- Timestamp:
- 2015-12-02T11:52:05+01:00 (8 years ago)
- Location:
- branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2
- Files:
-
- 5 edited
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branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2/limdmp_2.F90
r4624 r5974 71 71 CALL fld_read( kt, nn_fsbc, sf_icedmp ) 72 72 ! 73 !CDIR COLLAPSE74 73 hicif(:,:) = MAX( 0._wp, & ! h >= 0 avoid spurious out of physical range 75 74 & hicif(:,:) - rdt_ice * resto_ice(:,:,1) * ( hicif(:,:) - sf_icedmp(jp_hicif)%fnow(:,:,1) ) ) 76 !CDIR COLLAPSE77 75 frld (:,:) = MAX( 0._wp, MIN( 1._wp, & ! 0<= frld<=1 values which blow the run up 78 76 & frld (:,:) - rdt_ice * resto_ice(:,:,1) * ( frld (:,:) - sf_icedmp(jp_frld )%fnow(:,:,1) ) ) ) -
branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2/limrhg_2.F90
r5682 r5974 160 160 !------------------------------------------------------------------- 161 161 162 !CDIR NOVERRCHK163 162 DO jj = k_j1 , k_jpj-1 164 !CDIR NOVERRCHK165 163 DO ji = 1 , jpi 166 164 ! only the sinus changes its sign with the hemisphere … … 245 243 ! Computation of free drift field for free slip boundary conditions. 246 244 247 !CDIR NOVERRCHK248 245 DO jj = k_j1, k_jpj-1 249 !CDIR NOVERRCHK250 246 DO ji = 1, fs_jpim1 251 247 !- Rate of strain tensor. … … 401 397 iflag: DO jter = 1 , nbitdr ! Relaxation ! 402 398 ! ! ================ ! 403 !CDIR NOVERRCHK404 399 DO jj = k_j1+1, k_jpj-1 405 !CDIR NOVERRCHK406 400 DO ji = 2, fs_jpim1 ! NO vector opt. 407 401 ! -
branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2/limsbc_2.F90
r5682 r5974 319 319 ! 320 320 IF( MOD( kt-1, nn_fsbc ) == 0 ) THEN !== Ice time-step only ==! (i.e. surface module time-step) 321 !CDIR NOVERRCHK 321 ! 322 322 DO jj = 1, jpj !* modulus of ice-ocean relative velocity at I-point 323 !CDIR NOVERRCHK324 323 DO ji = 1, jpi 325 324 zu_i = u_ice(ji,jj) - u_oce(ji,jj) ! ice-ocean relative velocity at I-point … … 328 327 END DO 329 328 END DO 330 !CDIR NOVERRCHK331 329 DO jj = 1, jpjm1 !* update the modulus of stress at ocean surface (T-point) 332 !CDIR NOVERRCHK333 330 DO ji = 1, jpim1 ! NO vector opt. 334 331 ! ! modulus of U_ice-U_oce at T-point … … 383 380 ! 384 381 IF( MOD( kt-1, nn_fsbc ) == 0 ) THEN !== Ice time-step only ==! (i.e. surface module time-step) 385 !CDIR NOVERRCHK 382 ! 386 383 DO jj = 2, jpjm1 !* modulus of the ice-ocean velocity at T-point 387 !CDIR NOVERRCHK388 384 DO ji = fs_2, fs_jpim1 389 385 zu_t = u_ice(ji,jj) + u_ice(ji-1,jj) - u_oce(ji,jj) - u_oce(ji-1,jj) ! 2*(U_ice-U_oce) at T-point -
branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2/limthd_2.F90
r5682 r5974 196 196 !-------------------------------------------------------------------------- 197 197 198 !CDIR NOVERRCHK199 198 DO jj = 1, jpj 200 !CDIR NOVERRCHK201 199 DO ji = 1, jpi 202 200 zthsnice = hsnif(ji,jj) + hicif(ji,jj) -
branches/2015/dev_r5072_UKMO2_OBS_simplification/NEMOGCM/NEMO/LIM_SRC_2/limthd_lac_2.F90
r3625 r5974 134 134 !--------------------------------------------------------------------- 135 135 136 !CDIR NOVERRCHK137 136 DO ji = kideb , kiut 138 137 iicefr = 1 - MAX( 0, INT( SIGN( 1.5 * zone , zfrl_old(ji) - 1.0 + epsi13 ) ) )
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