Initializing AMReX (26.04-113-g05a28aa730e4)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 AMReX (26.04-113-g05a28aa730e4) initialized Calling Setup() Calling ReadParameters() reading extern runtime parameters ... Calling VariableSetup() Calling BCSetup() Calling BaseStateGeometry::Init() Calling Init() Calling InitData() initdata model_File = Maximum HSE Error = 2.348271906e-14 (after putting initial model into base state arrays, and for density < base_cutoff_density) Writing plotfile double_bubble_2d_pltInitData after InitData Time to write plotfile: 0.068741586 Doing initial projection Calling nodal solver MLMG: Initial rhs = 0 MLMG: Initial residual (resid0) = 0 MLMG: No iterations needed MLMG: Timers: Solve = 0.002854567 Iter = 0 Bottom = 0 Done calling nodal solver Writing plotfile double_bubble_2d_pltafter_InitProj after InitProj Time to write plotfile: 0.064862874 Call to firstdt for level 0 gives dt_lev = 7.656411368e-08 Multiplying dt_lev by init_shrink; dt_lev = 7.656411368e-08 Minimum firstdt over all levels = 7.656411368e-08 Doing initial divu iteration #1 Calling nodal solver MLMG: Initial rhs = 0 MLMG: Initial residual (resid0) = 0 MLMG: No iterations needed MLMG: Timers: Solve = 0.00282206 Iter = 0 Bottom = 0 Done calling nodal solver Call to estdt for level 0 gives dt_lev = 2.298789937e-05 Minimum estdt over all levels = 2.298789937e-05 Call to estdt at end of istep_divu_iter = 1 gives dt = 2.298789937e-05 Multiplying dt by init_shrink; dt = 2.298789937e-05 Ignoring this new dt since it's larger than the previous dt = 7.656411368e-08 Doing initial divu iteration #2 Calling nodal solver MLMG: Initial rhs = 0 MLMG: Initial residual (resid0) = 0 MLMG: No iterations needed MLMG: Timers: Solve = 0.002809618 Iter = 0 Bottom = 0 Done calling nodal solver Call to estdt for level 0 gives dt_lev = 2.298789937e-05 Minimum estdt over all levels = 2.298789937e-05 Call to estdt at end of istep_divu_iter = 2 gives dt = 2.298789937e-05 Multiplying dt by init_shrink; dt = 2.298789937e-05 Ignoring this new dt since it's larger than the previous dt = 7.656411368e-08 Doing initial divu iteration #3 Calling nodal solver MLMG: Initial rhs = 0 MLMG: Initial residual (resid0) = 0 MLMG: No iterations needed MLMG: Timers: Solve = 0.002794445 Iter = 0 Bottom = 0 Done calling nodal solver Call to estdt for level 0 gives dt_lev = 2.298789937e-05 Minimum estdt over all levels = 2.298789937e-05 Call to estdt at end of istep_divu_iter = 3 gives dt = 2.298789937e-05 Multiplying dt by init_shrink; dt = 2.298789937e-05 Ignoring this new dt since it's larger than the previous dt = 7.656411368e-08 Writing plotfile double_bubble_2d_pltafter_DivuIter after final DivuIter Time to write plotfile: 0.065534042 Doing initial pressure iteration #1  Timestep 0 starts with TIME = 0 DT = 7.656411368e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.09220710376 MLMG: Initial residual (resid0) = 0.09220710376 MLMG: Final Iter. 9 resid, resid/bnorm = 2.455981718e-12, 2.663549355e-11 MLMG: Timers: Solve = 0.054007754 Iter = 0.050731518 Bottom = 0.000195349 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.09220710376 MLMG: Initial residual (resid0) = 0.0004260702441 MLMG: Final Iter. 7 resid, resid/bnorm = 8.282632203e-12, 8.982640019e-11 MLMG: Timers: Solve = 0.042168553 Iter = 0.039283621 Bottom = 0.000169216 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 2405121.991 MLMG: Initial residual (resid0) = 2405121.991 MLMG: Final Iter. 7 resid, resid/bnorm = 7.503622328e-07, 3.119851033e-13 MLMG: Timers: Solve = 0.097018374 Iter = 0.094194377 Bottom = 0.00012189 Done calling nodal solver Timestep 0 ends with TIME = 7.656411368e-08 DT = 7.656411368e-08 Timing summary: Advection :0.165953216 seconds MAC Proj :0.108725964 seconds Nodal Proj :0.11268778 seconds Reactions :0.013580432 seconds Misc :0.025281941 seconds Base State :4.800000003e-08 seconds Time to advance time step: 0.43308338 Doing initial pressure iteration #2  Timestep 0 starts with TIME = 0 DT = 7.656411368e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.04596608176 MLMG: Initial residual (resid0) = 0.04596608176 MLMG: Final Iter. 8 resid, resid/bnorm = 6.8717948e-13, 1.494970756e-11 MLMG: Timers: Solve = 0.047915484 Iter = 0.045075936 Bottom = 0.000196217 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.04596608176 MLMG: Initial residual (resid0) = 0.0002836050058 MLMG: Final Iter. 8 resid, resid/bnorm = 1.280322311e-12, 2.785363168e-11 MLMG: Timers: Solve = 0.047943099 Iter = 0.044926957 Bottom = 0.000177979 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 386248.2245 MLMG: Initial residual (resid0) = 386248.2245 MLMG: Final Iter. 6 resid, resid/bnorm = 1.884473022e-08, 4.878916983e-14 MLMG: Timers: Solve = 0.082862119 Iter = 0.079928832 Bottom = 0.000104278 Done calling nodal solver Timestep 0 ends with TIME = 7.656411368e-08 DT = 7.656411368e-08 Timing summary: Advection :0.165021003 seconds MAC Proj :0.107517014 seconds Nodal Proj :0.098477133 seconds Reactions :0.013611983 seconds Misc :0.022325011 seconds Base State :3.900000001e-08 seconds Time to advance time step: 0.4072784 Doing initial pressure iteration #3  Timestep 0 starts with TIME = 0 DT = 7.656411368e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.0433861321 MLMG: Initial residual (resid0) = 0.0433861321 MLMG: Final Iter. 8 resid, resid/bnorm = 8.726436999e-13, 2.011342468e-11 MLMG: Timers: Solve = 0.048106336 Iter = 0.045280191 Bottom = 0.000193387 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.0433861321 MLMG: Initial residual (resid0) = 0.0002834183987 MLMG: Final Iter. 8 resid, resid/bnorm = 1.283079112e-12, 2.957348465e-11 MLMG: Timers: Solve = 0.048398092 Iter = 0.045547048 Bottom = 0.000180379 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 172517.3153 MLMG: Initial residual (resid0) = 172517.3153 MLMG: Final Iter. 5 resid, resid/bnorm = 3.028708306e-08, 1.755596707e-13 MLMG: Timers: Solve = 0.069791423 Iter = 0.066957878 Bottom = 9.2972e-05 Done calling nodal solver Timestep 0 ends with TIME = 7.656411368e-08 DT = 7.656411368e-08 Timing summary: Advection :0.165878417 seconds MAC Proj :0.108093109 seconds Nodal Proj :0.085455497 seconds Reactions :0.013148062 seconds Misc :0.022306522 seconds Base State :3.100000012e-08 seconds Time to advance time step: 0.395193833 Writing plotfile 0 after all initialization Time to write plotfile: 0.066931877 Beginning main evolution  Timestep 1 starts with TIME = 0 DT = 7.656411368e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.04275829807 MLMG: Initial residual (resid0) = 0.04275829807 MLMG: Final Iter. 8 resid, resid/bnorm = 9.257219557e-13, 2.165011232e-11 MLMG: Timers: Solve = 0.047872245 Iter = 0.044912755 Bottom = 0.000189537 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.04275829807 MLMG: Initial residual (resid0) = 0.0002833664647 MLMG: Final Iter. 8 resid, resid/bnorm = 1.283870362e-12, 3.002622696e-11 MLMG: Timers: Solve = 0.047967803 Iter = 0.045145454 Bottom = 0.000183741 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 0.1841463088 MLMG: Initial residual (resid0) = 0.1841463088 MLMG: Final Iter. 7 resid, resid/bnorm = 5.730832475e-14, 3.112108253e-13 MLMG: Timers: Solve = 0.097568816 Iter = 0.094731091 Bottom = 0.000140718 Done calling nodal solver Timestep 1 ends with TIME = 7.656411368e-08 DT = 7.656411368e-08 Timing summary: Advection :0.164745042 seconds MAC Proj :0.107551855 seconds Nodal Proj :0.113684147 seconds Reactions :0.01316211 seconds Misc :0.022727483 seconds Base State :3.500000023e-08 seconds Time to advance time step: 0.428971326 Call to estdt for level 0 gives dt_lev = 3.083908518e-05 Minimum estdt over all levels = 3.083908518e-05 Call to estdt at beginning of step 2 gives dt =3.083908518e-05 dt_growth factor limits the new dt = 8.422052505e-08  Timestep 2 starts with TIME = 7.656411368e-08 DT = 8.422052505e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.1301715907 MLMG: Initial residual (resid0) = 0.1301715907 MLMG: Final Iter. 8 resid, resid/bnorm = 4.055911531e-12, 3.115819288e-11 MLMG: Timers: Solve = 0.047763472 Iter = 0.044902216 Bottom = 0.000171177 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.1301715907 MLMG: Initial residual (resid0) = 0.0008811634353 MLMG: Final Iter. 8 resid, resid/bnorm = 4.005722837e-12, 3.077263491e-11 MLMG: Timers: Solve = 0.047884585 Iter = 0.0450076 Bottom = 0.000181315 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 0.221410349 MLMG: Initial residual (resid0) = 0.221410349 MLMG: Final Iter. 7 resid, resid/bnorm = 6.311617895e-14, 2.850642674e-13 MLMG: Timers: Solve = 0.096514536 Iter = 0.09367672 Bottom = 0.000129959 Done calling nodal solver Timestep 2 ends with TIME = 1.607846387e-07 DT = 8.422052505e-08 Timing summary: Advection :0.173846163 seconds MAC Proj :0.107355095 seconds Nodal Proj :0.112358737 seconds Reactions :0.013277039 seconds Misc :0.022332551 seconds Base State :3.500000023e-08 seconds Time to advance time step: 0.429465236 Call to estdt for level 0 gives dt_lev = 3.124833366e-05 Minimum estdt over all levels = 3.124833366e-05 Call to estdt at beginning of step 3 gives dt =3.124833366e-05 dt_growth factor limits the new dt = 9.264257755e-08  Timestep 3 starts with TIME = 1.607846387e-07 DT = 9.264257755e-08 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.2067293511 MLMG: Initial residual (resid0) = 0.2067293511 MLMG: Final Iter. 8 resid, resid/bnorm = 7.954215845e-12, 3.847647081e-11 MLMG: Timers: Solve = 0.048236176 Iter = 0.045256597 Bottom = 0.000181393 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.2067293511 MLMG: Initial residual (resid0) = 0.001538514331 MLMG: Final Iter. 8 resid, resid/bnorm = 7.007030806e-12, 3.38947071e-11 MLMG: Timers: Solve = 0.048377153 Iter = 0.045551125 Bottom = 0.000180727 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 0.256751109 MLMG: Initial residual (resid0) = 0.256751109 MLMG: Final Iter. 7 resid, resid/bnorm = 6.90975055e-14, 2.691225202e-13 MLMG: Timers: Solve = 0.096473731 Iter = 0.093635975 Bottom = 0.000126675 Done calling nodal solver Timestep 3 ends with TIME = 2.534272163e-07 DT = 9.264257755e-08 Timing summary: Advection :0.173419931 seconds MAC Proj :0.108107659 seconds Nodal Proj :0.112259238 seconds Reactions :0.013332001 seconds Misc :0.022634113 seconds Base State :3.199999998e-08 seconds Time to advance time step: 0.430059458 Call to estdt for level 0 gives dt_lev = 3.131117301e-05 Minimum estdt over all levels = 3.131117301e-05 Call to estdt at beginning of step 4 gives dt =3.131117301e-05 dt_growth factor limits the new dt = 1.019068353e-07  Timestep 4 starts with TIME = 2.534272163e-07 DT = 1.019068353e-07 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.2913498304 MLMG: Initial residual (resid0) = 0.2913498304 MLMG: Final Iter. 8 resid, resid/bnorm = 1.074733965e-11, 3.688809303e-11 MLMG: Timers: Solve = 0.048200053 Iter = 0.045367008 Bottom = 0.000188467 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.2913498304 MLMG: Initial residual (resid0) = 0.002262934381 MLMG: Final Iter. 8 resid, resid/bnorm = 1.028622109e-11, 3.530539585e-11 MLMG: Timers: Solve = 0.047852583 Iter = 0.045017429 Bottom = 0.000175319 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 0.2902215403 MLMG: Initial residual (resid0) = 0.2902215403 MLMG: Final Iter. 7 resid, resid/bnorm = 7.567557692e-14, 2.607510691e-13 MLMG: Timers: Solve = 0.09659133 Iter = 0.093746284 Bottom = 0.000124284 Done calling nodal solver Timestep 4 ends with TIME = 3.553340516e-07 DT = 1.019068353e-07 Timing summary: Advection :0.174282106 seconds MAC Proj :0.107632142 seconds Nodal Proj :0.112535705 seconds Reactions :0.013144699 seconds Misc :0.022310468 seconds Base State :6.000000008e-08 seconds Time to advance time step: 0.430237406 Call to estdt for level 0 gives dt_lev = 3.131144172e-05 Minimum estdt over all levels = 3.131144172e-05 Call to estdt at beginning of step 5 gives dt =3.131144172e-05 dt_growth factor limits the new dt = 1.120975188e-07  Timestep 5 starts with TIME = 3.553340516e-07 DT = 1.120975188e-07 Cell Count: Level 0, 262144 cells <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 0.3837935459 MLMG: Initial residual (resid0) = 0.3837935459 MLMG: Final Iter. 8 resid, resid/bnorm = 1.405302524e-11, 3.661610621e-11 MLMG: Timers: Solve = 0.048167379 Iter = 0.045314415 Bottom = 0.000175106 <<< STEP 4 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 4a: thermal conduct >>> <<< STEP 5 : react state >>> <<< STEP 6 : make new S and new w0 >>> <<< STEP 7 : create MAC velocities >>> MLMG: Initial rhs = 0.3837935459 MLMG: Initial residual (resid0) = 0.003059812973 MLMG: Final Iter. 8 resid, resid/bnorm = 1.389730128e-11, 3.621035692e-11 MLMG: Timers: Solve = 0.047594808 Iter = 0.044675679 Bottom = 0.000174285 <<< STEP 8 : advect base >>> : density_advance >>> : tracer_advance >>> : enthalpy_advance >>> <<< STEP 8a: thermal conduct >>> <<< STEP 9 : react state >>> <<< STEP 10: make new S >>> <<< STEP 11: update and project new velocity >>> Calling nodal solver MLMG: Initial rhs = 0.3244360328 MLMG: Initial residual (resid0) = 0.3244360328 MLMG: Final Iter. 7 resid, resid/bnorm = 8.271161533e-14, 2.549396706e-13 MLMG: Timers: Solve = 0.096429755 Iter = 0.093405376 Bottom = 0.000124464 Done calling nodal solver Timestep 5 ends with TIME = 4.674315704e-07 DT = 1.120975188e-07 Timing summary: Advection :0.174636358 seconds MAC Proj :0.107364508 seconds Nodal Proj :0.112271804 seconds Reactions :0.013457612 seconds Misc :0.022338513 seconds Base State :5.299999994e-08 seconds Time to advance time step: 0.430363906 Writing plotfile 5 Time to write plotfile: 0.066973522 Total Time: 3.865978957 Unused ParmParse Variables: [TOP]::amr.check_file(nvals = 1) :: [double_bubble_2d_chk] [TOP]::amr.checkpoint_files_output(nvals = 1) :: [0] [TOP]::amr.plot_file(nvals = 1) :: [double_bubble_2d_plt] [TOP]::amr.ref_ratio(nvals = 4) :: [2, 2, 2, 2] AMReX (26.04-113-g05a28aa730e4) finalized