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143 lines (143 loc) · 5.61 KB
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#include "zeus2d.def"
c=======================================================================
c////////////////////////// SUBROUTINES BVAL* \\\\\\\\\\\\\\\\\\\\\\\\
c
c PURPOSE: These routines set the boundary values for the radiation
c energy density at the old and new timestep needed during the NR
c iterations of the moment equations. The same boundary tyes as
c implemented for the hydrodynamical variables are implemented here.
c
c\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\///////////////////////////////
c=======================================================================
c
c--------------- radiation energy density boundary values ------------
c
subroutine bvaler
#ifdef RAD
implicit NONE
#include "param.h"
#include "grid.h"
#include "field.h"
#include "bndry.h"
integer i,j
c
c inner i boundary
cdir$ ivdep
do 10 j=js,je
if (liib(j) .eq. 1) er(iim1(j),j) = er (ii (j),j)
if (liib(j) .eq. 2) er(iim1(j),j) = er (ii (j),j)
if (liib(j) .eq. 3) er(iim1(j),j) = eriim1( j)
if (liib(j) .eq. 4) er(iim1(j),j) = er (io (j),j)
er(iim2(j),j) = er (iim1(j),j)
if (liib(j) .eq. 1) er(iim2(j),j) = er (iip1(j),j)
if (liib(j) .eq. 3) er(iim2(j),j) = eriim2( j)
if (liib(j) .eq. 4) er(iim2(j),j) = er (iom1(j),j)
10 continue
c
c outer i boundary
cdir$ ivdep
do 20 j=js,je
if (loib(j) .eq. 1) er(iop1(j),j) = er (io (j),j)
if (loib(j) .eq. 2) er(iop1(j),j) = er (io (j),j)
if (loib(j) .eq. 3) er(iop1(j),j) = eriop1( j)
if (loib(j) .eq. 4) er(iop1(j),j) = er (ii (j),j)
er(iop2(j),j) = er (iop1(j),j)
if (loib(j) .eq. 1) er(iop2(j),j) = er (iom1(j),j)
if (loib(j) .eq. 3) er(iop2(j),j) = eriop2( j)
if (loib(j) .eq. 4) er(iop2(j),j) = er (iip1(j),j)
20 continue
c
c inner j boundary
cdir$ ivdep
do 30 i=is-2,ie+2
if (lijb(i) .eq. 1) er(i,jim1(i)) = er (i,ji (i))
if (lijb(i) .eq. 2) er(i,jim1(i)) = er (i,ji (i))
if (lijb(i) .eq. 3) er(i,jim1(i)) = erjim1(i )
if (lijb(i) .eq. 4) er(i,jim1(i)) = er (i,jo (i))
er(i,jim2(i)) = er (i,jim1(i))
if (lijb(i) .eq. 1) er(i,jim2(i)) = er (i,jip1(i))
if (lijb(i) .eq. 3) er(i,jim2(i)) = erjim2(i )
if (lijb(i) .eq. 4) er(i,jim2(i)) = er (i,jom1(i))
30 continue
c
c outer j boundary
cdir$ ivdep
do 40 i=is-2,ie+2
if (lojb(i) .eq. 1) er(i,jop1(i)) = er (i,jo (i))
if (lojb(i) .eq. 2) er(i,jop1(i)) = er (i,jo (i))
if (lojb(i) .eq. 3) er(i,jop1(i)) = erjop1(i )
if (lojb(i) .eq. 4) er(i,jop1(i)) = er (i,ji (i))
er(i,jop2(i)) = er (i,jop1(i))
if (lojb(i) .eq. 1) er(i,jop2(i)) = er (i,jom1(i))
if (lojb(i) .eq. 3) er(i,jop2(i)) = erjop2(i )
if (lojb(i) .eq. 4) er(i,jop2(i)) = er (i,jip1(i))
40 continue
#endif
return
end
c
c------------ new radiation energy density boundary values -----------
c
subroutine bvalern
#ifdef RAD
implicit NONE
#include "param.h"
#include "grid.h"
#include "bndry.h"
#include "radiation.h"
integer i,j
c
c inner i boundary
cdir$ ivdep
do 10 j=js,je
if (liib(j) .eq. 1) ern(iim1(j),j) = ern (ii (j),j)
if (liib(j) .eq. 2) ern(iim1(j),j) = ern (ii (j),j)
if (liib(j) .eq. 3) ern(iim1(j),j) = eriim1( j)
if (liib(j) .eq. 4) ern(iim1(j),j) = ern (io (j),j)
ern(iim2(j),j) = ern (iim1(j),j)
if (liib(j) .eq. 1) ern(iim2(j),j) = ern (iip1(j),j)
if (liib(j) .eq. 3) ern(iim2(j),j) = eriim2( j)
if (liib(j) .eq. 4) ern(iim2(j),j) = ern (iom1(j),j)
10 continue
c
c outer i boundary
cdir$ ivdep
do 20 j=js,je
if (loib(j) .eq. 1) ern(iop1(j),j) = ern (io (j),j)
if (loib(j) .eq. 2) ern(iop1(j),j) = ern (io (j),j)
if (loib(j) .eq. 3) ern(iop1(j),j) = eriop1( j)
if (loib(j) .eq. 4) ern(iop1(j),j) = ern (ii (j),j)
ern(iop2(j),j) = ern (iop1(j),j)
if (loib(j) .eq. 1) ern(iop2(j),j) = ern (iom1(j),j)
if (loib(j) .eq. 3) ern(iop2(j),j) = eriop2( j)
if (loib(j) .eq. 4) ern(iop2(j),j) = ern (iip1(j),j)
20 continue
c
c inner j boundary
cdir$ ivdep
do 30 i=is-2,ie+2
if (lijb(i) .eq. 1) ern(i,jim1(i)) = ern (i,ji (i))
if (lijb(i) .eq. 2) ern(i,jim1(i)) = ern (i,ji (i))
if (lijb(i) .eq. 3) ern(i,jim1(i)) = erjim1(i )
if (lijb(i) .eq. 4) ern(i,jim1(i)) = ern (i,jo (i))
ern(i,jim2(i)) = ern (i,jim1(i))
if (lijb(i) .eq. 1) ern(i,jim2(i)) = ern (i,jip1(i))
if (lijb(i) .eq. 3) ern(i,jim2(i)) = erjim2(i )
if (lijb(i) .eq. 4) ern(i,jim2(i)) = ern (i,jom1(i))
30 continue
c
c outer j boundary
cdir$ ivdep
do 40 i=is-2,ie+2
if (lojb(i) .eq. 1) ern(i,jop1(i)) = ern (i,jo (i))
if (lojb(i) .eq. 2) ern(i,jop1(i)) = ern (i,jo (i))
if (lojb(i) .eq. 3) ern(i,jop1(i)) = erjop1(i )
if (lojb(i) .eq. 4) ern(i,jop1(i)) = ern (i,ji (i))
ern(i,jop2(i)) = ern (i,jop1(i))
if (lojb(i) .eq. 1) ern(i,jop2(i)) = ern (i,jom1(i))
if (lojb(i) .eq. 3) ern(i,jop2(i)) = erjop2(i )
if (lojb(i) .eq. 4) ern(i,jop2(i)) = ern (i,jip1(i))
40 continue
#endif
return
end