/[MITgcm]/MITgcm_contrib/jscott/igsm/src/surf_ocean.F
ViewVC logotype

Contents of /MITgcm_contrib/jscott/igsm/src/surf_ocean.F

Parent Directory Parent Directory | Revision Log Revision Log | View Revision Graph Revision Graph


Revision 1.1 - (show annotations) (download)
Fri Aug 11 19:35:32 2006 UTC (18 years, 11 months ago) by jscott
Branch: MAIN
atm2d package

1
2 #include "ctrparam.h"
3
4 ! ==========================================================
5 !
6 ! SURFACE.F: THIS SUBROUTINE CALCULATES THE SURFACE FLUXES
7 ! WHICH INCLUDE SENSIBLE HEAT, EVAPORATION,
8 ! THERMAL RADIATION, AND MOMENTUM DRAG. IT ALSO
9 ! CALCULATES INSTANTANEOUSLY SURFACE TEMPERATURE,
10 ! SURFACE SPECIFIC HUMIDITY, AND SURFACE WIND
11 ! COMPONENTS.
12 !
13 ! ----------------------------------------------------------
14 !
15 ! Author of Chemistry Modules: Chien Wang
16 !
17 ! ----------------------------------------------------------
18 !
19 ! Revision History:
20 !
21 ! When Who What
22 ! ---- ---------- -------
23 ! 073100 Chien Wang repack based on CliChem3 and add cpp
24 ! 092301 Chien Wang add bc and oc
25 !
26 ! ==========================================================
27
28 SUBROUTINE SURF_OCEAN
29
30 C**** 5802.
31 C**** THIS SUBROUTINE CALCULATES THE SURFACE FLUXES WHICH INCLUDE 5803.
32 C**** SENSIBLE HEAT, EVAPORATION, THERMAL RADIATION, AND MOMENTUM 5804.
33 C**** DRAG. IT ALSO CALCULATES INSTANTANEOUSLY SURFACE TEMPERATURE, 5805.
34 C**** SURFACE SPECIFIC HUMIDITY, AND SURFACE WIND COMPONENTS. 5806.
35 C**** 5807.
36
37 #if ( defined CPL_CHEM )
38 !
39 #include "chem_para"
40 #include "chem_com"
41 !
42 #endif
43
44 #include "BD2G04.COM"
45
46 #if ( defined CLM )
47 #include "CLM.COM"
48 #endif
49
50 COMMON/SPEC2/KM,KINC,COEK,C3LAND(IO0,JM0),C3OICE(IO0,JM0) 5808.1
51 * ,C3LICE(IO0,JM0),WMGE(IO0,JM0),TSSFC(1,JM0,4) 5808.2
52 COMMON U,V,T,P,Q 5809.
53 COMMON/WORK1/CONV(IM0,JM0,LM0),PK(IM0,JM0,LM0),PREC(IM0,JM0),
54 & TPREC(IM0,JM0), 5810.
55 * COSZ1(IO0,JM0) 5811.
56 COMMON/WORK2/UT(IM0,JM0,LM0),VT(IM0,JM0,LM0),DU1(IO0,JM0),
57 & DV1(IO0,JM0), 5812.
58 * RA(8),ID(8),UMS(8) 5813.
59 COMMON/WORK3/E0(IO0,JM0,4),E1(IO0,JM0,4),EVAPOR(IO0,JM0,4), 5814.
60 * TGRND(IO0,JM0,4) 5814.1
61 COMMON/RDATA/ROUGHL(IO0,JM0) 5815.
62 DIMENSION SINI(72),COSI(72) 5816.
63 DIMENSION WMGMIN(JM0)
64 LOGICAL POLE,PRNT,HPRNT
65 common/conprn/HPRNT
66 common/TSUR/TSURFC(JM0,0:13),TSURFT(JM0),TSURFD(JM0),DTEMSR(JM0)
67 common/SURRAD/TRSURF(JM0,4),SRSURF(JM0,4)
68 c REAL*8 B,TGV,TKV,TSV0,TSV1,TSV 5818.
69 COMMON/CWMG/WMGEA(JM0),NWMGEA(JM0),CHAVER(JM0),DTAV(JM0),DQAV(JM0)
70 & ,Z0AV(JM0),WSAV(JM0),WS0AV(JM0),TAUAV(JM0)
71 COMMON/SURFLAND/ DUL1(JM0),DVL1(JM0),DT1L(JM0),DQ1L(JM0),
72 & WSSL(JM0),T2ML(JM0),
73 & TSSL(JM0),QSSL(JM0),USSL(JM0),VSSL(JM0),TAUSL(JM0),BLJ(JM0,50)
74 & ,ELHTG(JM0),SHTG(JM0),TAUXG(JM0),TAUYG(JM0)
75 C
76 #if ( defined OCEAN_3D || defined ML_2D)
77 #include "AGRID.COM"
78 #endif
79 c
80 DATA RVAP/461.5/ 5819.
81 DATA SHV/0./,SHW/4185./,SHI/2060./,RHOW/1000./,RHOI/916.6/, 5820.
82 * ALAMI/2.1762/,STBO/.5672573E-7/,TF/273.16/,TFO/-1.56/ 5821.
83 DATA Z1I/.1/,Z2LI/2.9/,Z1E/.1/,Z2E/4./,RHOS/91.66/,ALAMS/.35/ 5822.
84 DIMENSION AROUGH(20),BROUGH(20),CROUGH(20),DROUGH(20),EROUGH(20) 5823.
85 DATA AROUGH/16.59,13.99,10.4,7.35,5.241,3.926,3.126,2.632,2.319, 5824.
86 *2.116,1.982,1.893,1.832,1.788,1.757,1.733,1.714,1.699,1.687,1.677/5825.
87 DATA BROUGH/3.245,1.733,0.8481,0.3899,0.1832,0.9026E-1,0.4622E-1, 5826.
88 * .241E-1,.1254E-1,.6414E-2,.3199E-2,.1549E-2,.7275E-3,.3319E-3, 5827.
89 * .1474E-3,.6392E-4,.2713E-4,.1130E-4,.4630E-5,.1868E-5/ 5828.
90 DATA CROUGH/5.111,3.088,1.682,.9239,.5626,.3994,.3282,.3017,.299 5829.
91 *,.3114,.3324,.3587,.3881,.4186,.4492,.4792,.5082,.5361,.5627, 5830.
92 * .5882/ 5831.
93 DATA DROUGH/1.24,1.02,0.806,0.682,0.661,0.771,0.797,0.895,0.994, 5832.
94 * 1.09,1.18,1.27,1.35,1.43,1.50,1.58,1.65,1.71,1.78,1.84/ 5833.
95 DATA EROUGH/0.128,0.130,0.141,0.174,0.238,0.330,0.438,0.550,0.660,5834.
96 * 0.766,0.866,0.962,1.05,1.14,1.22,1.30,1.37,1.45,1.52,1.58/ 5835.
97 QSAT(TM,PR,QLH)=3.797915*EXP(QLH*(7.93252E-6-2.166847E-3/TM))/PR 5836.
98 DLQSDT(TM,QLH)=QLH*2.166847E-3/(TM*TM)
99 c TLOG(Z0)=ALOG(.36*SQRTT/(FMAG*Z0))+2.302585*ROUGH-.08 5837.
100 DATA IFIRST/1/ 5838.
101 ROSNOW(X)=0.54*X/LOG(1.+0.54*X/275.)
102 ALSNOW(X)=2.8E-6*X**2
103 C**** 5839.
104 C**** FDATA 2 LAND COVERAGE (1) 5840.
105 C**** 3 RATIO OF LAND ICE COVERAGE TO LAND COVERAGE (1) 5841.
106 C**** 5842.
107 C**** ODATA 1 OCEAN TEMPERATURE (C) 5843.
108 C**** 2 RATIO OF OCEAN ICE COVERAGE TO WATER COVERAGE (1) 5844.
109 C**** 3 OCEAN ICE AMOUNT OF SECOND LAYER (KG/M**2) 5845.
110 C**** 5846.
111 C**** GDATA 1 OCEAN ICE SNOW AMOUNT (KG/M**2) 5847.
112 C**** 2 EARTH SNOW AMOUNT (KG/M**2) 5848.
113 C**** 3 OCEAN ICE TEMPERATURE OF FIRST LAYER (C) 5849.
114 C**** 4 EARTH TEMPERATURE OF FIRST LAYER (C) 5850.
115 C**** 5 EARTH WATER OF FIRST LAYER (KG/M**2) 5851.
116 C**** 6 EARTH ICE OF FIRST LAYER (KG/M**2) 5852.
117 C**** 7 OCEAN ICE TEMPERATURE OF SECOND LAYER (C) 5853.
118 C**** 8 EARTH TEMPERATURE OF SECOND LAYER (C) 5854.
119 C**** 9 EARTH WATER OF SECOND LAYER (KG/M**2) 5855.
120 C**** 10 EARTH ICE OF SECOND LAYER (KG/M**2) 5856.
121 C**** 12 LAND ICE SNOW AMOUNT (KG/M**2) 5857.
122 C**** 13 LAND ICE TEMPERATURE OF FIRST LAYER (C) 5858.
123 C**** 14 LAND ICE TEMPERATURE OF SECOND LAYER (C) 5859.
124 C**** 5860.
125 C**** BLDATA 1 COMPOSITE SURFACE WIND MAGNITUDE (M/S) 5861.
126 C**** 2 COMPOSITE SURFACE AIR TEMPERATURE (K) 5862.
127 C**** 3 COMPOSITE SURFACE AIR SPECIFIC HUMIDITY (1) 5863.
128 C**** 4 LAYER TO WHICH DRY CONVECTION MIXES (1) 5864.
129 C**** 5 FREE 5865.
130 C**** 6 COMPOSITE SURFACE U WIND 5866.
131 C**** 7 COMPOSITE SURFACE V WIND 5867.
132 C**** 8 COMPOSITE SURFACE MOMENTUM TRANSFER (TAU) 5868.
133 C**** 5869.
134 C**** VDATA 9 WATER FIELD CAPACITY OF FIRST LAYER (KG/M**2) 5870.
135 C**** 10 WATER FIELD CAPACITY OF SECOND LAYER (KG/M**2) 5871.
136 C**** 5872.
137 C**** ROUGHL LOG(ZGS/ROUGHNESS LENGTH) (LOGARITHM TO BASE 10) 5873.
138 C**** ROUGHL will be ROUGHNESS LENGTH
139 C**** 5874.
140 c print *,'surface TAU=',TAU
141 NSTEPS=NSURF*NSTEP/NDYN 5875.
142 IF(IFIRST.NE.1) GO TO 50 5876.
143 print *,' SURFACE after CLM'
144 IFIRST=0 5877.
145 print *,'JM=',jm
146 ! WMGMIN=8.
147 ! WMGMIN=16. ! 2365.05
148 ! WMGMIN=25. ! 2363.05 2366.05
149 WMGM0=8.0
150 WMGM45=25.
151 print *,' WMGM0=', WMGM0,' WMGM45=',WMGM45
152 WMGMAV=0.5*( WMGM0+WMGM45)
153 DWGM=0.5*( WMGM0-WMGM45)
154 do j = 1,jm0
155 rhrad = 3.14159*(-90.+4.*(j-1))/180.
156 WMGMIN(j) = WMGMAV+DWGM*cos(4.*rhrad)
157 enddo
158 print *,'WMGMIN 4 OCEAN is a function of latitude'
159 print 258,(WMGMIN(J),J=1,JM)
160 print *,' WMGE'
161 print 258,(WMGE(1,J),J=1,JM)
162 258 format(12f5.1)
163 COEFSN=100./ROSNOW(10.)
164 COEFSN=1.
165 print *,' COEFSN=',COEFSN
166 do 2567 J=1,JM
167 NWMGEA(J)=0
168 WMGEA(J)=0.
169 CHAVER(J)=0.
170 DTAV(J)=0.
171 DQAV(J)=0.
172 Z0AV(J)=0.
173 WSAV(J)=0.
174 WS0AV(J)=0.
175 TAUAV(J)=0.
176 2567 CONTINUE
177 c10 CONTINUE 5878.12
178 C SRCORX=1. 5878.13
179 CIAX=0.3
180 print *,' surfacen CIAX=',CIAX
181 print *,' QS=Q1, TS=T1'
182 print *,' WS=sqrt(0.75*W1+WGEM) '
183 print *,' ROUGHL'
184 LBLMM1=LBLM-1 5880.
185 IQ1=IM/4+1 5881.
186 IQ2=IM/2+1 5882.
187 IQ3=3*IM/4+1 5883.
188 DTSURF=NDYN*DT/NSURF 5884.
189 print *,' DTSURF=',DTSURF
190 DTSRCE=DT*NDYN 5885.
191 SHA=RGAS/KAPA 5886.
192 RVX=0. 5887.
193 ACE1I=Z1I*RHOI 5888.
194 HC1I=ACE1I*SHI 5889.
195 HC2LI=Z2LI*RHOI*SHI 5890.
196 HC1DE=Z1E*1129950. 5891.
197 HC2DE=Z2E*1129950.+3.5*.125*RHOW*3100. 5892.
198 Z1IBYL=Z1I/ALAMI 5893.
199 Z2LI3L=Z2LI/(3.*ALAMI) 5894.
200 BYRSL=1./(RHOS*ALAMS) 5895.
201 ZS1CO=.5*DSIG(1)*RGAS/GRAV 5896.
202 P1000K=EXPBYK(1000.) 5897.
203 COEFS=GRAV/(100.*DSIG(1)) 5898.
204 COEF1=(1.-SIG(2))/DSIGO(1) 5899.
205 COEF2=(SIG(1)-1.)/DSIGO(1) 5900.
206 DO 20 I=1,IM 5901.
207 SINI(I)=SIN((I-1)*TWOPI/FIM) 5902.
208 20 COSI(I)=COS((I-1)*TWOPI/FIM) 5903.
209 50 S0=S0X*1367./RSDIST 5904.
210 c print *,'IM=',IM
211 c do i=1,200
212 c print *,'HERE1'
213 c enddo
214 BYS0=RSDIST/1367. 5905.
215 C**** ZERO OUT ENERGY AND EVAPORATION FOR GROUND AND INITIALIZE TGRND 5906.
216 DO 70 J=1,JM 5907.
217 DO 70 I=1,IM 5908.
218 TGRND(I,J,2)=GDATA(I,J,3) 5909.
219 c TGRND(I,J,3)=GDATA(I,J,13) 5910.
220 c TGRND(I,J,4)=GDATA(I,J,4) 5911.
221 DO 70 K=1,2 5912.
222 EVAPOR(I,J,K)=0. 5913.
223 E1(I,J,K)=0. 5913.
224 E0(I,J,K)=0. 5913.
225 70 CONTINUE
226 IHOUR=1.5+TOFDAY 5914.
227 C**** 5915.
228 C**** OUTSIDE LOOP OVER TIME STEPS, EXECUTED NSURF TIMES EVERY HOUR 5916.
229 C**** 5917.
230 DO 9000 NS=1,NSURF 5918.
231 MODDSF=MOD(NSTEPS+NS-1,NDASF) 5919.
232 IF(MODDSF.EQ.0) IDACC(3)=IDACC(3)+1 5920.
233 MODD6=MOD(IDAY+NS,NSURF) 5921.
234 C**** ZERO OUT LAYER 1 WIND INCREMENTS 5922.
235 DO 60 J=1,JM 5923.
236 DO 60 I=1,IM 5924.
237 DU1(I,J)=DUL1(J)
238 60 DV1(I,J)=DVL1(J)
239 C**** 5927.
240 C**** OUTSIDE LOOP OVER J AND I, EXECUTED ONCE FOR EACH GRID POINT 5928.
241 C**** 5929.
242 JPR=-7
243 JPRR=-31
244 DO 7000 J=1,JM 5930.
245 PRNT=j.eq.8
246 PRNT=.FALSE.
247 HEMI=1. 5931.
248 IF(J.LE.JM/2) HEMI=-1. 5932.
249 FCOR=2.*OMEGA*SINP(J) 5933.
250 FMAG=FCOR*HEMI 5934.
251 ROOT2F=SQRT(2.*FMAG) 5935.
252 IF(J.EQ.1) GO TO 80 5936.
253 IF(J.EQ.JM) GO TO 90 5937.
254 WMG0=.5*(WMGE(1,J)+WMGE(1,J+1))+.001 5937.5
255 POLE=.FALSE. 5938.
256 IMAX=IM 5939.
257 GO TO 100 5940.
258 C**** CONDITIONS AT THE SOUTH POLE 5941.
259 80 POLE=.TRUE. 5942.
260 IMAX=1 5943.
261 JVPO=2 5944.
262 RAPO=2.*RAPVN(1) 5945.
263 U1=.25*(U(1,2,1)+V(IQ1,2,1)-U(IQ2,2,1)-V(IQ3,2,1)) 5946.
264 V1=.25*(V(1,2,1)-U(IQ1,2,1)-V(IQ2,2,1)+U(IQ3,2,1)) 5947.
265 WMG0=WMGE(1,2)+.001 5947.5
266 GO TO 100 5948.
267 C**** CONDITIONS AT THE NORTH POLE 5949.
268 90 POLE=.TRUE. 5950.
269 IMAX=1 5951.
270 JVPO=JM 5952.
271 RAPO=2.*RAPVS(JM) 5953.
272 U1=.25*(U(1,JM,1)-V(IQ1,JM,1)-U(IQ2,JM,1)+V(IQ3,JM,1)) 5954.
273 V1=.25*(V(1,JM,1)+U(IQ1,JM,1)-V(IQ2,JM,1)-U(IQ3,JM,1)) 5955.
274 WMG0=WMGE(1,JM)+.001 5955.5
275 C**** ZERO OUT SURFACE DIAGNOSTICS WHICH WILL BE SUMMED OVER LONGITUDE 5956.
276 100 ATRHDT=0. 5957.
277 BTRHDT=0. 5958.
278 CTRHDT=0. 5959.
279 ASHDT=0. 5960.
280 CSHDT=0. 5962.
281 AEVHDT=0. 5963.
282 CEVHDT=0. 5965.
283 ATS=0. 5966.
284 CTS=0. 5968.
285 AT2=0. 5966.
286 CT2=0. 5968.
287 ARIGS=0. 5966.
288 CRIGS=0. 5968.
289 ATAUL=0.
290 ATAUF=0.
291 CTAUL=0.
292 CTAUF=0.
293 AWS=0.
294 CWS=0.
295 AWMG=0.
296 CWMG=0.
297 ACH=0.
298 CCH=0.
299 IM1=IM 5969.
300 DO 6000 I=1,IMAX 5970.
301 C**** 5971.
302 C**** DETERMINE SURFACE CONDITIONS 5972.
303 C**** 5973.
304 PLAND=FDATA(I,J,2) 5974.
305 PWATER=1.-PLAND 5975.
306 PLICE=FDATA(I,J,3)*PLAND 5976.
307 PEARTH=PLAND-PLICE 5977.
308 POICE=ODATA(I,J,2)*PWATER 5978.
309 POCEAN=PWATER-POICE 5979.
310 if(POCEAN.LE.1.E-5)then
311 POCEAN=0.
312 POICE=PWATER
313 endif
314 TTOFR=PEARTH+PLICE+POICE+POCEAN
315 if(abs(TTOFR-1).gt.1.e-3)then
316 print *,' From surface TTOFR=',TTOFR
317 print *,' J=',J,' PLAND=',PLAND,' POCEAN=',POCEAN
318 print *,'POICE=',POICE,' ODATA(I,J,2)=',ODATA(I,J,2)
319 stop
320 end if
321 SP=P(I,J) 5980.
322 PS=SP+PTOP 5981.
323 PSK=EXPBYK(PS) 5982.
324 P1=SIG(1)*SP+PTOP 5983.
325 P1K=EXPBYK(P1) 5984.
326 WSOLD=BLDATA(I,J,1) 5985.
327 USOLD=BLDATA(I,J,6) 5986.
328 VSOLD=BLDATA(I,J,7) 5987.
329 TOLD=BLDATA(I,J,8) 5988.
330 SQRTT=SQRT(TOLD) 5989.
331 GKBYFW=.1296*GRAV/(FCOR*FMAG*WSOLD+1.E-20) 5990.
332 COSWS=GKBYFW*USOLD 5991.
333 SINWS=GKBYFW*VSOLD 5992.
334 IF(POLE) GO TO 1200 5993.
335 U1=.25*(U(IM1,J,1)+U(I,J,1)+U(IM1,J+1,1)+U(I,J+1,1)) 5994.
336 V1=.25*(V(IM1,J,1)+V(I,J,1)+V(IM1,J+1,1)+V(I,J+1,1)) 5995.
337 if(J.eq.JPR.or.J.eq.-12)then
338 print *,' J=',J
339 print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
340 print *,'U(I,J,1)=',U(I,J,1),' V(I,J,1)=',V(I,J,1)
341 print *,'U(I,J+1,1)=',U(I,J+1,1),' V(I,J+1,1)=',V(I,J+1,1)
342 print *,'U(IM1,J,1)=',U(IM1,J,1),' V(IM1,J,1)=',V(IM1,J,1)
343 print *,'U(IM1,J+1,1)=',U(IM1,J+1,1),
344 & ' V(IM1,J+1,1)=',V(IM1,J+1,1)
345 endif
346 1200 TH1=T(I,J,1) 5996.
347 Q1=Q(I,J,1) 5997.
348 DTH1=DT1L(J)
349 DQQ1=DQ1L(J)
350 THV1=TH1*(1.+Q1*RVX) 5998.
351 c SRHEAT=SRHR(I,J,1)*COSZ1(I,J)*SRCOR 5999.
352 c SRHDT=SRHEAT*DTSURF 6000.
353 RMBYA=100.*SP*DSIG(1)/GRAV 6001.
354 C**** ZERO OUT QUANTITIES TO BE SUMMED OVER SURFACE TYPES 6002.
355 USS=USSL(J)
356 VSS=VSSL(J)
357 WSS=WSSL(J)
358 TSS=TSSL(J)
359 T2MS=T2ML(J)
360 QSS=QSSL(J)
361 TAUS=TAUSL(J)
362 tauu(j)=tauu(j)+TAUYG(J)*PLAND
363 tauv(j)=tauv(j)+TAUXG(J)*PLAND
364 SINAPS=0. 6009.
365 COSAPS=0. 6010.
366 JR=J
367 DXYPJ=DXYP(J) 6012.
368 TG1S=0. 6013.
369 QGS=0. 6014.
370 BETAS=0. 6015.
371 TRHDTS=0. 6016.
372 SHDTS=0. 6017.
373 EVHDTS=0. 6018.
374 UGS=0. 6019.
375 VGS=0. 6020.
376 WGS=0. 6021.
377 USRS=0. 6022.
378 VSRS=0. 6023.
379 RIS1S=0. 6024.
380 RIGSS=0. 6025.
381 CDMS=0. 6026.
382 CDHS=0. 6027.
383 DGSS=0. 6028.
384 EDS1S=0. 6029.
385 PPBLS=0. 6030.
386 EVAPS=0. 6031.
387 C**** 6032.
388 IF(POCEAN.LE.0.) GO TO 2200 6033.
389 C**** 6034.
390 C**** OCEAN 6035.
391 C**** 6036.
392 ITYPE=1 6037.
393 PTYPE=POCEAN 6038.
394 c formula charnoka
395 TOCEAN=BLDATA(I,J,5)
396 ! ROUGH=MAX(0.018*TOCEAN/GRAV,1.5E-4)
397 ROUGH=MAX(0.035*TOCEAN/GRAV,1.5E-4) ! 2375.05
398 ZGS=10. 6041.
399 NGRNDZ=1 6043.
400 TG1=ODATA(I,J,1) 6044.
401 BETA=1. 6045.
402 ELHX=LHE 6046.
403 TRHT0=TRSURF(J,1)
404 SRHEAT=SRSURF(J,1)*COSZ1(I,J)*SRCOR
405 GO TO 3000 6047.
406 C**** 6048.
407 2200 IF(POICE.LE.0.) GO TO 5000 6049.
408 C**** 6050.
409 C**** OCEAN ICE 6051.
410 C**** 6052.
411 ITYPE=2 6053.
412 PTYPE=POICE 6054.
413 NGRNDZ=NGRND 6055.
414 SNOW=GDATA(I,J,1) 6056.
415 TG1=TGRND(I,J,2) 6057.
416 TG2=GDATA(I,J,7) 6058.
417 ACE2=ODATA(I,J,3) 6059.
418 Z2=ACE2/RHOI 6060.
419 Z2BY4L=Z2/(4.*ALAMI) 6061.
420 if (SNOW.gt.10.)then
421 RHOS0=ROSNOW(SNOW)
422 else
423 RHOS0=275.
424 endif
425 RHOS=COEFSN*RHOS0
426 ALAMS=ALSNOW(RHOS0)
427 BYRSL=1./(RHOS*ALAMS)
428 c Z1BY6L=(Z1IBYL+SNOW*BYRSL)*.1666667 6062.
429 c CDTERM=1.5*TG2-.5*TFO 6063.
430 CDTERM=TG2
431 c CDENOM=1./(2.*Z1BY6L+Z2BY4L) 6064.
432 Z1BY2L=(Z1IBYL+SNOW*BYRSL)*0.5
433 CDENOM=1./(Z1BY2L+2.*Z2BY4L)
434 ROUGH=10**(log10(10.)-4.37)
435 ZGS=10. 6067.
436 HC1=HC1I+SNOW*SHI 6069.
437 BETA=1. 6070.
438 ELHX=LHS 6071.
439 TRHT0=TRSURF(J,3)
440 SRHEAT=SRSURF(J,3)*COSZ1(I,J)*SRCOR
441 GO TO 3000 6072.
442 C**** 6073.
443 C
444 C**** BOUNDARY LAYER INTERACTION 6135.
445 C**** 6136.
446 3000 continue
447
448 SRHDT=SRHEAT*DTSURF
449 TKV=THV1*PSK 6137.
450 ZS1=ZS1CO*TKV*SP/PS 6138.
451 P1=SIG(1)*SP+PTOP 6139.
452 DTGRND=DTSURF/NGRNDZ 6143.
453 SHDT=0. 6144.
454 EVHDT=0. 6145.
455 TRHDT=0. 6146.
456 F1DT=0. 6147.
457 C**** LOOP OVER GROUND TIME STEPS 6148.
458 c DO 3600 NG=1,NGRNDZ 6149.
459 TG=TG1+TF 6150.
460 QG=QSAT(TG,PS,ELHX) 6151.
461 TGV=TG*(1.+QG*RVX) 6152.
462 UG=U1
463 VG=V1
464 UG=0.75*U1 ! 2372
465 VG=0.75*V1 ! 2372
466 W1=SQRT(U1*U1+V1*V1)
467 W1=SQRT(UG*UG+VG*VG) ! 2372
468 WS0=W1
469 WMG=WMG0+WMGMIN(J)
470 WS=SQRT((0.75*W1)**2+WMG)
471 WS=SQRT(W1**2+WMG) ! 2372
472 if(J.eq.JPR)then
473 print *,' '
474 print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
475 print *,'TG=',TG,' QG=',QG
476 print *,'RVX=',RVX,' TG1=',TG1
477 endif
478
479 #if ( defined CPL_OCEANCO2 || defined OCEAN_3D)
480 if(ITYPE.eq.1)then
481 NWMGEA(J)=NWMGEA(J)+1
482 WSAV(J)=WSAV(J)+WS
483 end if
484 #endif
485
486 ! WG=WS 2369
487 WG=WS
488 THS=TH1
489 QS=Q1
490 TSV=THS*PSK
491 Z0=ROUGH
492 ROUGH=log10(ZGS/ROUGH)
493 CDN=.0231/(ROUGH*ROUGH)
494 LR=ROUGH*2.-.5
495 IF(LR.GT.20) LR=20
496 IF(LR.LT.1) LR=1
497 RIGS=ZGS*GRAV*(TSV-TGV)/(TGV*WS*WS)
498 SINAP=0.
499 COSAP=1.
500 IF(RIGS.LE.0) THEN
501 C surface layer has unstable stratification
502 CIA=TWOPI*0.0625/(1.+WS*CIAX)
503 DM=SQRT((1.-AROUGH(LR)*RIGS)*(1.-BROUGH(LR)*RIGS)/
504 * (1.-CROUGH(LR)*RIGS))
505 DH=1.35*SQRT((1.-DROUGH(LR)*RIGS)/(1.-EROUGH(LR)*RIGS))
506 ELSE
507 C surface layer has stable stratification
508 CIA=TWOPI*(0.09375-0.03125/(1.+4*RIGS**2))/(1.+WS*CIAX)
509 DM=1./(1.+(11.238+89.9*RIGS)*RIGS)
510 DH=1.35/(1.+1.93*RIGS)
511 END IF
512 CDH=CDN*DM*DH
513 USR=COS(CIA)
514 VSR=SIN(CIA)*HEMI
515 US=(USR*UG-VSR*VG)
516 VS=(VSR*UG+USR*VG)
517 if(J.eq.JPRR)then
518 print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
519 print *,'WS=',WS,' ZGS=',ZGS
520 print *,'DM=',DM,' DH=',DH
521 print *,'RIGS=',RIGS,' TGV=',TGV
522 endif
523 RCDHWS=CDH*WS*100.*PS/(RGAS*TSV)
524 if(J.eq.JPR)then
525 c print *,' '
526 print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
527 print *,'CDH=',CDH,' RGAS=',RGAS
528 print *,'PS=',PS,' TSV=',TSV
529 print *,'WS=',WS,' RCDHWS=',RCDHWS
530 endif
531 TS=TSV/(1.+QS*RVX) 6467.
532 QSATS=QSAT(TS,PS,ELHX) 6468.
533 c dLQS/dTs
534 DLQSDTS=DLQSDT(TS,ELHX)
535 c dLQS/dTs
536 IF(QS.LE.QSATS) GO TO 3500 6469.
537 DQSSDT=QSATS*ELHX/(RVAP*TS*TS) 6470.
538 X=(QS-QSATS)/(DQSSDT+(SHA/ELHX)) 6471.
539 TS=TS+X 6472.
540 QS=QS+X*(SHA/ELHX) 6473.
541 C**** CALCULATE RHOS*CDM*WS AND RHOS*CDH*WS 6474.
542 3500 CDM=CDN*DM 6475.
543 RCDMWS=CDM*WS*100.*PS/(RGAS*TS) 6476.
544 C**** CALCULATE FLUXES OF SENSIBLE HEAT, LATENT HEAT, THERMAL 6478.
545 C**** RADIATION, AND CONDUCTION HEAT (WATTS/M**2) 6479.
546 SHEAT=SHA*RCDHWS*(TS-TG) 6480.
547 BETAUP=BETA 6481.
548 IF(QS.GT.QG) BETAUP=1. 6482.
549 EVHEAT=(LHE+TG1*SHV)*BETAUP*RCDHWS*(QS-QG) 6483.
550 TRHEAT=TRHT0-STBO*(TG*TG)*(TG*TG)
551 if(J.eq.JPRR)then
552 c print *,' '
553 ! print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
554 ! print *,'TRHT0=',TRHT0,' STBO=',STBO
555 ! print *,'TG=',TG,' TS=',TS
556 ! print *,'TRHEAT=',TRHEAT
557 print *,'EVHEAT=',EVHEAT
558 ! print *,'SHA=',SHA,' RCDHWS=',RCDHWS
559 print *,'SHEAT=',SHEAT
560 endif
561 TG1OLD=TG1
562 SHEATOLD=SHEAT
563 #if ( defined OCEAN_3D )
564 IF(ITYPE.EQ.1 .or. ITYPE.EQ.2) GO TO 3620
565 #else
566 IF(ITYPE.EQ.1) GO TO 3620 6485.
567 #endif
568 C**** CALCULATE FLUXES USING IMPLICIT TIME STEP FOR NON-OCEAN POINTS 6486.
569 F0=SRHEAT+TRHEAT+SHEAT+EVHEAT 6487.
570 c F1=(TG1-CDTERM-F0*Z1BY6L)*CDENOM 6488.
571 F1=(TG1-CDTERM)*CDENOM
572 DSHDTG=-RCDHWS*SHA
573 DQGDTG=QG*ELHX/(RVAP*TG*TG) 6490.
574 DEVDTG=-RCDHWS*LHE*BETAUP*DQGDTG
575 DTRDTG=-4.*STBO*TG*TG*TG 6492.
576 DF0DTG=DSHDTG+DEVDTG+DTRDTG 6493.
577 c DFDTG=DF0DTG-(1.-DF0DTG*Z1BY6L)*CDENOM 6493.5
578 DFDTG=DF0DTG-CDENOM
579 c DF1DTG=(1.-DF0DTG*Z1BY6L)*CDENOM
580 DF1DTG=CDENOM
581 DTG=(F0-F1)*DTGRND/(HC1-DTGRND*DFDTG) 6494.
582 SHDT=SHDT+DTGRND*(SHEAT+DTG*DSHDTG) 6495.
583 EVHDT=EVHDT+DTGRND*(EVHEAT+DTG*DEVDTG) 6496.
584 TRHDT=TRHDT+DTGRND*(TRHEAT+DTG*DTRDTG) 6497.
585 TG1=TG1+DTG
586 c F1DT=F1DT+DTGRND*(TG1-CDTERM-(F0+DTG*DF0DTG)*Z1BY6L)*CDENOM 6498.
587 F1DT=F1DT+DTGRND*(TG1-CDTERM)*CDENOM
588 DU1(I,J)=DU1(I,J)+PTYPE*DTGRND*RCDMWS*US*COEFS/SP 6499.
589 DV1(I,J)=DV1(I,J)+PTYPE*DTGRND*RCDMWS*VS*COEFS/SP 6500.
590 c TG1=TG1+DTG 6501.
591 3600 CONTINUE 6502.
592 GO TO 3700 6503.
593 C**** CALCULATE FLUXES USING EXPLICIT TIME STEP FOR OCEAN POINTS 6504.
594 3620 SHDT=DTSURF*SHEAT 6505.
595 EVHDT=DTSURF*EVHEAT 6506.
596 TRHDT=DTSURF*TRHEAT 6507.
597 DU1(I,J)=DU1(I,J)+PTYPE*DTSURF*RCDMWS*US*COEFS/SP 6508.
598 DV1(I,J)=DV1(I,J)+PTYPE*DTSURF*RCDMWS*VS*COEFS/SP 6509.
599 3700 CONTINUE
600 EPS=1.D-8
601 c print *,'FROM SURFACE NS=',NS
602 c print *,'J=',J,' ITYPE=',ITYPE
603 c print *,RCDMWS,WS
604 WWS=max(W1,1.D-4)
605 ZTEM=ZGS
606 ZTEM=2.0
607 CALL TZM(T2M,TH2M,ZTEM,Z0,ZGS,SP,TG,TS,RIGS,WS,
608 & -SHEATOLD,RCDMWS*WS,LR,EPS)
609 c print *,'FROM SURFACE'
610 c print *,'J=',J,' ITYPE=',ITYPE
611 c print *,'POCEAN=',POCEAN,' PTYPE=',PTYPE
612 c print *,'TS=',TS,' TG=',TG
613 c print *,' T2M=',T2M,' TH2M=',TH2M
614 F0DT=CORSR*SRHDT+TRHDT+SHDT+EVHDT 6510.
615 if(J.eq.JPR)then
616 print *,'TAU=',TAU,' NS=',NS,' ITYPE=',ITYPE
617 print *,'DTSURF=',DTSURF,' CORSR=',CORSR
618 print *,'SRHDT=',SRHDT,' TRHDT=',TRHDT
619 print *,'SHDT=',SHDT,' EVHDT=',EVHDT
620 print *,'F0DT=',F0DT
621 print *,'US=',US,' VS=',VS
622 print *,'COEFS=',COEFS,' SP=',SP
623 endif
624 c print *,'From surface ',TAU,CORSR,SRHDT,TRHDT,SHDT,EVHDT
625 C**** CALCULATE EVAPORATION 6511.
626 CCC DQ1=EVHDT/((LHE+TG1*SHV)*RMBYA) 6512.
627 DQ1=EVHDT/(ELHX*RMBYA)
628 IF(DQ1*PTYPE.LE.Q1) GO TO 3720 6513.
629 DQ1=Q1/PTYPE 6514.
630 CCC EVHDT=DQ1*(LHE+TG1*SHV)*RMBYA 6515.
631 EVHDT=DQ1*ELHX*RMBYA
632 3720 EVAP=-DQ1*RMBYA 6516.
633 C**** ACCUMULATE SURFACE FLUXES AND PROGNOSTIC AND DIAGNOSTIC QUANTITIES6517.
634 E0(I,J,ITYPE)=E0(I,J,ITYPE)+F0DT 6518.
635 E1(I,J,ITYPE)=E1(I,J,ITYPE)+F1DT 6519.
636 EVAPOR(I,J,ITYPE)=EVAPOR(I,J,ITYPE)+EVAP 6520.
637 if(PRNT)then
638 c write(78,*) ,' '
639 c write(78,*) ,'TAU=',TAU
640 write(78,*) ,'J=',j,' ITYPE=',ITYPE,' PTYPE=',PTYPE
641 write(78,*) ,'TS=',TS,' TG=',TG,' QS=',QS
642 write(78,*) ,'TG1=',TG1,' TG1OLD=',TG1OLD
643 write(78,*) ,'TG2=',TG2
644 write(78,*) ,'SHEAT=',SHEAT,' EVHEAT=',EVHEAT
645 write(78,*) ,'TRHEAT=',TRHEAT,' SRHEAT=',SRHEAT
646 write(78,*) ,'EVAP mm/day=',24.*3600.*EVAP/DTSURF
647 write(78,*) ,'EVAP=',EVAP,
648 & ' F0DT=',F0DT/DTSURF,' F1DT=',F1DT/DTSURF
649 endif
650 #if ( defined OCEAN_3D || defined ML_2D )
651 C For ocean model
652 #if ( defined ML_2D )
653 if(ITYPE.eq.1)then
654 #endif
655 C DNetHeat by DTG
656 DSHDTG=-RCDHWS*SHA
657 DQGDTG=QG*ELHX/(RVAP*TG*TG)
658 DEVDTG=-RCDHWS*LHE*BETAUP*DQGDTG
659 DTRDTG=-4.*STBO*TG*TG*TG
660 DF0DTG=DSHDTG+DEVDTG+DTRDTG
661 if(EVHEAT.lt.0.0)then
662 DEVDTGEQ=EVHEAT*DLQSDTS
663 else
664 DEVDTGEQ=0.0
665 endif
666 C DNetHeat by DTG
667 #if ( defined OCEAN_3D )
668 if(ITYPE.eq.1)then
669 #endif
670 dhfodtg(j)=dhfodtg(j)+DF0DTG
671 devodtg(j)=devodtg(j)-DEVDTG/LHE
672 dhfodtgeq(j)=dhfodtgeq(j)+DEVDTGEQ
673 devodtgeq(j)=devodtgeq(j)-DEVDTGEQ/LHE
674 evao(j)=evao(j)+EVAP
675 hfluxo(j)=hfluxo(j)+F0DT
676 naveo(j)=naveo(j)+1
677 endif
678 if(ITYPE.eq.2)then
679 evai(j)=evai(j)+EVAP
680 hfluxi(j)=hfluxi(j)+F0DT
681 dhfidtg(j)=dhfidtg(j)+DF0DTG
682 devidtg(j)=devidtg(j)-DEVDTG/LHE
683 dhfidtgeq(j)=dhfidtgeq(j)+DEVDTGEQ
684 devidtgeq(j)=devidtgeq(j)-DEVDTGEQ/LHE
685 c tairi(j)=tairi(j)+TS
686 navei(j)=navei(j)+1
687 endif
688 tauu(j)=tauu(j)+RCDMWS*US*PTYPE
689 tauv(j)=tauv(j)+RCDMWS*VS*PTYPE
690 C For ocean model
691 #endif
692 TGRND(I,J,ITYPE)=TG1 6521.
693 TSSFC(I,J,ITYPE)=TS 6521.5
694 c TH1=TH1-SHDT*PTYPE/(SHA*RMBYA*P1K) 6522.
695 c Q1=Q1-DQ1*PTYPE 6523.
696
697 DTH1=DTH1-SHDT*PTYPE/(SHA*RMBYA*P1K)
698 DQQ1=DQQ1-DQ1*PTYPE
699
700 USS=USS+US*PTYPE 6524.
701 VSS=VSS+VS*PTYPE 6525.
702 WSS=WSS+WS*PTYPE 6526.
703 TSS=TSS+TS*PTYPE 6527.
704 T2MS=T2MS+T2M*PTYPE
705 QSS=QSS+QS*PTYPE 6528.
706 ! TAUS=TAUS+CDM*WS*W1*PTYPE 6529.
707 TAUS=TAUS+CDM*WS*WS*PTYPE ! 2373
708 SINAPS=SINAPS+SINAP*PTYPE 6530.
709 COSAPS=COSAPS+COSAP*PTYPE 6531.
710 TG1S=TG1S+TG1*PTYPE 6532.
711 QGS=QGS+QG*PTYPE 6533.
712 BETAS=BETAS+BETA*PTYPE 6534.
713 TRHDTS=TRHDTS+TRHDT*PTYPE 6535.
714 SHDTS=SHDTS+SHDT*PTYPE 6536.
715 EVHDTS=EVHDTS+EVHDT*PTYPE 6537.
716 UGS=UGS+UG*PTYPE 6538.
717 VGS=VGS+VG*PTYPE 6539.
718 WGS=WGS+WG*PTYPE 6540.
719 USRS=USRS+USR*PTYPE 6541.
720 VSRS=VSRS+VSR*PTYPE 6542.
721 c RIS1S=RIS1S+RIS1*PTYPE 6543.
722 RIGSS=RIGSS+RIGS*PTYPE 6544.
723 CDMS=CDMS+CDM*PTYPE 6545.
724 CDHS=CDHS+CDH*PTYPE 6546.
725 c DGSS=DGSS+DGS*PTYPE 6547.
726 c EDS1S=EDS1S+EDS1*PTYPE 6548.
727 c PPBLS=PPBLS+PPBL*PTYPE 6549.
728 EVAPS=EVAPS+EVAP*PTYPE 6550.
729 GO TO (4000,4100,5000,5000),ITYPE 6551.
730 C**** 6552.
731 C**** OCEAN 6553.
732 C**** 6554.
733 4000 ASHDT=ASHDT+SHDT*POCEAN 6555.
734 AEVHDT=AEVHDT+EVHDT*POCEAN 6556.
735 ATRHDT=ATRHDT+TRHDT*POCEAN 6557.
736 ATS=ATS+(TS-TF)*POCEAN 6558.
737 c AT2=AT2+(TH2M-TF)*POCEAN
738 AT2=AT2+(T2M-TF)*POCEAN
739 ARIGS=ARIGS+RIGS*POCEAN
740 BLDATA(I,J,5)=CDM*WS*W1
741 BLDATA(I,J,5)=CDM*WS*WS ! 2373
742 ATAUL=ATAUL+RCDMWS*US*POCEAN
743 ATAUF=ATAUF+RCDMWS*VS*POCEAN
744 AWS=AWS+WS*POCEAN
745 AWMG=AWMG+SQRT(WMG)*POCEAN
746 ACH=ACH+RCDHWS*POCEAN
747 GO TO 2200 6559.
748 C**** 6560.
749 C**** OCEAN ICE 6561.
750 C**** 6562.
751 4100 CSHDT=CSHDT+SHDT*POICE 6563.
752 CEVHDT=CEVHDT+EVHDT*POICE 6564.
753 CTRHDT=CTRHDT+TRHDT*POICE 6565.
754 CTS=CTS+(TS-TF)*POICE 6566.
755 c CT2=CT2+(TH2M-TF)*POICE 6566.
756 CT2=CT2+(T2M-TF)*POICE
757 CRIGS=CRIGS+RIGS*POICE
758 CTAUL=CTAUL+RCDMWS*US*POICE
759 CTAUF=CTAUF+RCDMWS*VS*POICE
760 CWS=CWS+WS*POICE
761 CWMG=CWMG+SQRT(WMG)*POICE
762 CCH=CCH+RCDHWS*POICE
763 GO TO 5000 6567.
764 C**** 6568.
765 C**** NON-OCEAN POINTS WHICH ARE NOT MELTING OR FREEZING WATER USE 6583.
766 C**** IMPLICIT TIME STEPS 6584.
767 C**** 6585.
768 C**** UPDATE SURFACE AND FIRST LAYER QUANTITIES 6586.
769 C**** 6587.
770 5000 CONTINUE
771 c print *,j,TH1,Q1
772 c print *,j,DU1(1,j),DV1(1,j)
773 T(I,J,1)=TH1 6588.
774 & +DTH1
775 Q(I,J,1)=Q1 6589.
776 & +DQQ1
777 BLDATA(I,J,1)=WSS 6590.
778 BLDATA(I,J,2)=TSS 6591.
779 BLDATA(I,J,3)=QSS 6592.
780 BLDATA(I,J,6)=USS 6593.
781 BLDATA(I,J,7)=VSS 6594.
782 BLDATA(I,J,8)=TAUS 6595.
783 T2ML(J)=T2MS
784 c print *,j,T(I,J,1),Q(I,J,1)
785 c print *,(TGRND(I,J,k),k=1,4)
786 c print *,(EVAPOR(I,J,k),k=1,4)
787 c print *,(E0(I,J,k),k=1,4)
788 c print *,(E1(I,J,k),k=1,4)
789 c print *,j,DU1(1,j),DV1(1,j)
790 C**** 6596.
791 C**** ACCUMULATE DIAGNOSTICS 6597.
792 C**** 6598.
793 C**** QUANTITIES ACCUMULATED FOR REGIONS IN DIAG1 6599.
794 IF(JR.EQ.JM) GO TO 5700 6600.
795 DJ(JR,9)=DJ(JR,9)+TRHDTS*DXYPJ 6601.
796 DJ(JR,13)=DJ(JR,13)+SHDTS*DXYPJ 6602.
797 DJ(JR,14)=DJ(JR,14)+EVHDTS*DXYPJ 6603.
798 DJ(JR,19)=DJ(JR,19)+EVAPS*DXYPJ 6604.
799 IF(MODDSF.NE.0) GO TO 5700 6605.
800 DJ(JR,23)=DJ(JR,23)+(TSS-TF)*DXYPJ 6606.
801 5700 CONTINUE
802 6000 IM1=I 6662.
803 C**** QUANTITIES ACCUMULATED FOR SURFACE TYPE TABLES IN DIAG1 6663.
804 AJ(J,9)=AJ(J,9)+ATRHDT 6664.
805 BJ(J,9)=BJ(J,9)+BLJ(J,9)
806 CJ(J,9)=CJ(J,9)+CTRHDT 6666.
807 AJ(J,13)=AJ(J,13)+ASHDT 6667.
808 BJ(J,13)=BJ(J,13)+BLJ(J,13)
809 CJ(J,13)=CJ(J,13)+CSHDT 6669.
810 AJ(J,14)=AJ(J,14)+AEVHDT 6670.
811 BJ(J,14)=BJ(J,14)+BLJ(J,14)
812 if(J.eq.-23)then
813 print *,'TAU=',TAU,' BJ(J,14)=',BJ(J,14)
814 endif
815 CJ(J,14)=CJ(J,14)+CEVHDT 6672.
816 AJ(J,32)=AJ(J,32)+ATAUL
817 BJ(J,32)=BJ(J,32)+BLJ(J,32)
818 CJ(J,32)=CJ(J,32)+CTAUL
819 AJ(J,33)=AJ(J,33)+ATAUF
820 BJ(J,33)=BJ(J,33)+BLJ(J,33)
821 CJ(J,33)=CJ(J,33)+CTAUF
822 AJ(J,37)=AJ(J,37)+AWS
823 BJ(J,37)=BJ(J,37)+BLJ(J,37)
824 CJ(J,37)=CJ(J,37)+CWS
825 AJ(J,28)=AJ(J,28)+AWMG
826 BJ(J,28)=BJ(J,28)+BLJ(J,28)
827 CJ(J,28)=CJ(J,28)+CWMG
828 AJ(J,38)=AJ(J,38)+ATAUL
829 BJ(J,38)=BJ(J,38)+BLJ(J,38)
830 CJ(J,38)=CJ(J,38)+CTAUL
831 IF(MODDSF.NE.0) GO TO 7000 6673.
832 AJ(J,23)=AJ(J,23)+ATS 6674.
833 BJ(J,23)=BJ(J,23)+BLJ(J,23)
834 CJ(J,23)=CJ(J,23)+CTS 6676.
835 AJ(J,26)=AJ(J,26)+AT2 6674.
836 BJ(J,26)=BJ(J,26)+BLJ(J,26)
837 CJ(J,26)=CJ(J,26)+CT2 6676.
838 AJ(J,27)=AJ(J,27)+ARIGS 6674.
839 CJ(J,27)=CJ(J,27)+CRIGS 6676.
840
841 c print *,j,'CTS=',CTS,' CT2=',CT2
842 c print *,'BLDATA'
843 c print *,(BLDATA(1,j,k),k=1,3)
844 c print *,(BLDATA(1,j,k),k=6,8)
845 7000 CONTINUE 6677.
846 C**** 6678.
847 C**** ADD IN SURFACE FRICTION TO FIRST LAYER WIND 6679.
848 C**** 6680.
849 DO 7600 I=1,IM 6681.
850 U(I,2,1)=U(I,2,1)-2.*(DU1(1,1)*COSI(I)-DV1(1,1)*SINI(I))*RAPVN(1) 6682.
851 V(I,2,1)=V(I,2,1)-2.*(DV1(1,1)*COSI(I)+DU1(1,1)*SINI(I))*RAPVN(1) 6683.
852 U(I,JM,1)=U(I,JM,1) 6684.
853 * -2.*(DU1(1,JM)*COSI(I)+DV1(1,JM)*SINI(I))*RAPVS(JM) 6685.
854 7600 V(I,JM,1)=V(I,JM,1) 6686.
855 * -2.*(DV1(1,JM)*COSI(I)-DU1(1,JM)*SINI(I))*RAPVS(JM) 6687.
856 DO 7700 J=2,JMM1 6688.
857 I=IM 6689.
858 DO 7700 IP1=1,IM 6690.
859 if(J.eq.JPR.or.J.eq.-12)then
860 print *,' J=',J,' before'
861 print *,'U(I,J,1)=',U(I,J,1),' V(I,J,1)=',V(I,J,1)
862 print *,'U(I,J+1,1)=',U(I,J+1,1),' V(I,J+1,1)=',V(I,J+1,1)
863 print *,'DU1(I,J)=',DU1(I,J),' DU1(IP1,J)=',DU1(IP1,J)
864 endif
865 U(I,J,1)=U(I,J,1)-(DU1(I,J)+DU1(IP1,J))*RAPVS(J) 6691.
866 V(I,J,1)=V(I,J,1)-(DV1(I,J)+DV1(IP1,J))*RAPVS(J) 6692.
867 U(I,J+1,1)=U(I,J+1,1)-(DU1(I,J)+DU1(IP1,J))*RAPVN(J) 6693.
868 V(I,J+1,1)=V(I,J+1,1)-(DV1(I,J)+DV1(IP1,J))*RAPVN(J) 6694.
869 if(J.eq.JPR.or.J.eq.-12)then
870 print *,' J=',J,' after'
871 print *,'U(I,J,1)=',U(I,J,1),' V(I,J,1)=',V(I,J,1)
872 print *,'U(I,J+1,1)=',U(I,J+1,1),' V(I,J+1,1)=',V(I,J+1,1)
873 print *,'DU1(I,J)=',DU1(I,J),' DU1(IP1,J)=',DU1(IP1,J)
874 endif
875 7700 I=IP1 6695.
876 c print *,'U V'
877 c do j=1,jm
878 c print *,j,U(I,J,1),v(I,J,1)
879 c enddo
880 C**** 6696.
881 C**** DRY CONVECTION ORIGINATING FROM THE FIRST LAYER 6697.
882 C**** 6698.
883 C**** LOAD U,V INTO UT,VT. UT,VT WILL BE FIXED DURING DRY CONVECTION 6699.
884 C**** WHILE U,V WILL BE UPDATED. 6700.
885 DO 8050 L=1,LM 6701.
886 DO 8050 J=2,JM 6702.
887 DO 8050 I=1,IM 6703.
888 UT(I,J,L)=U(I,J,L) 6704.
889 8050 VT(I,J,L)=V(I,J,L) 6705.
890 C**** OUTSIDE LOOPS OVER J AND I 6706.
891 DO 8500 J=1,JM 6707.
892 POLE=.FALSE. 6708.
893 IF(J.EQ.1.OR.J.EQ.JM) POLE=.TRUE. 6709.
894 IMAX=IM 6710.
895 IF(POLE) IMAX=IM 6711.
896 DO 8120 K=1,2 6712.
897 RA(K)=RAPVS(J) 6713.
898 8120 RA(K+2)=RAPVN(J) 6714.
899 IM1=IM 6715.
900 DO 8500 I=1,IMAX 6716.
901 BLDATA(I,J,4)=1. 6717.
902 IF(T(I,J,1)*(1.+Q(I,J,1)*RVX).LE. 6718.
903 * T(I,J,2)*(1.+Q(I,J,2)*RVX)) GO TO 8500 6719.
904 C**** MIX HEAT AND MOISTURE THROUGHOUT THE BOUNDARY LAYER 6720.
905 PKMS=PK(I,J,1)*DSIG(1)+PK(I,J,2)*DSIG(2) 6721.
906 THPKMS=T(I,J,1)*(PK(I,J,1)*DSIG(1))+T(I,J,2)*(PK(I,J,2)*DSIG(2)) 6722.
907 QMS=Q(I,J,1)*DSIG(1)+Q(I,J,2)*DSIG(2) 6723.
908 TVMS=T(I,J,1)*(1.+Q(I,J,1)*RVX)*(PK(I,J,1)*DSIG(1)) 6724.
909 * +T(I,J,2)*(1.+Q(I,J,2)*RVX)*(PK(I,J,2)*DSIG(2)) 6725.
910 THETA=TVMS/PKMS 6726.
911
912 #if ( defined CPL_CHEM )
913 !
914 ! --- 03/23/95
915 !
916 cfc11ms = cfc11(i,j,1)*dsig(1) + cfc11(i,j,2)*dsig(2)
917
918 cfc12ms = cfc12(i,j,1)*dsig(1) + cfc12(i,j,2)*dsig(2)
919
920 xn2oms = xn2o (i,j,1)*dsig(1) + xn2o (i,j,2)*dsig(2)
921
922 o3ms = o3 (i,j,1)*dsig(1) + o3 (i,j,2)*dsig(2)
923
924 coms = co (i,j,1)*dsig(1) + co (i,j,2)*dsig(2)
925
926 zco2ms = zco2 (i,j,1)*dsig(1) + zco2 (i,j,2)*dsig(2)
927
928 xnoms = xno (i,j,1)*dsig(1) + xno (i,j,2)*dsig(2)
929
930 xno2ms = xno2 (i,j,1)*dsig(1) + xno2 (i,j,2)*dsig(2)
931
932 xn2o5ms = xn2o5(i,j,1)*dsig(1) + xn2o5(i,j,2)*dsig(2)
933
934 hno3ms = hno3 (i,j,1)*dsig(1) + hno3 (i,j,2)*dsig(2)
935
936 ch4ms = ch4 (i,j,1)*dsig(1) + ch4 (i,j,2)*dsig(2)
937
938 ch2oms = ch2o (i,j,1)*dsig(1) + ch2o (i,j,2)*dsig(2)
939
940 so2ms = so2 (i,j,1)*dsig(1) + so2 (i,j,2)*dsig(2)
941
942 h2so4ms = h2so4(i,j,1)*dsig(1) + h2so4(i,j,2)*dsig(2)
943
944 ! === if hfc, pfc, and sf6 are included:
945 #ifdef INC_3GASES
946 ! === 032698
947 hfc134ams = hfc134a(i,j,1)*dsig(1)
948 & + hfc134a(i,j,2)*dsig(2)
949
950 pfcms = pfc(i,j,1)*dsig(1)
951 & + pfc(i,j,2)*dsig(2)
952
953 sf6ms = sf6(i,j,1)*dsig(1)
954 & + sf6(i,j,2)*dsig(2)
955 ! ===
956 #endif
957
958 bcms = bcarbon (i,j,1)*dsig(1) + bcarbon (i,j,2)*dsig(2)
959 ocms = ocarbon (i,j,1)*dsig(1) + ocarbon (i,j,2)*dsig(2)
960
961 c 062295
962 c h2o2ms = h2o2 (i,j,1)*dsig(1) + h2o2 (i,j,2)*dsig(2)
963
964 !
965 #endif
966
967 DO 8140 L=3,LM 6727.
968 IF(THETA.LT.T(I,J,L)*(1.+Q(I,J,L)*RVX)) GO TO 8160 6728.
969 PKMS=PKMS+(PK(I,J,L)*DSIG(L)) 6729.
970 THPKMS=THPKMS+T(I,J,L)*(PK(I,J,L)*DSIG(L)) 6730.
971 QMS=QMS+Q(I,J,L)*DSIG(L) 6731.
972 TVMS=TVMS+T(I,J,L)*(1.+Q(I,J,L)*RVX)*(PK(I,J,L)*DSIG(L)) 6732.
973
974 #if ( defined CPL_CHEM )
975 !
976 ! --- 03/23/95
977 !
978 cfc11ms = cfc11ms + cfc11(i,j,l)*dsig(l)
979
980 cfc12ms = cfc12ms + cfc12(i,j,l)*dsig(l)
981
982 xn2oms = xn2oms + xn2o (i,j,l)*dsig(l)
983
984 o3ms = o3ms + o3 (i,j,l)*dsig(l)
985
986 coms = coms + co (i,j,l)*dsig(l)
987
988 zco2ms = zco2ms + zco2 (i,j,l)*dsig(l)
989
990 xnoms = xnoms + xno (i,j,l)*dsig(l)
991
992 xno2ms = xno2ms + xno2 (i,j,l)*dsig(l)
993
994 xn2o5ms = xn2o5ms + xn2o5(i,j,l)*dsig(l)
995
996 hno3ms = hno3ms + hno3 (i,j,l)*dsig(l)
997
998 ch4ms = ch4ms + ch4 (i,j,l)*dsig(l)
999
1000 ch2oms = ch2oms + ch2o (i,j,l)*dsig(l)
1001
1002 so2ms = so2ms + so2 (i,j,l)*dsig(l)
1003
1004 h2so4ms = h2so4ms + h2so4(i,j,l)*dsig(l)
1005
1006 ! === if hfc, pfc, and sf6 are included:
1007 #ifdef INC_3GASES
1008 ! === 032698
1009 hfc134ams = hfc134ams
1010 & + hfc134a(i,j,l)*dsig(l)
1011
1012 pfcms = pfcms
1013 & + pfc(i,j,l)*dsig(l)
1014
1015 sf6ms = sf6ms
1016 & + sf6(i,j,l)*dsig(l)
1017 ! ===
1018 #endif
1019
1020 bcms = bcms + bcarbon (i,j,l)*dsig(l)
1021 ocms = ocms + ocarbon (i,j,l)*dsig(l)
1022
1023 c 062295
1024 c h2o2ms = h2o2ms + h2o2 (i,j,l)*dsig(l)
1025 !
1026 #endif
1027
1028 8140 THETA=TVMS/PKMS 6733.
1029 L=LM+1 6734.
1030 8160 LMAX=L-1 6735.
1031 RDSIGS=1./(SIGE(1)-SIGE(LMAX+1)) 6736.
1032 THM=THPKMS/PKMS 6737.
1033 QMS=QMS*RDSIGS 6738.
1034
1035 #if ( defined CPL_CHEM )
1036 !
1037 ! --- 03/23/95
1038 !
1039 cfc11ms = cfc11ms*rdsigs
1040
1041 cfc12ms = cfc12ms*rdsigs
1042
1043 xn2oms = xn2oms *rdsigs
1044
1045 o3ms = o3ms *rdsigs
1046
1047 coms = coms *rdsigs
1048
1049 zco2ms = zco2ms *rdsigs
1050
1051 xnoms = xnoms *rdsigs
1052
1053 xno2ms = xno2ms *rdsigs
1054
1055 xn2o5ms = xn2o5ms*rdsigs
1056
1057 hno3ms = hno3ms *rdsigs
1058
1059 ch4ms = ch4ms *rdsigs
1060
1061 ch2oms = ch2oms *rdsigs
1062
1063 so2ms = so2ms *rdsigs
1064
1065 h2so4ms = h2so4ms*rdsigs
1066
1067 ! === if hfc, pfc, and sf6 are included:
1068 #ifdef INC_3GASES
1069 ! === 032698
1070 hfc134ams = hfc134ams*rdsigs
1071
1072 pfcms = pfcms*rdsigs
1073
1074 sf6ms = sf6ms*rdsigs
1075 ! ===
1076 #endif
1077
1078 bcms = bcms*rdsigs
1079 ocms = ocms*rdsigs
1080
1081 c 062295
1082 c h2o2ms = h2o2ms*rdsigs
1083 c
1084 !
1085 #endif
1086
1087 BLDATA(I,J,4)=LMAX 6739.
1088 DO 8180 L=1,LMAX 6740.
1089 AJL(J,L,12)=AJL(J,L,12)+(THM-T(I,J,L))*PK(I,J,L)*P(I,J) 6741.
1090 T(I,J,L)=THM 6742.
1091
1092 #if ( defined CPL_CHEM )
1093 !
1094 ! --- 03/23/95
1095 !
1096 cfc11(i,j,l) = cfc11ms
1097
1098 cfc12(i,j,l) = cfc12ms
1099
1100 xn2o(i,j,l) = xn2oms
1101
1102 o3(i,j,l) = o3ms
1103
1104 co(i,j,l) = coms
1105
1106 zco2(i,j,l) = zco2ms
1107
1108 xno(i,j,l) = xnoms
1109
1110 xno2(i,j,l) = xno2ms
1111
1112 xn2o5(i,j,l) = xn2o5ms
1113
1114 hno3(i,j,l) = hno3ms
1115
1116 ch4(i,j,l) = ch4ms
1117
1118 ch2o(i,j,l) = ch2oms
1119
1120 so2(i,j,l) = so2ms
1121
1122 h2so4(i,j,l) = h2so4ms
1123
1124 ! === if hfc, pfc, and sf6 are included:
1125 #ifdef INC_3GASES
1126 ! === 032698
1127 hfc134a(i,j,l) = hfc134ams
1128
1129 pfc(i,j,l) = pfcms
1130
1131 sf6(i,j,l) = sf6ms
1132 ! ===
1133 #endif
1134
1135 bcarbon(i,j,l) = bcms
1136 ocarbon(i,j,l) = ocms
1137
1138 c 062295
1139 c h2o2(i,j,l) = h2o2ms
1140 c
1141 !
1142 #endif
1143
1144 8180 Q(I,J,L)=QMS 6743.
1145 IF(POLE) GO TO 8300 6744.
1146 C**** MIX MOMENTUM THROUGHOUT THE BOUNDARY LAYER AT NON-POLAR GRID BOXES6745.
1147 ID(1)=I+(J-1)*IM 6748.
1148 ID(2)=ID(1)+IM*JM*LM 6749.
1149 ID(3)=I+J*IM 6752.
1150 ID(4)=ID(3)+IM*JM*LM 6753.
1151 if(J.eq.JPR)then
1152 print *,'ID for J=',j
1153 print *,(ID(k),k=1,4)
1154 print *,'RA for J=',j
1155 print *,(RA(k),k=1,4)
1156 endif
1157 DO 8240 K=1,4 6754.
1158 UMS(K)=0. 6755.
1159 DO 8220 L=1,LMAX 6756.
1160 8220 UMS(K)=UMS(K)+UT(ID(K),1,L)*DSIG(L) 6757.
1161 8240 UMS(K)=UMS(K)*RDSIGS 6758.
1162 DO 8260 L=1,LMAX 6759.
1163 AJL(J,L,38)=AJL(J,L,38)+(UMS(1)-UT(I,J,L))*.5* 6760.
1164 * P(I,J)*RA(1) 6761.
1165 AJL(J+1,L,38)=AJL(J+1,L,38)+(UMS(3)- 6762.
1166 * UT(I,J+1,L))*P(I,J)*RA(3)*.5 6763.
1167 DO 8260 K=1,4 6764.
1168 if(J.eq.JPR)then
1169 print *,'L=',L,' K=',K
1170 print *,'ID(K)=',ID(K),' RA(K)=',RA(K)
1171 print *,'UMS(K)=',UMS(K),' UT(ID(K),1,L)=',UT(ID(K),1,L)
1172 endif
1173 8260 U(ID(K),1,L)=U(ID(K),1,L)+(UMS(K)-UT(ID(K),1,L))*RA(K) 6765.
1174 GO TO 8500 6766.
1175 C**** MIX MOMENTUM THROUGHOUT THE BOUNDARY LAYER AT POLAR GRID BOXES 6767.
1176 8300 JVPO=2 6768.
1177 IF(J.EQ.JM) JVPO=JM 6769.
1178 RAPO=2.*RAPVN(1) 6770.
1179 DO 8360 IPO=1,IM 6771.
1180 UMSPO=0. 6772.
1181 VMSPO=0. 6773.
1182 DO 8320 L=1,LMAX 6774.
1183 UMSPO=UMSPO+UT(IPO,JVPO,L)*DSIG(L) 6775.
1184 8320 VMSPO=VMSPO+VT(IPO,JVPO,L)*DSIG(L) 6776.
1185 UMSPO=UMSPO*RDSIGS 6777.
1186 VMSPO=VMSPO*RDSIGS 6778.
1187 DO 8340 L=1,LMAX 6779.
1188 U(IPO,JVPO,L)=U(IPO,JVPO,L)+(UMSPO-UT(IPO,JVPO,L))*RAPO 6780.
1189 V(IPO,JVPO,L)=V(IPO,JVPO,L)+(VMSPO-VT(IPO,JVPO,L))*RAPO 6781.
1190 8340 AJL(JVPO,L,38)=AJL(JVPO,L,38) 6782.
1191 * +(UMSPO-UT(IPO,JVPO,L))*P(1,J)*RAPO 6783.
1192 8360 CONTINUE 6784.
1193 8500 IM1=I 6793.
1194 do j=1,jm
1195 I=1
1196 if(J.eq.JPR.or.J.eq.-12)then
1197 print *,' J=',J,' after dry convection'
1198 print *,'U(I,J,1)=',U(I,J,1),' V(I,J,1)=',V(I,J,1)
1199 print *,'U(I,J+1,1)=',U(I,J+1,1),' V(I,J+1,1)=',V(I,J+1,1)
1200 endif
1201 enddo
1202 9000 CONTINUE 6794.
1203 c print *,' From surf_ocean T2ML'
1204 c print *,T2ML
1205 do 9001 J=1,JM
1206 c TSURFD(J)=TSURFD(J)+(BLDATA(1,J,2)-273.16)/24.
1207 TSURFD(J)=TSURFD(J)+(T2ML(J)-273.16)/24.
1208 T2ML(J)=0.0
1209 9001 continue
1210 RETURN 6795.
1211 990 FORMAT ('0PPBL',3I4,14F8.2) 6818.
1212 991 FORMAT ('0SURFACE ',4I4,5F10.4,3F11.7) 6819.
1213 992 FORMAT ('0',I2,10F10.4/23X,4F10.4,10X,2F10.4/ 6820.
1214 * 33X,3F10.4,10X,2F10.4) 6821.
1215 993 FORMAT ('0',I2,10F10.4/23X,7F10.4/33X,7F10.4) 6822.
1216 994 FORMAT ('0',I2,11F10.4) 6823.
1217 END 6824.

  ViewVC Help
Powered by ViewVC 1.1.22