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C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----| |
C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----| |
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CBOP |
CBOP |
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SUBROUTINE STREAMICE_ADV_FRONT ( myThid, time_step ) |
SUBROUTINE STREAMICE_ADV_FRONT ( |
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& myThid, |
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& time_step, |
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& hflux_x_si, |
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& hflux_y_si ) |
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C /============================================================\ |
C /============================================================\ |
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C | SUBROUTINE | |
C | SUBROUTINE | |
33 |
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34 |
INTEGER myThid |
INTEGER myThid |
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_RL time_step |
_RL time_step |
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_RL hflux_x_SI (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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_RL hflux_y_SI (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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39 |
#ifdef ALLOW_STREAMICE |
#ifdef ALLOW_STREAMICE |
40 |
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46 |
_RL n_flux_1, n_flux_2 |
_RL n_flux_1, n_flux_2 |
47 |
_RL href, rho, partial_vol, tot_flux, hpot |
_RL href, rho, partial_vol, tot_flux, hpot |
48 |
CHARACTER*(MAX_LEN_MBUF) msgBuf |
CHARACTER*(MAX_LEN_MBUF) msgBuf |
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_RL hflux_x_SI2 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
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_RL hflux_y_SI2 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy) |
51 |
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52 |
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53 |
rho = streamice_density |
rho = streamice_density |
54 |
cph iter_count = 0 |
cph iter_count = 0 |
55 |
iter_flag = 1. _d 0 |
iter_flag = 1. _d 0 |
56 |
iter_rpt = 0 |
iter_rpt = 0 |
57 |
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58 |
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DO bj=myByLo(myThid),myByHi(myThid) |
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DO bi=myBxLo(myThid),myBxHi(myThid) |
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DO j=1-OLy,sNy+OLy |
61 |
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DO i=1-OLx,sNx+OLx |
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hflux_x_SI2(i,j,bi,bj) = 0. _d 0 |
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hflux_y_SI2(i,j,bi,bj) = 0. _d 0 |
64 |
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ENDDO |
65 |
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ENDDO |
66 |
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ENDDO |
67 |
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ENDDO |
68 |
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69 |
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70 |
DO iter_count = 0, 3 |
DO iter_count = 0, 3 |
71 |
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72 |
#ifdef ALLOW_AUTODIFF_TAMC |
#ifdef ALLOW_AUTODIFF_TAMC |
146 |
CADJ & = comlev1_stream_ij, key = ikey_1 |
CADJ & = comlev1_stream_ij, key = ikey_1 |
147 |
#endif |
#endif |
148 |
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149 |
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IF (.not. STREAMICE_calve_to_mask .OR. |
150 |
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& STREAMICE_calve_mask (i,j,bi,bj) .eq. 1.0) THEN |
151 |
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152 |
IF ((Gi .ge. 1) .and. (Gi .le. Nx) .and. |
IF ((Gi .ge. 1) .and. (Gi .le. Nx) .and. |
153 |
& (STREAMICE_Hmask(i,j,bi,bj).eq.0.0 .or. |
& (STREAMICE_Hmask(i,j,bi,bj).eq.0.0 .or. |
154 |
& STREAMICE_Hmask(i,j,bi,bj).eq.2.0)) THEN |
& STREAMICE_Hmask(i,j,bi,bj).eq.2.0)) THEN |
225 |
H_streamice (i,j,bi,bj) = href |
H_streamice (i,j,bi,bj) = href |
226 |
ELSE ! cell is filled - do overflow |
ELSE ! cell is filled - do overflow |
227 |
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228 |
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229 |
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230 |
STREAMICE_hmask (i,j,bi,bj) = 1.0 |
STREAMICE_hmask (i,j,bi,bj) = 1.0 |
231 |
area_shelf_streamice(i,j,bi,bj) = |
area_shelf_streamice(i,j,bi,bj) = |
232 |
& rA(i,j,bi,bj) |
& rA(i,j,bi,bj) |
233 |
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234 |
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PRINT *, "GOT HERE OVERFLOW ", i,j, |
235 |
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& area_shelf_streamice(i,j,bi,bj) |
236 |
partial_vol = partial_vol - href * rA(i,j,bi,bj) |
partial_vol = partial_vol - href * rA(i,j,bi,bj) |
237 |
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238 |
iter_flag = 1. _d 0 |
iter_flag = 1. _d 0 |
243 |
ENDDO |
ENDDO |
244 |
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245 |
DO k=1,2 |
DO k=1,2 |
246 |
IF (STREAMICE_ufacemask(i-1+k,j,bi,bj).eq.2.0) THEN ! at a permanent calving boundary - no advance allowed |
IF ( (STREAMICE_ufacemask(i-1+k,j,bi,bj).eq.2.0) .or. |
247 |
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& (STREAMICE_calve_to_mask .and. |
248 |
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& STREAMICE_calve_mask(i+2*k-3,j,bi,bj).ne.1.0) |
249 |
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& ) THEN ! at a permanent calving boundary - no advance allowed |
250 |
n_flux_2 = n_flux_2 + 1. _d 0 |
n_flux_2 = n_flux_2 + 1. _d 0 |
251 |
ELSEIF (STREAMICE_hmask(i+2*k-3,j,bi,bj).eq.0 _d 0) THEN ! adjacent cell is completely ice free |
ELSEIF (STREAMICE_hmask(i+2*k-3,j,bi,bj).eq.0 _d 0) THEN ! adjacent cell is completely ice free |
252 |
n_flux_2 = n_flux_2 + 1. _d 0 |
n_flux_2 = n_flux_2 + 1. _d 0 |
254 |
ENDIF |
ENDIF |
255 |
ENDDO |
ENDDO |
256 |
DO k=1,2 |
DO k=1,2 |
257 |
IF (STREAMICE_vfacemask (i,j-1+k,bi,bj).eq.2.0) THEN |
IF ( (STREAMICE_vfacemask (i,j-1+k,bi,bj).eq.2.0) .or. |
258 |
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& (STREAMICE_calve_to_mask .and. |
259 |
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& STREAMICE_calve_mask(i,j+2*k-3,bi,bj).ne.1.0) |
260 |
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& ) THEN ! at a permanent calving boundary - no advance allowed |
261 |
n_flux_2 = n_flux_2 + 1. _d 0 |
n_flux_2 = n_flux_2 + 1. _d 0 |
262 |
ELSEIF (STREAMICE_hmask(i,j+2*k-3,bi,bj).eq.0 _d 0) THEN |
ELSEIF (STREAMICE_hmask(i,j+2*k-3,bi,bj).eq.0 _d 0) THEN |
263 |
n_flux_2 = n_flux_2 + 1. _d 0 |
n_flux_2 = n_flux_2 + 1. _d 0 |
292 |
ENDIF |
ENDIF |
293 |
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294 |
ENDIF |
ENDIF |
295 |
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ENDIF |
296 |
ENDDO |
ENDDO |
297 |
ENDIF |
ENDIF |
298 |
ENDDO |
ENDDO |