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📄 claw2ez.data

📁 CLAWPACK is a software package designed to compute numerical solutions to hyperbolic partial differe
💻 DATA
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 50                mx          = cells in x direction 50                my          = cells in y direction10                 nout        = number of output times to print results1                  outstyle    = style of specifying output times1.0d0              tfinal      = final time0.1d0              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 number0.9d0              cflv(2)     = desired Courant number500                nv(1)       = max number of time steps per call to claw21                  method(1)   = 1 for variable dt,   = 0 for fixed dt2                  method(2)   = order 2                  method(3)   = transverse order1                  method(4)   = verbosity of output0                  method(5)   = source term splitting0                  method(6)   = mcapa0                  method(7)   = maux (should agree with parameter in driver)1                  meqn        = number of equations in hyperbolic system1                  mwaves      = number of waves in each Riemann solution3                  mthlim(mw)  = limiter for each wave  (mw=1,mwaves)0.d0               t0          = initial time0.0d0              xlower      = left edge of computational domain1.0d0              xupper      = right edge of computational domain0.0d0              ylower      = bottom edge of computational domain1.0d0              yupper      = top edge of computational domain2                  mbc         = number of ghost cells at each boundary1                  mthbc(1)    = type of boundary conditions at left1                  mthbc(2)    = type of boundary conditions at right1                  mthbc(3)    = type of boundary conditions at bottom1                  mthbc(4)    = type of boundary conditions at top2                  lx          = number of strips in x direction2                  ly          = number of strips in y direction

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