/[MITgcm]/MITgcm/model/src/ini_eos.F
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Annotation of /MITgcm/model/src/ini_eos.F

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Revision 1.17 - (hide annotations) (download)
Mon Aug 11 01:19:45 2008 UTC (15 years, 9 months ago) by jmc
Branch: MAIN
Changes since 1.16: +106 -81 lines
fix EOS_CHECK (broken since Feb 18, 2003)

1 jmc 1.17 C $Header: /u/gcmpack/MITgcm/model/src/ini_eos.F,v 1.16 2008/01/24 17:22:06 jmc Exp $
2 mlosch 1.2 C $Name: $
3 mlosch 1.1
4     #include "CPP_OPTIONS.h"
5 jmc 1.17 #undef INCLUDE_EOS_CHECK
6 mlosch 1.1
7 jmc 1.17 C-- File ini_eos.F: Routines to initialise Equation of State
8     C-- Contents
9     C-- o INI_EOS
10     C-- o EOS_CHECK
11    
12     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
13 mlosch 1.1 CBOP
14     C !ROUTINE: INI_EOS
15     C !INTERFACE:
16 jmc 1.15 SUBROUTINE INI_EOS( myThid )
17 mlosch 1.1 C !DESCRIPTION: \bv
18     C *==========================================================*
19 jmc 1.15 C | SUBROUTINE INI_EOS
20 mlosch 1.1 C | o Initialise coefficients of equation of state.
21     C *==========================================================*
22     C \ev
23    
24     C !USES:
25    
26 jmc 1.15 IMPLICIT NONE
27 mlosch 1.1 C == Global variables ==
28     #include "SIZE.h"
29     #include "EEPARAMS.h"
30     #include "PARAMS.h"
31     #include "EOS.h"
32    
33     C !INPUT/OUTPUT PARAMETERS:
34     C == Routine arguments ==
35     C myThid - Number of this instance of INI_CORI
36     INTEGER myThid
37    
38     C !LOCAL VARIABLES:
39     C == Local variables ==
40 jmc 1.15 C i,k :: Loop counters
41     INTEGER i, k
42 mlosch 1.1 CHARACTER*(MAX_LEN_MBUF) msgBuf
43 jmc 1.15
44 jmc 1.11 IF ( .NOT.fluidIsWater ) RETURN
45 mlosch 1.1
46 jmc 1.15 _BARRIER
47     _BEGIN_MASTER(myThid)
48    
49 mlosch 1.1 equationOfState = eosType
50    
51 jmc 1.15 DO k = 1,6
52 mlosch 1.4 eosJMDCFw(k) = 0. _d 0
53 jmc 1.15 ENDDO
54     DO k = 1,9
55 mlosch 1.4 eosJMDCSw(k) = 0. _d 0
56 jmc 1.15 ENDDO
57     DO k = 1,5
58 mlosch 1.4 eosJMDCKFw(k) = 0. _d 0
59 jmc 1.15 ENDDO
60     DO k = 1,7
61 mlosch 1.4 eosJMDCKSw(k) = 0. _d 0
62 jmc 1.15 ENDDO
63     DO k = 1,14
64 mlosch 1.4 eosJMDCKP(k) = 0. _d 0
65 jmc 1.15 ENDDO
66     DO k = 0,11
67 mlosch 1.4 eosMDJWFnum(k) = 0. _d 0
68 jmc 1.15 ENDDO
69     DO k = 0,12
70 mlosch 1.4 eosMDJWFden(k) = 0. _d 0
71 jmc 1.15 ENDDO
72 mlosch 1.4
73 jmc 1.15 IF ( equationOfState .EQ. 'LINEAR' ) THEN
74     IF ( tAlpha .EQ. UNSET_RL ) tAlpha = 2. _d -4
75     IF ( sBeta .EQ. UNSET_RL ) sBeta = 7.4 _d -4
76     ELSEIF ( equationOfState .EQ. 'POLY3' ) THEN
77 mlosch 1.1 OPEN(37,FILE='POLY3.COEFFS',STATUS='OLD',FORM='FORMATTED')
78 jmc 1.15 READ(37,*) k
79     IF (k.NE.Nr) THEN
80 mlosch 1.1 WRITE(msgBuf,'(A)')
81     & 'ini_eos: attempt to read POLY3.COEFFS failed'
82 jmc 1.15 CALL PRINT_ERROR( msgBuf , myThid )
83 mlosch 1.1 WRITE(msgBuf,'(A)')
84     & ' because bad # of levels in data'
85 jmc 1.15 CALL PRINT_ERROR( msgBuf , myThid )
86 mlosch 1.1 STOP 'Bad data in POLY3.COEFFS'
87     ENDIF
88 jmc 1.15 READ(37,*) (eosRefT(k),eosRefS(k),eosSig0(k),k=1,Nr)
89     DO k=1,Nr
90     READ(37,*) (eosC(i,k),i=1,9)
91 mlosch 1.1 ENDDO
92     CLOSE(37)
93 mlosch 1.2
94 jmc 1.16 ELSEIF ( equationOfState .EQ. 'JMD95Z'
95     & .OR. equationOfState .EQ. 'JMD95P'
96     & .OR. equationOfState .EQ. 'UNESCO' ) THEN
97 mlosch 1.1 C
98     C Jackett & McDougall (1995, JPO) equation of state
99     C rho = R(salinity, potential temperature, pressure)
100 jmc 1.15 C pressure needs to be available (from the previous
101 mlosch 1.1 C time step to linearize the problem)
102     C
103 jmc 1.15 IF ( equationOfState .EQ. 'JMD95Z' .AND. usingPCoords ) THEN
104     WRITE(msgBuf,'(A)')
105 mlosch 1.2 & 'ini_eos: equation of state ''JMD95Z'' should not'
106 jmc 1.15 CALL PRINT_ERROR( msgBuf , myThid )
107     WRITE(msgBuf,'(A)')
108 mlosch 1.2 & ' be used together with pressure coordinates.'
109 jmc 1.15 CALL PRINT_ERROR( msgBuf , myThid )
110     WRITE(msgBuf,'(A)')
111 mlosch 1.2 & ' Use only ''JMD95P'' with ''OCEANICP''.'
112 jmc 1.15 CALL PRINT_ERROR( msgBuf , myThid )
113 mlosch 1.2 STOP 'ABNORMAL END: S/R INI_EOS'
114 jmc 1.15 ENDIF
115 mlosch 1.1
116     C coefficients nonlinear equation of state in pressure coordinates for
117     C 1. density of fresh water at p = 0
118 jmc 1.12 eosJMDCFw(1) = 999.842594 _d +00
119 mlosch 1.1 eosJMDCFw(2) = 6.793952 _d -02
120     eosJMDCFw(3) = - 9.095290 _d -03
121     eosJMDCFw(4) = 1.001685 _d -04
122     eosJMDCFw(5) = - 1.120083 _d -06
123     eosJMDCFw(6) = 6.536332 _d -09
124     C 2. density of sea water at p = 0
125     eosJMDCSw(1) = 8.24493 _d -01
126     eosJMDCSw(2) = - 4.0899 _d -03
127 jmc 1.12 eosJMDCSw(3) = 7.6438 _d -05
128 mlosch 1.1 eosJMDCSw(4) = - 8.2467 _d -07
129 jmc 1.12 eosJMDCSw(5) = 5.3875 _d -09
130     eosJMDCSw(6) = - 5.72466 _d -03
131     eosJMDCSw(7) = 1.0227 _d -04
132 mlosch 1.1 eosJMDCSw(8) = - 1.6546 _d -06
133     eosJMDCSw(9) = 4.8314 _d -04
134 jmc 1.15 IF ( equationOfState(1:5) .EQ. 'JMD95' ) THEN
135 mlosch 1.1 C 3. secant bulk modulus K of fresh water at p = 0
136     eosJMDCKFw(1) = 1.965933 _d +04
137     eosJMDCKFw(2) = 1.444304 _d +02
138     eosJMDCKFw(3) = - 1.706103 _d +00
139     eosJMDCKFw(4) = 9.648704 _d -03
140     eosJMDCKFw(5) = - 4.190253 _d -05
141     C 4. secant bulk modulus K of sea water at p = 0
142     eosJMDCKSw(1) = 5.284855 _d +01
143     eosJMDCKSw(2) = - 3.101089 _d -01
144     eosJMDCKSw(3) = 6.283263 _d -03
145     eosJMDCKSw(4) = - 5.084188 _d -05
146     eosJMDCKSw(5) = 3.886640 _d -01
147     eosJMDCKSw(6) = 9.085835 _d -03
148     eosJMDCKSw(7) = - 4.619924 _d -04
149     C 5. secant bulk modulus K of sea water at p
150     eosJMDCKP( 1) = 3.186519 _d +00
151     eosJMDCKP( 2) = 2.212276 _d -02
152 jmc 1.12 eosJMDCKP( 3) = - 2.984642 _d -04
153 mlosch 1.1 eosJMDCKP( 4) = 1.956415 _d -06
154     eosJMDCKP( 5) = 6.704388 _d -03
155     eosJMDCKP( 6) = - 1.847318 _d -04
156     eosJMDCKP( 7) = 2.059331 _d -07
157     eosJMDCKP( 8) = 1.480266 _d -04
158     eosJMDCKP( 9) = 2.102898 _d -04
159     eosJMDCKP(10) = - 1.202016 _d -05
160     eosJMDCKP(11) = 1.394680 _d -07
161     eosJMDCKP(12) = - 2.040237 _d -06
162     eosJMDCKP(13) = 6.128773 _d -08
163     eosJMDCKP(14) = 6.207323 _d -10
164    
165 jmc 1.15 ELSEIF ( equationOfState .EQ. 'UNESCO' ) THEN
166 mlosch 1.1
167 jmc 1.15 WRITE(msgBuf,'(a)')
168 mlosch 1.1 & 'WARNING WARNING WARNING WARNING WARNING WARNING '
169 jmc 1.15 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
170     & SQUEEZE_RIGHT , myThid )
171     WRITE(msgBuf,'(a,a)')
172 mlosch 1.1 & 'WARNING: using the UNESCO formula with potential ',
173     & 'temperature'
174 jmc 1.15 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
175     & SQUEEZE_RIGHT , myThid )
176     WRITE(msgBuf,'(a)')
177 mlosch 1.1 & 'WARNING: can result in density errors of up to 5%'
178 jmc 1.15 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
179     & SQUEEZE_RIGHT , myThid )
180     WRITE(msgBuf,'(a)')
181 mlosch 1.5 & 'WARNING: (see Jackett and McDougall 1995, JAOT)'
182 jmc 1.15 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
183     & SQUEEZE_RIGHT , myThid )
184     WRITE(msgBuf,'(a)')
185 mlosch 1.1 & 'WARNING WARNING WARNING WARNING WARNING WARNING '
186 jmc 1.15 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
187     & SQUEEZE_RIGHT , myThid )
188 mlosch 1.1
189     C 3. secant bulk modulus K of fresh water at p = 0
190     eosJMDCKFw(1) = 1.965221 _d +04
191     eosJMDCKFw(2) = 1.484206 _d +02
192     eosJMDCKFw(3) = - 2.327105 _d +00
193     eosJMDCKFw(4) = 1.360477 _d -02
194     eosJMDCKFw(5) = - 5.155288 _d -05
195     C 4. secant bulk modulus K of sea water at p = 0
196     eosJMDCKSw(1) = 5.46746 _d +01
197 jmc 1.12 eosJMDCKSw(2) = - 0.603459 _d +00
198 mlosch 1.1 eosJMDCKSw(3) = 1.09987 _d -02
199     eosJMDCKSw(4) = - 6.1670 _d -05
200     eosJMDCKSw(5) = 7.944 _d -02
201     eosJMDCKSw(6) = 1.6483 _d -02
202     eosJMDCKSw(7) = - 5.3009 _d -04
203     C 5. secant bulk modulus K of sea water at p
204     eosJMDCKP( 1) = 3.239908 _d +00
205     eosJMDCKP( 2) = 1.43713 _d -03
206     eosJMDCKP( 3) = 1.16092 _d -04
207     eosJMDCKP( 4) = - 5.77905 _d -07
208     eosJMDCKP( 5) = 2.2838 _d -03
209     eosJMDCKP( 6) = - 1.0981 _d -05
210     eosJMDCKP( 7) = - 1.6078 _d -06
211     eosJMDCKP( 8) = 1.91075 _d -04
212     eosJMDCKP( 9) = 8.50935 _d -05
213     eosJMDCKP(10) = - 6.12293 _d -06
214     eosJMDCKP(11) = 5.2787 _d -08
215 jmc 1.12 eosJMDCKP(12) = - 9.9348 _d -07
216 mlosch 1.1 eosJMDCKP(13) = 2.0816 _d -08
217     eosJMDCKP(14) = 9.1697 _d -10
218 jmc 1.15 ELSE
219 mlosch 1.1 STOP 'INI_EOS: We should never reach this point!'
220 jmc 1.15 ENDIF
221 mlosch 1.1
222 jmc 1.15 ELSEIF ( equationOfState .EQ. 'MDJWF' ) THEN
223 mlosch 1.4
224 mlosch 1.7 eosMDJWFnum( 0) = 9.99843699 _d +02
225     eosMDJWFnum( 1) = 7.35212840 _d +00
226     eosMDJWFnum( 2) = -5.45928211 _d -02
227     eosMDJWFnum( 3) = 3.98476704 _d -04
228     eosMDJWFnum( 4) = 2.96938239 _d +00
229     eosMDJWFnum( 5) = -7.23268813 _d -03
230     eosMDJWFnum( 6) = 2.12382341 _d -03
231     eosMDJWFnum( 7) = 1.04004591 _d -02
232     eosMDJWFnum( 8) = 1.03970529 _d -07
233     eosMDJWFnum( 9) = 5.18761880 _d -06
234     eosMDJWFnum(10) = -3.24041825 _d -08
235     eosMDJWFnum(11) = -1.23869360 _d -11
236 jmc 1.15
237    
238 jmc 1.12 eosMDJWFden( 0) = 1.00000000 _d +00
239 mlosch 1.7 eosMDJWFden( 1) = 7.28606739 _d -03
240 jmc 1.12 eosMDJWFden( 2) = -4.60835542 _d -05
241 mlosch 1.7 eosMDJWFden( 3) = 3.68390573 _d -07
242     eosMDJWFden( 4) = 1.80809186 _d -10
243     eosMDJWFden( 5) = 2.14691708 _d -03
244     eosMDJWFden( 6) = -9.27062484 _d -06
245     eosMDJWFden( 7) = -1.78343643 _d -10
246     eosMDJWFden( 8) = 4.76534122 _d -06
247     eosMDJWFden( 9) = 1.63410736 _d -09
248     eosMDJWFden(10) = 5.30848875 _d -06
249     eosMDJWFden(11) = -3.03175128 _d -16
250     eosMDJWFden(12) = -1.27934137 _d -17
251 mlosch 1.1
252 jmc 1.15 ELSEIF( equationOfState .EQ. 'IDEALG' ) THEN
253    
254     ELSE
255    
256 jmc 1.17 WRITE(msgbuf,'(3A)') ' INI_EOS: equationOfState = "',
257 mlosch 1.1 & equationOfState,'"'
258 jmc 1.15 CALL PRINT_ERROR( msgbuf, myThid )
259     STOP 'ABNORMAL END: S/R INI_EOS'
260    
261     ENDIF
262 mlosch 1.1
263 jmc 1.9 C-- Check EOS initialisation:
264    
265 jmc 1.17 CALL EOS_CHECK( myThid )
266 jmc 1.9
267 jmc 1.8 _END_MASTER( myThid )
268 jmc 1.15 _BARRIER
269 mlosch 1.1
270 jmc 1.10 RETURN
271     END
272 mlosch 1.1
273     CBOP
274 jmc 1.17 C !ROUTINE: EOS_CHECK
275 mlosch 1.1 C !INTERFACE:
276 jmc 1.17 SUBROUTINE EOS_CHECK( myThid )
277 mlosch 1.1 C !DESCRIPTION: \bv
278     C *==========================================================*
279 jmc 1.17 C | SUBROUTINE EOS_CHECK
280 mlosch 1.1 C | o check the equation of state.
281     C *==========================================================*
282     C \ev
283    
284     C !USES:
285    
286 jmc 1.15 IMPLICIT NONE
287 mlosch 1.1 #include "SIZE.h"
288     #include "EEPARAMS.h"
289     #include "PARAMS.h"
290     #include "EOS.h"
291 jmc 1.17 #include "GRID.h"
292     #include "DYNVARS.h"
293 mlosch 1.1
294     C !INPUT/OUTPUT PARAMETERS:
295     C == Routine arguments ==
296 jmc 1.17 C myThid :: Number of this instance of EOS_CHECK
297 mlosch 1.1 INTEGER myThid
298    
299 jmc 1.17 #ifdef INCLUDE_EOS_CHECK
300 mlosch 1.1 C !LOCAL VARIABLES:
301     C == Local variables ==
302     C bi,bj - Loop counters
303 jmc 1.17 C i,j,k
304 mlosch 1.1 INTEGER bi, bj
305 jmc 1.17 INTEGER iMin, iMax, jMin, jMax
306 jmc 1.15 INTEGER i, j, k
307 jmc 1.17 _RL tFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
308     _RL sFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
309     _RL pFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
310 mlosch 1.4 _RL rhoLoc (1-Olx:sNx+Olx,1-Oly:sNy+Oly)
311 mlosch 1.1 _RL bulkMod(1-Olx:sNx+Olx,1-Oly:sNy+Oly)
312    
313     INTEGER ncheck, kcheck
314 mlosch 1.4 PARAMETER ( ncheck = 13 )
315 jmc 1.17 _RL tLoc(ncheck), ptLoc(ncheck), sLoc(ncheck), pLoc(ncheck)
316     _RL rLoc(ncheck), bLoc(ncheck)
317     _RS mskSave
318     _RS rC_Save
319 mlosch 1.1
320     CHARACTER*(MAX_LEN_MBUF) msgBuf
321    
322 jmc 1.17 DATA tLoc
323 mlosch 1.1 & /3.25905152915860 _d 0, 20.38687090048638 _d 0,
324 mlosch 1.4 & 25.44820830309568 _d 0, 20.17368557065936 _d 0,
325     & 13.43397459640398 _d 0,
326 mlosch 1.1 & 5. _d 0, 25. _d 0,
327     & 5. _d 0, 25. _d 0,
328     & 5. _d 0, 25. _d 0,
329     & 5. _d 0, 25. _d 0/,
330 jmc 1.17 & ptLoc
331 mlosch 1.1 & /3. _d 0, 20. _d 0,
332 mlosch 1.4 & 25. _d 0, 20. _d 0,
333     & 12. _d 0,
334 mlosch 1.1 & 5. _d 0, 25. _d 0,
335     & 5. _d 0, 25. _d 0,
336 jmc 1.15 & 4.03692566635316 _d 0, 22.84661726775120 _d 0,
337 mlosch 1.1 & 3.62720389416752 _d 0, 22.62420229124846 _d 0/
338 jmc 1.17 & sLoc
339 mlosch 1.1 & /35.5 _d 0, 35. _d 0,
340 mlosch 1.4 & 35.0 _d 0, 20. _d 0,
341     & 40.0 _d 0,
342 mlosch 1.1 & 0. _d 0, 0. _d 0,
343     & 35. _d 0, 35. _d 0,
344     & 0. _d 0, 0. _d 0,
345     & 35. _d 0, 35. _d 0/
346 jmc 1.17 & pLoc
347 mlosch 1.1 & /300. _d 5, 200. _d 5,
348 mlosch 1.4 & 200. _d 5, 100. _d 5,
349     & 800. _d 5,
350 mlosch 1.1 & 0. _d 0, 0. _d 0,
351     & 0. _d 0, 0. _d 0,
352     & 1000. _d 5, 1000. _d 5,
353     & 1000. _d 5, 1000. _d 5/
354 jmc 1.17 DATA rLoc
355 mlosch 1.4 & /1041.83267 _d 0, 1033.213387 _d 0,
356     & 1031.654229 _d 0, 1017.726743 _d 0,
357     & 1062.928258 _d 0,
358     & 999.96675 _d 0, 997.04796 _d 0,
359     & 1027.67547 _d 0, 1023.34306 _d 0,
360     & 1044.12802 _d 0, 1037.90204 _d 0,
361     & 1069.48914 _d 0, 1062.53817 _d 0/
362 jmc 1.17 & bLoc
363 mlosch 1.1 & / -1.00000 _d 0, -1.00000 _d 0,
364 mlosch 1.4 & -1.00000 _d 0, -1.00000 _d 0,
365     & -1.00000 _d 0,
366 mlosch 1.1 & 20337.80375 _d 0, 22100.72106 _d 0,
367     & 22185.93358 _d 0, 23726.34949 _d 0,
368     & 23643.52599 _d 0, 25405.09717 _d 0,
369     & 25577.49819 _d 0, 27108.94504 _d 0/
370    
371 jmc 1.15
372 mlosch 1.1 bi = 1
373     bj = 1
374     k = 1
375 jmc 1.17 iMin = 1
376     iMax = 1
377     jMin = 1
378     jMax = 1
379 mlosch 1.1 i = 1
380     j = 1
381 jmc 1.15 IF ( equationOfState.NE.'LINEAR'
382 jmc 1.17 & .AND. equationOfState.NE.'POLY3'
383     & .AND. equationOfState.NE.'IDEALG' ) THEN
384 mlosch 1.1 C check nonlinear EOS
385 jmc 1.17 WRITE(msgBuf,'(A,A)')
386     & 'EOS_CHECK: Check the equation of state: Type ',
387 mlosch 1.1 & equationOfState
388 jmc 1.17 CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
389     & SQUEEZE_RIGHT , myThid )
390     C- to get the right presure out of S/R PRESSURE_FOR_EOS:
391     mskSave = maskC(i,j,k,bi,bj)
392     rC_Save = rC(k)
393     maskC(i,j,k,bi,bj) = 1.
394     totPhiHyd(i,j,k,bi,bj) = 0.
395     C- + set rC accordingly
396     DO kcheck = 1,ncheck
397     IF ( usingZCoords ) THEN
398     rC(k) = -pLoc(kcheck)*recip_rhoConst*recip_gravity
399     ELSE
400     rC(k) = pLoc(kcheck)
401     ENDIF
402     IF ( equationOfState.NE.'UNESCO' ) THEN
403     tFld(i,j) = ptLoc(kcheck)
404     ELSE
405     tFld(i,j) = tLoc(kcheck)
406     ENDIF
407     sFld(i,j) = sLoc(kcheck)
408     pFld(i,j) = pLoc(kcheck)
409     rhoLoc(i,j) = 0. _d 0
410    
411     CALL FIND_RHO_2D(
412     I iMin, iMax, jMin, jMax, k,
413     I tFld, sFld,
414     O rhoLoc,
415     I k, bi, bj, myThid )
416    
417     IF ( equationOfState.EQ.'MDJWF' ) THEN
418     bulkMod(i,j) = -1. _d 0
419     ELSE
420 jmc 1.15 CALL FIND_BULKMOD(
421 jmc 1.17 I iMin, iMax, jMin, jMax,
422     I pFld, tFld, sFld,
423     O bulkMod,
424     I myThid )
425     ENDIF
426    
427     WRITE(msgBuf,'(2(A,F4.1),A,F5.0,2A,F10.5,1X,F11.5)')
428     & 'rho(', sFld(i,j), ' PSU,',
429     & tFld(i,j), ' degC,',
430     & pLoc(kcheck)*SItoBar, ' bar)',
431     & ' = ', rLoc(kcheck), bLoc(kcheck)
432     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
433     & SQUEEZE_RIGHT , myThid )
434     WRITE(msgBuf,'(A,F10.5,1X,F11.5)')
435     & ' rho(find_rho_2d) = ',
436     & rhoLoc(i,j)+rhoConst, bulkMod(i,j)
437     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
438     & SQUEEZE_RIGHT , myThid )
439    
440     CALL FIND_RHO_SCALAR( tFld(i,j), sLoc(kcheck),
441     & pLoc(kcheck), rhoLoc(i,j), myThid )
442     WRITE(msgBuf,'(A,F10.5,1X,F11.5)')
443     & ' rho(find_rho_scalar) = ',
444     & rhoLoc(i,j)+rhoConst
445     c & rhoLoc(i,j)+rhoConst, bulkMod(i,j)
446     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
447     & SQUEEZE_RIGHT , myThid )
448 jmc 1.15
449 jmc 1.17 ENDDO
450 mlosch 1.1 C end check nonlinear EOS
451 jmc 1.17 maskC(i,j,k,bi,bj) = mskSave
452     rC(k) = rC_Save
453 mlosch 1.1
454 jmc 1.17 WRITE(msgBuf,'(A)') 'EOS_CHECK: Done'
455     CALL PRINT_MESSAGE( msgBuf, standardMessageUnit,
456     & SQUEEZE_RIGHT , myThid )
457 mlosch 1.1
458 jmc 1.15 ENDIF
459 jmc 1.17 #endif /* INCLUDE_EOS_CHECK */
460 mlosch 1.1
461 jmc 1.10 RETURN
462     END

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