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Contents of /MITgcm/model/src/dynamics.F

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Revision 1.7 - (show annotations) (download)
Mon May 25 16:17:36 1998 UTC (26 years ago) by cnh
Branch: MAIN
Changes since 1.6: +59 -58 lines
Added changes to support implicit free-surface.
 - included gBaro a "barotropic" gravity that can
   be set differently to the g.rhoprime gravity.
 - discovered and fixed coding error in dynamics
   loop. Per tile temporaries that needed correct
   initial values were not being reset for each tile.

1 C $Header: /u/gcmpack/models/MITgcmUV/model/src/dynamics.F,v 1.6 1998/05/20 21:29:31 adcroft Exp $
2
3 #include "CPP_EEOPTIONS.h"
4
5 SUBROUTINE DYNAMICS(myThid)
6 C /==========================================================\
7 C | SUBROUTINE DYNAMICS |
8 C | o Controlling routine for the explicit part of the model |
9 C | dynamics. |
10 C |==========================================================|
11 C | This routine evaluates the "dynamics" terms for each |
12 C | block of ocean in turn. Because the blocks of ocean have |
13 C | overlap regions they are independent of one another. |
14 C | If terms involving lateral integrals are needed in this |
15 C | routine care will be needed. Similarly finite-difference |
16 C | operations with stencils wider than the overlap region |
17 C | require special consideration. |
18 C | Notes |
19 C | ===== |
20 C | C*P* comments indicating place holders for which code is |
21 C | presently being developed. |
22 C \==========================================================/
23
24 C == Global variables ===
25 #include "SIZE.h"
26 #include "EEPARAMS.h"
27 #include "CG2D.h"
28 #include "PARAMS.h"
29 #include "DYNVARS.h"
30
31 C == Routine arguments ==
32 C myThid - Thread number for this instance of the routine.
33 INTEGER myThid
34
35 C == Local variables
36 C xA, yA - Per block temporaries holding face areas
37 C uTrans, vTrans, wTrans - Per block temporaries holding flow transport
38 C o uTrans: Zonal transport
39 C o vTrans: Meridional transport
40 C o wTrans: Vertical transport
41 C maskC,maskUp o maskC: land/water mask for tracer cells
42 C o maskUp: land/water mask for W points
43 C aTerm, xTerm, cTerm - Work arrays for holding separate terms in
44 C mTerm, pTerm, tendency equations.
45 C fZon, fMer, fVer[STUV] o aTerm: Advection term
46 C o xTerm: Mixing term
47 C o cTerm: Coriolis term
48 C o mTerm: Metric term
49 C o pTerm: Pressure term
50 C o fZon: Zonal flux term
51 C o fMer: Meridional flux term
52 C o fVer: Vertical flux term - note fVer
53 C is "pipelined" in the vertical
54 C so we need an fVer for each
55 C variable.
56 C iMin, iMax - Ranges and sub-block indices on which calculations
57 C jMin, jMax are applied.
58 C bi, bj
59 C k, kUp, kDown, kM1 - Index for layer above and below. kUp and kDown
60 C are switched with layer to be the appropriate index
61 C into fVerTerm
62 _RS xA (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
63 _RS yA (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
64 _RL uTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
65 _RL vTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
66 _RL wTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
67 _RS maskC (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
68 _RS maskUp(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
69 _RL aTerm (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
70 _RL xTerm (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
71 _RL cTerm (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
72 _RL mTerm (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
73 _RL pTerm (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
74 _RL fZon (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
75 _RL fMer (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
76 _RL fVerT (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
77 _RL fVerS (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
78 _RL fVerU (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
79 _RL fVerV (1-OLx:sNx+OLx,1-OLy:sNy+OLy,2)
80 _RL pH (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nz)
81 _RL rhokm1(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
82 _RL rhokp1(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
83 _RL pSurfX(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
84 _RL pSurfY(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
85 _RL K13 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nz)
86 _RL K23 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nz)
87 _RL K33 (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nz)
88 _RL KapGM (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
89 INTEGER iMin, iMax
90 INTEGER jMin, jMax
91 INTEGER bi, bj
92 INTEGER i, j
93 INTEGER k, kM1, kUp, kDown
94
95 C-- Set up work arrays with valid (i.e. not NaN) values
96 C These inital values do not alter the numerical results. They
97 C just ensure that all memory references are to valid floating
98 C point numbers. This prevents spurious hardware signals due to
99 C uninitialised but inert locations.
100 DO j=1-OLy,sNy+OLy
101 DO i=1-OLx,sNx+OLx
102 xA(i,j) = 0. _d 0
103 yA(i,j) = 0. _d 0
104 uTrans(i,j) = 0. _d 0
105 vTrans(i,j) = 0. _d 0
106 aTerm(i,j) = 0. _d 0
107 xTerm(i,j) = 0. _d 0
108 cTerm(i,j) = 0. _d 0
109 mTerm(i,j) = 0. _d 0
110 pTerm(i,j) = 0. _d 0
111 fZon(i,j) = 0. _d 0
112 fMer(i,j) = 0. _d 0
113 DO K=1,nZ
114 pH (i,j,k) = 0. _d 0
115 K13(i,j,k) = 0. _d 0
116 K23(i,j,k) = 0. _d 0
117 K33(i,j,k) = 0. _d 0
118 ENDDO
119 rhokm1(i,j) = 0. _d 0
120 rhokp1(i,j) = 0. _d 0
121 ENDDO
122 ENDDO
123
124 DO bj=myByLo(myThid),myByHi(myThid)
125 DO bi=myBxLo(myThid),myBxHi(myThid)
126
127 C-- Boundary condition on hydrostatic pressure is pH(z=0)=0
128 DO j=1-OLy,sNy+OLy
129 DO i=1-OLx,sNx+OLx
130 pH(i,j,1) = 0. _d 0
131 K13(i,j,1) = 0. _d 0
132 K23(i,j,1) = 0. _d 0
133 K33(i,j,1) = 0. _d 0
134 KapGM(i,j) = 0. _d 0
135 ENDDO
136 ENDDO
137
138 C-- Set up work arrays that need valid initial values
139 DO j=1-OLy,sNy+OLy
140 DO i=1-OLx,sNx+OLx
141 wTrans(i,j) = 0. _d 0
142 fVerT(i,j,1) = 0. _d 0
143 fVerT(i,j,2) = 0. _d 0
144 fVerS(i,j,1) = 0. _d 0
145 fVerS(i,j,2) = 0. _d 0
146 fVerU(i,j,1) = 0. _d 0
147 fVerU(i,j,2) = 0. _d 0
148 fVerV(i,j,1) = 0. _d 0
149 fVerV(i,j,2) = 0. _d 0
150 ENDDO
151 ENDDO
152
153 iMin = 1-OLx+1
154 iMax = sNx+OLx
155 jMin = 1-OLy+1
156 jMax = sNy+OLy
157
158 C-- Calculate gradient of surface pressure
159 CALL GRAD_PSURF(
160 I bi,bj,iMin,iMax,jMin,jMax,
161 O pSurfX,pSurfY,
162 I myThid)
163
164 C-- Update fields in top level according to tendency terms
165 CALL TIMESTEP(
166 I bi,bj,iMin,iMax,jMin,jMax,1,pSurfX,pSurfY,myThid)
167
168 C-- Density of 1st level (below W(1)) reference to level 1
169 CALL FIND_RHO(
170 I bi, bj, iMin, iMax, jMin, jMax, 1, 1, 'LINEAR',
171 O rhoKm1,
172 I myThid )
173 C-- Integrate hydrostatic balance for pH with BC of pH(z=0)=0
174 CALL CALC_PH(
175 I bi,bj,iMin,iMax,jMin,jMax,1,rhoKm1,rhoKm1,
176 U pH,
177 I myThid )
178
179 DO K=2,Nz
180 C-- Update fields in Kth level according to tendency terms
181 CALL TIMESTEP(
182 I bi,bj,iMin,iMax,jMin,jMax,K,pSurfX,pSurfY,myThid)
183 C-- Density of K-1 level (above W(K)) reference to K level
184 CALL FIND_RHO(
185 I bi, bj, iMin, iMax, jMin, jMax, K-1, K, 'LINEAR',
186 O rhoKm1,
187 I myThid )
188 C-- Density of K level (below W(K)) reference to K level
189 CALL FIND_RHO(
190 I bi, bj, iMin, iMax, jMin, jMax, K, K, 'LINEAR',
191 O rhoKp1,
192 I myThid )
193 C-- Calculate iso-neutral slopes for the GM/Redi parameterisation
194 CALL CALC_ISOSLOPES(
195 I bi, bj, iMin, iMax, jMin, jMax, K,
196 I rhoKm1, rhoKp1,
197 O K13, K23, K33, KapGM,
198 I myThid )
199 C-- Calculate static stability and mix where convectively unstable
200 CALL CONVECT(
201 I bi,bj,iMin,iMax,jMin,jMax,K,rhoKm1,rhoKp1,myThid)
202 C-- Density of K-1 level (above W(K)) reference to K-1 level
203 CALL FIND_RHO(
204 I bi, bj, iMin, iMax, jMin, jMax, K-1, K-1, 'LINEAR',
205 O rhoKm1,
206 I myThid )
207 C-- Density of K level (below W(K)) referenced to K level
208 CALL FIND_RHO(
209 I bi, bj, iMin, iMax, jMin, jMax, K, K, 'LINEAR',
210 O rhoKp1,
211 I myThid )
212 C-- Integrate hydrostatic balance for pH with BC of pH(z=0)=0
213 CALL CALC_PH(
214 I bi,bj,iMin,iMax,jMin,jMax,K,rhoKm1,rhoKp1,
215 U pH,
216 I myThid )
217
218 ENDDO
219
220 DO K = Nz, 1, -1
221 kM1 =max(1,k-1) ! Points to level above k (=k-1)
222 kUp =1+MOD(k+1,2) ! Cycles through 1,2 to point to layer above
223 kDown=1+MOD(k,2) ! Cycles through 2,1 to point to current layer
224 iMin = 1-OLx+2
225 iMax = sNx+OLx-1
226 jMin = 1-OLy+2
227 jMax = sNy+OLy-1
228
229 C-- Get temporary terms used by tendency routines
230 CALL CALC_COMMON_FACTORS (
231 I bi,bj,iMin,iMax,jMin,jMax,k,kM1,kUp,kDown,
232 O xA,yA,uTrans,vTrans,wTrans,maskC,maskUp,
233 I myThid)
234
235 C-- Calculate accelerations in the momentum equations
236 CALL CALC_MOM_RHS(
237 I bi,bj,iMin,iMax,jMin,jMax,k,kM1,kUp,kDown,
238 I xA,yA,uTrans,vTrans,wTrans,maskC,
239 I pH,
240 U aTerm,xTerm,cTerm,mTerm,pTerm,
241 U fZon, fMer, fVerU, fVerV,
242 I myThid)
243
244 C-- Calculate active tracer tendencies
245 CALL CALC_GT(
246 I bi,bj,iMin,iMax,jMin,jMax, k,kM1,kUp,kDown,
247 I xA,yA,uTrans,vTrans,wTrans,maskUp,
248 I K13,K23,K33,KapGM,
249 U aTerm,xTerm,fZon,fMer,fVerT,
250 I myThid)
251 Cdbg CALL CALC_GS(
252 Cdbg I bi,bj,iMin,iMax,jMin,jMax, k,kM1,kUp,kDown,
253 Cdbg I xA,yA,uTrans,vTrans,wTrans,maskUp,
254 Cdbg I K13,K23,K33,KapGM,
255 Cdbg U aTerm,xTerm,fZon,fMer,fVerS,
256 Cdbg I myThid)
257
258 ENDDO
259
260 ENDDO
261 ENDDO
262
263 !dbg write(0,*) 'dynamics: pS',minval(cg2d_x),maxval(cg2d_x)
264 !dbg write(0,*) 'dynamics: U',minval(uVel(1:sNx,1:sNy,:,:,:)),
265 !dbg & maxval(uVel(1:sNx,1:sNy,:,:,:))
266 !dbg write(0,*) 'dynamics: V',minval(vVel(1:sNx,1:sNy,:,:,:)),
267 !dbg & maxval(vVel(1:sNx,1:sNy,:,:,:))
268 !dbg write(0,*) 'dynamics: gT',minval(gT(1:sNx,1:sNy,:,:,:)),
269 !dbg & maxval(gT(1:sNx,1:sNy,:,:,:))
270 !dbg write(0,*) 'dynamics: T',minval(Theta(1:sNx,1:sNy,:,:,:)),
271 !dbg & maxval(Theta(1:sNx,1:sNy,:,:,:))
272 !dbg write(0,*) 'dynamics: pH',minval(pH/(Gravity*Rhonil)),
273 !dbg & maxval(pH/(Gravity*Rhonil))
274
275 RETURN
276 END

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