/[MITgcm]/MITgcm/pkg/timeave/timeave_statv_write.F
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Contents of /MITgcm/pkg/timeave/timeave_statv_write.F

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Revision 1.15 - (show annotations) (download)
Sun Jan 25 00:31:52 2004 UTC (20 years, 3 months ago) by dimitri
Branch: MAIN
CVS Tags: hrcube4, checkpoint52j_pre, checkpoint52k_post, hrcube_2, hrcube_3, checkpoint52j_post
Changes since 1.14: +18 -8 lines
o limit timeave output for hi-res integrations

1 C $Header: /usr/local/gcmpack/MITgcm/pkg/timeave/timeave_statv_write.F,v 1.14 2003/12/30 02:37:11 jmc Exp $
2 C $Name: $
3 #include "TIMEAVE_OPTIONS.h"
4
5 SUBROUTINE TIMEAVE_STATV_WRITE(myTime, myIter, myThid)
6 C /==========================================================\
7 C | SUBROUTINE TIMEAVE_STATV_WRITE |
8 C | o At the end of average period, write the time-average |
9 C | state-variables on file ; then reset for next period |
10 C \==========================================================/
11 IMPLICIT NONE
12
13 C == Global variables ===
14 #include "SIZE.h"
15 #include "EEPARAMS.h"
16 #include "PARAMS.h"
17 #include "DYNVARS.h"
18 #include "GRID.h"
19 #include "TIMEAVE_STATV.h"
20
21 LOGICAL DIFFERENT_MULTIPLE
22 EXTERNAL DIFFERENT_MULTIPLE
23 INTEGER IO_ERRCOUNT
24 EXTERNAL IO_ERRCOUNT
25
26 C == Routine arguments ==
27 C myThid - Thread number for this instance of the routine.
28 C myIter - Iteration number
29 C myTime - Current time of simulation ( s )
30 INTEGER myThid
31 INTEGER myIter
32 _RL myTime
33
34 #ifdef ALLOW_TIMEAVE
35
36 C == Local variables ==
37 C suff - Hold suffix part of a filename
38 C TimeAve - total time over average
39 C useVariableK = T when vertical diffusion is not constant
40 LOGICAL useVariableK
41 INTEGER prevPrec
42 CHARACTER*(MAX_LEN_FNAM) suff
43 INTEGER bi,bj,k
44 INTEGER beginIOErrCount
45 INTEGER endIOErrCount
46 CHARACTER*(MAX_LEN_MBUF) msgBuf
47
48 C- Final Time Averages and Dump Files if needed
49 IF(DIFFERENT_MULTIPLE(taveFreq,myTime,myTime-deltaTClock) )THEN
50
51 useVariableK = useKPP .OR. useGMredi .OR. ivdc_kappa.NE.0.
52 WRITE(suff,'(I10.10)') myIter
53
54 DO bj = myByLo(myThid), myByHi(myThid)
55 DO bi = myBxLo(myThid), myBxHi(myThid)
56 C- Normalize by integrated time
57 CALL TIMEAVE_NORMALIZ(uFluxtave,TimeAve_full,1 ,bi,bj,myThid)
58 CALL TIMEAVE_NORMALIZ(vFluxtave,TimeAve_full,1 ,bi,bj,myThid)
59 CALL TIMEAVE_NORMALIZ(tFluxtave,TimeAve_full,1 ,bi,bj,myThid)
60 CALL TIMEAVE_NORMALIZ(sFluxtave,TimeAve_full,1 ,bi,bj,myThid)
61 CALL TIMEAVE_NORMALIZ(etatave, TimeAve_half,1 ,bi,bj,myThid)
62 CALL TIMEAVE_NORMALIZ(thetatave,TimeAve_half,Nr,bi,bj,myThid)
63 CALL TIMEAVE_NORMALIZ(salttave, TimeAve_half,Nr,bi,bj,myThid)
64 CALL TIMEAVE_NORMALIZ(uVeltave, TimeAve_half,Nr,bi,bj,myThid)
65 CALL TIMEAVE_NORMALIZ(vVeltave, TimeAve_half,Nr,bi,bj,myThid)
66 CALL TIMEAVE_NORMALIZ(wVeltave, TimeAve_half,Nr,bi,bj,myThid)
67 CALL TIMEAVE_NORMALIZ(UTtave, TimeAve_half,Nr,bi,bj,myThid)
68 CALL TIMEAVE_NORMALIZ(VTtave, TimeAve_half,Nr,bi,bj,myThid)
69 CALL TIMEAVE_NORMALIZ(WTtave, TimeAve_half,Nr,bi,bj,myThid)
70 #ifndef HRCUBE
71 CALL TIMEAVE_NORMALIZ(Eta2tave, TimeAve_half,1 ,bi,bj,myThid)
72 CALL TIMEAVE_NORMALIZ(TTtave, TimeAve_half,Nr,bi,bj,myThid)
73 CALL TIMEAVE_NORMALIZ(UUtave, TimeAve_half,Nr,bi,bj,myThid)
74 CALL TIMEAVE_NORMALIZ(VVtave, TimeAve_half,Nr,bi,bj,myThid)
75 CALL TIMEAVE_NORMALIZ(UVtave, TimeAve_half,Nr,bi,bj,myThid)
76 c CALL TIMEAVE_NORMALIZ(KEtave, TimeAve_half,Nr,bi,bj,myThid)
77 #ifdef NONLIN_FRSURF
78 C- Normalize by integrated time
79 CALL TIMEAVE_NORMALIZ(hUtave, TimeAve_half,Nr,bi,bj,myThid)
80 CALL TIMEAVE_NORMALIZ(hVtave, TimeAve_half,Nr,bi,bj,myThid)
81 c CALL TIMEAVE_NORMALIZ(hFacCtave,TimeAve_half,Nr,bi,bj,myThid)
82 c CALL TIMEAVE_NORMALIZ(hFacWtave,TimeAve_half,Nr,bi,bj,myThid)
83 c CALL TIMEAVE_NORMALIZ(hFacStave,TimeAve_half,Nr,bi,bj,myThid)
84 #endif /* NONLIN_FRSURF */
85
86 CALL TIMEAVE_NORMALIZ(TdiffRtave,TimeAve_full,Nr,
87 & bi,bj,myThid)
88 #ifdef ALLOW_MOM_VECINV
89 CALL TIMEAVE_NORMALIZ(uZetatave,TimeAve_full,Nr,bi,bj,myThid)
90 CALL TIMEAVE_NORMALIZ(vZetatave,TimeAve_full,Nr,bi,bj,myThid)
91 #endif
92 CALL TIMEAVE_NORMALIZ(phiHydtave,TimeAve_full,Nr,
93 & bi,bj,myThid)
94 CALL TIMEAVE_NORMALIZ(phiHydLowtave,TimeAve_full,1,
95 & bi,bj,myThid)
96 CALL TIMEAVE_NORMALIZ(phiHydLow2Tave,TimeAve_full,1,
97 & bi,bj,myThid)
98 CALL TIMEAVE_NORMALIZ(ConvectCountTave,TimeAve_full,Nr,
99 & bi,bj,myThid)
100 #endif /* ndef HRCUBE */
101 ENDDO
102 ENDDO
103
104 C Write to files
105 _BARRIER
106 _BEGIN_MASTER( myThid )
107
108 C-- Set IO "context" for writing state
109 #ifdef USE_DFILE
110 CALL DFILE_SET_RW
111 CALL DFILE_SET_CONT_ON_ERROR
112 #endif
113 C-- Read IO error counter
114 beginIOErrCount = IO_ERRCOUNT(myThid)
115 c prevPrec = writeBinaryPrec
116 c writeBinaryPrec = precFloat32
117 CALL WRITE_FLD_XY_RL('ETAtave.' ,suff,etatave ,myIter,myThid)
118 #ifndef HRCUBE
119 CALL WRITE_FLD_XY_RL('Eta2tave.' ,suff,Eta2tave ,myIter,myThid)
120 #endif /* ndef HRCUBE */
121
122 CALL WRITE_FLD_XYZ_RL('Ttave.',suff,thetatave,myIter,myThid)
123 CALL WRITE_FLD_XYZ_RL('Stave.',suff,salttave,myIter,myThid)
124 CALL WRITE_FLD_XYZ_RL('uVeltave.',suff,uVeltave,myIter,myThid)
125 CALL WRITE_FLD_XYZ_RL('vVeltave.',suff,vVeltave,myIter,myThid)
126 CALL WRITE_FLD_XYZ_RL('wVeltave.',suff,wVeltave,myIter,myThid)
127 CALL WRITE_FLD_XYZ_RL('UTtave.',suff,UTtave,myIter,myThid)
128 CALL WRITE_FLD_XYZ_RL('VTtave.',suff,VTtave,myIter,myThid)
129 CALL WRITE_FLD_XYZ_RL('WTtave.',suff,WTtave,myIter,myThid)
130 #ifndef HRCUBE
131 CALL WRITE_FLD_XYZ_RL('TTtave.',suff,TTtave,myIter,myThid)
132 CALL WRITE_FLD_XYZ_RL('UUtave.',suff,UUtave,myIter,myThid)
133 CALL WRITE_FLD_XYZ_RL('VVtave.',suff,VVtave,myIter,myThid)
134 CALL WRITE_FLD_XYZ_RL('UVtave.',suff,UVtave,myIter,myThid)
135 c CALL WRITE_FLD_XYZ_RL('KEtave.',suff,KEtave,myIter,myThid)
136
137 IF (useVariableK)
138 & CALL WRITE_FLD_XYZ_RL('Tdiftave.',suff,TdiffRtave,myIter,myThid)
139 #ifdef ALLOW_MOM_VECINV
140 IF (vectorInvariantMomentum) THEN
141 CALL WRITE_FLD_XYZ_RL('uZtave.',suff,uZetatave,myIter,myThid)
142 CALL WRITE_FLD_XYZ_RL('vZtave.',suff,vZetatave,myIter,myThid)
143 ENDIF
144 #endif /* ALLOW_MOM_VECINV */
145 CALL WRITE_FLD_XYZ_RL('PhHytave.',suff,phiHydtave,myIter,myThid)
146 #endif /* ndef HRCUBE */
147 IF ( buoyancyRelation(1:7) .EQ. 'OCEANIC' ) THEN
148 #ifndef HRCUBE
149 CALL WRITE_FLD_XY_RL('PHLtave.',suff,phiHydLowtave,
150 & myIter,myThid)
151 CALL WRITE_FLD_XY_RL('PHL2tave.',suff,phiHydLow2tave,
152 & myIter,myThid)
153 CALL WRITE_FLD_XYZ_RL('Convtave.',suff,ConvectCountTave,
154 & myIter,myThid)
155 #endif /* ndef HRCUBE */
156 CALL WRITE_FLD_XY_RL('uFluxtave.',suff,uFluxtave,myIter,myThid)
157 CALL WRITE_FLD_XY_RL('vFluxtave.',suff,vFluxtave,myIter,myThid)
158 CALL WRITE_FLD_XY_RL('tFluxtave.',suff,tFluxtave,myIter,myThid)
159 CALL WRITE_FLD_XY_RL('sFluxtave.',suff,sFluxtave,myIter,myThid)
160 ENDIF
161
162 #ifndef HRCUBE
163 #ifdef NONLIN_FRSURF
164 CALL WRITE_FLD_XYZ_RL('hUtave.',suff,hUtave,myIter,myThid)
165 CALL WRITE_FLD_XYZ_RL('hVtave.',suff,hVtave,myIter,myThid)
166 c CALL WRITE_FLD_XYZ_RL('hFacCtave.',suff,hFacCtave,myIter,myThid)
167 c CALL WRITE_FLD_XYZ_RL('hFacWtave.',suff,hFacWtave,myIter,myThid)
168 c CALL WRITE_FLD_XYZ_RL('hFacStave.',suff,hFacStave,myIter,myThid)
169 #endif /* NONLIN_FRSURF */
170 #endif /* ndef HRCUBE */
171
172 c writeBinaryPrec = prevPrec
173 C-- Reread IO error counter
174 endIOErrCount = IO_ERRCOUNT(myThid)
175
176 C-- Check for IO errors
177 IF ( endIOErrCount .NE. beginIOErrCount ) THEN
178 WRITE(msgBuf,'(A)') 'S/R WRITE_TIME_AVERAGES'
179 CALL PRINT_ERROR( msgBuf, 1 )
180 WRITE(msgBuf,'(A)') 'Error writing out data'
181 CALL PRINT_ERROR( msgBuf, 1 )
182 WRITE(msgBuf,'(A,I10)') 'Timestep ',myIter
183 CALL PRINT_ERROR( msgBuf, 1 )
184 ELSE
185 WRITE(msgBuf,'(A,I10)')
186 & '// Time-average data written, t-step', myIter
187 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
188 & SQUEEZE_RIGHT, 1 )
189 WRITE(msgBuf,'(A)') ' '
190 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
191 & SQUEEZE_RIGHT, 1 )
192 ENDIF
193
194 _END_MASTER( myThid )
195 _BARRIER
196
197 DO bj = myByLo(myThid), myByHi(myThid)
198 DO bi = myBxLo(myThid), myBxHi(myThid)
199
200 C-- Like before the 1rst iteration,
201 C ==> call TIMEAVE_STATVARS with myIter=nIter0 :
202 C 1) Reset the averages to zero ;
203 C 2) Start to cumulate state-variables with Half time step.
204
205 CALL TIMEAVE_STATVARS(myTime, nIter0, bi, bj, myThid)
206
207 ENDDO
208 ENDDO
209
210 ENDIF
211
212 #endif /* ALLOW_TIMEAVE */
213
214 RETURN
215 END

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