1 nRootGrids = number of root level grids F Restart = restart flag 3 MaxLevel = allowed number of grid refinement levels 2 2 2 2 2 2 2 grid refinement ratios 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 field variable tolerances on each level 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 1.0e-4 spatial variable tolerances on each level 0 iBuffer = size of buffer zone around area flagged for refinement 4 MinimumGridPoints along one dimension 0.75 DesiredFillRatio in determining a new subgrid 5 MaxCFLRetry = maximum number of times to reduce dt so that cfl<=cflv(1) before giving up 3 Output style = 1 ARMCLAW, 2 TECPLOT, 3 HDF 20 nout = number of output times to print results 0 TimeStepMethod 0=fixed dt, 1=variable dt 0.d0 t0 = initial time 10.0d0 tfinal = final time 2 nDim = number of dimensions for this problem 2 MethodOrder = order of precision. used in error estimator 32 mx = cells in x direction 32 my = cells in y direction 1 32 mGlobal(1) = Grid extents along dimension 1 in global indexing system 1 32 mGlobal(2) = Grid extents along dimension 2 in global indexing system 0.0d0 xlower = left edge of computational domain 32.0d0 xupper = right edge of computational domain 0.0d0 ylower = bottom edge of computational domain 32.0d0 yupper = top edge of computational domain 2 mbc = number of ghost cells at each boundary 1 mthbc(1) = type of boundary conditions at left 1 mthbc(2) = type of boundary conditions at right 1 mthbc(3) = type of boundary conditions at bottom 1 mthbc(4) = type of boundary conditions at top 0.10d0 dtv(1) = initial dt (used in all steps if method(1)=0) 1.0d99 dtv(2) = max allowable dt 1.0d0 cflv(1) = max allowable Courant number 0.9d0 cflv(2) = desired Courant number 1 meqn = number of equations in hyperbolic system 1 method(1) = 1 for variable dt, = 0 for fixed dt 1 method(2) = order 0 method(3) = transverse order 0 method(4) = verbosity of output 0 method(5) = source term splitting 0 method(6) = mcapa 0 method(7) = maux (should agree with parameter in driver) 2 method(8) = Lax-Wendroff scheme 3 mthlim(mw) = limiter for each wave (mw=1,mwaves)