| 37 |  |  | 
| 38 | INTEGER iTr, jTh, I, J, bi, bj, ks | INTEGER iTr, jTh, I, J, bi, bj, ks | 
| 39 | _RL SItrFromOcean  (1:sNx,1:sNy) | _RL SItrFromOcean  (1:sNx,1:sNy) | 
| 40 | _RL SItrFromSnow   (1:sNx,1:sNy) | _RL SItrFromFlood   (1:sNx,1:sNy) | 
| 41 | _RL HEFFprev, HEFFpost, growFact, meltPart, tmpscal1 | _RL HEFFprev, HEFFpost, growFact, meltPart, tmpscal1 | 
| 42 |  | _RL SItrExpand  (1:sNx,1:sNy) | 
| 43 |  | _RL AREAprev, AREApost, expandFact | 
| 44 |  |  | 
| 45 | #ifdef ALLOW_SITRACER_DIAG | #ifdef ALLOW_SITRACER_DIAG | 
| 46 | _RL DIAGarray     (1:sNx,1:sNy,Nr) | _RL DIAGarray     (1:sNx,1:sNy,Nr) | 
| 61 | DO J=1,sNy | DO J=1,sNy | 
| 62 | DO I=1,sNx | DO I=1,sNx | 
| 63 | SItrFromOcean(i,j)=0. _d 0 | SItrFromOcean(i,j)=0. _d 0 | 
| 64 | SItrFromSnow(i,j)=0. _d 0 | SItrFromFlood(i,j)=0. _d 0 | 
| 65 |  | SItrExpand(i,j)=0. _d 0 | 
| 66 | ENDDO | ENDDO | 
| 67 | ENDDO | ENDDO | 
| 68 | if (SItrName(iTr).EQ.'age') then | if (SItrName(iTr).EQ.'age') then | 
| 69 | c age tracer: not passed from ocean or snow | c age tracer: no age in ocean, or effect from ice cover changes | 
|  | DO J=1,sNy |  | 
|  | DO I=1,sNx |  | 
|  | SItrFromOcean(i,j)=0. _d 0 |  | 
|  | ENDDO |  | 
|  | ENDDO |  | 
| 70 | elseif (SItrName(iTr).EQ.'salinity') then | elseif (SItrName(iTr).EQ.'salinity') then | 
| 71 | c salinity tracer: | c salinity tracer: | 
| 72 | DO J=1,sNy | DO J=1,sNy | 
| 76 | if (SIsalFRAC.GT.0.) | if (SIsalFRAC.GT.0.) | 
| 77 | &   SItrFromOcean(i,j)=SIsalFRAC*salt(I,j,ks,bi,bj) | &   SItrFromOcean(i,j)=SIsalFRAC*salt(I,j,ks,bi,bj) | 
| 78 | #endif | #endif | 
| 79 |  | c as of now, flooding implies no salt extraction from ocean | 
| 80 | ENDDO | ENDDO | 
| 81 | ENDDO | ENDDO | 
| 82 | elseif (SItrName(iTr).EQ.'one') then | elseif (SItrName(iTr).EQ.'one') then | 
| 84 | DO J=1,sNy | DO J=1,sNy | 
| 85 | DO I=1,sNx | DO I=1,sNx | 
| 86 | SItrFromOcean(i,j)=1. _d 0 | SItrFromOcean(i,j)=1. _d 0 | 
| 87 | SItrFromSnow(i,j)=1. _d 0 | SItrFromFlood(i,j)=1. _d 0 | 
| 88 | ENDDO | ENDDO | 
| 89 | ENDDO | ENDDO | 
| 90 | endif | endif | 
| 91 | c 1) seaice thermodynamics processes | c 1) seaice thermodynamics processes | 
| 92 | c ================================== | c ================================== | 
| 93 |  | if (SItrMate(iTr).EQ.'HEFF') then | 
| 94 | DO J=1,sNy | DO J=1,sNy | 
| 95 | DO I=1,sNx | DO I=1,sNx | 
| 96 | HEFFprev=SItrHEFF(i,j,bi,bj,1) | HEFFprev=SItrHEFF(i,j,bi,bj,1) | 
| 126 | HEFFpost=SItrHEFF(i,j,bi,bj,5) | HEFFpost=SItrHEFF(i,j,bi,bj,5) | 
| 127 | if (HEFFpost.GT.HEFFprev) growFact=HEFFprev/HEFFpost | if (HEFFpost.GT.HEFFprev) growFact=HEFFprev/HEFFpost | 
| 128 | SItracer(i,j,bi,bj,iTr)=SItracer(i,j,bi,bj,iTr)*growFact | SItracer(i,j,bi,bj,iTr)=SItracer(i,j,bi,bj,iTr)*growFact | 
| 129 | &                     +SItrFromSnow(i,j) *(1. _d 0 - growFact) | &                     +SItrFromFlood(i,j) *(1. _d 0 - growFact) | 
| 130 | if ((SItrName(iTr).EQ.'age').OR.(SItrName(iTr).EQ.'one')) then | c rk: flooding can only imply an ocean-ice tracer exchange, as long | 
| 131 | c Including this term in the bucket only makes sense for diagnostics purposes | c as we dont have snow tracers, so it goes through SItrBucket. | 
|  | c and should not be done for tracers that are exchanged with the ocean (we would |  | 
|  | c need another bucket for ice-snow exchange, and snow tracers to start with). |  | 
| 132 | SItrBucket(i,j,bi,bj,iTr)=SItrBucket(i,j,bi,bj,iTr) | SItrBucket(i,j,bi,bj,iTr)=SItrBucket(i,j,bi,bj,iTr) | 
| 133 | &             -HEFFpost*SItrFromSnow(i,j)*(1. _d 0 - growFact) | &             -HEFFpost*SItrFromFlood(i,j)*(1. _d 0 - growFact) | 
|  | endif |  | 
| 134 | #ifdef ALLOW_SITRACER_DIAG | #ifdef ALLOW_SITRACER_DIAG | 
| 135 | diagArray(I,J,5+(iTr-1)*5) = HEFFpost*SItracer(i,j,bi,bj,iTr) | diagArray(I,J,5+(iTr-1)*5) = HEFFpost*SItracer(i,j,bi,bj,iTr) | 
| 136 | &  +SItrBucket(i,j,bi,bj,iTr)-diagArray(I,J,5+(iTr-1)*5) | &  +SItrBucket(i,j,bi,bj,iTr)-diagArray(I,J,5+(iTr-1)*5) | 
| 137 | #endif | #endif | 
| 138 | ENDDO | ENDDO | 
| 139 | ENDDO | ENDDO | 
| 140 |  | c TAF?      if (SItrMate(iTr).EQ.'AREA') then | 
| 141 |  | else | 
| 142 |  | c 1) or seaice cover expansion | 
| 143 |  | c ============================ | 
| 144 |  | c this is much simpler than for ice volume/mass tracers, because | 
| 145 |  | c properties of the ice surface are not be conserved across the | 
| 146 |  | c ocean-ice system, the contraction/expansion terms are all | 
| 147 |  | c simultaneous (which is sane), and the only generic effect | 
| 148 |  | c is due to expansion (new cover). | 
| 149 |  | DO J=1,sNy | 
| 150 |  | DO I=1,sNx | 
| 151 |  | c apply expansion | 
| 152 |  | AREAprev=SItrAREA(i,j,bi,bj,2) | 
| 153 |  | AREApost=SItrAREA(i,j,bi,bj,3) | 
| 154 |  | c compute ratio in [0. 1.] range for expansion/contraction | 
| 155 |  | expandFact=1. _d 0 | 
| 156 |  | if (AREApost.GT.AREAprev) expandFact=AREAprev/AREApost | 
| 157 |  | c update SItr accordingly | 
| 158 |  | SItracer(i,j,bi,bj,iTr)=SItracer(i,j,bi,bj,iTr)*expandFact | 
| 159 |  | &                      +SItrExpand(i,j)*(1. _d 0 - expandFact) | 
| 160 |  | ENDDO | 
| 161 |  | ENDDO | 
| 162 |  | endif | 
| 163 | c 2) very ice tracer processes | c 2) very ice tracer processes | 
| 164 | c ============================ | c ============================ | 
| 165 | if (SItrName(iTr).EQ.'age') then | if (SItrName(iTr).EQ.'age') then | 
| 166 | c age tracer: grow old as time passes by | c age tracer: grow old as time passes by | 
| 167 | DO J=1,sNy | DO J=1,sNy | 
| 168 | DO I=1,sNx | DO I=1,sNx | 
| 169 | if (SItrHEFF(i,j,bi,bj,5).GT.0. _d 0) then | if (( (SItrHEFF(i,j,bi,bj,5).GT.0. _d 0).AND.(SItrMate(iTr) | 
| 170 |  | &     .EQ.'HEFF') ).OR.( (SItrAREA(i,j,bi,bj,3).GT.0. _d 0).AND. | 
| 171 |  | &     (SItrMate(iTr).EQ.'AREA') )) then | 
| 172 | SItracer(i,j,bi,bj,iTr)= | SItracer(i,j,bi,bj,iTr)= | 
| 173 | &      SItracer(i,j,bi,bj,iTr)+SEAICE_deltaTtherm | &      SItracer(i,j,bi,bj,iTr)+SEAICE_deltaTtherm | 
| 174 | else | else | 
| 180 | c salinity tracer: no specific process | c salinity tracer: no specific process | 
| 181 | elseif (SItrName(iTr).EQ.'one') then | elseif (SItrName(iTr).EQ.'one') then | 
| 182 | c "ice concentration" tracer: no specific process | c "ice concentration" tracer: no specific process | 
| 183 |  | elseif (SItrName(iTr).EQ.'ridge') then | 
| 184 |  | c simple, made up, ice surface roughness index prototype | 
| 185 |  | #ifndef SEAICE_GROWTH_LEGACY | 
| 186 |  | DO J=1,sNy | 
| 187 |  | DO I=1,sNx | 
| 188 |  | c ridging increases roughness | 
| 189 |  | SItracer(i,j,bi,bj,iTr)=SItracer(i,j,bi,bj,iTr)+ | 
| 190 |  | &    MAX(0. _d 0, SItrAREA(i,j,bi,bj,1)-SItrAREA(i,j,bi,bj,2)) | 
| 191 |  | c ice melt reduces ridges/roughness | 
| 192 |  | HEFFprev=SItrHEFF(i,j,bi,bj,1) | 
| 193 |  | HEFFpost=SItrHEFF(i,j,bi,bj,4) | 
| 194 |  | tmpscal1=1. _d 0 | 
| 195 |  | if (HEFFprev.GT.HEFFpost) tmpscal1=HEFFpost/HEFFprev | 
| 196 |  | SItracer(i,j,bi,bj,iTr)=SItracer(i,j,bi,bj,iTr)*tmpscal1 | 
| 197 |  | ENDDO | 
| 198 |  | ENDDO | 
| 199 |  | #endif | 
| 200 | endif | endif | 
| 201 | c 3) ice-ocean tracer exchange | c 3) ice-ocean tracer exchange/mapping to external variables | 
| 202 | c ============================= | c ========================================================== | 
| 203 | if (SItrName(iTr).EQ.'age') then | if (SItrName(iTr).EQ.'age') then | 
| 204 | c age tracer: not passed to ocean | c age tracer: not passed to ocean | 
| 205 | elseif (SItrName(iTr).EQ.'salinity') then | elseif (SItrName(iTr).EQ.'salinity') then | 
| 225 | SItrBucket(i,j,bi,bj,iTr)=0. _d 0 | SItrBucket(i,j,bi,bj,iTr)=0. _d 0 | 
| 226 | ENDDO | ENDDO | 
| 227 | ENDDO | ENDDO | 
| 228 |  | c TAF? elseif (SItrMate(iTr).EQ.'AREA') then | 
| 229 | c 4) diagnostics | c 4) diagnostics | 
| 230 | c ============== | c ============== | 
| 231 | #ifdef ALLOW_SITRACER_DIAG | #ifdef ALLOW_SITRACER_DIAG | 
| 232 |  | if (SItrMate(iTr).EQ.'HEFF') then | 
| 233 | DO J=1,sNy | DO J=1,sNy | 
| 234 | DO I=1,sNx | DO I=1,sNx | 
| 235 | HEFFpost=SItrHEFF(i,j,bi,bj,5) | HEFFpost=SItrHEFF(i,j,bi,bj,5) | 
| 247 | c diagArray(:,:,5) is the tracer flux from the ocean (<0 incr. ocean tracer) | c diagArray(:,:,5) is the tracer flux from the ocean (<0 incr. ocean tracer) | 
| 248 | ENDDO | ENDDO | 
| 249 | ENDDO | ENDDO | 
| 250 |  | else | 
| 251 |  | DO J=1,sNy | 
| 252 |  | DO I=1,sNx | 
| 253 |  | AREApost=SItrAREA(i,j,bi,bj,3) | 
| 254 |  | DIAGarray(I,J,1+(iTr-1)*5) = SItracer(i,j,bi,bj,iTr) | 
| 255 |  | DIAGarray(I,J,2+(iTr-1)*5) = SItracer(i,j,bi,bj,iTr)*AREApost | 
| 256 |  | c diagArray(:,:,3) is the term of comparison for diagArray(:,:,2) | 
| 257 |  | if (SItrName(iTr).EQ.'age') then | 
| 258 |  | DIAGarray(I,J,3+(iTr-1)*5) = IceAgeTr(i,j,bi,bj,1) | 
| 259 |  | endif | 
| 260 |  | ENDDO | 
| 261 |  | ENDDO | 
| 262 |  | endif | 
| 263 | #endif | #endif | 
| 264 | ENDDO | ENDDO | 
| 265 | #ifdef ALLOW_SITRACER_DIAG | #ifdef ALLOW_SITRACER_DIAG |