Initializing AMReX (26.09-163-gfca855037a21)... MPI initialized with 4 MPI processes MPI initialized with thread support level 0 AMReX (26.09-163-gfca855037a21) initialized Calling Setup() Calling ReadParameters() reading extern runtime parameters ... Calling VariableSetup() Calling BCSetup() Calling BaseStateGeometry::Init() Calling Init() Calling InitData() initdata model_File = model.hse.cool.coulomb model file = model.hse.cool.coulomb reading initial model 640 points found in the initial model 6 variables found in the initial model model file mapping, level: 0 dr of MAESTRO base state = 2250000.000000 dr of input file data = 562500.000000 maximum radius (cell-centered) of input model = 359718750.000000 setting r_cutoff to 91 radius at r_cutoff 205875000 Maximum HSE Error = 0.006358 (after putting initial model into base state arrays, and for density < base_cutoff_density) model file mapping, level: 1 dr of MAESTRO base state = 1125000.000000 dr of input file data = 562500.000000 maximum radius (cell-centered) of input model = 359718750.000000 setting r_cutoff to 182 radius at r_cutoff 205312500 Maximum HSE Error = 0.001719 (after putting initial model into base state arrays, and for density < base_cutoff_density) model file mapping, level: 2 dr of MAESTRO base state = 562500.000000 dr of input file data = 562500.000000 maximum radius (cell-centered) of input model = 359718750.000000 setting r_cutoff to 365 radius at r_cutoff 205593750 Maximum HSE Error = 0.000061 (after putting initial model into base state arrays, and for density < base_cutoff_density) Writing plotfile reacting_bubble_2d_amr_pltInitData after InitData inner sponge: r_sp , r_tp : 187875000, 223875000 Time to write plotfile: 0.092296711 inner sponge: r_sp , r_tp : 187875000, 223875000 Doing initial projection Calling nodal solver MLMG: Initial rhs = 0 MLMG: Initial residual (resid0) = 0 MLMG: No iterations needed MLMG: Timers: Solve = 0.000684184 Iter = 0 Bottom = 0 Done calling nodal solver Writing plotfile reacting_bubble_2d_amr_pltafter_InitProj after InitProj inner sponge: r_sp , r_tp : 187875000, 223875000 Time to write plotfile: 0.090387834 Call to firstdt for level 0 gives dt_lev = 0.001900186535 Multiplying dt_lev by init_shrink; dt_lev = 0.001900186535 Call to firstdt for level 1 gives dt_lev = 0.001060149082 Multiplying dt_lev by init_shrink; dt_lev = 0.001060149082 Call to firstdt for level 2 gives dt_lev = 0.0005417438695 Multiplying dt_lev by init_shrink; dt_lev = 0.0005417438695 Minimum firstdt over all levels = 0.0005417438695 Doing initial divu iteration #1 Calling nodal solver MLMG: Initial rhs = 12829.54334 MLMG: Initial residual (resid0) = 12829.54334 MLMG: Final Iter. 4 resid, resid/bnorm = 0.002447835994, 1.907968139e-07 MLMG: Timers: Solve = 0.009304735 Iter = 0.008759311 Bottom = 0.00012538 Done calling nodal solver Call to estdt for level 0 gives dt_lev = 0.3355212738 Call to estdt for level 1 gives dt_lev = 0.2352464797 Call to estdt for level 2 gives dt_lev = 0.1661095905 Minimum estdt over all levels = 0.1661095905 Call to estdt at end of istep_divu_iter = 1 gives dt = 0.1661095905 Multiplying dt by init_shrink; dt = 0.1661095905 Ignoring this new dt since it's larger than the previous dt = 0.0005417438695 Writing plotfile reacting_bubble_2d_amr_pltafter_DivuIter after final DivuIter inner sponge: r_sp , r_tp : 187875000, 223875000 Time to write plotfile: 0.090429036 Doing initial pressure iteration #1  Timestep 0 starts with TIME = 0 DT = 0.0005417438695 Cell Count: Level 0, 10240 cells Level 1, 6144 cells Level 2, 18432 cells inner sponge: r_sp , r_tp : 187875000, 223875000 <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 3239326.635 MLMG: Initial residual (resid0) = 3239326.635 MLMG: Final Iter. 7 resid, resid/bnorm = 0.01097363036, 3.387626996e-09 MLMG: Timers: Solve = 0.008161424 Iter = 0.007335885 Bottom = 0.000228347 <<< 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 = 3239323.796 MLMG: Initial residual (resid0) = 725.3963012 MLMG: Final Iter. 3 resid, resid/bnorm = 0.003112709168, 9.609132534e-10 MLMG: Timers: Solve = 0.003836082 Iter = 0.003265628 Bottom = 8.9558e-05 <<< 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 = 1.199753161e+10 MLMG: Initial residual (resid0) = 1.199753161e+10 MLMG: Final Iter. 8 resid, resid/bnorm = 0.3726389781, 3.105963712e-11 MLMG: Timers: Solve = 0.017402758 Iter = 0.016851182 Bottom = 0.000225816 Done calling nodal solver Timestep 0 ends with TIME = 0.0005417438695 DT = 0.0005417438695 Timing summary: Advection :0.049061216 seconds MAC Proj :0.015762479 seconds Nodal Proj :0.022661497 seconds Reactions :0.12673167 seconds Misc :0.023072578 seconds Base State :0.000808285 seconds Time to advance time step: 0.242881273 Writing plotfile 0 after all initialization inner sponge: r_sp , r_tp : 187875000, 223875000 Time to write plotfile: 0.091927363 Beginning main evolution  Timestep 1 starts with TIME = 0 DT = 0.0005417438695 Cell Count: Level 0, 10240 cells Level 1, 6144 cells Level 2, 18432 cells inner sponge: r_sp , r_tp : 187875000, 223875000 <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 942189.5179 MLMG: Initial residual (resid0) = 942189.5179 MLMG: Final Iter. 7 resid, resid/bnorm = 0.0007745461844, 8.220704748e-10 MLMG: Timers: Solve = 0.008121838 Iter = 0.007545116 Bottom = 0.000217315 <<< 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 = 942189.5506 MLMG: Initial residual (resid0) = 1.101719541 MLMG: Final Iter. 1 resid, resid/bnorm = 0.006009219207, 6.377930219e-09 MLMG: Timers: Solve = 0.001873267 Iter = 0.001292118 Bottom = 3.9745e-05 <<< 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 = 6499597.232 MLMG: Initial residual (resid0) = 6499597.232 MLMG: Final Iter. 8 resid, resid/bnorm = 0.0002018732594, 3.105934909e-11 MLMG: Timers: Solve = 0.017340889 Iter = 0.016796159 Bottom = 0.000225058 Done calling nodal solver Timestep 1 ends with TIME = 0.0005417438695 DT = 0.0005417438695 Timing summary: Advection :0.047765096 seconds MAC Proj :0.014044076 seconds Nodal Proj :0.02239403 seconds Reactions :0.125934958 seconds Misc :0.02328959 seconds Base State :0.000817768 seconds Time to advance time step: 0.239078966 Call to estdt for level 0 gives dt_lev = 0.4621907805 Call to estdt for level 1 gives dt_lev = 0.3237148621 Call to estdt for level 2 gives dt_lev = 0.2282385675 Minimum estdt over all levels = 0.2282385675 Call to estdt at beginning of step 2 gives dt =0.2282385675 dt_growth factor limits the new dt = 0.0005959182564  Timestep 2 starts with TIME = 0.0005417438695 DT = 0.0005959182564 Cell Count: Level 0, 10240 cells Level 1, 6144 cells Level 2, 18432 cells inner sponge: r_sp , r_tp : 187875000, 223875000 <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 1393713.485 MLMG: Initial residual (resid0) = 1393713.485 MLMG: Final Iter. 6 resid, resid/bnorm = 0.01301109498, 9.33555937e-09 MLMG: Timers: Solve = 0.007124655 Iter = 0.00654139 Bottom = 0.000174318 <<< 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 = 1393713.993 MLMG: Initial residual (resid0) = 4319.004077 MLMG: Final Iter. 4 resid, resid/bnorm = 0.000924996005, 6.636914101e-10 MLMG: Timers: Solve = 0.005259993 Iter = 0.004681054 Bottom = 0.000119338 <<< 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 = 7165134.692 MLMG: Initial residual (resid0) = 7165134.692 MLMG: Final Iter. 8 resid, resid/bnorm = 0.0002226798606, 3.107825186e-11 MLMG: Timers: Solve = 0.017308603 Iter = 0.016767493 Bottom = 0.000234648 Done calling nodal solver Timestep 2 ends with TIME = 0.001137662126 DT = 0.0005959182564 Timing summary: Advection :0.048234845 seconds MAC Proj :0.016027998 seconds Nodal Proj :0.022485852 seconds Reactions :0.126199192 seconds Misc :0.023523431 seconds Base State :0.000789695 seconds Time to advance time step: 0.23689716 Call to estdt for level 0 gives dt_lev = 0.4623016567 Call to estdt for level 1 gives dt_lev = 0.3238059212 Call to estdt for level 2 gives dt_lev = 0.2283160255 Minimum estdt over all levels = 0.2283160255 Call to estdt at beginning of step 3 gives dt =0.2283160255 dt_growth factor limits the new dt = 0.000655510082  Timestep 3 starts with TIME = 0.001137662126 DT = 0.000655510082 Cell Count: Level 0, 10240 cells Level 1, 6144 cells Level 2, 18432 cells inner sponge: r_sp , r_tp : 187875000, 223875000 <<< STEP 1 : react state >>> <<< STEP 2 : make w0 >>> <<< STEP 3 : create MAC velocities >>> MLMG: Initial rhs = 2106885.503 MLMG: Initial residual (resid0) = 2106885.503 MLMG: Final Iter. 6 resid, resid/bnorm = 0.01652645163, 7.84401981e-09 MLMG: Timers: Solve = 0.006974627 Iter = 0.006397332 Bottom = 0.000199201 <<< 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 = 2106886.062 MLMG: Initial residual (resid0) = 501.8146569 MLMG: Final Iter. 3 resid, resid/bnorm = 0.007335910293, 3.481873285e-09 MLMG: Timers: Solve = 0.003884962 Iter = 0.003292952 Bottom = 9.3251e-05 <<< 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 = 7881715.48 MLMG: Initial residual (resid0) = 7881715.48 MLMG: Final Iter. 8 resid, resid/bnorm = 0.0002477036469, 3.142763114e-11 MLMG: Timers: Solve = 0.017349871 Iter = 0.016787706 Bottom = 0.000232064 Done calling nodal solver Timestep 3 ends with TIME = 0.001793172208 DT = 0.000655510082 Timing summary: Advection :0.048852156 seconds MAC Proj :0.01448063 seconds Nodal Proj :0.022404018 seconds Reactions :0.126788834 seconds Misc :0.02387395 seconds Base State :0.000798237 seconds Time to advance time step: 0.236661744 Writing plotfile 3 inner sponge: r_sp , r_tp : 187875000, 223875000 Time to write plotfile: 0.092846364 Total Time: 2.408785721 Unused ParmParse Variables: [TOP]::amr.check_file(nvals = 1) :: [reacting_bubble_2d_amr_chk] [TOP]::amr.checkpoint_files_output(nvals = 1) :: [0] [TOP]::amr.plot_file(nvals = 1) :: [reacting_bubble_2d_amr_plt] AMReX (26.09-163-gfca855037a21) finalized