/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_advection.F
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Revision 1.63 - (hide annotations) (download)
Sun Oct 31 15:20:48 2010 UTC (13 years, 7 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint62u, checkpoint62t, checkpoint62s, checkpoint62r, checkpoint62q, checkpoint62p, checkpoint62o, checkpoint62n
Changes since 1.62: +14 -26 lines
-remove MULTIDIM_OLD_VERSION code (was disabled 6.years ago).
-remove calls to OBCS_APPLY (applying future time-step OB values);
-use instead "maskInC" to keep current-time-step OB values in OB regions.

1 jmc 1.63 C $Header: /u/gcmpack/MITgcm/pkg/generic_advdiff/gad_advection.F,v 1.62 2009/06/28 01:05:41 jmc Exp $
2 adcroft 1.2 C $Name: $
3 adcroft 1.4
4 adcroft 1.1 #include "GAD_OPTIONS.h"
5 jmc 1.63 #undef OBCS_MULTIDIM_OLD_VERSION
6 adcroft 1.1
7 edhill 1.19 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
8 adcroft 1.4 CBOP
9     C !ROUTINE: GAD_ADVECTION
10    
11     C !INTERFACE: ==========================================================
12 jmc 1.17 SUBROUTINE GAD_ADVECTION(
13 jmc 1.23 I implicitAdvection, advectionScheme, vertAdvecScheme,
14 jahn 1.61 I tracerIdentity, deltaTLev,
15 edhill 1.21 I uVel, vVel, wVel, tracer,
16     O gTracer,
17     I bi,bj, myTime,myIter,myThid)
18 adcroft 1.4
19     C !DESCRIPTION:
20 jmc 1.44 C Calculates the tendency of a tracer due to advection.
21 adcroft 1.4 C It uses the multi-dimensional method given in \ref{sect:multiDimAdvection}
22     C and can only be used for the non-linear advection schemes such as the
23 jmc 1.41 C direct-space-time method and flux-limiters.
24 adcroft 1.4 C
25     C The algorithm is as follows:
26     C \begin{itemize}
27     C \item{$\theta^{(n+1/3)} = \theta^{(n)}
28 adcroft 1.5 C - \Delta t \partial_x (u\theta^{(n)}) + \theta^{(n)} \partial_x u$}
29 adcroft 1.4 C \item{$\theta^{(n+2/3)} = \theta^{(n+1/3)}
30 adcroft 1.5 C - \Delta t \partial_y (v\theta^{(n+1/3)}) + \theta^{(n)} \partial_y v$}
31 adcroft 1.4 C \item{$\theta^{(n+3/3)} = \theta^{(n+2/3)}
32 adcroft 1.5 C - \Delta t \partial_r (w\theta^{(n+2/3)}) + \theta^{(n)} \partial_r w$}
33 adcroft 1.4 C \item{$G_\theta = ( \theta^{(n+3/3)} - \theta^{(n)} )/\Delta t$}
34     C \end{itemize}
35     C
36 jmc 1.44 C The tendency (output) is over-written by this routine.
37 adcroft 1.4
38     C !USES: ===============================================================
39 adcroft 1.1 IMPLICIT NONE
40     #include "SIZE.h"
41     #include "EEPARAMS.h"
42     #include "PARAMS.h"
43     #include "GRID.h"
44     #include "GAD.h"
45 heimbach 1.6 #ifdef ALLOW_AUTODIFF_TAMC
46     # include "tamc.h"
47     # include "tamc_keys.h"
48 heimbach 1.27 # ifdef ALLOW_PTRACERS
49     # include "PTRACERS_SIZE.h"
50     # endif
51 heimbach 1.6 #endif
52 dimitri 1.24 #ifdef ALLOW_EXCH2
53 jmc 1.60 #include "W2_EXCH2_SIZE.h"
54 dimitri 1.24 #include "W2_EXCH2_TOPOLOGY.h"
55     #endif /* ALLOW_EXCH2 */
56 adcroft 1.1
57 adcroft 1.4 C !INPUT PARAMETERS: ===================================================
58 edhill 1.21 C implicitAdvection :: implicit vertical advection (later on)
59 jmc 1.23 C advectionScheme :: advection scheme to use (Horizontal plane)
60     C vertAdvecScheme :: advection scheme to use (vertical direction)
61 edhill 1.21 C tracerIdentity :: tracer identifier (required only for OBCS)
62     C uVel :: velocity, zonal component
63     C vVel :: velocity, meridional component
64     C wVel :: velocity, vertical component
65     C tracer :: tracer field
66     C bi,bj :: tile indices
67     C myTime :: current time
68     C myIter :: iteration number
69     C myThid :: thread number
70 jmc 1.17 LOGICAL implicitAdvection
71 jmc 1.23 INTEGER advectionScheme, vertAdvecScheme
72 adcroft 1.1 INTEGER tracerIdentity
73 jahn 1.61 _RL deltaTLev(Nr)
74 jmc 1.17 _RL uVel (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr,nSx,nSy)
75     _RL vVel (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr,nSx,nSy)
76     _RL wVel (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr,nSx,nSy)
77     _RL tracer(1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr,nSx,nSy)
78     INTEGER bi,bj
79 adcroft 1.1 _RL myTime
80     INTEGER myIter
81     INTEGER myThid
82    
83 adcroft 1.4 C !OUTPUT PARAMETERS: ==================================================
84 jmc 1.44 C gTracer :: tendency array
85 adcroft 1.9 _RL gTracer(1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr,nSx,nSy)
86 adcroft 1.4
87     C !LOCAL VARIABLES: ====================================================
88 edhill 1.21 C maskUp :: 2-D array for mask at W points
89 jmc 1.29 C maskLocW :: 2-D array for mask at West points
90     C maskLocS :: 2-D array for mask at South points
91 jmc 1.30 C [iMin,iMax]Upd :: loop range to update tracer field
92     C [jMin,jMax]Upd :: loop range to update tracer field
93 edhill 1.21 C i,j,k :: loop indices
94 jmc 1.41 C kUp :: index into 2 1/2D array, toggles between 1 and 2
95     C kDown :: index into 2 1/2D array, toggles between 2 and 1
96 edhill 1.21 C kp1 :: =k+1 for k<Nr, =Nr for k=Nr
97     C xA,yA :: areas of X and Y face of tracer cells
98 jmc 1.41 C uFld,vFld :: 2-D local copy of horizontal velocity, U,V components
99     C wFld :: 2-D local copy of vertical velocity
100 edhill 1.21 C uTrans,vTrans :: 2-D arrays of volume transports at U,V points
101     C rTrans :: 2-D arrays of volume transports at W points
102     C rTransKp1 :: vertical volume transport at interface k+1
103 jmc 1.30 C af :: 2-D array for horizontal advective flux
104 jmc 1.29 C afx :: 2-D array for horizontal advective flux, x direction
105     C afy :: 2-D array for horizontal advective flux, y direction
106 edhill 1.21 C fVerT :: 2 1/2D arrays for vertical advective flux
107     C localTij :: 2-D array, temporary local copy of tracer fld
108     C localTijk :: 3-D array, temporary local copy of tracer fld
109     C kp1Msk :: flag (0,1) for over-riding mask for W levels
110     C calc_fluxes_X :: logical to indicate to calculate fluxes in X dir
111     C calc_fluxes_Y :: logical to indicate to calculate fluxes in Y dir
112 jmc 1.30 C interiorOnly :: only update the interior of myTile, but not the edges
113     C overlapOnly :: only update the edges of myTile, but not the interior
114 jmc 1.55 C npass :: number of passes in multi-dimensional method
115 edhill 1.21 C ipass :: number of the current pass being made
116 jmc 1.41 C myTile :: variables used to determine which cube face
117 dimitri 1.24 C nCFace :: owns a tile for cube grid runs using
118     C :: multi-dim advection.
119 jmc 1.30 C [N,S,E,W]_edge :: true if N,S,E,W edge of myTile is an Edge of the cube
120 jmc 1.41 c _RS maskUp (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
121 jmc 1.29 _RS maskLocW(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
122     _RS maskLocS(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
123 jmc 1.30 INTEGER iMinUpd,iMaxUpd,jMinUpd,jMaxUpd
124 jmc 1.41 INTEGER i,j,k,kUp,kDown
125 adcroft 1.1 _RS xA (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
126     _RS yA (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
127 jmc 1.41 _RL uFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
128     _RL vFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
129     _RL wFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
130 adcroft 1.1 _RL uTrans (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
131     _RL vTrans (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
132     _RL rTrans (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
133 jmc 1.11 _RL rTransKp1(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
134 jmc 1.30 _RL af (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
135 jmc 1.29 _RL afx (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
136     _RL afy (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
137 adcroft 1.1 _RL fVerT (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
138     _RL localTij(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
139     _RL localTijk(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
140     _RL kp1Msk
141 jmc 1.29 LOGICAL calc_fluxes_X, calc_fluxes_Y, withSigns
142 jmc 1.30 LOGICAL interiorOnly, overlapOnly
143 jmc 1.55 INTEGER npass, ipass
144 jmc 1.38 INTEGER nCFace
145 jmc 1.30 LOGICAL N_edge, S_edge, E_edge, W_edge
146 jmc 1.38 #ifdef ALLOW_EXCH2
147     INTEGER myTile
148     #endif
149 jmc 1.33 #ifdef ALLOW_DIAGNOSTICS
150     CHARACTER*8 diagName
151 jmc 1.57 CHARACTER*4 diagSufx
152     LOGICAL doDiagAdvX, doDiagAdvY, doDiagAdvR
153     C- Functions:
154     CHARACTER*4 GAD_DIAG_SUFX
155 jmc 1.33 EXTERNAL GAD_DIAG_SUFX
156 jmc 1.57 LOGICAL DIAGNOSTICS_IS_ON
157     EXTERNAL DIAGNOSTICS_IS_ON
158 jmc 1.33 #endif
159 adcroft 1.4 CEOP
160 adcroft 1.1
161 heimbach 1.6 #ifdef ALLOW_AUTODIFF_TAMC
162 heimbach 1.51 act0 = tracerIdentity
163 heimbach 1.14 max0 = maxpass
164 heimbach 1.6 act1 = bi - myBxLo(myThid)
165     max1 = myBxHi(myThid) - myBxLo(myThid) + 1
166     act2 = bj - myByLo(myThid)
167     max2 = myByHi(myThid) - myByLo(myThid) + 1
168     act3 = myThid - 1
169     max3 = nTx*nTy
170     act4 = ikey_dynamics - 1
171 heimbach 1.51 igadkey = act0
172 heimbach 1.14 & + act1*max0
173     & + act2*max0*max1
174     & + act3*max0*max1*max2
175     & + act4*max0*max1*max2*max3
176 jmc 1.57 IF (tracerIdentity.GT.maxpass) THEN
177 heimbach 1.15 print *, 'ph-pass gad_advection ', maxpass, tracerIdentity
178     STOP 'maxpass seems smaller than tracerIdentity'
179 jmc 1.57 ENDIF
180 heimbach 1.6 #endif /* ALLOW_AUTODIFF_TAMC */
181    
182 jmc 1.33 #ifdef ALLOW_DIAGNOSTICS
183 jmc 1.57 C-- Set diagnostics flags and suffix for the current tracer
184     doDiagAdvX = .FALSE.
185     doDiagAdvY = .FALSE.
186     doDiagAdvR = .FALSE.
187 jmc 1.33 IF ( useDiagnostics ) THEN
188     diagSufx = GAD_DIAG_SUFX( tracerIdentity, myThid )
189 jmc 1.57 diagName = 'ADVx'//diagSufx
190     doDiagAdvX = DIAGNOSTICS_IS_ON( diagName, myThid )
191     diagName = 'ADVy'//diagSufx
192     doDiagAdvY = DIAGNOSTICS_IS_ON( diagName, myThid )
193     diagName = 'ADVr'//diagSufx
194     doDiagAdvR = DIAGNOSTICS_IS_ON( diagName, myThid )
195 jmc 1.33 ENDIF
196     #endif
197    
198 adcroft 1.1 C-- Set up work arrays with valid (i.e. not NaN) values
199     C These inital values do not alter the numerical results. They
200     C just ensure that all memory references are to valid floating
201     C point numbers. This prevents spurious hardware signals due to
202     C uninitialised but inert locations.
203     DO j=1-OLy,sNy+OLy
204     DO i=1-OLx,sNx+OLx
205     xA(i,j) = 0. _d 0
206     yA(i,j) = 0. _d 0
207     uTrans(i,j) = 0. _d 0
208     vTrans(i,j) = 0. _d 0
209     rTrans(i,j) = 0. _d 0
210     fVerT(i,j,1) = 0. _d 0
211     fVerT(i,j,2) = 0. _d 0
212 jmc 1.11 rTransKp1(i,j)= 0. _d 0
213 heimbach 1.39 #ifdef ALLOW_AUTODIFF_TAMC
214     localTij(i,j) = 0. _d 0
215 heimbach 1.42 wfld(i,j) = 0. _d 0
216 heimbach 1.39 #endif
217 adcroft 1.1 ENDDO
218     ENDDO
219    
220 jmc 1.30 C-- Set tile-specific parameters for horizontal fluxes
221     IF (useCubedSphereExchange) THEN
222 jmc 1.55 npass = 3
223 jmc 1.30 #ifdef ALLOW_AUTODIFF_TAMC
224 jmc 1.55 IF ( npass.GT.maxcube ) STOP 'maxcube needs to be = 3'
225 jmc 1.30 #endif
226     #ifdef ALLOW_EXCH2
227 jmc 1.62 myTile = W2_myTileList(bi,bj)
228 jmc 1.30 nCFace = exch2_myFace(myTile)
229     N_edge = exch2_isNedge(myTile).EQ.1
230     S_edge = exch2_isSedge(myTile).EQ.1
231     E_edge = exch2_isEedge(myTile).EQ.1
232     W_edge = exch2_isWedge(myTile).EQ.1
233     #else
234     nCFace = bi
235     N_edge = .TRUE.
236     S_edge = .TRUE.
237     E_edge = .TRUE.
238     W_edge = .TRUE.
239     #endif
240     ELSE
241 jmc 1.55 npass = 2
242     nCFace = 0
243 jmc 1.30 N_edge = .FALSE.
244     S_edge = .FALSE.
245     E_edge = .FALSE.
246     W_edge = .FALSE.
247     ENDIF
248    
249 adcroft 1.1 C-- Start of k loop for horizontal fluxes
250     DO k=1,Nr
251 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
252 heimbach 1.14 kkey = (igadkey-1)*Nr + k
253 jmc 1.55 CADJ STORE tracer(:,:,k,bi,bj) =
254 heimbach 1.59 CADJ & comlev1_bibj_k_gad, key=kkey, kind=isbyte
255 heimbach 1.6 #endif /* ALLOW_AUTODIFF_TAMC */
256 adcroft 1.1
257     C-- Get temporary terms used by tendency routines
258     CALL CALC_COMMON_FACTORS (
259 jmc 1.41 I uVel, vVel,
260     O uFld, vFld, uTrans, vTrans, xA, yA,
261     I k,bi,bj, myThid )
262 adcroft 1.1
263 jmc 1.11 #ifdef ALLOW_GMREDI
264     C-- Residual transp = Bolus transp + Eulerian transp
265 jmc 1.30 IF (useGMRedi)
266 jmc 1.11 & CALL GMREDI_CALC_UVFLOW(
267 jmc 1.41 U uFld, vFld, uTrans, vTrans,
268     I k, bi, bj, myThid )
269 jmc 1.11 #endif /* ALLOW_GMREDI */
270    
271 jmc 1.29 C-- Make local copy of tracer array and mask West & South
272 adcroft 1.1 DO j=1-OLy,sNy+OLy
273     DO i=1-OLx,sNx+OLx
274 jmc 1.30 localTij(i,j)=tracer(i,j,k,bi,bj)
275 mlosch 1.54 maskLocW(i,j)=_maskW(i,j,k,bi,bj)
276     maskLocS(i,j)=_maskS(i,j,k,bi,bj)
277 adcroft 1.1 ENDDO
278     ENDDO
279    
280 heimbach 1.49 cph-exch2#ifndef ALLOW_AUTODIFF_TAMC
281 jmc 1.29 IF (useCubedSphereExchange) THEN
282     withSigns = .FALSE.
283 jmc 1.41 CALL FILL_CS_CORNER_UV_RS(
284 jmc 1.29 & withSigns, maskLocW,maskLocS, bi,bj, myThid )
285     ENDIF
286 heimbach 1.49 cph-exch2#endif
287 adcroft 1.3
288     C-- Multiple passes for different directions on different tiles
289 dimitri 1.24 C-- For cube need one pass for each of red, green and blue axes.
290 jmc 1.55 DO ipass=1,npass
291 heimbach 1.6 #ifdef ALLOW_AUTODIFF_TAMC
292 jmc 1.55 passkey = ipass
293 heimbach 1.52 & + (k-1) *maxpass
294     & + (igadkey-1)*maxpass*Nr
295 jmc 1.55 IF (npass .GT. maxpass) THEN
296     STOP 'GAD_ADVECTION: npass > maxcube. check tamc.h'
297 heimbach 1.6 ENDIF
298     #endif /* ALLOW_AUTODIFF_TAMC */
299 adcroft 1.3
300 jmc 1.30 interiorOnly = .FALSE.
301     overlapOnly = .FALSE.
302     IF (useCubedSphereExchange) THEN
303     C- CubedSphere : pass 3 times, with partial update of local tracer field
304     IF (ipass.EQ.1) THEN
305     overlapOnly = MOD(nCFace,3).EQ.0
306     interiorOnly = MOD(nCFace,3).NE.0
307     calc_fluxes_X = nCFace.EQ.6 .OR. nCFace.EQ.1 .OR. nCFace.EQ.2
308     calc_fluxes_Y = nCFace.EQ.3 .OR. nCFace.EQ.4 .OR. nCFace.EQ.5
309     ELSEIF (ipass.EQ.2) THEN
310     overlapOnly = MOD(nCFace,3).EQ.2
311 jmc 1.55 interiorOnly = MOD(nCFace,3).EQ.1
312 jmc 1.30 calc_fluxes_X = nCFace.EQ.2 .OR. nCFace.EQ.3 .OR. nCFace.EQ.4
313     calc_fluxes_Y = nCFace.EQ.5 .OR. nCFace.EQ.6 .OR. nCFace.EQ.1
314     ELSE
315 jmc 1.55 interiorOnly = .TRUE.
316 jmc 1.30 calc_fluxes_X = nCFace.EQ.5 .OR. nCFace.EQ.6
317     calc_fluxes_Y = nCFace.EQ.2 .OR. nCFace.EQ.3
318 adcroft 1.3 ENDIF
319     ELSE
320 jmc 1.30 C- not CubedSphere
321     calc_fluxes_X = MOD(ipass,2).EQ.1
322     calc_fluxes_Y = .NOT.calc_fluxes_X
323 adcroft 1.3 ENDIF
324 jmc 1.41
325 jmc 1.29 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
326 adcroft 1.3 C-- X direction
327 heimbach 1.39 C- Advective flux in X
328     DO j=1-Oly,sNy+Oly
329     DO i=1-Olx,sNx+Olx
330     af(i,j) = 0.
331     ENDDO
332     ENDDO
333     C
334     #ifdef ALLOW_AUTODIFF_TAMC
335 heimbach 1.40 # ifndef DISABLE_MULTIDIM_ADVECTION
336 jmc 1.55 CADJ STORE localTij(:,:) =
337 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
338 jmc 1.55 CADJ STORE af(:,:) =
339 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
340 heimbach 1.40 # endif
341 heimbach 1.39 #endif /* ALLOW_AUTODIFF_TAMC */
342     C
343 adcroft 1.3 IF (calc_fluxes_X) THEN
344    
345 jmc 1.30 C- Do not compute fluxes if
346 jmc 1.41 C a) needed in overlap only
347 jmc 1.30 C and b) the overlap of myTile are not cube-face Edges
348     IF ( .NOT.overlapOnly .OR. N_edge .OR. S_edge ) THEN
349    
350     C- Internal exchange for calculations in X
351 jmc 1.55 IF ( overlapOnly ) THEN
352 jmc 1.58 CALL FILL_CS_CORNER_TR_RL( 1, .FALSE.,
353 jmc 1.50 & localTij, bi,bj, myThid )
354 jmc 1.30 ENDIF
355 adcroft 1.3
356 heimbach 1.6 #ifdef ALLOW_AUTODIFF_TAMC
357 heimbach 1.39 # ifndef DISABLE_MULTIDIM_ADVECTION
358 jmc 1.55 CADJ STORE localTij(:,:) =
359 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
360 heimbach 1.39 # endif
361 heimbach 1.6 #endif /* ALLOW_AUTODIFF_TAMC */
362    
363 jmc 1.37 IF ( advectionScheme.EQ.ENUM_UPWIND_1RST
364     & .OR. advectionScheme.EQ.ENUM_DST2 ) THEN
365 jmc 1.48 CALL GAD_DST2U1_ADV_X( bi,bj,k, advectionScheme, .TRUE.,
366 jahn 1.61 I deltaTLev(k),uTrans,uFld,localTij,
367 jmc 1.37 O af, myThid )
368     ELSEIF (advectionScheme.EQ.ENUM_FLUX_LIMIT) THEN
369 jahn 1.61 CALL GAD_FLUXLIMIT_ADV_X( bi,bj,k, .TRUE., deltaTLev(k),
370 jmc 1.41 I uTrans, uFld, maskLocW, localTij,
371 jmc 1.30 O af, myThid )
372     ELSEIF (advectionScheme.EQ.ENUM_DST3 ) THEN
373 jahn 1.61 CALL GAD_DST3_ADV_X( bi,bj,k, .TRUE., deltaTLev(k),
374 jmc 1.41 I uTrans, uFld, maskLocW, localTij,
375 jmc 1.30 O af, myThid )
376     ELSEIF (advectionScheme.EQ.ENUM_DST3_FLUX_LIMIT ) THEN
377 jahn 1.61 CALL GAD_DST3FL_ADV_X( bi,bj,k, .TRUE., deltaTLev(k),
378 jmc 1.41 I uTrans, uFld, maskLocW, localTij,
379 jmc 1.30 O af, myThid )
380 jmc 1.47 #ifndef ALLOW_AUTODIFF_TAMC
381 adcroft 1.46 ELSEIF (advectionScheme.EQ.ENUM_OS7MP ) THEN
382 jahn 1.61 CALL GAD_OS7MP_ADV_X( bi,bj,k, .TRUE., deltaTLev(k),
383 adcroft 1.46 I uTrans, uFld, maskLocW, localTij,
384     O af, myThid )
385 jmc 1.47 #endif
386 jmc 1.30 ELSE
387     STOP 'GAD_ADVECTION: adv. scheme incompatibale with multi-dim'
388     ENDIF
389    
390     C- Internal exchange for next calculations in Y
391 jmc 1.55 IF ( overlapOnly .AND. ipass.EQ.1 ) THEN
392 jmc 1.58 CALL FILL_CS_CORNER_TR_RL( 2, .FALSE.,
393 jmc 1.50 & localTij, bi,bj, myThid )
394 jmc 1.55 ENDIF
395    
396     C- Advective flux in X : done
397 jmc 1.30 ENDIF
398    
399     C- Update the local tracer field where needed:
400 jmc 1.63 C use "maksInC" to prevent updating tracer field in OB regions
401 jmc 1.30
402     C update in overlap-Only
403     IF ( overlapOnly ) THEN
404     iMinUpd = 1-Olx+1
405     iMaxUpd = sNx+Olx-1
406 jmc 1.41 C- notes: these 2 lines below have no real effect (because recip_hFac=0
407 jmc 1.30 C in corner region) but safer to keep them.
408     IF ( W_edge ) iMinUpd = 1
409     IF ( E_edge ) iMaxUpd = sNx
410    
411     IF ( S_edge ) THEN
412     DO j=1-Oly,0
413     DO i=iMinUpd,iMaxUpd
414 jmc 1.43 localTij(i,j) = localTij(i,j)
415 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
416 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
417     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
418 jmc 1.30 & *( af(i+1,j)-af(i,j)
419     & -tracer(i,j,k,bi,bj)*(uTrans(i+1,j)-uTrans(i,j))
420 jmc 1.63 & )*maskInC(i,j,bi,bj)
421 jmc 1.30 ENDDO
422     ENDDO
423     ENDIF
424     IF ( N_edge ) THEN
425     DO j=sNy+1,sNy+Oly
426     DO i=iMinUpd,iMaxUpd
427 jmc 1.43 localTij(i,j) = localTij(i,j)
428 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
429 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
430     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
431 jmc 1.30 & *( af(i+1,j)-af(i,j)
432     & -tracer(i,j,k,bi,bj)*(uTrans(i+1,j)-uTrans(i,j))
433 jmc 1.63 & )*maskInC(i,j,bi,bj)
434 jmc 1.30 ENDDO
435     ENDDO
436     ENDIF
437 heimbach 1.6
438 jmc 1.30 ELSE
439     C do not only update the overlap
440 jmc 1.41 jMinUpd = 1-Oly
441 jmc 1.30 jMaxUpd = sNy+Oly
442     IF ( interiorOnly .AND. S_edge ) jMinUpd = 1
443     IF ( interiorOnly .AND. N_edge ) jMaxUpd = sNy
444     DO j=jMinUpd,jMaxUpd
445     DO i=1-Olx+1,sNx+Olx-1
446 jmc 1.43 localTij(i,j) = localTij(i,j)
447 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
448 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
449     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
450 jmc 1.30 & *( af(i+1,j)-af(i,j)
451     & -tracer(i,j,k,bi,bj)*(uTrans(i+1,j)-uTrans(i,j))
452 jmc 1.63 & )*maskInC(i,j,bi,bj)
453 jmc 1.30 ENDDO
454     ENDDO
455     C- keep advective flux (for diagnostics)
456     DO j=1-Oly,sNy+Oly
457     DO i=1-Olx,sNx+Olx
458     afx(i,j) = af(i,j)
459     ENDDO
460     ENDDO
461 adcroft 1.1
462     #ifdef ALLOW_OBCS
463 jmc 1.63 #ifdef OBCS_MULTIDIM_OLD_VERSION
464 jmc 1.30 C- Apply open boundary conditions
465     IF ( useOBCS ) THEN
466     IF (tracerIdentity.EQ.GAD_TEMPERATURE) THEN
467     CALL OBCS_APPLY_TLOC( bi, bj, k, localTij, myThid )
468     ELSEIF (tracerIdentity.EQ.GAD_SALINITY) THEN
469     CALL OBCS_APPLY_SLOC( bi, bj, k, localTij, myThid )
470 mlosch 1.36 #ifdef ALLOW_PTRACERS
471     ELSEIF (tracerIdentity.GE.GAD_TR1) THEN
472 jmc 1.41 CALL OBCS_APPLY_PTRACER( bi, bj, k,
473 mlosch 1.36 & tracerIdentity-GAD_TR1+1, localTij, myThid )
474     #endif /* ALLOW_PTRACERS */
475 jmc 1.30 ENDIF
476     ENDIF
477 jmc 1.63 #endif /* OBCS_MULTIDIM_OLD_VERSION */
478 adcroft 1.1 #endif /* ALLOW_OBCS */
479    
480 jmc 1.30 C- end if/else update overlap-Only
481     ENDIF
482 jmc 1.41
483 adcroft 1.3 C-- End of X direction
484     ENDIF
485    
486 jmc 1.29 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
487 adcroft 1.3 C-- Y direction
488 heimbach 1.39 cph-test
489     C- Advective flux in Y
490     DO j=1-Oly,sNy+Oly
491     DO i=1-Olx,sNx+Olx
492     af(i,j) = 0.
493     ENDDO
494     ENDDO
495     C
496     #ifdef ALLOW_AUTODIFF_TAMC
497 heimbach 1.40 # ifndef DISABLE_MULTIDIM_ADVECTION
498 jmc 1.55 CADJ STORE localTij(:,:) =
499 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
500 jmc 1.55 CADJ STORE af(:,:) =
501 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
502 heimbach 1.40 # endif
503 heimbach 1.39 #endif /* ALLOW_AUTODIFF_TAMC */
504     C
505 adcroft 1.3 IF (calc_fluxes_Y) THEN
506    
507 jmc 1.30 C- Do not compute fluxes if
508     C a) needed in overlap only
509     C and b) the overlap of myTile are not cube-face edges
510     IF ( .NOT.overlapOnly .OR. E_edge .OR. W_edge ) THEN
511    
512     C- Internal exchange for calculations in Y
513 jmc 1.55 IF ( overlapOnly ) THEN
514 jmc 1.58 CALL FILL_CS_CORNER_TR_RL( 2, .FALSE.,
515 jmc 1.50 & localTij, bi,bj, myThid )
516 jmc 1.30 ENDIF
517 adcroft 1.3
518 jmc 1.30 C- Advective flux in Y
519     DO j=1-Oly,sNy+Oly
520     DO i=1-Olx,sNx+Olx
521     af(i,j) = 0.
522     ENDDO
523     ENDDO
524 heimbach 1.6
525 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
526 adcroft 1.7 #ifndef DISABLE_MULTIDIM_ADVECTION
527 jmc 1.55 CADJ STORE localTij(:,:) =
528 heimbach 1.59 CADJ & comlev1_bibj_k_gad_pass, key=passkey, kind=isbyte
529 heimbach 1.6 #endif
530     #endif /* ALLOW_AUTODIFF_TAMC */
531    
532 jmc 1.37 IF ( advectionScheme.EQ.ENUM_UPWIND_1RST
533     & .OR. advectionScheme.EQ.ENUM_DST2 ) THEN
534 jmc 1.48 CALL GAD_DST2U1_ADV_Y( bi,bj,k, advectionScheme, .TRUE.,
535 jahn 1.61 I deltaTLev(k),vTrans,vFld,localTij,
536 jmc 1.37 O af, myThid )
537     ELSEIF (advectionScheme.EQ.ENUM_FLUX_LIMIT) THEN
538 jahn 1.61 CALL GAD_FLUXLIMIT_ADV_Y( bi,bj,k, .TRUE., deltaTLev(k),
539 jmc 1.41 I vTrans, vFld, maskLocS, localTij,
540 jmc 1.30 O af, myThid )
541     ELSEIF (advectionScheme.EQ.ENUM_DST3 ) THEN
542 jahn 1.61 CALL GAD_DST3_ADV_Y( bi,bj,k, .TRUE., deltaTLev(k),
543 jmc 1.41 I vTrans, vFld, maskLocS, localTij,
544 jmc 1.30 O af, myThid )
545     ELSEIF (advectionScheme.EQ.ENUM_DST3_FLUX_LIMIT ) THEN
546 jahn 1.61 CALL GAD_DST3FL_ADV_Y( bi,bj,k, .TRUE., deltaTLev(k),
547 jmc 1.41 I vTrans, vFld, maskLocS, localTij,
548 jmc 1.30 O af, myThid )
549 jmc 1.47 #ifndef ALLOW_AUTODIFF_TAMC
550 adcroft 1.46 ELSEIF (advectionScheme.EQ.ENUM_OS7MP ) THEN
551 jahn 1.61 CALL GAD_OS7MP_ADV_Y( bi,bj,k, .TRUE., deltaTLev(k),
552 adcroft 1.46 I vTrans, vFld, maskLocS, localTij,
553     O af, myThid )
554 jmc 1.47 #endif
555 jmc 1.30 ELSE
556     STOP 'GAD_ADVECTION: adv. scheme incompatibale with mutli-dim'
557     ENDIF
558    
559     C- Internal exchange for next calculations in X
560 jmc 1.56 IF ( overlapOnly .AND. ipass.EQ.1 ) THEN
561 jmc 1.58 CALL FILL_CS_CORNER_TR_RL( 1, .FALSE.,
562 jmc 1.50 & localTij, bi,bj, myThid )
563 jmc 1.56 ENDIF
564 jmc 1.55
565     C- Advective flux in Y : done
566     ENDIF
567 jmc 1.30
568     C- Update the local tracer field where needed:
569 jmc 1.63 C use "maksInC" to prevent updating tracer field in OB regions
570 jmc 1.30
571     C update in overlap-Only
572     IF ( overlapOnly ) THEN
573 jmc 1.41 jMinUpd = 1-Oly+1
574 jmc 1.30 jMaxUpd = sNy+Oly-1
575 jmc 1.41 C- notes: these 2 lines below have no real effect (because recip_hFac=0
576 jmc 1.30 C in corner region) but safer to keep them.
577     IF ( S_edge ) jMinUpd = 1
578     IF ( N_edge ) jMaxUpd = sNy
579    
580     IF ( W_edge ) THEN
581     DO j=jMinUpd,jMaxUpd
582     DO i=1-Olx,0
583 jmc 1.43 localTij(i,j) = localTij(i,j)
584 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
585 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
586     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
587 jmc 1.30 & *( af(i,j+1)-af(i,j)
588     & -tracer(i,j,k,bi,bj)*(vTrans(i,j+1)-vTrans(i,j))
589 jmc 1.63 & )*maskInC(i,j,bi,bj)
590 jmc 1.30 ENDDO
591     ENDDO
592     ENDIF
593     IF ( E_edge ) THEN
594     DO j=jMinUpd,jMaxUpd
595     DO i=sNx+1,sNx+Olx
596 jmc 1.43 localTij(i,j) = localTij(i,j)
597 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
598 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
599     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
600 jmc 1.30 & *( af(i,j+1)-af(i,j)
601     & -tracer(i,j,k,bi,bj)*(vTrans(i,j+1)-vTrans(i,j))
602 jmc 1.63 & )*maskInC(i,j,bi,bj)
603 jmc 1.30 ENDDO
604     ENDDO
605     ENDIF
606 heimbach 1.6
607 jmc 1.30 ELSE
608     C do not only update the overlap
609     iMinUpd = 1-Olx
610     iMaxUpd = sNx+Olx
611     IF ( interiorOnly .AND. W_edge ) iMinUpd = 1
612     IF ( interiorOnly .AND. E_edge ) iMaxUpd = sNx
613     DO j=1-Oly+1,sNy+Oly-1
614     DO i=iMinUpd,iMaxUpd
615 jmc 1.43 localTij(i,j) = localTij(i,j)
616 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
617 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
618     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
619 jmc 1.30 & *( af(i,j+1)-af(i,j)
620     & -tracer(i,j,k,bi,bj)*(vTrans(i,j+1)-vTrans(i,j))
621 jmc 1.63 & )*maskInC(i,j,bi,bj)
622 jmc 1.30 ENDDO
623     ENDDO
624     C- keep advective flux (for diagnostics)
625     DO j=1-Oly,sNy+Oly
626     DO i=1-Olx,sNx+Olx
627     afy(i,j) = af(i,j)
628     ENDDO
629     ENDDO
630 adcroft 1.3
631 adcroft 1.1 #ifdef ALLOW_OBCS
632 jmc 1.63 #ifdef OBCS_MULTIDIM_OLD_VERSION
633 jmc 1.30 C- Apply open boundary conditions
634     IF (useOBCS) THEN
635     IF (tracerIdentity.EQ.GAD_TEMPERATURE) THEN
636     CALL OBCS_APPLY_TLOC( bi, bj, k, localTij, myThid )
637     ELSEIF (tracerIdentity.EQ.GAD_SALINITY) THEN
638     CALL OBCS_APPLY_SLOC( bi, bj, k, localTij, myThid )
639 mlosch 1.36 #ifdef ALLOW_PTRACERS
640     ELSEIF (tracerIdentity.GE.GAD_TR1) THEN
641 jmc 1.41 CALL OBCS_APPLY_PTRACER( bi, bj, k,
642 mlosch 1.36 & tracerIdentity-GAD_TR1+1, localTij, myThid )
643     #endif /* ALLOW_PTRACERS */
644 jmc 1.30 ENDIF
645     ENDIF
646 jmc 1.63 #endif /* OBCS_MULTIDIM_OLD_VERSION */
647 adcroft 1.1 #endif /* ALLOW_OBCS */
648 adcroft 1.3
649 jmc 1.30 C end if/else update overlap-Only
650     ENDIF
651    
652 adcroft 1.3 C-- End of Y direction
653     ENDIF
654    
655 jmc 1.18 C-- End of ipass loop
656 adcroft 1.1 ENDDO
657    
658 jmc 1.18 IF ( implicitAdvection ) THEN
659     C- explicit advection is done ; store tendency in gTracer:
660     DO j=1-Oly,sNy+Oly
661     DO i=1-Olx,sNx+Olx
662     gTracer(i,j,k,bi,bj)=
663 jahn 1.61 & (localTij(i,j)-tracer(i,j,k,bi,bj))/deltaTLev(k)
664 jmc 1.18 ENDDO
665     ENDDO
666     ELSE
667     C- horizontal advection done; store intermediate result in 3D array:
668 jmc 1.43 DO j=1-Oly,sNy+Oly
669     DO i=1-Olx,sNx+Olx
670     localTijk(i,j,k)=localTij(i,j)
671     ENDDO
672 jmc 1.18 ENDDO
673     ENDIF
674 adcroft 1.1
675 jmc 1.33 #ifdef ALLOW_DIAGNOSTICS
676 jmc 1.57 IF ( doDiagAdvX ) THEN
677 jmc 1.33 diagName = 'ADVx'//diagSufx
678 jmc 1.34 CALL DIAGNOSTICS_FILL(afx,diagName, k,1, 2,bi,bj, myThid)
679 jmc 1.57 ENDIF
680     IF ( doDiagAdvY ) THEN
681 jmc 1.33 diagName = 'ADVy'//diagSufx
682 jmc 1.34 CALL DIAGNOSTICS_FILL(afy,diagName, k,1, 2,bi,bj, myThid)
683 jmc 1.33 ENDIF
684     #endif
685    
686 jmc 1.29 #ifdef ALLOW_DEBUG
687     IF ( debugLevel .GE. debLevB
688 jmc 1.30 & .AND. tracerIdentity.EQ.GAD_TEMPERATURE
689     & .AND. k.LE.3 .AND. myIter.EQ.1+nIter0
690 jmc 1.29 & .AND. nPx.EQ.1 .AND. nPy.EQ.1
691     & .AND. useCubedSphereExchange ) THEN
692     CALL DEBUG_CS_CORNER_UV( ' afx,afy from GAD_ADVECTION',
693     & afx,afy, k, standardMessageUnit,bi,bj,myThid )
694     ENDIF
695     #endif /* ALLOW_DEBUG */
696    
697 adcroft 1.1 C-- End of K loop for horizontal fluxes
698     ENDDO
699    
700 jmc 1.29 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
701    
702 jmc 1.18 IF ( .NOT.implicitAdvection ) THEN
703 adcroft 1.1 C-- Start of k loop for vertical flux
704 jmc 1.18 DO k=Nr,1,-1
705 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
706 heimbach 1.51 kkey = (igadkey-1)*Nr + (Nr-k+1)
707 heimbach 1.6 #endif /* ALLOW_AUTODIFF_TAMC */
708 jmc 1.41 C-- kUp Cycles through 1,2 to point to w-layer above
709 adcroft 1.1 C-- kDown Cycles through 2,1 to point to w-layer below
710 jmc 1.41 kUp = 1+MOD(k+1,2)
711 jmc 1.18 kDown= 1+MOD(k,2)
712     c kp1=min(Nr,k+1)
713     kp1Msk=1.
714     if (k.EQ.Nr) kp1Msk=0.
715 heimbach 1.6
716 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
717     CADJ STORE rtrans(:,:) =
718 heimbach 1.59 CADJ & comlev1_bibj_k_gad, key=kkey, kind=isbyte
719 jmc 1.55 cphCADJ STORE wfld(:,:) =
720 heimbach 1.59 cphCADJ & comlev1_bibj_k_gad, key=kkey, kind=isbyte
721 heimbach 1.51 #endif
722    
723 jmc 1.11 C-- Compute Vertical transport
724 jmc 1.22 #ifdef ALLOW_AIM
725     C- a hack to prevent Water-Vapor vert.transport into the stratospheric level Nr
726     IF ( k.EQ.1 .OR.
727     & (useAIM .AND. tracerIdentity.EQ.GAD_SALINITY .AND. k.EQ.Nr)
728     & ) THEN
729     #else
730     IF ( k.EQ.1 ) THEN
731     #endif
732 jmc 1.11
733 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
734     cphmultiCADJ STORE wfld(:,:) =
735 heimbach 1.59 cphmultiCADJ & comlev1_bibj_k_gad, key=kkey, kind=isbyte
736 heimbach 1.42 #endif /* ALLOW_AUTODIFF_TAMC */
737    
738 jmc 1.11 C- Surface interface :
739 jmc 1.18 DO j=1-Oly,sNy+Oly
740     DO i=1-Olx,sNx+Olx
741 jmc 1.22 rTransKp1(i,j) = kp1Msk*rTrans(i,j)
742 jmc 1.41 wFld(i,j) = 0.
743 jmc 1.18 rTrans(i,j) = 0.
744     fVerT(i,j,kUp) = 0.
745     ENDDO
746     ENDDO
747 jmc 1.11
748 jmc 1.18 ELSE
749 heimbach 1.42
750 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
751     cphmultiCADJ STORE wfld(:,:) =
752 heimbach 1.59 cphmultiCADJ & comlev1_bibj_k_gad, key=kkey, kind=isbyte
753 heimbach 1.42 #endif /* ALLOW_AUTODIFF_TAMC */
754    
755 jmc 1.18 C- Interior interface :
756     DO j=1-Oly,sNy+Oly
757     DO i=1-Olx,sNx+Olx
758     rTransKp1(i,j) = kp1Msk*rTrans(i,j)
759 jmc 1.41 wFld(i,j) = wVel(i,j,k,bi,bj)
760 jmc 1.18 rTrans(i,j) = wVel(i,j,k,bi,bj)*rA(i,j,bi,bj)
761 jmc 1.43 & *deepFac2F(k)*rhoFacF(k)
762 jmc 1.18 & *maskC(i,j,k-1,bi,bj)
763 jmc 1.29 fVerT(i,j,kUp) = 0.
764 jmc 1.18 ENDDO
765     ENDDO
766 jmc 1.11
767     #ifdef ALLOW_GMREDI
768     C-- Residual transp = Bolus transp + Eulerian transp
769 jmc 1.41 IF (useGMRedi)
770     & CALL GMREDI_CALC_WFLOW(
771     U wFld, rTrans,
772     I k, bi, bj, myThid )
773 jmc 1.11 #endif /* ALLOW_GMREDI */
774    
775 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
776     cphmultiCADJ STORE localTijk(:,:,k)
777 heimbach 1.59 cphmultiCADJ & = comlev1_bibj_k_gad, key=kkey, kind=isbyte
778 jmc 1.55 cphmultiCADJ STORE rTrans(:,:)
779 heimbach 1.59 cphmultiCADJ & = comlev1_bibj_k_gad, key=kkey, kind=isbyte
780 heimbach 1.16 #endif /* ALLOW_AUTODIFF_TAMC */
781    
782 adcroft 1.1 C- Compute vertical advective flux in the interior:
783 jmc 1.45 IF ( vertAdvecScheme.EQ.ENUM_UPWIND_1RST
784     & .OR. vertAdvecScheme.EQ.ENUM_DST2 ) THEN
785 jmc 1.37 CALL GAD_DST2U1_ADV_R( bi,bj,k, advectionScheme,
786 jahn 1.61 I deltaTLev(k),rTrans,wFld,localTijk,
787 jmc 1.37 O fVerT(1-Olx,1-Oly,kUp), myThid )
788 jmc 1.45 ELSEIF( vertAdvecScheme.EQ.ENUM_FLUX_LIMIT) THEN
789 jahn 1.61 CALL GAD_FLUXLIMIT_ADV_R( bi,bj,k, deltaTLev(k),
790 jmc 1.41 I rTrans, wFld, localTijk,
791 jmc 1.29 O fVerT(1-Olx,1-Oly,kUp), myThid )
792 jmc 1.45 ELSEIF( vertAdvecScheme.EQ.ENUM_DST3 ) THEN
793 jahn 1.61 CALL GAD_DST3_ADV_R( bi,bj,k, deltaTLev(k),
794 jmc 1.41 I rTrans, wFld, localTijk,
795 jmc 1.29 O fVerT(1-Olx,1-Oly,kUp), myThid )
796 jmc 1.45 ELSEIF( vertAdvecScheme.EQ.ENUM_DST3_FLUX_LIMIT ) THEN
797 jahn 1.61 CALL GAD_DST3FL_ADV_R( bi,bj,k, deltaTLev(k),
798 jmc 1.41 I rTrans, wFld, localTijk,
799 jmc 1.29 O fVerT(1-Olx,1-Oly,kUp), myThid )
800 jmc 1.47 #ifndef ALLOW_AUTODIFF_TAMC
801 adcroft 1.46 ELSEIF (vertAdvecScheme.EQ.ENUM_OS7MP ) THEN
802 jahn 1.61 CALL GAD_OS7MP_ADV_R( bi,bj,k, deltaTLev(k),
803 adcroft 1.46 I rTrans, wFld, localTijk,
804     O fVerT(1-Olx,1-Oly,kUp), myThid )
805 jmc 1.47 #endif
806 jmc 1.18 ELSE
807     STOP 'GAD_ADVECTION: adv. scheme incompatibale with mutli-dim'
808     ENDIF
809 jmc 1.11
810     C- end Surface/Interior if bloc
811 jmc 1.18 ENDIF
812 heimbach 1.16
813 jmc 1.55 #ifdef ALLOW_AUTODIFF_TAMC
814     cphmultiCADJ STORE rTrans(:,:)
815 heimbach 1.59 cphmultiCADJ & = comlev1_bibj_k_gad, key=kkey, kind=isbyte
816 jmc 1.55 cphmultiCADJ STORE rTranskp1(:,:)
817 heimbach 1.59 cphmultiCADJ & = comlev1_bibj_k_gad, key=kkey, kind=isbyte
818 heimbach 1.53 cph --- following storing of fVerT is critical for correct
819     cph --- gradient with multiDimAdvection
820     cph --- Without it, kDown component is not properly recomputed
821     cph --- This is a TAF bug (and no warning available)
822 jmc 1.55 CADJ STORE fVerT(:,:,:)
823 heimbach 1.59 CADJ & = comlev1_bibj_k_gad, key=kkey, kind=isbyte
824 heimbach 1.16 #endif /* ALLOW_AUTODIFF_TAMC */
825 adcroft 1.1
826 jmc 1.18 C-- Divergence of vertical fluxes
827     DO j=1-Oly,sNy+Oly
828     DO i=1-Olx,sNx+Olx
829 jmc 1.43 localTij(i,j) = localTijk(i,j,k)
830 jahn 1.61 & -deltaTLev(k)*recip_rhoFacC(k)
831 jmc 1.43 & *_recip_hFacC(i,j,k,bi,bj)*recip_drF(k)
832     & *recip_rA(i,j,bi,bj)*recip_deepFac2C(k)
833     & *( fVerT(i,j,kDown)-fVerT(i,j,kUp)
834     & -tracer(i,j,k,bi,bj)*(rTransKp1(i,j)-rTrans(i,j))
835     & )*rkSign
836 jmc 1.18 gTracer(i,j,k,bi,bj)=
837 jahn 1.61 & (localTij(i,j)-tracer(i,j,k,bi,bj))/deltaTLev(k)
838 jmc 1.18 ENDDO
839     ENDDO
840 jmc 1.41
841 jmc 1.33 #ifdef ALLOW_DIAGNOSTICS
842 jmc 1.57 IF ( doDiagAdvR ) THEN
843 jmc 1.33 diagName = 'ADVr'//diagSufx
844     CALL DIAGNOSTICS_FILL( fVerT(1-Olx,1-Oly,kUp),
845 jmc 1.34 & diagName, k,1, 2,bi,bj, myThid)
846 jmc 1.33 ENDIF
847     #endif
848    
849 adcroft 1.1 C-- End of K loop for vertical flux
850 jmc 1.18 ENDDO
851     C-- end of if not.implicitAdvection block
852 jmc 1.41 ENDIF
853 adcroft 1.1
854     RETURN
855     END

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