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#include "SEAICE.h" |
#include "SEAICE.h" |
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#include "SEAICE_PARAMS.h" |
#include "SEAICE_PARAMS.h" |
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#include "SEAICE_TRACER.h" |
#include "SEAICE_TRACER.h" |
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#ifdef ALLOW_SALT_PLUME |
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# include "SALT_PLUME.h" |
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#endif |
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28 |
C === Routine arguments === |
C === Routine arguments === |
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C INPUT: |
C INPUT: |
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DO bj=myByLo(myThid),myByHi(myThid) |
DO bj=myByLo(myThid),myByHi(myThid) |
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DO bi=myBxLo(myThid),myBxHi(myThid) |
DO bi=myBxLo(myThid),myBxHi(myThid) |
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DO iTr=1,SItrMaxNum |
DO iTr=1,SItrNumInUse |
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c 0) set ice-ocean and ice-snow exchange values |
c 0) set ice-ocean and ice-snow exchange values |
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c ============================================= |
c ============================================= |
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DO J=1,sNy |
DO J=1,sNy |
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DO I=1,sNx |
DO I=1,sNx |
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SItrFromOcean(i,j)=0. _d 0 |
SItrFromOcean(i,j)=SItrFromOcean0(iTr) |
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SItrFromFlood(i,j)=0. _d 0 |
SItrFromFlood(i,j)=SItrFromFlood0(iTr) |
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SItrExpand(i,j)=0. _d 0 |
SItrExpand(i,j)=SItrExpand0(iTr) |
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ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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if (SItrName(iTr).EQ.'age') then |
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c age tracer: no age in ocean, or effect from ice cover changes |
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elseif (SItrName(iTr).EQ.'salinity') then |
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c salinity tracer: |
c salinity tracer: |
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if ( (SItrName(iTr).EQ.'salinity').AND. |
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& (SItrFromOceanFrac(iTr).GT.ZERO) ) then |
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DO J=1,sNy |
DO J=1,sNy |
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DO I=1,sNx |
DO I=1,sNx |
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SItrFromOcean(i,j)=SIsal0 |
SItrFromOcean(i,j)=SItrFromOceanFrac(iTr)*salt(I,j,ks,bi,bj) |
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#ifdef SEAICE_VARIABLE_SALINITY |
SItrFromFlood(i,j)=SItrFromFloodFrac(iTr)*salt(I,j,ks,bi,bj) |
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if (SIsalFRAC.GT.0.) |
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& SItrFromOcean(i,j)=SIsalFRAC*salt(I,j,ks,bi,bj) |
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#endif |
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c as of now, flooding implies no salt extraction from ocean |
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ENDDO |
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ENDDO |
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elseif (SItrName(iTr).EQ.'one') then |
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c "ice concentration" tracer that should remain .EQ.1. |
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DO J=1,sNy |
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DO I=1,sNx |
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SItrFromOcean(i,j)=1. _d 0 |
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SItrFromFlood(i,j)=1. _d 0 |
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ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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endif |
endif |
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& tmpscal1, 1, diagName,0,1,2,bi,bj,myThid) |
& tmpscal1, 1, diagName,0,1,2,bi,bj,myThid) |
200 |
endif |
endif |
201 |
#endif |
#endif |
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if (SItrName(iTr).EQ.'age') then |
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c age tracer: not passed to ocean |
if ( (SItrName(iTr).EQ.'salinity').AND. |
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elseif (SItrName(iTr).EQ.'salinity') then |
& (SEAICE_salinityTracer) ) then |
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c salinity tracer: salt flux |
c salinity tracer: salt flux |
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c DO J=1,sNy |
DO J=1,sNy |
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c DO I=1,sNx |
DO I=1,sNx |
208 |
c saltFlux(I,J,bi,bj) = - SItrBucket(i,j,bi,bj,iTr) |
saltFlux(I,J,bi,bj) = - SItrBucket(i,j,bi,bj,iTr) |
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c & *HEFFM(I,J,bi,bj)/SEAICE_deltaTtherm*SEAICE_rhoIce |
& *HEFFM(I,J,bi,bj)/SEAICE_deltaTtherm*SEAICE_rhoIce |
210 |
c note: at this point of the time step, that is the correct sign |
c note: at this point of the time step, that is the correct sign |
211 |
c saltPlumeFlux(I,J,bi,bj) = ... |
#ifdef ALLOW_SALT_PLUME |
212 |
c ENDDO |
c should work for both constant and variable ice salinity -- to be tested |
213 |
c ENDDO |
saltPlumeFlux(I,J,bi,bj) = MAX(ZERO,saltFlux(I,J,bi,bj)) |
214 |
elseif (SItrName(iTr).EQ.'one') then |
& *SPsalFRAC*(salt(I,j,ks,bi,bj)-SItrFromOcean(i,j)) |
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c "ice concentration" tracer: not passed to ocean |
#endif |
216 |
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ENDDO |
217 |
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ENDDO |
218 |
endif |
endif |
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220 |
DO J=1,sNy |
DO J=1,sNy |
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DO I=1,sNx |
DO I=1,sNx |
222 |
#ifdef ALLOW_SITRACER_DEBUG_DIAG |
#ifdef ALLOW_SITRACER_DEBUG_DIAG |
227 |
SItrBucket(i,j,bi,bj,iTr)=0. _d 0 |
SItrBucket(i,j,bi,bj,iTr)=0. _d 0 |
228 |
ENDDO |
ENDDO |
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ENDDO |
ENDDO |
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c TAF? elseif (SItrMate(iTr).EQ.'AREA') then |
c TAF? elseif (SItrMate(iTr).EQ.'AREA') then |
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233 |
c 4) diagnostics |
c 4) diagnostics |
234 |
c ============== |
c ============== |
235 |
#ifdef ALLOW_SITRACER_DEBUG_DIAG |
#ifdef ALLOW_SITRACER_DEBUG_DIAG |