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revision 1.80 by adcroft, Fri Aug 17 18:40:30 2001 UTC revision 1.169 by gforget, Thu Feb 6 23:16:46 2014 UTC
# Line 1  Line 1 
1  C $Header$  C $Header$
2  C $Name$  C $Name$
3    
4    #include "PACKAGES_CONFIG.h"
5  #include "CPP_OPTIONS.h"  #include "CPP_OPTIONS.h"
6    #ifdef ALLOW_MOM_COMMON
7    # include "MOM_COMMON_OPTIONS.h"
8    #endif
9    #ifdef ALLOW_OBCS
10    # include "OBCS_OPTIONS.h"
11    #endif
12    
13    #undef DYNAMICS_GUGV_EXCH_CHECK
14    
15    CBOP
16    C     !ROUTINE: DYNAMICS
17    C     !INTERFACE:
18        SUBROUTINE DYNAMICS(myTime, myIter, myThid)        SUBROUTINE DYNAMICS(myTime, myIter, myThid)
19  C     /==========================================================\  C     !DESCRIPTION: \bv
20  C     | SUBROUTINE DYNAMICS                                      |  C     *==========================================================*
21  C     | o Controlling routine for the explicit part of the model |  C     | SUBROUTINE DYNAMICS
22  C     |   dynamics.                                              |  C     | o Controlling routine for the explicit part of the model
23  C     |==========================================================|  C     |   dynamics.
24  C     | This routine evaluates the "dynamics" terms for each     |  C     *==========================================================*
25  C     | block of ocean in turn. Because the blocks of ocean have |  C     | This routine evaluates the "dynamics" terms for each
26  C     | overlap regions they are independent of one another.     |  C     | block of ocean in turn. Because the blocks of ocean have
27  C     | If terms involving lateral integrals are needed in this  |  C     | overlap regions they are independent of one another.
28  C     | routine care will be needed. Similarly finite-difference |  C     | If terms involving lateral integrals are needed in this
29  C     | operations with stencils wider than the overlap region   |  C     | routine care will be needed. Similarly finite-difference
30  C     | require special consideration.                           |  C     | operations with stencils wider than the overlap region
31  C     | Notes                                                    |  C     | require special consideration.
32  C     | =====                                                    |  C     | The algorithm...
33  C     | C*P* comments indicating place holders for which code is |  C     |
34  C     |      presently being developed.                          |  C     | "Correction Step"
35  C     \==========================================================/  C     | =================
36    C     | Here we update the horizontal velocities with the surface
37    C     | pressure such that the resulting flow is either consistent
38    C     | with the free-surface evolution or the rigid-lid:
39    C     |   U[n] = U* + dt x d/dx P
40    C     |   V[n] = V* + dt x d/dy P
41    C     |   W[n] = W* + dt x d/dz P  (NH mode)
42    C     |
43    C     | "Calculation of Gs"
44    C     | ===================
45    C     | This is where all the accelerations and tendencies (ie.
46    C     | physics, parameterizations etc...) are calculated
47    C     |   rho = rho ( theta[n], salt[n] )
48    C     |   b   = b(rho, theta)
49    C     |   K31 = K31 ( rho )
50    C     |   Gu[n] = Gu( u[n], v[n], wVel, b, ... )
51    C     |   Gv[n] = Gv( u[n], v[n], wVel, b, ... )
52    C     |   Gt[n] = Gt( theta[n], u[n], v[n], wVel, K31, ... )
53    C     |   Gs[n] = Gs( salt[n], u[n], v[n], wVel, K31, ... )
54    C     |
55    C     | "Time-stepping" or "Prediction"
56    C     | ================================
57    C     | The models variables are stepped forward with the appropriate
58    C     | time-stepping scheme (currently we use Adams-Bashforth II)
59    C     | - For momentum, the result is always *only* a "prediction"
60    C     | in that the flow may be divergent and will be "corrected"
61    C     | later with a surface pressure gradient.
62    C     | - Normally for tracers the result is the new field at time
63    C     | level [n+1} *BUT* in the case of implicit diffusion the result
64    C     | is also *only* a prediction.
65    C     | - We denote "predictors" with an asterisk (*).
66    C     |   U* = U[n] + dt x ( 3/2 Gu[n] - 1/2 Gu[n-1] )
67    C     |   V* = V[n] + dt x ( 3/2 Gv[n] - 1/2 Gv[n-1] )
68    C     |   theta[n+1] = theta[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] )
69    C     |   salt[n+1] = salt[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] )
70    C     | With implicit diffusion:
71    C     |   theta* = theta[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] )
72    C     |   salt* = salt[n] + dt x ( 3/2 Gt[n] - 1/2 atG[n-1] )
73    C     |   (1 + dt * K * d_zz) theta[n] = theta*
74    C     |   (1 + dt * K * d_zz) salt[n] = salt*
75    C     |
76    C     *==========================================================*
77    C     \ev
78    C     !USES:
79        IMPLICIT NONE        IMPLICIT NONE
   
80  C     == Global variables ===  C     == Global variables ===
81  #include "SIZE.h"  #include "SIZE.h"
82  #include "EEPARAMS.h"  #include "EEPARAMS.h"
83  #include "PARAMS.h"  #include "PARAMS.h"
 #include "DYNVARS.h"  
84  #include "GRID.h"  #include "GRID.h"
85  #ifdef ALLOW_PASSIVE_TRACER  #include "DYNVARS.h"
86  #include "TR1.h"  #ifdef ALLOW_MOM_COMMON
87    # include "MOM_VISC.h"
88    #endif
89    #ifdef ALLOW_CD_CODE
90    # include "CD_CODE_VARS.h"
91  #endif  #endif
   
92  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
93  # include "tamc.h"  # include "tamc.h"
94  # include "tamc_keys.h"  # include "tamc_keys.h"
95  # include "FFIELDS.h"  # include "FFIELDS.h"
96    # include "EOS.h"
97  # ifdef ALLOW_KPP  # ifdef ALLOW_KPP
98  #  include "KPP.h"  #  include "KPP.h"
99  # endif  # endif
100  # ifdef ALLOW_GMREDI  # ifdef ALLOW_PTRACERS
101  #  include "GMREDI.h"  #  include "PTRACERS_SIZE.h"
102    #  include "PTRACERS_FIELDS.h"
103    # endif
104    # ifdef ALLOW_OBCS
105    #  include "OBCS_PARAMS.h"
106    #  include "OBCS_FIELDS.h"
107    #  ifdef ALLOW_PTRACERS
108    #   include "OBCS_PTRACERS.h"
109    #  endif
110    # endif
111    # ifdef ALLOW_MOM_FLUXFORM
112    #  include "MOM_FLUXFORM.h"
113  # endif  # endif
114  #endif /* ALLOW_AUTODIFF_TAMC */  #endif /* ALLOW_AUTODIFF_TAMC */
115    
116  #ifdef ALLOW_TIMEAVE  C     !CALLING SEQUENCE:
117  #include "TIMEAVE_STATV.h"  C     DYNAMICS()
118  #endif  C      |
119    C      |-- CALC_EP_FORCING
120    C      |
121    C      |-- CALC_GRAD_PHI_SURF
122    C      |
123    C      |-- CALC_VISCOSITY
124    C      |
125    C      |-- MOM_CALC_3D_STRAIN
126    C      |
127    C      |-- CALC_EDDY_STRESS
128    C      |
129    C      |-- CALC_PHI_HYD
130    C      |
131    C      |-- MOM_FLUXFORM
132    C      |
133    C      |-- MOM_VECINV
134    C      |
135    C      |-- MOM_CALC_SMAG_3D
136    C      |-- MOM_UV_SMAG_3D
137    C      |
138    C      |-- TIMESTEP
139    C      |
140    C      |-- MOM_U_IMPLICIT_R
141    C      |-- MOM_V_IMPLICIT_R
142    C      |
143    C      |-- IMPLDIFF
144    C      |
145    C      |-- OBCS_APPLY_UV
146    C      |
147    C      |-- CALC_GW
148    C      |
149    C      |-- DIAGNOSTICS_FILL
150    C      |-- DEBUG_STATS_RL
151    
152    C     !INPUT/OUTPUT PARAMETERS:
153  C     == Routine arguments ==  C     == Routine arguments ==
154  C     myTime - Current time in simulation  C     myTime :: Current time in simulation
155  C     myIter - Current iteration number in simulation  C     myIter :: Current iteration number in simulation
156  C     myThid - Thread number for this instance of the routine.  C     myThid :: Thread number for this instance of the routine.
157        _RL myTime        _RL myTime
158        INTEGER myIter        INTEGER myIter
159        INTEGER myThid        INTEGER myThid
160    
161    C     !FUNCTIONS:
162    #ifdef ALLOW_DIAGNOSTICS
163          LOGICAL  DIAGNOSTICS_IS_ON
164          EXTERNAL DIAGNOSTICS_IS_ON
165    #endif
166    
167    C     !LOCAL VARIABLES:
168  C     == Local variables  C     == Local variables
169  C     fVer[STUV]               o fVer: Vertical flux term - note fVer  C     fVer[UV]               o fVer: Vertical flux term - note fVer
170  C                                      is "pipelined" in the vertical  C                                    is "pipelined" in the vertical
171  C                                      so we need an fVer for each  C                                    so we need an fVer for each
172  C                                      variable.  C                                    variable.
173  C     rhoK, rhoKM1   - Density at current level, and level above  C     phiHydC    :: hydrostatic potential anomaly at cell center
174  C     phiHyd         - Hydrostatic part of the potential phiHydi.  C                   In z coords phiHyd is the hydrostatic potential
175  C                      In z coords phiHydiHyd is the hydrostatic  C                      (=pressure/rho0) anomaly
176  C                      Potential (=pressure/rho0) anomaly  C                   In p coords phiHyd is the geopotential height anomaly.
177  C                      In p coords phiHydiHyd is the geopotential  C     phiHydF    :: hydrostatic potential anomaly at middle between 2 centers
178  C                      surface height anomaly.  C     dPhiHydX,Y :: Gradient (X & Y directions) of hydrostatic potential anom.
179  C     phiSurfX, - gradient of Surface potentiel (Pressure/rho, ocean)  C     phiSurfX,  ::  gradient of Surface potential (Pressure/rho, ocean)
180  C     phiSurfY             or geopotentiel (atmos) in X and Y direction  C     phiSurfY             or geopotential (atmos) in X and Y direction
181  C     iMin, iMax     - Ranges and sub-block indices on which calculations  C     guDissip   :: dissipation tendency (all explicit terms), u component
182  C     jMin, jMax       are applied.  C     gvDissip   :: dissipation tendency (all explicit terms), v component
183  C     bi, bj  C     KappaRU    :: vertical viscosity for velocity U-component
184  C     k, kup,        - Index for layer above and below. kup and kDown  C     KappaRV    :: vertical viscosity for velocity V-component
185  C     kDown, km1       are switched with layer to be the appropriate  C     iMin, iMax :: Ranges and sub-block indices on which calculations
186  C                      index into fVerTerm.  C     jMin, jMax    are applied.
187    C     bi, bj     :: tile indices
188    C     k          :: current level index
189    C     km1, kp1   :: index of level above (k-1) and below (k+1)
190    C     kUp, kDown :: Index for interface above and below. kUp and kDown are
191    C                   are switched with k to be the appropriate index into fVerU,V
192        _RL fVerU   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)        _RL fVerU   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
193        _RL fVerV   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)        _RL fVerV   (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
194        _RL phiHyd  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)        _RL phiHydF (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
195        _RL rhokm1  (1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL phiHydC (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
196        _RL rhok    (1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL dPhiHydX(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
197          _RL dPhiHydY(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
198        _RL phiSurfX(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL phiSurfX(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
199        _RL phiSurfY(1-OLx:sNx+OLx,1-OLy:sNy+OLy)        _RL phiSurfY(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
200        _RL KappaRU (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr)        _RL guDissip(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
201        _RL KappaRV (1-Olx:sNx+Olx,1-Oly:sNy+Oly,Nr)        _RL gvDissip(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
202        _RL sigmaX  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)        _RL KappaRU (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
203        _RL sigmaY  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)        _RL KappaRV (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
204        _RL sigmaR  (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)  #ifdef ALLOW_SMAG_3D
205    C     str11       :: strain component Vxx @ grid-cell center
206  C This is currently used by IVDC and Diagnostics  C     str22       :: strain component Vyy @ grid-cell center
207        _RL ConvectCount (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)  C     str33       :: strain component Vzz @ grid-cell center
208    C     str12       :: strain component Vxy @ grid-cell corner
209    C     str13       :: strain component Vxz @ above uVel
210    C     str23       :: strain component Vyz @ above vVel
211    C     viscAh3d_00 :: Smagorinsky viscosity @ grid-cell center
212    C     viscAh3d_12 :: Smagorinsky viscosity @ grid-cell corner
213    C     viscAh3d_13 :: Smagorinsky viscosity @ above uVel
214    C     viscAh3d_23 :: Smagorinsky viscosity @ above vVel
215    C     addDissU    :: zonal momentum tendency from 3-D Smag. viscosity
216    C     addDissV    :: merid momentum tendency from 3-D Smag. viscosity
217          _RL str11(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
218          _RL str22(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
219          _RL str33(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
220          _RL str12(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
221          _RL str13(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr+1)
222          _RL str23(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr+1)
223          _RL viscAh3d_00(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
224          _RL viscAh3d_12(1-OLx:sNx+OLx,1-OLy:sNy+OLy, Nr )
225          _RL viscAh3d_13(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr+1)
226          _RL viscAh3d_23(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr+1)
227          _RL addDissU(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
228          _RL addDissV(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
229    #elif ( defined ALLOW_NONHYDROSTATIC )
230          _RL str13(1), str23(1), str33(1)
231          _RL viscAh3d_00(1), viscAh3d_13(1), viscAh3d_23(1)
232    #endif
233    
       INTEGER iMin, iMax  
       INTEGER jMin, jMax  
234        INTEGER bi, bj        INTEGER bi, bj
235        INTEGER i, j        INTEGER i, j
236        INTEGER k, km1, kp1, kup, kDown        INTEGER k, km1, kp1, kUp, kDown
237          INTEGER iMin, iMax
238          INTEGER jMin, jMax
239          PARAMETER( iMin = 0 , iMax = sNx+1 )
240          PARAMETER( jMin = 0 , jMax = sNy+1 )
241    
242    #ifdef ALLOW_DIAGNOSTICS
243          LOGICAL dPhiHydDiagIsOn
244          _RL tmpFac
245    #endif /* ALLOW_DIAGNOSTICS */
246    
 Cjmc : add for phiHyd output <- but not working if multi tile per CPU  
 c     CHARACTER*(MAX_LEN_MBUF) suff  
 c     LOGICAL  DIFFERENT_MULTIPLE  
 c     EXTERNAL DIFFERENT_MULTIPLE  
 Cjmc(end)  
   
247  C---    The algorithm...  C---    The algorithm...
248  C  C
249  C       "Correction Step"  C       "Correction Step"
# Line 147  C         salt* = salt[n] + dt x ( 3/2 G Line 287  C         salt* = salt[n] + dt x ( 3/2 G
287  C         (1 + dt * K * d_zz) theta[n] = theta*  C         (1 + dt * K * d_zz) theta[n] = theta*
288  C         (1 + dt * K * d_zz) salt[n] = salt*  C         (1 + dt * K * d_zz) salt[n] = salt*
289  C---  C---
290    CEOP
291    
292  C--   Set up work arrays with valid (i.e. not NaN) values  #ifdef ALLOW_DEBUG
293  C     These inital values do not alter the numerical results. They        IF (debugMode) CALL DEBUG_ENTER( 'DYNAMICS', myThid )
294  C     just ensure that all memory references are to valid floating  #endif
295  C     point numbers. This prevents spurious hardware signals due to  
296  C     uninitialised but inert locations.  #ifdef ALLOW_DIAGNOSTICS
297        DO j=1-OLy,sNy+OLy        dPhiHydDiagIsOn = .FALSE.
298         DO i=1-OLx,sNx+OLx        IF ( useDiagnostics )
299          DO k=1,Nr       &  dPhiHydDiagIsOn = DIAGNOSTICS_IS_ON( 'Um_dPHdx', myThid )
300           phiHyd(i,j,k)  = 0. _d 0       &               .OR. DIAGNOSTICS_IS_ON( 'Vm_dPHdy', myThid )
301           KappaRU(i,j,k) = 0. _d 0  #endif
302           KappaRV(i,j,k) = 0. _d 0  
303           sigmaX(i,j,k) = 0. _d 0  C-- Call to routine for calculation of Eliassen-Palm-flux-forced
304           sigmaY(i,j,k) = 0. _d 0  C    U-tendency, if desired:
305           sigmaR(i,j,k) = 0. _d 0  #ifdef INCLUDE_EP_FORCING_CODE
306          ENDDO        CALL CALC_EP_FORCING(myThid)
307          rhoKM1 (i,j) = 0. _d 0  #endif
308          rhok   (i,j) = 0. _d 0  
309          phiSurfX(i,j) = 0. _d 0  #ifdef ALLOW_AUTODIFF_MONITOR_DIAG
310          phiSurfY(i,j) = 0. _d 0        CALL DUMMY_IN_DYNAMICS( myTime, myIter, myThid )
311         ENDDO  #endif
       ENDDO  
312    
313  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
314  C--   HPF directive to help TAMC  C--   HPF directive to help TAMC
# Line 180  CHPF$ INDEPENDENT Line 320  CHPF$ INDEPENDENT
320  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
321  C--    HPF directive to help TAMC  C--    HPF directive to help TAMC
322  CHPF$  INDEPENDENT, NEW (fVerU,fVerV  CHPF$  INDEPENDENT, NEW (fVerU,fVerV
323  CHPF$&                  ,phiHyd  CHPF$&                  ,phiHydF
324  CHPF$&                  ,KappaRU,KappaRV  CHPF$&                  ,KappaRU,KappaRV
325  CHPF$&                  )  CHPF$&                  )
326  #endif /* ALLOW_AUTODIFF_TAMC */  #endif /* ALLOW_AUTODIFF_TAMC */
# Line 190  CHPF$&                  ) Line 330  CHPF$&                  )
330  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
331            act1 = bi - myBxLo(myThid)            act1 = bi - myBxLo(myThid)
332            max1 = myBxHi(myThid) - myBxLo(myThid) + 1            max1 = myBxHi(myThid) - myBxLo(myThid) + 1
   
333            act2 = bj - myByLo(myThid)            act2 = bj - myByLo(myThid)
334            max2 = myByHi(myThid) - myByLo(myThid) + 1            max2 = myByHi(myThid) - myByLo(myThid) + 1
   
335            act3 = myThid - 1            act3 = myThid - 1
336            max3 = nTx*nTy            max3 = nTx*nTy
   
337            act4 = ikey_dynamics - 1            act4 = ikey_dynamics - 1
338              idynkey = (act1 + 1) + act2*max1
           ikey = (act1 + 1) + act2*max1  
339       &                      + act3*max1*max2       &                      + act3*max1*max2
340       &                      + act4*max1*max2*max3       &                      + act4*max1*max2*max3
341  #endif /* ALLOW_AUTODIFF_TAMC */  #endif /* ALLOW_AUTODIFF_TAMC */
342    
343  C--     Set up work arrays that need valid initial values  C--   Set up work arrays with valid (i.e. not NaN) values
344    C     These initial values do not alter the numerical results. They
345    C     just ensure that all memory references are to valid floating
346    C     point numbers. This prevents spurious hardware signals due to
347    C     uninitialised but inert locations.
348    
349    #ifdef ALLOW_AUTODIFF
350            DO k=1,Nr
351             DO j=1-OLy,sNy+OLy
352              DO i=1-OLx,sNx+OLx
353    c--   need some re-initialisation here to break dependencies
354               gU(i,j,k,bi,bj) = 0. _d 0
355               gV(i,j,k,bi,bj) = 0. _d 0
356              ENDDO
357             ENDDO
358            ENDDO
359    #endif /* ALLOW_AUTODIFF */
360          DO j=1-OLy,sNy+OLy          DO j=1-OLy,sNy+OLy
361           DO i=1-OLx,sNx+OLx           DO i=1-OLx,sNx+OLx
362            fVerU  (i,j,1) = 0. _d 0            fVerU  (i,j,1) = 0. _d 0
363            fVerU  (i,j,2) = 0. _d 0            fVerU  (i,j,2) = 0. _d 0
364            fVerV  (i,j,1) = 0. _d 0            fVerV  (i,j,1) = 0. _d 0
365            fVerV  (i,j,2) = 0. _d 0            fVerV  (i,j,2) = 0. _d 0
366              phiHydF (i,j)  = 0. _d 0
367              phiHydC (i,j)  = 0. _d 0
368    #ifndef INCLUDE_PHIHYD_CALCULATION_CODE
369              dPhiHydX(i,j)  = 0. _d 0
370              dPhiHydY(i,j)  = 0. _d 0
371    #endif
372              phiSurfX(i,j)  = 0. _d 0
373              phiSurfY(i,j)  = 0. _d 0
374              guDissip(i,j)  = 0. _d 0
375              gvDissip(i,j)  = 0. _d 0
376    #ifdef ALLOW_AUTODIFF
377              phiHydLow(i,j,bi,bj) = 0. _d 0
378    # if (defined NONLIN_FRSURF) && (defined ALLOW_MOM_FLUXFORM)
379    #  ifndef DISABLE_RSTAR_CODE
380              dWtransC(i,j,bi,bj) = 0. _d 0
381              dWtransU(i,j,bi,bj) = 0. _d 0
382              dWtransV(i,j,bi,bj) = 0. _d 0
383    #  endif
384    # endif
385    #endif /* ALLOW_AUTODIFF */
386           ENDDO           ENDDO
387          ENDDO          ENDDO
388    
389  C--     Start computation of dynamics  C--     Start computation of dynamics
         iMin = 1-OLx+2  
         iMax = sNx+OLx-1  
         jMin = 1-OLy+2  
         jMax = sNy+OLy-1  
390    
391  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
392  CADJ STORE uvel (:,:,:,bi,bj) = comlev1_bibj, key = ikey, byte = isbyte  CADJ STORE wVel (:,:,:,bi,bj) =
393  CADJ STORE vvel (:,:,:,bi,bj) = comlev1_bibj, key = ikey, byte = isbyte  CADJ &     comlev1_bibj, key=idynkey, byte=isbyte
 CADJ STORE wvel (:,:,:,bi,bj) = comlev1_bibj, key = ikey, byte = isbyte  
394  #endif /* ALLOW_AUTODIFF_TAMC */  #endif /* ALLOW_AUTODIFF_TAMC */
395    
396  C--     Explicit part of the Surface Potentiel Gradient (add in TIMESTEP)  C--     Explicit part of the Surface Potential Gradient (add in TIMESTEP)
397  C       (note: this loop will be replaced by CALL CALC_GRAD_ETA)  C       (note: this loop will be replaced by CALL CALC_GRAD_ETA)
398          IF (implicSurfPress.NE.1.) THEN          IF (implicSurfPress.NE.1.) THEN
399            CALL CALC_GRAD_PHI_SURF(            CALL CALC_GRAD_PHI_SURF(
400       I         bi,bj,iMin,iMax,jMin,jMax,       I         bi,bj,iMin,iMax,jMin,jMax,
401       I         etaN,       I         etaN,
402       O         phiSurfX,phiSurfY,       O         phiSurfX,phiSurfY,
403       I         myThid )                               I         myThid )
404          ENDIF          ENDIF
405    
406  #ifdef  INCLUDE_CALC_DIFFUSIVITY_CALL  #ifdef ALLOW_AUTODIFF_TAMC
407  C--      Calculate the total vertical diffusivity  CADJ STORE uVel (:,:,:,bi,bj) = comlev1_bibj, key=idynkey, byte=isbyte
408          DO k=1,Nr  CADJ STORE vVel (:,:,:,bi,bj) = comlev1_bibj, key=idynkey, byte=isbyte
409           CALL CALC_VISCOSITY(  #ifdef ALLOW_KPP
410       I        bi,bj,iMin,iMax,jMin,jMax,k,  CADJ STORE KPPviscAz (:,:,:,bi,bj)
411       O        KappaRU,KappaRV,  CADJ &                 = comlev1_bibj, key=idynkey, byte=isbyte
412       I        myThid)  #endif /* ALLOW_KPP */
413         ENDDO  #endif /* ALLOW_AUTODIFF_TAMC */
414    
415    #ifndef ALLOW_AUTODIFF
416            IF ( .NOT.momViscosity ) THEN
417    #endif
418              DO k=1,Nr
419               DO j=1-OLy,sNy+OLy
420                DO i=1-OLx,sNx+OLx
421                 KappaRU(i,j,k) = 0. _d 0
422                 KappaRV(i,j,k) = 0. _d 0
423                ENDDO
424               ENDDO
425              ENDDO
426    #ifndef ALLOW_AUTODIFF
427            ENDIF
428    #endif
429    #ifdef INCLUDE_CALC_DIFFUSIVITY_CALL
430    C--     Calculate the total vertical viscosity
431            IF ( momViscosity ) THEN
432              CALL CALC_VISCOSITY(
433         I            bi,bj, iMin,iMax,jMin,jMax,
434         O            KappaRU, KappaRV,
435         I            myThid )
436            ENDIF
437    #endif /* INCLUDE_CALC_DIFFUSIVITY_CALL */
438    
439    #ifdef ALLOW_SMAG_3D
440            IF ( useSmag3D ) THEN
441              CALL MOM_CALC_3D_STRAIN(
442         O         str11, str22, str33, str12, str13, str23,
443         I         bi, bj, myThid )
444            ENDIF
445    #endif /* ALLOW_SMAG_3D */
446    
447    #ifdef ALLOW_AUTODIFF_TAMC
448    CADJ STORE KappaRU(:,:,:)
449    CADJ &     = comlev1_bibj, key=idynkey, byte=isbyte
450    CADJ STORE KappaRV(:,:,:)
451    CADJ &     = comlev1_bibj, key=idynkey, byte=isbyte
452    #endif /* ALLOW_AUTODIFF_TAMC */
453    
454    #ifdef ALLOW_OBCS
455    C--   For Stevens boundary conditions velocities need to be extrapolated
456    C     (copied) to a narrow strip outside the domain
457            IF ( useOBCS ) THEN
458              CALL OBCS_COPY_UV_N(
459         U         uVel(1-OLx,1-OLy,1,bi,bj),
460         U         vVel(1-OLx,1-OLy,1,bi,bj),
461         I         Nr, bi, bj, myThid )
462            ENDIF
463    #endif /* ALLOW_OBCS */
464    
465    #ifdef ALLOW_EDDYPSI
466            CALL CALC_EDDY_STRESS(bi,bj,myThid)
467  #endif  #endif
468    
469  C--     Start of dynamics loop  C--     Start of dynamics loop
# Line 258  C--       kDown  Cycles through 2,1 to p Line 478  C--       kDown  Cycles through 2,1 to p
478            kup  = 1+MOD(k+1,2)            kup  = 1+MOD(k+1,2)
479            kDown= 1+MOD(k,2)            kDown= 1+MOD(k,2)
480    
481  #ifdef ALLOW_AUTODIFF_TAMC  #ifdef ALLOW_AUTODIFF_TAMC
482           kkey = (ikey-1)*Nr + k           kkey = (idynkey-1)*Nr + k
483    CADJ STORE totPhiHyd (:,:,k,bi,bj)
484    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
485    CADJ STORE phiHydLow (:,:,bi,bj)
486    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte    
487    CADJ STORE theta (:,:,k,bi,bj)
488    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
489    CADJ STORE salt  (:,:,k,bi,bj)
490    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
491    CADJ STORE gT(:,:,k,bi,bj)
492    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
493    CADJ STORE gS(:,:,k,bi,bj)
494    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
495    # ifdef NONLIN_FRSURF
496    cph-test
497    CADJ STORE  phiHydC (:,:)
498    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
499    CADJ STORE  phiHydF (:,:)
500    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
501    CADJ STORE gU(:,:,k,bi,bj)
502    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
503    CADJ STORE gV(:,:,k,bi,bj)
504    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
505    #  ifndef ALLOW_ADAMSBASHFORTH_3
506    CADJ STORE guNm1(:,:,k,bi,bj)
507    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
508    CADJ STORE gvNm1(:,:,k,bi,bj)
509    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
510    #  else
511    CADJ STORE guNm(:,:,k,bi,bj,1)
512    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
513    CADJ STORE guNm(:,:,k,bi,bj,2)
514    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
515    CADJ STORE gvNm(:,:,k,bi,bj,1)
516    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
517    CADJ STORE gvNm(:,:,k,bi,bj,2)
518    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
519    #  endif
520    #  ifdef ALLOW_CD_CODE
521    CADJ STORE uNM1(:,:,k,bi,bj)
522    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
523    CADJ STORE vNM1(:,:,k,bi,bj)
524    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
525    CADJ STORE uVelD(:,:,k,bi,bj)
526    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
527    CADJ STORE vVelD(:,:,k,bi,bj)
528    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
529    #  endif
530    # endif /* NONLIN_FRSURF */
531  #endif /* ALLOW_AUTODIFF_TAMC */  #endif /* ALLOW_AUTODIFF_TAMC */
532    
533  C--      Integrate hydrostatic balance for phiHyd with BC of  C--      Integrate hydrostatic balance for phiHyd with BC of phiHyd(z=0)=0
534  C        phiHyd(z=0)=0           IF ( implicitIntGravWave ) THEN
 C        distinguishe between Stagger and Non Stagger time stepping  
          IF (staggerTimeStep) THEN  
535             CALL CALC_PHI_HYD(             CALL CALC_PHI_HYD(
536       I        bi,bj,iMin,iMax,jMin,jMax,k,       I        bi,bj,iMin,iMax,jMin,jMax,k,
537       I        gTnm1, gSnm1,       I        gT, gS,
538       U        phiHyd,       U        phiHydF,
539       I        myThid )       O        phiHydC, dPhiHydX, dPhiHydY,
540         I        myTime, myIter, myThid )
541           ELSE           ELSE
542             CALL CALC_PHI_HYD(             CALL CALC_PHI_HYD(
543       I        bi,bj,iMin,iMax,jMin,jMax,k,       I        bi,bj,iMin,iMax,jMin,jMax,k,
544       I        theta, salt,       I        theta, salt,
545       U        phiHyd,       U        phiHydF,
546       I        myThid )       O        phiHydC, dPhiHydX, dPhiHydY,
547         I        myTime, myIter, myThid )
548             ENDIF
549    #ifdef ALLOW_DIAGNOSTICS
550             IF ( dPhiHydDiagIsOn ) THEN
551               tmpFac = -1. _d 0
552               CALL DIAGNOSTICS_SCALE_FILL( dPhiHydX, tmpFac, 1,
553         &                           'Um_dPHdx', k, 1, 2, bi, bj, myThid )
554               CALL DIAGNOSTICS_SCALE_FILL( dPhiHydY, tmpFac, 1,
555         &                           'Vm_dPHdy', k, 1, 2, bi, bj, myThid )
556           ENDIF           ENDIF
557    #endif /* ALLOW_DIAGNOSTICS */
558    
559  C--      Calculate accelerations in the momentum equations (gU, gV, ...)  C--      Calculate accelerations in the momentum equations (gU, gV, ...)
560  C        and step forward storing the result in gUnm1, gVnm1, etc...  C        and step forward storing the result in gU, gV, etc...
561           IF ( momStepping ) THEN           IF ( momStepping ) THEN
562  #ifndef DISABLE_MOM_FLUXFORM  #ifdef ALLOW_AUTODIFF
563             IF (.NOT. vectorInvariantMomentum) CALL MOM_FLUXFORM(             DO j=1-OLy,sNy+OLy
564       I         bi,bj,iMin,iMax,jMin,jMax,k,kup,kDown,              DO i=1-OLx,sNx+OLx
565       I         phiHyd,KappaRU,KappaRV,                guDissip(i,j)  = 0. _d 0
566       U         fVerU, fVerV,                gvDissip(i,j)  = 0. _d 0
567                ENDDO
568               ENDDO
569    #endif /* ALLOW_AUTODIFF */
570    #ifdef ALLOW_AUTODIFF_TAMC
571    # if (defined NONLIN_FRSURF) && (defined ALLOW_MOM_FLUXFORM)
572    #  ifndef DISABLE_RSTAR_CODE
573    CADJ STORE dWtransC(:,:,bi,bj)
574    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
575    CADJ STORE dWtransU(:,:,bi,bj)
576    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
577    CADJ STORE dWtransV(:,:,bi,bj)
578    CADJ &     = comlev1_bibj_k, key=kkey, byte=isbyte
579    #  endif
580    # endif /* NONLIN_FRSURF and ALLOW_MOM_FLUXFORM */
581    # if (defined NONLIN_FRSURF) || (defined ALLOW_DEPTH_CONTROL)
582    CADJ STORE fVerU(:,:,:) = comlev1_bibj_k, key=kkey, byte=isbyte
583    CADJ STORE fVerV(:,:,:) = comlev1_bibj_k, key=kkey, byte=isbyte
584    # endif
585    #endif /* ALLOW_AUTODIFF_TAMC */
586               IF (.NOT. vectorInvariantMomentum) THEN
587    #ifdef ALLOW_MOM_FLUXFORM
588                  CALL MOM_FLUXFORM(
589         I         bi,bj,k,iMin,iMax,jMin,jMax,
590         I         KappaRU, KappaRV,
591         U         fVerU(1-OLx,1-OLy,kUp),   fVerV(1-OLx,1-OLy,kUp),
592         O         fVerU(1-OLx,1-OLy,kDown), fVerV(1-OLx,1-OLy,kDown),
593         O         guDissip, gvDissip,
594       I         myTime, myIter, myThid)       I         myTime, myIter, myThid)
595  #endif  #endif
596  #ifndef DISABLE_MOM_VECINV             ELSE
597             IF (vectorInvariantMomentum) CALL MOM_VECINV(  #ifdef ALLOW_MOM_VECINV
598       I         bi,bj,iMin,iMax,jMin,jMax,k,kup,kDown,               CALL MOM_VECINV(
599       I         phiHyd,KappaRU,KappaRV,       I         bi,bj,k,iMin,iMax,jMin,jMax,
600       U         fVerU, fVerV,       I         KappaRU, KappaRV,
601         I         fVerU(1-OLx,1-OLy,kUp),   fVerV(1-OLx,1-OLy,kUp),
602         O         fVerU(1-OLx,1-OLy,kDown), fVerV(1-OLx,1-OLy,kDown),
603         O         guDissip, gvDissip,
604       I         myTime, myIter, myThid)       I         myTime, myIter, myThid)
605  #endif  #endif
606               ENDIF
607    
608    #ifdef ALLOW_SMAG_3D
609               IF ( useSmag3D ) THEN
610                 CALL MOM_CALC_SMAG_3D(
611         I         str11, str22, str33, str12, str13, str23,
612         O         viscAh3d_00, viscAh3d_12, viscAh3d_13, viscAh3d_23,
613         I         smag3D_hLsC, smag3D_hLsW, smag3D_hLsS, smag3D_hLsZ,
614         I         k, bi, bj, myThid )
615                 CALL MOM_UV_SMAG_3D(
616         I         str11, str22, str12, str13, str23,
617         I         viscAh3d_00, viscAh3d_12, viscAh3d_13, viscAh3d_23,
618         O         addDissU, addDissV,
619         I         iMin,iMax,jMin,jMax, k, bi, bj, myThid )
620                 DO j= jMin,jMax
621                  DO i= iMin,iMax
622                   guDissip(i,j) = guDissip(i,j) + addDissU(i,j)
623                   gvDissip(i,j) = gvDissip(i,j) + addDissV(i,j)
624                  ENDDO
625                 ENDDO
626               ENDIF
627    #endif /* ALLOW_SMAG_3D */
628    
629             CALL TIMESTEP(             CALL TIMESTEP(
630       I         bi,bj,iMin,iMax,jMin,jMax,k,       I         bi,bj,iMin,iMax,jMin,jMax,k,
631       I         phiHyd, phiSurfX, phiSurfY,       I         dPhiHydX,dPhiHydY, phiSurfX, phiSurfY,
632       I         myIter, myThid)       I         guDissip, gvDissip,
633         I         myTime, myIter, myThid)
 #ifdef   ALLOW_OBCS  
 C--      Apply open boundary conditions  
          IF (useOBCS) THEN  
            CALL OBCS_APPLY_UV( bi, bj, k, gUnm1, gVnm1, myThid )  
          END IF  
 #endif   /* ALLOW_OBCS */  
634    
 #ifdef   ALLOW_AUTODIFF_TAMC  
 #ifdef   INCLUDE_CD_CODE  
          ELSE  
            DO j=1-OLy,sNy+OLy  
              DO i=1-OLx,sNx+OLx  
                guCD(i,j,k,bi,bj) = 0.0  
                gvCD(i,j,k,bi,bj) = 0.0  
              END DO  
            END DO  
 #endif   /* INCLUDE_CD_CODE */  
 #endif   /* ALLOW_AUTODIFF_TAMC */  
635           ENDIF           ENDIF
636    
   
637  C--     end of dynamics k loop (1:Nr)  C--     end of dynamics k loop (1:Nr)
638          ENDDO          ENDDO
639    
640    C--     Implicit Vertical advection & viscosity
641    #if (defined (INCLUDE_IMPLVERTADV_CODE) && \
642  C--     Implicit viscosity       defined (ALLOW_MOM_COMMON) && !(defined ALLOW_AUTODIFF_TAMC))
643          IF (implicitViscosity.AND.momStepping) THEN          IF ( momImplVertAdv ) THEN
644              CALL MOM_U_IMPLICIT_R( kappaRU,
645         I                           bi, bj, myTime, myIter, myThid )
646              CALL MOM_V_IMPLICIT_R( kappaRV,
647         I                           bi, bj, myTime, myIter, myThid )
648            ELSEIF ( implicitViscosity ) THEN
649    #else /* INCLUDE_IMPLVERTADV_CODE */
650            IF     ( implicitViscosity ) THEN
651    #endif /* INCLUDE_IMPLVERTADV_CODE */
652  #ifdef    ALLOW_AUTODIFF_TAMC  #ifdef    ALLOW_AUTODIFF_TAMC
653            idkey = iikey + 3  CADJ STORE gU(:,:,:,bi,bj) = comlev1_bibj , key=idynkey, byte=isbyte
 CADJ STORE gUNm1(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte  
654  #endif    /* ALLOW_AUTODIFF_TAMC */  #endif    /* ALLOW_AUTODIFF_TAMC */
655            CALL IMPLDIFF(            CALL IMPLDIFF(
656       I         bi, bj, iMin, iMax, jMin, jMax,       I         bi, bj, iMin, iMax, jMin, jMax,
657       I         deltaTmom, KappaRU,recip_HFacW,       I         -1, KappaRU, recip_hFacW(1-OLx,1-OLy,1,bi,bj),
658       U         gUNm1,       U         gU,
659       I         myThid )       I         myThid )
660  #ifdef    ALLOW_AUTODIFF_TAMC  #ifdef    ALLOW_AUTODIFF_TAMC
661            idkey = iikey + 4  CADJ STORE gV(:,:,:,bi,bj) = comlev1_bibj , key=idynkey, byte=isbyte
 CADJ STORE gVNm1(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte  
662  #endif    /* ALLOW_AUTODIFF_TAMC */  #endif    /* ALLOW_AUTODIFF_TAMC */
663            CALL IMPLDIFF(            CALL IMPLDIFF(
664       I         bi, bj, iMin, iMax, jMin, jMax,       I         bi, bj, iMin, iMax, jMin, jMax,
665       I         deltaTmom, KappaRV,recip_HFacS,       I         -2, KappaRV, recip_hFacS(1-OLx,1-OLy,1,bi,bj),
666       U         gVNm1,       U         gV,
667       I         myThid )       I         myThid )
668            ENDIF
669    
670  #ifdef   ALLOW_OBCS  #ifdef ALLOW_OBCS
671  C--      Apply open boundary conditions  C--      Apply open boundary conditions
672           IF (useOBCS) THEN          IF ( useOBCS ) THEN
673             DO K=1,Nr  C--      but first save intermediate velocities to be used in the
674               CALL OBCS_APPLY_UV( bi, bj, k, gUnm1, gVnm1, myThid )  C        next time step for the Stevens boundary conditions
675             ENDDO            CALL OBCS_SAVE_UV_N(
676           END IF       I        bi, bj, iMin, iMax, jMin, jMax, 0,
677  #endif   /* ALLOW_OBCS */       I        gU, gV, myThid )
678              CALL OBCS_APPLY_UV( bi, bj, 0, gU, gV, myThid )
679            ENDIF
680    #endif /* ALLOW_OBCS */
681    
682  #ifdef    INCLUDE_CD_CODE  #ifdef    ALLOW_CD_CODE
683            IF (implicitViscosity.AND.useCDscheme) THEN
684  #ifdef    ALLOW_AUTODIFF_TAMC  #ifdef    ALLOW_AUTODIFF_TAMC
685            idkey = iikey + 5  CADJ STORE vVelD(:,:,:,bi,bj) = comlev1_bibj , key=idynkey, byte=isbyte
 CADJ STORE vVelD(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte  
686  #endif    /* ALLOW_AUTODIFF_TAMC */  #endif    /* ALLOW_AUTODIFF_TAMC */
687            CALL IMPLDIFF(            CALL IMPLDIFF(
688       I         bi, bj, iMin, iMax, jMin, jMax,       I         bi, bj, iMin, iMax, jMin, jMax,
689       I         deltaTmom, KappaRU,recip_HFacW,       I         0, KappaRU, recip_hFacW(1-OLx,1-OLy,1,bi,bj),
690       U         vVelD,       U         vVelD,
691       I         myThid )       I         myThid )
692  #ifdef    ALLOW_AUTODIFF_TAMC  #ifdef    ALLOW_AUTODIFF_TAMC
693            idkey = iikey + 6  CADJ STORE uVelD(:,:,:,bi,bj) = comlev1_bibj , key=idynkey, byte=isbyte
 CADJ STORE uVelD(:,:,:,bi,bj) = comlev1_bibj , key=ikey, byte=isbyte  
694  #endif    /* ALLOW_AUTODIFF_TAMC */  #endif    /* ALLOW_AUTODIFF_TAMC */
695            CALL IMPLDIFF(            CALL IMPLDIFF(
696       I         bi, bj, iMin, iMax, jMin, jMax,       I         bi, bj, iMin, iMax, jMin, jMax,
697       I         deltaTmom, KappaRV,recip_HFacS,       I         0, KappaRV, recip_hFacS(1-OLx,1-OLy,1,bi,bj),
698       U         uVelD,       U         uVelD,
699       I         myThid )       I         myThid )
 #endif    /* INCLUDE_CD_CODE */  
 C--     End If implicitViscosity.AND.momStepping  
700          ENDIF          ENDIF
701    #endif    /* ALLOW_CD_CODE */
702  Cjmc : add for phiHyd output <- but not working if multi tile per CPU  C--     End implicit Vertical advection & viscosity
703  c       IF ( DIFFERENT_MULTIPLE(dumpFreq,myTime+deltaTClock,myTime)  
704  c    &  .AND. buoyancyRelation .eq. 'ATMOSPHERIC' ) THEN  C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
705  c         WRITE(suff,'(I10.10)') myIter+1  
706  c         CALL WRITE_FLD_XYZ_RL('PH.',suff,phiHyd,myIter+1,myThid)  #ifdef ALLOW_NONHYDROSTATIC
707  c       ENDIF  C--   Step forward W field in N-H algorithm
708  Cjmc(end)          IF ( nonHydrostatic ) THEN
709    #ifdef ALLOW_DEBUG
710  #ifdef ALLOW_TIMEAVE           IF (debugMode) CALL DEBUG_CALL('CALC_GW', myThid )
711          IF (taveFreq.GT.0.) THEN  #endif
712            CALL TIMEAVE_CUMUL_1T(phiHydtave, phiHyd, Nr,           CALL TIMER_START('CALC_GW          [DYNAMICS]',myThid)
713       I                              deltaTclock, bi, bj, myThid)           CALL CALC_GW(
714            IF (ivdc_kappa.NE.0.) THEN       I                 bi,bj, KappaRU, KappaRV,
715              CALL TIMEAVE_CUMULATE(ConvectCountTave, ConvectCount, Nr,       I                 str13, str23, str33,
716       I                              deltaTclock, bi, bj, myThid)       I                 viscAh3d_00, viscAh3d_13, viscAh3d_23,
717            ENDIF       I                 myTime, myIter, myThid )
718          ENDIF          ENDIF
719  #endif /* ALLOW_TIMEAVE */          IF ( nonHydrostatic.OR.implicitIntGravWave )
720         &   CALL TIMESTEP_WVEL( bi,bj, myTime, myIter, myThid )
721            IF ( nonHydrostatic )
722         &   CALL TIMER_STOP ('CALC_GW          [DYNAMICS]',myThid)
723    #endif
724    
725    C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
726    
727    C-    end of bi,bj loops
728         ENDDO         ENDDO
729        ENDDO        ENDDO
730    
731  #ifndef DISABLE_DEBUGMODE  #ifdef ALLOW_OBCS
732        If (debugMode) THEN        IF (useOBCS) THEN
733            CALL OBCS_EXCHANGES( myThid )
734          ENDIF
735    #endif
736    
737    Cml(
738    C     In order to compare the variance of phiHydLow of a p/z-coordinate
739    C     run with etaH of a z/p-coordinate run the drift of phiHydLow
740    C     has to be removed by something like the following subroutine:
741    C      CALL REMOVE_MEAN_RL( 1, phiHydLow, maskInC, maskInC, rA, drF,
742    C     &                     'phiHydLow', myTime, myThid )
743    Cml)
744    
745    #ifdef ALLOW_DIAGNOSTICS
746          IF ( useDiagnostics ) THEN
747    
748           CALL DIAGNOSTICS_FILL(totPhihyd,'PHIHYD  ',0,Nr,0,1,1,myThid)
749           CALL DIAGNOSTICS_FILL(phiHydLow,'PHIBOT  ',0, 1,0,1,1,myThid)
750    
751           tmpFac = 1. _d 0
752           CALL DIAGNOSTICS_SCALE_FILL(totPhihyd,tmpFac,2,
753         &                                 'PHIHYDSQ',0,Nr,0,1,1,myThid)
754    
755           CALL DIAGNOSTICS_SCALE_FILL(phiHydLow,tmpFac,2,
756         &                                 'PHIBOTSQ',0, 1,0,1,1,myThid)
757    
758          ENDIF
759    #endif /* ALLOW_DIAGNOSTICS */
760    
761    #ifdef ALLOW_DEBUG
762          IF ( debugLevel .GE. debLevD ) THEN
763         CALL DEBUG_STATS_RL(1,EtaN,'EtaN (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(1,EtaN,'EtaN (DYNAMICS)',myThid)
764         CALL DEBUG_STATS_RL(Nr,uVel,'Uvel (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,uVel,'Uvel (DYNAMICS)',myThid)
765         CALL DEBUG_STATS_RL(Nr,vVel,'Vvel (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,vVel,'Vvel (DYNAMICS)',myThid)
766         CALL DEBUG_STATS_RL(Nr,wVel,'Wvel (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,wVel,'Wvel (DYNAMICS)',myThid)
767         CALL DEBUG_STATS_RL(Nr,theta,'Theta (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,theta,'Theta (DYNAMICS)',myThid)
768         CALL DEBUG_STATS_RL(Nr,salt,'Salt (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,salt,'Salt (DYNAMICS)',myThid)
769         CALL DEBUG_STATS_RL(Nr,Gu,'Gu (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gU,'Gu (DYNAMICS)',myThid)
770         CALL DEBUG_STATS_RL(Nr,Gv,'Gv (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gV,'Gv (DYNAMICS)',myThid)
771         CALL DEBUG_STATS_RL(Nr,Gt,'Gt (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gT,'Gt (DYNAMICS)',myThid)
772         CALL DEBUG_STATS_RL(Nr,Gs,'Gs (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gS,'Gs (DYNAMICS)',myThid)
773         CALL DEBUG_STATS_RL(Nr,GuNm1,'GuNm1 (DYNAMICS)',myThid)  #ifndef ALLOW_ADAMSBASHFORTH_3
774         CALL DEBUG_STATS_RL(Nr,GvNm1,'GvNm1 (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,guNm1,'GuNm1 (DYNAMICS)',myThid)
775         CALL DEBUG_STATS_RL(Nr,GtNm1,'GtNm1 (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gvNm1,'GvNm1 (DYNAMICS)',myThid)
776         CALL DEBUG_STATS_RL(Nr,GsNm1,'GsNm1 (DYNAMICS)',myThid)         CALL DEBUG_STATS_RL(Nr,gtNm1,'GtNm1 (DYNAMICS)',myThid)
777           CALL DEBUG_STATS_RL(Nr,gsNm1,'GsNm1 (DYNAMICS)',myThid)
778    #endif
779          ENDIF
780    #endif
781    
782    #ifdef DYNAMICS_GUGV_EXCH_CHECK
783    C- jmc: For safety checking only: This Exchange here should not change
784    C       the solution. If solution changes, it means something is wrong,
785    C       but it does not mean that it is less wrong with this exchange.
786          IF ( debugLevel .GE. debLevE ) THEN
787           CALL EXCH_UV_XYZ_RL(gU,gV,.TRUE.,myThid)
788        ENDIF        ENDIF
789  #endif  #endif
790    
791    #ifdef ALLOW_DEBUG
792          IF (debugMode) CALL DEBUG_LEAVE( 'DYNAMICS', myThid )
793    #endif
794    
795        RETURN        RETURN
796        END        END

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