C $Header: /home/ubuntu/mnt/e9_copy/MITgcm/pkg/gmredi/gmredi_calc_diff.F,v 1.11 2011/12/12 15:34:08 mlosch Exp $ C $Name: $ #include "GMREDI_OPTIONS.h" SUBROUTINE GMREDI_CALC_DIFF( I bi,bj,iMin,iMax,jMin,jMax,kArg,kSize, U KappaRx, I tracerIdentity,myThid) C /==========================================================\ C | SUBROUTINE GMREDI_CALC_DIFF | C | o Add contribution to net diffusivity from GM/Redi | C \==========================================================/ IMPLICIT NONE C == GLobal variables == #include "SIZE.h" #include "EEPARAMS.h" #include "PARAMS.h" #include "GRID.h" #include "GAD.h" #ifdef ALLOW_LONGSTEP #include "LONGSTEP.h" #endif #ifdef ALLOW_GMREDI #include "GMREDI.h" #endif C == Routine arguments == C bi, bj, :: tile indices C iMin,iMax :: Range of points for which calculation is done C jMin,jMax :: Range of points for which calculation is done C kArg :: = 0 -> do the k-loop here and treat all levels C > 0 -> k-loop is done outside and treat only level k=kArg C kSize :: 3rd Dimension of the vertical diffusivity array KappaRx C KappaRx :: vertical diffusivity array C myThid :: Instance number for this innvocation of GMREDI_CALC_DIFF C INTEGER bi,bj,iMin,iMax,jMin,jMax,kArg,kSize _RL KappaRx(1-Olx:sNx+Olx,1-Oly:sNy+Oly,kSize) INTEGER tracerIdentity INTEGER myThid #ifdef ALLOW_GMREDI C == Local variables == C i,j,k :: Loop counters INTEGER i,j,k C-- Add Vertical diffusivity contribution from GM/Redi IF ( kArg .EQ. 0 ) THEN C- do all levels : DO k=1,MIN(Nr,kSize) DO j=jMin,jMax DO i=iMin,iMax IF (tracerIdentity .LT. GAD_TR1) THEN KappaRx(i,j,k) = KappaRx(i,j,k)+Kwz(i,j,k,bi,bj) & *maskInC(i,j,bi,bj) ELSE #ifdef ALLOW_LONGSTEP KappaRx(i,j,k) = KappaRx(i,j,k)+LS_Kwz(i,j,k,bi,bj) #else KappaRx(i,j,k) = KappaRx(i,j,k)+Kwz(i,j,k,bi,bj) #endif & *maskInC(i,j,bi,bj) ENDIF ENDDO ENDDO ENDDO ELSE C- do level k=kArg only : k = MIN(kArg,kSize) DO j=jMin,jMax DO i=iMin,iMax IF (tracerIdentity .LT. GAD_TR1) THEN KappaRx(i,j,k) = KappaRx(i,j,k)+Kwz(i,j,kArg,bi,bj) & *maskInC(i,j,bi,bj) ELSE #ifdef ALLOW_LONGSTEP KappaRx(i,j,k) = KappaRx(i,j,k)+LS_Kwz(i,j,kArg,bi,bj) #else KappaRx(i,j,k) = KappaRx(i,j,k)+Kwz(i,j,kArg,bi,bj) #endif & *maskInC(i,j,bi,bj) ENDIF ENDDO ENDDO ENDIF #endif /* ALLOW_GMREDI */ RETURN END