362621 28.56591181 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.377981986 0.2510272863 0.005964739117 max(abs(gpx/gpy/gpz/p)) = 16.17222951 51.76433878 10.05731403 26.58315309 [Level 1 step 9] Advanced 4096 cells [Level 2 step 17] ADVANCE at time 0.026105625 with dt = 0.002058890625 Advancing grids at level 2 : starting time = 0.026105625 with dt = 0.002058890625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.313820471 0.132127198 0.001530627207 max(abs(gpx/gpy/gpz/p)) = 12.81724087 20.9837462 6.743931835 24.60453668 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013042414 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021023979 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.320982832 0.1341068437 0.0008677004248 max(abs(gpx/gpy/gpz/p)) = 12.81724087 20.9837462 6.743931835 24.60453668 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.319753804 0.1338952096 0.001249645372 max(abs(gpx/gpy/gpz/p)) = 12.38401772 19.96443944 6.909950482 22.77701436 [Level 2 step 17] Advanced 6144 cells [Level 2 step 18] ADVANCE at time 0.02816451563 with dt = 0.002058890625 Advancing grids at level 2 : starting time = 0.02816451563 with dt = 0.002058890625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.319753804 0.1338952096 0.001249645372 max(abs(gpx/gpy/gpz/p)) = 12.38401772 19.96443944 6.909950482 22.77701436 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013302584 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021178546 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.326587178 0.1360575997 0.001372045577 max(abs(gpx/gpy/gpz/p)) = 12.38401772 19.96443944 6.909950482 22.77701436 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.326361917 0.1359702313 0.001460663054 max(abs(gpx/gpy/gpz/p)) = 12.43781222 20.14016436 7.003535501 22.77701436 [Level 2 step 18] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000265803 new finest: 2 TIME = 0.03022340625 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 10] ADVANCE at time 0.03022340625 with dt = 0.00411778125 Advancing grids at level 1 : starting time = 0.03022340625 with dt = 0.00411778125 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.378289164 0.2512172832 0.006009386138 max(abs(gpx/gpy/gpz/p)) = 16.17239231 51.83158377 10.07373008 26.58315309 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009158895 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014397927 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.394082166 0.2561576088 0.003779896975 max(abs(gpx/gpy/gpz/p)) = 16.17239231 51.83158377 10.07373008 26.58315309 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.39315587 0.2559544891 0.006036090801 max(abs(gpx/gpy/gpz/p)) = 16.17980459 52.84809773 10.71131259 26.58315309 [Level 1 step 10] Advanced 4096 cells [Level 2 step 19] ADVANCE at time 0.03022340625 with dt = 0.002058890625 Advancing grids at level 2 : starting time = 0.03022340625 with dt = 0.002058890625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.327148124 0.1365251947 0.001172556708 max(abs(gpx/gpy/gpz/p)) = 12.4627057 20.49271925 6.92315846 22.78227079 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013296205 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020906353 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.332825473 0.1380589283 0.001228062833 max(abs(gpx/gpy/gpz/p)) = 12.4627057 20.49271925 6.92315846 22.78227079 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.332996924 0.1383323555 0.001494012124 max(abs(gpx/gpy/gpz/p)) = 12.62068755 20.02803124 6.990702537 22.78671339 [Level 2 step 19] Advanced 6144 cells [Level 2 step 20] ADVANCE at time 0.03228229688 with dt = 0.002058890625 Advancing grids at level 2 : starting time = 0.03228229688 with dt = 0.002058890625 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.332996924 0.1383323555 0.001494012124 max(abs(gpx/gpy/gpz/p)) = 12.62068755 20.02803124 6.990702537 22.78671339 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013374715 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.02088536 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.338469214 0.1398672892 0.001300737751 max(abs(gpx/gpy/gpz/p)) = 12.62068755 20.02803124 6.990702537 22.78671339 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.338419304 0.1399150893 0.001406953267 max(abs(gpx/gpy/gpz/p)) = 12.6857381 20.18249064 7.183340234 22.78671339 [Level 2 step 20] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 5] Coarse TimeStep time: 0.673592577 [STEP 5] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 5 TIME = 0.0343411875 DT = 0.0082355625 estTimeStep :: LEV = 0 UMAX = 1.429534972 0.3108032344 0.001540788885 estimated timestep: dt = 0.01029694954 estTimeStep :: LEV = 1 UMAX = 1.394756817 0.2569648655 0.004539965541 estimated timestep: dt = 0.00672160185 estTimeStep :: LEV = 2 UMAX = 1.339710036 0.1411009457 0.001987562994 estimated timestep: dt = 0.003498891457 Now regridding at level lbase = 0 grid_places() time: 0.000358048 new finest: 2 STEP = 5 TIME = 0.0343411875 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 6] ADVANCE at time 0.0343411875 with dt = 0.00905911875 Advancing grids at level 0 : starting time = 0.0343411875 with dt = 0.00905911875 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.429534972 0.3108032344 0.001540788885 max(abs(gpx/gpy/gpz/p)) = 106.1048788 96.00884191 6.549760265 45.01882394 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013280037 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.018105937 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.459121008 0.3029265556 0.003882771829 max(abs(gpx/gpy/gpz/p)) = 106.1048788 96.00884191 6.549760265 45.01882394 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.454523499 0.3143328043 0.0106702091 max(abs(gpx/gpy/gpz/p)) = 114.1257932 101.7603305 4.965080721 45.046984 [Level 0 step 6] Advanced 8192 cells [Level 1 step 11] ADVANCE at time 0.0343411875 with dt = 0.004529559375 Advancing grids at level 1 : starting time = 0.0343411875 with dt = 0.004529559375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.394756817 0.2569648655 0.004539965541 max(abs(gpx/gpy/gpz/p)) = 16.20251812 54.27668224 10.2304785 26.66468904 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.00917221 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014453289 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.406277841 0.2604740742 0.003330784644 max(abs(gpx/gpy/gpz/p)) = 16.20251812 54.27668224 10.2304785 26.66468904 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.404809503 0.2599664344 0.006393655996 max(abs(gpx/gpy/gpz/p)) = 15.81208515 53.9955605 10.68670471 25.6595896 [Level 1 step 11] Advanced 4096 cells [Level 2 step 21] ADVANCE at time 0.0343411875 with dt = 0.002264779688 Advancing grids at level 2 : starting time = 0.0343411875 with dt = 0.002264779688 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.339710036 0.1411009457 0.001987562994 max(abs(gpx/gpy/gpz/p)) = 12.68236889 20.84044293 6.917342859 22.79708698 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013266204 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020926392 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.343848441 0.1420108338 0.0005752655183 max(abs(gpx/gpy/gpz/p)) = 12.68236889 20.84044293 6.917342859 22.79708698 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.343189745 0.1418395569 0.001288749961 max(abs(gpx/gpy/gpz/p)) = 13.01202301 19.944426 7.116737481 21.91413038 [Level 2 step 21] Advanced 6144 cells [Level 2 step 22] ADVANCE at time 0.03660596719 with dt = 0.002264779688 Advancing grids at level 2 : starting time = 0.03660596719 with dt = 0.002264779688 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.343189745 0.1418395569 0.001288749961 max(abs(gpx/gpy/gpz/p)) = 13.01202301 19.944426 7.116737481 21.91413038 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013278802 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020843978 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.347155853 0.1428506651 0.00127261473 max(abs(gpx/gpy/gpz/p)) = 13.01202301 19.944426 7.116737481 21.91413038 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.347022181 0.142828159 0.001385297839 max(abs(gpx/gpy/gpz/p)) = 13.05286157 20.03653032 7.158617682 21.91413038 [Level 2 step 22] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000264814 new finest: 2 TIME = 0.03887074688 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 12] ADVANCE at time 0.03887074688 with dt = 0.004529559375 Advancing grids at level 1 : starting time = 0.03887074688 with dt = 0.004529559375 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.404930968 0.260067619 0.006409648243 max(abs(gpx/gpy/gpz/p)) = 15.81225408 54.0508047 10.70278727 25.6595896 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009282324 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014667078 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.414515024 0.2622559128 0.003885327088 max(abs(gpx/gpy/gpz/p)) = 15.81225408 54.0508047 10.70278727 25.6595896 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.414208583 0.2618646152 0.005457822219 max(abs(gpx/gpy/gpz/p)) = 15.8169853 54.65720257 11.07721215 25.6595896 [Level 1 step 12] Advanced 4096 cells [Level 2 step 23] ADVANCE at time 0.03887074688 with dt = 0.002264779688 Advancing grids at level 2 : starting time = 0.03887074688 with dt = 0.002264779688 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.347475559 0.143225475 0.001079710497 max(abs(gpx/gpy/gpz/p)) = 13.05500959 20.43229611 7.123365439 21.9173452 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013570741 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021154651 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.350657568 0.1438329841 0.001130829863 max(abs(gpx/gpy/gpz/p)) = 13.05500959 20.43229611 7.123365439 21.9173452 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.350738715 0.1440290408 0.001495251125 max(abs(gpx/gpy/gpz/p)) = 13.19348193 20.01050538 7.140733154 21.92239387 [Level 2 step 23] Advanced 6144 cells [Level 2 step 24] ADVANCE at time 0.04113552656 with dt = 0.002264779688 Advancing grids at level 2 : starting time = 0.04113552656 with dt = 0.002264779688 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.350738715 0.1440290408 0.001495251125 max(abs(gpx/gpy/gpz/p)) = 13.19348193 20.01050538 7.140733154 21.92239387 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013360916 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021120718 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.353875347 0.1447163571 0.001167354347 max(abs(gpx/gpy/gpz/p)) = 13.19348193 20.01050538 7.140733154 21.92239387 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.353860631 0.1447690975 0.001317447023 max(abs(gpx/gpy/gpz/p)) = 13.22780674 20.05953777 7.263662436 21.92239387 [Level 2 step 24] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 6] Coarse TimeStep time: 0.672438916 [STEP 6] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 6 TIME = 0.04340030625 DT = 0.00905911875 estTimeStep :: LEV = 0 UMAX = 1.454528519 0.3141193595 0.002068504618 estimated timestep: dt = 0.009926541397 estTimeStep :: LEV = 1 UMAX = 1.414933464 0.2628190432 0.005801374281 estimated timestep: dt = 0.006625753251 estTimeStep :: LEV = 2 UMAX = 1.354823155 0.1459085817 0.002336267907 estimated timestep: dt = 0.003459861149 Now regridding at level lbase = 0 grid_places() time: 0.000364212 new finest: 2 STEP = 6 TIME = 0.04340030625 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 7] ADVANCE at time 0.04340030625 with dt = 0.009926541397 Advancing grids at level 0 : starting time = 0.04340030625 with dt = 0.009926541397 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.454528519 0.3141193595 0.002068504618 max(abs(gpx/gpy/gpz/p)) = 114.1712107 101.777481 6.780352315 45.05441896 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.013382988 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.01799965 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.472516902 0.3082134429 0.003843706761 max(abs(gpx/gpy/gpz/p)) = 114.1712107 101.777481 6.780352315 45.05441896 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.469888018 0.3161080777 0.01208430333 max(abs(gpx/gpy/gpz/p)) = 120.2493414 105.9501884 5.186998228 45.25058538 [Level 0 step 7] Advanced 8192 cells [Level 1 step 13] ADVANCE at time 0.04340030625 with dt = 0.004963270698 Advancing grids at level 1 : starting time = 0.04340030625 with dt = 0.004963270698 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.414933464 0.2628190432 0.005801374281 max(abs(gpx/gpy/gpz/p)) = 15.84685397 56.14881886 10.68299702 25.74578163 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.008899456 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.01482097 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.421507971 0.2646222637 0.003233443531 max(abs(gpx/gpy/gpz/p)) = 15.84685397 56.14881886 10.68299702 25.74578163 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.420593937 0.2641600144 0.007005781959 max(abs(gpx/gpy/gpz/p)) = 15.63983813 55.68229663 11.10809888 25.18407432 [Level 1 step 13] Advanced 4096 cells [Level 2 step 25] ADVANCE at time 0.04340030625 with dt = 0.002481635349 Advancing grids at level 2 : starting time = 0.04340030625 with dt = 0.002481635349 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.354823155 0.1459085817 0.002336267907 max(abs(gpx/gpy/gpz/p)) = 13.20159099 20.74704473 7.028374299 21.93809614 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013334276 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021347703 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.357006172 0.1461384583 0.0005809152376 max(abs(gpx/gpy/gpz/p)) = 13.20159099 20.74704473 7.028374299 21.93809614 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.356585706 0.1459717022 0.00136156307 max(abs(gpx/gpy/gpz/p)) = 13.43313064 19.92635661 7.223048505 21.47324747 [Level 2 step 25] Advanced 6144 cells [Level 2 step 26] ADVANCE at time 0.0458819416 with dt = 0.002481635349 Advancing grids at level 2 : starting time = 0.0458819416 with dt = 0.002481635349 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.356585706 0.1459717022 0.00136156307 max(abs(gpx/gpy/gpz/p)) = 13.43313064 19.92635661 7.223048505 21.47324747 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.012956829 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020970159 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.358867042 0.1463553183 0.001319241685 max(abs(gpx/gpy/gpz/p)) = 13.43313064 19.92635661 7.223048505 21.47324747 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.358843762 0.1463543487 0.001387342268 max(abs(gpx/gpy/gpz/p)) = 13.45380007 19.96876017 7.228617221 21.47324747 [Level 2 step 26] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000242585 new finest: 2 TIME = 0.04836357695 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 14] ADVANCE at time 0.04836357695 with dt = 0.004963270698 Advancing grids at level 1 : starting time = 0.04836357695 with dt = 0.004963270698 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.42059311 0.2642163726 0.007021261051 max(abs(gpx/gpy/gpz/p)) = 15.63999003 55.72901355 11.12405373 25.18407432 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.008911886 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014734292 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.426526574 0.2649901672 0.003978175411 max(abs(gpx/gpy/gpz/p)) = 15.63999003 55.72901355 11.12405373 25.18407432 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.426368551 0.2645443777 0.005098111369 max(abs(gpx/gpy/gpz/p)) = 15.64337649 56.08017824 11.34503672 25.18407432 [Level 1 step 14] Advanced 4096 cells [Level 2 step 27] ADVANCE at time 0.04836357695 with dt = 0.002481635349 Advancing grids at level 2 : starting time = 0.04836357695 with dt = 0.002481635349 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.358972342 0.1466658203 0.001187892523 max(abs(gpx/gpy/gpz/p)) = 13.45142935 20.37318717 7.220735579 21.4753012 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013296841 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.02096581 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.360699314 0.1467699452 0.001149915487 max(abs(gpx/gpy/gpz/p)) = 13.45142935 20.37318717 7.220735579 21.4753012 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.360775992 0.1469071739 0.00153482584 max(abs(gpx/gpy/gpz/p)) = 13.53634113 19.971862 7.203916334 21.48013904 [Level 2 step 27] Advanced 6144 cells [Level 2 step 28] ADVANCE at time 0.0508452123 with dt = 0.002481635349 Advancing grids at level 2 : starting time = 0.0508452123 with dt = 0.002481635349 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.360775992 0.1469071739 0.00153482584 max(abs(gpx/gpy/gpz/p)) = 13.53634113 19.971862 7.203916334 21.48013904 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013252082 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020941867 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.36242831 0.1471423779 0.001220922945 max(abs(gpx/gpy/gpz/p)) = 13.53634113 19.971862 7.203916334 21.48013904 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.362414668 0.147187617 0.00136066124 max(abs(gpx/gpy/gpz/p)) = 13.55048413 19.96130222 7.30805059 21.48013904 [Level 2 step 28] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 7] Coarse TimeStep time: 0.667221902 [STEP 7] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 7 TIME = 0.05332684765 DT = 0.009926541397 estTimeStep :: LEV = 0 UMAX = 1.469869241 0.3158687385 0.00291606712 estimated timestep: dt = 0.009670864747 estTimeStep :: LEV = 1 UMAX = 1.426537042 0.2653432325 0.007034708722 estimated timestep: dt = 0.006571858792 estTimeStep :: LEV = 2 UMAX = 1.363084612 0.1482858436 0.002585291801 estimated timestep: dt = 0.003438891436 Now regridding at level lbase = 0 grid_places() time: 0.000332119 new finest: 2 STEP = 7 TIME = 0.05332684765 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 8] ADVANCE at time 0.05332684765 with dt = 0.009670864747 Advancing grids at level 0 : starting time = 0.05332684765 with dt = 0.009670864747 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.469869241 0.3158687385 0.00291606712 max(abs(gpx/gpy/gpz/p)) = 120.2878891 105.9660467 6.936412351 45.26115531 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.012337344 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.01825539 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.479582797 0.3113422028 0.003824298109 max(abs(gpx/gpy/gpz/p)) = 120.2878891 105.9660467 6.936412351 45.26115531 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.478222052 0.3178078888 0.01195192252 max(abs(gpx/gpy/gpz/p)) = 126.0020331 109.8548503 5.312135469 45.59248124 [Level 0 step 8] Advanced 8192 cells [Level 1 step 15] ADVANCE at time 0.05332684765 with dt = 0.004835432373 Advancing grids at level 1 : starting time = 0.05332684765 with dt = 0.004835432373 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.426537042 0.2653432325 0.007034708722 max(abs(gpx/gpy/gpz/p)) = 15.68210265 57.64119071 11.01031547 25.2735111 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.008910723 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014682415 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.42999204 0.2663915295 0.003174612876 max(abs(gpx/gpy/gpz/p)) = 15.68210265 57.64119071 11.01031547 25.2735111 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.42968036 0.26628085 0.007004258277 max(abs(gpx/gpy/gpz/p)) = 15.57532787 57.0388369 11.44890005 24.92146052 [Level 1 step 15] Advanced 4096 cells [Level 2 step 29] ADVANCE at time 0.05332684765 with dt = 0.002417716187 Advancing grids at level 2 : starting time = 0.05332684765 with dt = 0.002417716187 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.363084612 0.1482858436 0.002585291801 max(abs(gpx/gpy/gpz/p)) = 13.51423915 20.64894532 7.097944193 21.49810812 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013337363 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021213344 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.364085171 0.1481753492 0.0006599928515 max(abs(gpx/gpy/gpz/p)) = 13.51423915 20.64894532 7.097944193 21.49810812 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.363858847 0.148059756 0.001323528259 max(abs(gpx/gpy/gpz/p)) = 13.70779169 19.8635636 7.321185406 21.23859842 [Level 2 step 29] Advanced 6144 cells [Level 2 step 30] ADVANCE at time 0.05574456383 with dt = 0.002417716187 Advancing grids at level 2 : starting time = 0.05574456383 with dt = 0.002417716187 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.363858847 0.148059756 0.001323528259 max(abs(gpx/gpy/gpz/p)) = 13.70779169 19.8635636 7.321185406 21.23859842 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.012974507 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020977208 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.364963239 0.148103027 0.001293923795 max(abs(gpx/gpy/gpz/p)) = 13.70779169 19.8635636 7.321185406 21.23859842 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.364946267 0.1481143415 0.001345588439 max(abs(gpx/gpy/gpz/p)) = 13.71499454 19.87814282 7.324675922 21.23859842 [Level 2 step 30] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000233475 new finest: 2 TIME = 0.05816228002 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 16] ADVANCE at time 0.05816228002 with dt = 0.004835432373 Advancing grids at level 1 : starting time = 0.05816228002 with dt = 0.004835432373 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.429673034 0.2662881558 0.007019099955 max(abs(gpx/gpy/gpz/p)) = 15.57578969 57.08277206 11.46605573 24.92146052 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.00896912 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.01468383 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.43263809 0.2662563028 0.004054359976 max(abs(gpx/gpy/gpz/p)) = 15.57578969 57.08277206 11.46605573 24.92146052 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.43251193 0.2658277298 0.004739951897 max(abs(gpx/gpy/gpz/p)) = 15.58106409 57.25308587 11.59399274 24.92146052 [Level 1 step 16] Advanced 4096 cells [Level 2 step 31] ADVANCE at time 0.05816228002 with dt = 0.002417716187 Advancing grids at level 2 : starting time = 0.05816228002 with dt = 0.002417716187 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.364953397 0.1483448271 0.001221797548 max(abs(gpx/gpy/gpz/p)) = 13.71030237 20.30953445 7.328778535 21.24000613 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013291977 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.021090267 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.365762678 0.1481775057 0.001206768936 max(abs(gpx/gpy/gpz/p)) = 13.71030237 20.30953445 7.328778535 21.24000613 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.365798031 0.1482653652 0.001482369207 max(abs(gpx/gpy/gpz/p)) = 13.75647939 19.93140508 7.318182612 21.2451107 [Level 2 step 31] Advanced 6144 cells [Level 2 step 32] ADVANCE at time 0.06057999621 with dt = 0.002417716187 Advancing grids at level 2 : starting time = 0.06057999621 with dt = 0.002417716187 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.365798031 0.1482653652 0.001482369207 max(abs(gpx/gpy/gpz/p)) = 13.75647939 19.93140508 7.318182612 21.2451107 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013215343 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020943847 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.366534669 0.1482498349 0.001264570472 max(abs(gpx/gpy/gpz/p)) = 13.75647939 19.93140508 7.318182612 21.2451107 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.366524212 0.1482928731 0.001368244299 max(abs(gpx/gpy/gpz/p)) = 13.76231461 19.88664378 7.417180352 21.2451107 [Level 2 step 32] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 8] Coarse TimeStep time: 0.670134819 [STEP 8] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 8 TIME = 0.06299771239 DT = 0.009670864747 estTimeStep :: LEV = 0 UMAX = 1.478193247 0.31777519 0.003213042612 estimated timestep: dt = 0.009447742446 estTimeStep :: LEV = 1 UMAX = 1.432569163 0.2664978127 0.007455961211 estimated timestep: dt = 0.006544186658 estTimeStep :: LEV = 2 UMAX = 1.367031878 0.1493193113 0.002626760248 estimated timestep: dt = 0.003428961734 Now regridding at level lbase = 0 grid_places() time: 0.000348049 new finest: 2 STEP = 8 TIME = 0.06299771239 : REGRID with lbase = 0 Level 1 2 grids 4096 cells 6.25 % of domain smallest grid: 16 x 16 x 8 biggest grid: 16 x 16 x 8 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 0 step 9] ADVANCE at time 0.06299771239 with dt = 0.009447742446 Advancing grids at level 0 : starting time = 0.06299771239 with dt = 0.009447742446 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.478193247 0.31777519 0.003213042612 max(abs(gpx/gpy/gpz/p)) = 126.0365282 109.8723159 7.028976766 45.60534789 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.012010743 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.018008827 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.483498072 0.3138927732 0.003794146782 max(abs(gpx/gpy/gpz/p)) = 126.0365282 109.8723159 7.028976766 45.60534789 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.482806441 0.3188933342 0.01170808318 max(abs(gpx/gpy/gpz/p)) = 131.3240453 113.4260223 5.391851383 45.9815031 [Level 0 step 9] Advanced 8192 cells [Level 1 step 17] ADVANCE at time 0.06299771239 with dt = 0.004723871223 Advancing grids at level 1 : starting time = 0.06299771239 with dt = 0.004723871223 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.432569163 0.2664978127 0.007455961211 max(abs(gpx/gpy/gpz/p)) = 15.63374122 58.94114325 11.26716378 25.01788563 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.008935536 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014707932 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.434379346 0.2671336842 0.003163998894 max(abs(gpx/gpy/gpz/p)) = 15.63374122 58.94114325 11.26716378 25.01788563 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.43419843 0.2672461238 0.006981213723 max(abs(gpx/gpy/gpz/p)) = 15.57594908 58.13014337 11.69333327 24.78108636 [Level 1 step 17] Advanced 4096 cells [Level 2 step 33] ADVANCE at time 0.06299771239 with dt = 0.002361935611 Advancing grids at level 2 : starting time = 0.06299771239 with dt = 0.002361935611 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.367031878 0.1493193113 0.002626760248 max(abs(gpx/gpy/gpz/p)) = 13.72410897 20.6105095 7.208538676 21.26422871 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013079351 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020943609 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.367499434 0.1490796622 0.0007270376557 max(abs(gpx/gpy/gpz/p)) = 13.72410897 20.6105095 7.208538676 21.26422871 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.367353834 0.1489678736 0.001300389781 max(abs(gpx/gpy/gpz/p)) = 13.88169368 19.8377765 7.435358108 21.11913197 [Level 2 step 33] Advanced 6144 cells [Level 2 step 34] ADVANCE at time 0.06535964801 with dt = 0.002361935611 Advancing grids at level 2 : starting time = 0.06535964801 with dt = 0.002361935611 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.367353834 0.1489678736 0.001300389781 max(abs(gpx/gpy/gpz/p)) = 13.88169368 19.8377765 7.435358108 21.11913197 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013231533 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020913019 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.367857231 0.14887671 0.001300876546 max(abs(gpx/gpy/gpz/p)) = 13.88169368 19.8377765 7.435358108 21.11913197 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.367844142 0.148887054 0.001335828372 max(abs(gpx/gpy/gpz/p)) = 13.88179902 19.83366849 7.421173618 21.11913197 [Level 2 step 34] Advanced 6144 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.00024821 new finest: 2 TIME = 0.06772158362 : REGRID with lbase = 1 Level 2 2 grids 6144 cells 1.171875 % of domain smallest grid: 8 x 16 x 16 biggest grid: 16 x 16 x 16 [Level 1 step 18] ADVANCE at time 0.06772158362 with dt = 0.004723871223 Advancing grids at level 1 : starting time = 0.06772158362 with dt = 0.004723871223 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.434188702 0.2672372665 0.006994311278 max(abs(gpx/gpy/gpz/p)) = 15.57663273 58.16896186 11.70766524 24.78108636 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.009177187 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.014804714 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.435673679 0.2667904277 0.004099028612 max(abs(gpx/gpy/gpz/p)) = 15.57663273 58.16896186 11.70766524 24.78108636 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.435578059 0.2664110446 0.004468118556 max(abs(gpx/gpy/gpz/p)) = 15.58160281 58.1926535 11.81606568 24.78108636 [Level 1 step 18] Advanced 4096 cells [Level 2 step 35] ADVANCE at time 0.06772158362 with dt = 0.002361935611 Advancing grids at level 2 : starting time = 0.06772158362 with dt = 0.002361935611 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.367831774 0.1490815632 0.00123905645 max(abs(gpx/gpy/gpz/p)) = 13.87390141 20.28629933 7.430945298 21.12014942 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013329552 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020998762 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.368177515 0.1488100358 0.001234032813 max(abs(gpx/gpy/gpz/p)) = 13.87390141 20.28629933 7.430945298 21.12014942 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.368187027 0.1488589696 0.001443847516 max(abs(gpx/gpy/gpz/p)) = 13.8928808 19.9161262 7.412599785 21.12518382 [Level 2 step 35] Advanced 6144 cells [Level 2 step 36] ADVANCE at time 0.07008351923 with dt = 0.002361935611 Advancing grids at level 2 : starting time = 0.07008351923 with dt = 0.002361935611 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.368187027 0.1488589696 0.001443847516 max(abs(gpx/gpy/gpz/p)) = 13.8928808 19.9161262 7.412599785 21.12518382 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.013382914 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.020846201 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.36849656 0.148745963 0.001291259811 max(abs(gpx/gpy/gpz/p)) = 13.8928808 19.9161262 7.412599785 21.12518382 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.368487643 0.1487777819 0.001367445077 max(abs(gpx/gpy/gpz/p)) = 13.8896022 19.85334263 7.494330237 21.12518382 [Level 2 step 36] Advanced 6144 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 9] Coarse TimeStep time: 0.671822989 [STEP 9] FAB kilobyte spread across MPI nodes: [8494 ... 9231] STEP = 9 TIME = 0.07244545484 DT = 0.009447742446 estTimeStep :: LEV = 0 UMAX = 1.482801167 0.3190256039 0.003420133625 estimated timestep: dt = 0.009254465829 estTimeStep :: LEV = 1 UMAX = 1.435598788 0.2669850534 0.007770374633 estimated timestep: dt = 0.006530376089 estTimeStep :: LEV = 2 UMAX = 1.368918959 0.1497495247 0.002626945745 estimated timestep: dt = 0.003424234846 Now regridding at level lbase = 0 grid_places() time: 0.000306624 new finest: 2 STEP = 9 TIME = 0.07244545484 : REGRID with lbase = 0 Level 1 2 grids 12288 cells 18.75 % of domain smallest grid: 24 x 16 x 16 biggest grid: 24 x 16 x 16 Level 2 2 grids 16384 cells 3.125 % of domain smallest grid: 32 x 16 x 16 biggest grid: 32 x 16 x 16 [Level 0 step 10] ADVANCE at time 0.07244545484 with dt = 0.009254465829 Advancing grids at level 0 : starting time = 0.07244545484 with dt = 0.009254465829 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.482801167 0.3190256039 0.003420133625 max(abs(gpx/gpy/gpz/p)) = 131.3559683 113.4443691 7.063500595 45.99555124 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 0, time: 0.012263497 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 0, time: 0.018039678 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.485712923 0.3159270685 0.003745519261 max(abs(gpx/gpy/gpz/p)) = 131.3559683 113.4443691 7.063500595 45.99555124 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.485363186 0.3196393628 0.01196223327 max(abs(gpx/gpy/gpz/p)) = 136.2210434 116.6704167 5.42720817 46.36665176 [Level 0 step 10] Advanced 8192 cells [Level 1 step 19] ADVANCE at time 0.07244545484 with dt = 0.004627232915 Advancing grids at level 1 : starting time = 0.07244545484 with dt = 0.004627232915 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.478193506 0.2669850534 0.007770374633 max(abs(gpx/gpy/gpz/p)) = 15.64294339 59.99591693 11.45313711 24.88422908 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.014362875 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.026547706 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.483605689 0.2674254818 0.003342367358 max(abs(gpx/gpy/gpz/p)) = 15.64294339 59.99591693 11.45313711 24.88422908 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.483214915 0.271325586 0.005531407679 max(abs(gpx/gpy/gpz/p)) = 15.59949209 59.40904655 10.11968262 24.7520004 [Level 1 step 19] Advanced 12288 cells [Level 2 step 37] ADVANCE at time 0.07244545484 with dt = 0.002313616457 Advancing grids at level 2 : starting time = 0.07244545484 with dt = 0.002313616457 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.438303461 0.1497495247 0.002626945745 max(abs(gpx/gpy/gpz/p)) = 13.84494959 20.60438661 10.70292733 21.27675474 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.017159649 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.032758331 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.439315503 0.1498681674 0.002027145617 max(abs(gpx/gpy/gpz/p)) = 13.84494959 20.60438661 10.70292733 21.27675474 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.439084204 0.1508010906 0.003505616427 max(abs(gpx/gpy/gpz/p)) = 14.09330549 20.08695015 10.2847103 21.12892585 [Level 2 step 37] Advanced 16384 cells [Level 2 step 38] ADVANCE at time 0.0747590713 with dt = 0.002313616457 Advancing grids at level 2 : starting time = 0.0747590713 with dt = 0.002313616457 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.439084204 0.1508010906 0.003505616427 max(abs(gpx/gpy/gpz/p)) = 14.09330549 20.08695015 10.2847103 21.12892585 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.016989519 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.032707747 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.440585587 0.1502937641 0.001282822565 max(abs(gpx/gpy/gpz/p)) = 14.09330549 20.08695015 10.2847103 21.12892585 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.440563504 0.1503060255 0.002547749156 max(abs(gpx/gpy/gpz/p)) = 14.09273518 19.8895693 10.75550651 21.12892585 [Level 2 step 38] Advanced 16384 cells mac_sync() on level 1 Now regridding at level lbase = 1 grid_places() time: 0.000243732 new finest: 2 TIME = 0.07707268775 : REGRID with lbase = 1 Level 2 2 grids 16384 cells 3.125 % of domain smallest grid: 32 x 16 x 16 biggest grid: 32 x 16 x 16 [Level 1 step 20] ADVANCE at time 0.07707268775 with dt = 0.004627232915 Advancing grids at level 1 : starting time = 0.07707268775 with dt = 0.004627232915 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.48319617 0.2712595216 0.00561964915 max(abs(gpx/gpy/gpz/p)) = 15.60102002 59.39688638 10.04837706 24.7520004 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 1, time: 0.014576914 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 1, time: 0.026353539 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.484394517 0.2682988146 0.002148003304 max(abs(gpx/gpy/gpz/p)) = 15.60102002 59.39688638 10.04837706 24.7520004 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.483975186 0.2686990451 0.004424152211 max(abs(gpx/gpy/gpz/p)) = 15.6018814 59.37822067 8.754047693 24.7520004 [Level 1 step 20] Advanced 12288 cells [Level 2 step 39] ADVANCE at time 0.07707268775 with dt = 0.002313616457 Advancing grids at level 2 : starting time = 0.07707268775 with dt = 0.002313616457 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.440715828 0.1503689773 0.00174785815 max(abs(gpx/gpy/gpz/p)) = 14.06865943 20.46162455 10.34369391 21.13001566 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.017318618 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.032817944 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.440890607 0.1501849876 0.001412165667 max(abs(gpx/gpy/gpz/p)) = 14.06865943 20.46162455 10.34369391 21.13001566 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.440778874 0.1503345592 0.002384897051 max(abs(gpx/gpy/gpz/p)) = 14.08838599 20.14350372 9.945095719 21.12216615 [Level 2 step 39] Advanced 16384 cells [Level 2 step 40] ADVANCE at time 0.07938630421 with dt = 0.002313616457 Advancing grids at level 2 : starting time = 0.07938630421 with dt = 0.002313616457 NavierStokes::advance(): before velocity update: max(abs(u/v/w)) = 1.440778874 0.1503345592 0.002384897051 max(abs(gpx/gpy/gpz/p)) = 14.08838599 20.14350372 9.945095719 21.12216615 ... predict edge velocities ... mac_projection NavierStokesBase:mac_project(): lev: 2, time: 0.017066126 ... advect scalars ... update scalars ... advect momenta ... update scalars scalar_diffusion_update 4 of 5 scalar_diffusion_update 5 of 5 ... update momenta NavierStokes:velocity_diffusion_update(): lev: 2, time: 0.032719966 NavierStokes::advance(): before nodal projection max(abs(u/v/w)) = 1.440947349 0.1502325323 0.001029899911 max(abs(gpx/gpy/gpz/p)) = 14.08838599 20.14350372 9.945095719 21.12216615 NavierStokes::advance(): exiting. max(abs(u/v/w)) = 1.440935852 0.1503090027 0.001581259857 max(abs(gpx/gpy/gpz/p)) = 14.08384041 20.05361101 10.37101467 21.12216615 [Level 2 step 40] Advanced 16384 cells mac_sync() on level 1 mac_sync() on level 0 [STEP 10] Coarse TimeStep time: 1.072168518 [STEP 10] FAB kilobyte spread across MPI nodes: [15580 ... 15661] STEP = 10 TIME = 0.08169992067 DT = 0.009254465829 PLOTFILE: file = Poiseuille_plt00010 Write plotfile time = 0.009595351 seconds Run time = 7.332226457 AMReX (26.09-13-gb105892be1b2) finalized