/[MITgcm]/MITgcm_contrib/jscott/igsm/src/radiagso_clm.F
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Revision 1.1 - (hide annotations) (download)
Fri Aug 11 19:35:32 2006 UTC (18 years, 11 months ago) by jscott
Branch: MAIN
atm2d package

1 jscott 1.1
2     #include "ctrparam.h"
3    
4     ! ==========================================================
5     !
6     ! RADIAGSO.F: THIS SUBROUTINES ADDS THE RADIATION HEATING
7     ! TO THE TEMPERATURES
8     !
9     ! ----------------------------------------------------------
10     !
11     ! Revision History:
12     !
13     ! When Who What
14     ! ----- ---------- -------
15     ! 080100 Chien Wang repack based on CliChem3 & M24x11,
16     ! and add cpp.
17     !
18     ! ==========================================================
19    
20     SUBROUTINE RADIAGSO 5001.
21     C**** 5002.
22     C**** THIS SUBROUTINES ADDS THE RADIATION HEATING TO THE TEMPERATURES 5003.
23     C**** 5004.
24    
25     #include "BD2G04.COM"
26     #include "chem_para"
27     #include "chem_com"
28    
29     COMMON U,V,T,P,Q 5006.
30     COMMON/WORK1/CONV(IM0,JM0,LM0),PK(IM0,JM0,LM0),PREC(IM0,JM0),
31     & TPREC(IM0,JM0), 5007.
32     * COSZ1(IO0,JM0),COSZ2(IO0,JM0),COSZA(IO0,JM0), 5008.
33     * TRINCG(IO0,JM0),BTMPW(IO0,JM0),SNFS(IO0,JM0,4),TNFS(IO0,JM0,4), 5009.
34     * TRHRS(IO0,JM0,3),SRHRS(IO0,JM0,3),ALB(IO0,JM0,9) 5010.
35     COMMON/WORK2/CLDSS(IM0,JM0,LM0),CLDMC(IM0,JM0,LM0), 5011.
36     * TOTCLD(36) 5012.
37     DIMENSION TRNFP0(JM0),TRNFP1(JM0),ALBJ(JM0,9)
38     real ODATA2(JM0,2),GDATA2(JM0,14),BDATA2(JM0,2),FDATA2(JM0,2),
39     * RQT2(JM0,3)
40     common/SURRAD/TRSURF(JM0,4),SRSURF(JM0,4)
41     C COMMON/WORK4/ IS BEING USED BY THE RADIATION ROUTINES 5013.
42     C 5014.
43     C RADCOM: CONTROL/INPUT PARAMETERS 5015.
44     C 5016.
45     COMMON/RADCOM/VADATA(11,4,3),DGLAT(46),DGLON(72),TMINSR,FULGAS(18)5017.
46     A ,FRACSL,RATQSL,FOGTSL,PTLISO,TLGRAD,TKCICE,FGOLDU(18)5018.
47     B ,FLONO3,FRAYLE,FCLDTR,FCLDSR,FALGAE,FMARCL,FEMTRA(6) 5019.
48     C ,WETTRA,WETSRA,DMOICE,DMLICE,LICETK,NTRCE,FZASRA(6) 5020.
49     D ,ID5(5),ITR(4),IMG(2),ILG(2),LAPGAS,KWVCON,NORMS0,NV 5021.
50     E ,KEEPRH,KEEPAL,ISOSCT,IHGSCT,KFRACC,KGASSR,KAERSR 5022.
51     F ,MARCLD,LAYTOP,LMR,LMRP,JMLAT,IMLON,KFORCE,LASTVC 5023.
52     C 5024.
53     C BASIC RADCOM INPUT DATA 5025.
54     C 5026.
55     G ,PLE(40),HLB(40),TLB(40),TLT(40),TL(40),U0GAS(40,9) 5027.
56     H ,ULGAS(40,9),TRACER(40,4),RTAU(40),QL(40),RHL(40) 5028.
57     I ,POCEAN,PEARTH,POICE,PLICE,AGESN,SNOWE,SNOWOI,SNOWLI 5029.
58     J ,TGO,TGE,TGOI,TGLI,TS,WS,WEARTH,ZOICE,FSPARE(200) 5030.
59     K ,S0,COSZ,PVT(11),BXA(153),SRBXAL(15,2),FRC(5),LUXGAS 5031.
60     L ,JYEARR,JDAYR,JLAT,ILON,MEANAL,KALVIS,ISPARE(25),SGPS5032.
61     C 5033.
62     C BASIC RADCOM OUTPUT DATA 5034.
63     C 5035.
64     M ,TRDFLB(40),TRUFLB(40),TRNFLB(40),TRFCRL(40),TRSLCR 5036.
65     N ,SRDFLB(40),SRUFLB(40),SRNFLB(40),SRFHRL(40),SRSLHR 5037.
66     O ,SRIVIS,SROVIS,PLAVIS,SRINIR,SRONIR,PLANIR,SRXATM(4) 5038.
67     P ,SRDVIS,SRUVIS,ALBVIS,SRDNIR,SRUNIR,ALBNIR,FSRNFG(4) 5039.
68     Q ,SRTVIS,SRRVIS,SRAVIS,SRTNIR,SRRNIR,SRANIR,FTRUFG(4) 5040.
69     R ,TRDFGW,TRUFGW,TRUFTW,BTEMPW,TRDFSL,TRUFSL,DTRUFG(4) 5041.
70     S ,TRSLTS,TRSLTG,TRSLWV,TRSLBS,TTRUFG,LBOTCL,LTOPCL 5042.
71     DIMENSION COE(39) 5043.
72     #if ( defined OCEAN_3D )
73     #include "AGRID.COM"
74     #endif
75    
76     #if ( defined CLM )
77     #include "CLM.COM"
78     #endif
79     LOGICAL POLE,DC25,HPRNT,WRCLD,CLDFEED 5044.
80     common/conprn/HPRNT
81     common/COMCLD/READGHG,PCLOUD,WRCLD,NWRCLD,NWRCL,INYEAR,JNDAY
82     &,CFAEROSOL,ALFA,CFBC,cfvolaer
83     COMMON/ADDALB/BVSURFA,XVSURFA,BNSURFA,XNSURFA
84     dimension STAERMN(JM0,12,150),JDY(12)
85     DATA JDY/31,59,90,120,151,181,212,243,278,304,334,365/
86     common/cldfdb/coefcl(3),CLDFEED
87     common/aexpc/AEXP,ISTRT1
88     common/ SNOWALB/FRSNALB
89     common/ S0XR/S0RATE
90     dimension CLDSSF(JM0,LM0),CLDMCF(JM0,LM0)
91     &,BSO4LAND(JM0),BSO4OCEAN(JM0)
92     dimension DSWSRF(jm0),DLWSRF(jm0),DSWVIS(jm0),DSWNIR(jm0)
93     & ,ALBV(jm0),ALBN(jm0),ALBVC(jm0),ALBNC(jm0)
94     integer PCLOUD
95     common/TSUR/TSURFC(JM0,0:13),TSURFT(JM0),TSURFD(JM0),DTSURF(JM0)
96     *,cfcld(JM0,3)
97     CHARACTER*4 JMNTHF,JMLAST
98     DATA JMLAST /'LAST'/
99     DATA TF/273.16/,TCIR/258.16/,STBO/.567257E-7/,IFIRST/1/,JDLAST/-9/5045.
100     DATA IRFIRST /1/
101     C **** CLEAR SKY
102     dimension SRHRCL(JM0),TRHRCL(JM0),ALBCL(JM0),SNP1CL(JM0),
103     *SNP0CL(JM0),TRINCL(JM0),TRP0CL(JM0),TRP1CL(JM0)
104     common/clrsk/CLEAR(JM0),NCLR(JM0),AJCLR(JM0,12),BJCLR(JM0,12),
105     * CJCLR(JM0,12)
106     integer CLEAR
107     C AJCLR
108     C 1 SW INC AT P0 RD (AJ(1))
109     C 2 SW ABS BELOW P0 RD (AJ(2))
110     C 3 SW ABS BELOW P1 RD (AJ(3))
111     C 4 SW ABS AT Z0 RD (AJ(6))
112     C 5 SW INC AT Z0 RD (AJ(5))
113     C 6 LW INC AT Z0 RD (AJ(67))
114     C 7 NET LW AT Z0 SF (AJ(9))
115     C 8 NET LW AT P0 RD (AJ(7))
116     C 9 NET LW AT P1 RD (AJ(8))
117     C 10 NET RAD AT P0 DG (AJ(10))
118     C 11 NET RAD AT P1 DG (AJ(11))
119     C 12 NET RAD AT Z0 DG (AJ(12))
120     C **** CLEAR SKY
121     C**** 5046.
122     C**** FDATA 2 LAND COVERAGE (1) 5047.
123     C**** 3 RATIO OF LAND ICE COVERAGE TO LAND COVERAGE (1) 5048.
124     C**** 5049.
125     C**** ODATA 1 OCEAN TEMPERATURE (C) 5050.
126     C**** 2 RATIO OF OCEAN ICE COVERAGE TO WATER COVERAGE (1) 5051.
127     C**** 5052.
128     C**** GDATA 1 OCEAN ICE SNOW AMOUNT (KG/M**2) 5053.
129     C**** 2 EARTH SNOW AMOUNT (KG/M**2) 5054.
130     C**** 3 OCEAN ICE TEMPERATURE OF FIRST LAYER (C) 5055.
131     C**** 4 EARTH TEMPERATURE OF FIRST LAYER (C) 5056.
132     C**** 5 EARTH WATER OF FIRST LAYER (KG/M**2) 5057.
133     C**** 6 EARTH ICE OF FIRST LAYER (KG/M**2) 5058.
134     C**** 11 AGE OF SNOW (DAYS) 5059.
135     C**** 12 LAND ICE SNOW AMOUNT (KG/M**2) 5060.
136     C**** 13 LAND ICE TEMPERATURE OF FIRST LAYER (C) 5061.
137     C**** 5062.
138     C**** BLDATA 1 COMPOSITE SURFACE WIND MAGNITUDE (M/S) 5063.
139     C**** 2 COMPOSITE SURFACE AIR TEMPERATURE (K) 5064.
140     C**** 5 FREE 5065.
141     C**** 5066.
142     C**** VDATA 1-8 EARTH RATIOS FOR THE 8 VEGETATION TYPES (1) 5067.
143     C**** 9 WATER FIELD CAPACITY OF FIRST LAYER (KG/M**2) 5068.
144     C**** 5069.
145     IF(MODRD.EQ.0) IDACC(2)=IDACC(2)+1 5070.
146     IF (IFIRST.NE.1) GO TO 50 5071.
147     BETA=0.29
148     JDAYR=JNDAY
149     JYEARR=INYEAR
150     c
151     JDAYR=JDAY
152     JYEARR=JYEAR
153     c
154     nrbyyr=24*365/5
155     nrcldmax=20*nrbyyr
156     c print *,' CLOUDS for ',nrcldmax/nrbyyr,' years'
157     KTREND=-CO2
158     JDAY00=-1
159     print *,' RADIAGSO'
160     if(CLDFEED)then
161     print *,' for low and middle clouds',coefcl(1)
162     print *,' for top clouds',coefcl(2)
163     print *,' for MC clouds',coefcl(3)
164     endif
165     print *,' READGHG=',READGHG
166     print *,' CFAEROSOL=',CFAEROSOL
167     print *,' HC aerosol for. ALFA=',ALFA,' BETA=',BETA
168     print *,'Coefficient for volcanic aerosol=',cfvolaer
169     print *,' separate caclulations for land and ocean'
170     DC25=.TRUE.
171     c DC25=.FALSE.
172     if(DC25)then
173     print *,' with DC'
174     else
175     print *,' without DC'
176     print *,' subroutine COSZR'
177     end if
178     if(abs(PCLOUD-3.).gt.1.5.and..NOT.WRCLD)IFIRST=0 5072.
179     LMP1=LM+1 5072.1
180     DTCNDS=NCNDS*DT 5073.
181     C**** SET THE CONTROL PARAMETERS FOR THE RADIATION 5074.
182     JMLAT=JM 5074.1
183     DO J=1,JMLAT
184     DGLAT(J)=acos(COSP(J))*360./TWOPI
185     if(J.le.JMLAT/2)DGLAT(J)=-DGLAT(J)
186     END DO
187     c print *,' DGLAT'
188     c print '(13f7.3)',DGLAT
189     IMLON=IO 5074.2
190     LMR=LM+3 5075.
191     COEX=.01*GRAV*KAPA/RGAS 5076.
192     PSFMPT=PSF-PTOP 5077.
193     DO 30 L=1,LM 5078.
194     COE(L)=DTCNDS*COEX/DSIG(L) 5079.
195     30 PLE(L)=SIGE(L)*(PSF-PTOP)+PTOP 5080.
196     PLE(LMP1)=PTOP 5081.
197     PLE(LM+2)=.5*PTOP 5082.
198     PLE(LMR)=.2*PTOP 5083.
199     PLE(LMR+1)=1.E-5 5084.
200     DO 40 LR=LMP1,LMR 5085.
201     COE(LR)=DT*NRAD*COEX/(PLE(LR)-PLE(LR+1)) 5086.
202     QL(LR)=.3E-5 5087.
203     40 RTAU(LR)=0. 5088.
204     DPMICE=10. 5089.
205     C S0X=1. 5089.1
206     S0X0=S0X
207     KSTREND=S0RATE*100.
208     print *,'S0RATE=',S0RATE,' KSTREND=',KSTREND
209     IF (KSTREND.LT.0) then
210     print *,'Run with changes in solar constant'
211     print *,' JYEAR=',JYEAR
212     TNOW=JYEAR
213     call obssolar(S0X,TNOW)
214     S0X=S0X/1367.
215     S0AV=0.0
216     S0XAV=0.0
217     RSDISTAV=0.0
218     ELSE
219     S0X=1365./1367.
220     print *,'Run with fixed solar constant=',S0X*1367.
221     ENDIF
222     RVOL=0.012
223     #if ( defined VOL_AER )
224     call read_staer (NYVADAT,STAERMN)
225     #else
226     FVOL=0.0045
227     print *,'STAEROSOL for 1860 FVOL=',FVOL
228     #endif
229     CALL RADIA0 (IO,JM,CO2,READGHG) 5090.
230     INCHM=NRAD/NDYN 5091.
231     C**** CLOUD LAYER INDICES USED FOR DIAGNOSTICS 5092.
232     DO 43 L=1,LM 5093.
233     LLOW=L 5094.
234     IF (.5*(PLE(L+1)+PLE(L+2)).LT.786.) GO TO 44 5095.
235     43 CONTINUE 5096.
236     44 LMID1=LLOW+1 5097.
237     DO 45 L=LMID1,LM 5098.
238     LMID=L 5099.
239     IF (.5*(PLE(L+1)+PLE(L+2)).LT.430.) GO TO 46 5100.
240     45 CONTINUE 5101.
241     46 LHI1=LMID+1 5102.
242     LHI=LM 5103.
243     IF (LHI1.GT.LHI) LHI=LHI1 5104.
244     WRITE (6,47) LLOW,LMID1,LMID,LHI1,LHI 5105.
245     47 FORMAT (' LOW CLOUDS IN LAYERS 1-',I2,' MID LEVEL CLOUDS IN',5106.
246     * ' LAYERS',I3,'-',I2,' HIGH CLOUDS IN LAYERS',I3,'-',I2) 5107.
247     C**** NO RADIATION AVERAGING IJRA=1 JRA=1 IRA=1 5108.
248     C**** RADIATION AVERAGING IN I 2 1 2 5109.
249     C**** RADIATION AVERAGING IN I AND J 4 2 2 5110.
250     JRA=(IJRA+2)/3 5111.
251     IRA=IJRA/JRA 5112.
252     50 JALTER=MOD(NSTEP,NRAD*JRA)/NRAD 5113.
253     JDAYR=JDAY
254     JYEARR=JYEAR
255     IALTER=MOD(NSTEP,NRAD*IJRA)/(NRAD*JRA) 5114.
256     S0=S0X*1367./RSDIST 5115.
257     c print *,'S0X0=',S0X0,' S0X=',S0X,' RSDIST=',RSDIST
258     C**** CALCULATE AVERAGE COSINE OF ZENITH ANGLE FOR CURRENT COMP3 STEP 5116.
259     C**** AND RADIATION PERIOD 5117.
260     ROT1=TWOPI*TOFDAY/24. 5118.
261     if(DC25)then
262     ROT2=ROT1+TWOPI*DTCNDS/SDAY 5119.
263     CALL COSZT (IO,JM,SIND,COSD,ROT1,ROT2,COSZ1) 5120.
264     else
265     ROT2=ROT1+TWOPI
266     CALL COSZR (IO,JM,SIND,COSD,ROT1,ROT2,COSZ1)
267     end if
268     if(HPRNT)then
269     print *,' radia TAU=',TAU
270     print *,' CLDSS'
271     print *,(CLDSS(1,7,L),L=1,LM)
272     print *,' CLDMC'
273     print *,(CLDMC(1,7,L),L=1,LM)
274     endif
275     cprint *,' form radia TAU=',TAU,'MODRD=',MODRD
276     C
277     IF(MODRD.NE.0) GO TO 840 5121.
278     C
279     ROT2=ROT1+TWOPI*NRAD*DT/SDAY 5122.
280     CALL COSZS (IO,JM,SIND,COSD,ROT1,ROT2,COSZ2,COSZA) 5123.
281     C**** 5124.
282     C**** COMPUTE EARTH ALBEDOS AND OTHER PARAMETERS FOR BEGINNING OF DAY 5125.
283    
284     TNOW=JYEAR+(JDAY-.5)/365. 5127.1
285     c call sulfr(BSO4LAND,BSO4OCEAN,TNOW)
286     KWRITE=0
287     if(JMONTH.ne.JMLAST) then
288     #if ( defined VOL_AER )
289     do MNAER=1,12
290     if (JDAY.le.JDY(MNAER)) go to 458
291     enddo
292     458 continue
293     c print *,' MNAER=', MNAER,' MONTH=',JMONTH
294     #endif
295     KWRITE=1
296     if(READGHG.eq.2) call tgases(CO2,JMONTH)
297     if(READGHG.eq.1) call rtgases(CO2,JMONTH)
298    
299     if(1.eq.0)then
300     IF (KSTREND.GT.0) then
301     print *,'Wrong value of KSTREND'
302     stop
303     S0X=S0X0*(1.+S0RATE/70.*(TNOW-INYEAR))
304     c print *,'S0X=',S0X,' TNOW=',TNOW
305     ELSEIF (KSTREND.LT.0) then
306     c print *,'Before obssolar JYEAR=',JYEAR
307     c print *,' JDAY=',JDAY,' JMONTH=',JMONTH
308     c print *,' JDATE=',JDATE,' TNOW=',TNOW
309     call obssolar(S0X,TNOW)
310     S0X=S0X/1367.
311     c print *,'S0X=',S0X,' TNOW=',TNOW
312     ENDIF
313     S0=S0X*1367./RSDIST
314     S0AV=S0AV+S0/12.
315     S0XAV=S0XAV+1367.*S0X/12.
316     RSDISTAV=RSDISTAV+RSDIST/12.
317     if(JMONTH.eq.'DEC')then
318     print *,' JDAY=',JDAY,' S0=',S0
319     print *,' S0AV=',S0AV,' S0XAV=',s0xav,' RSDISTAV=',RSDISTAV
320     S0AV=0.0
321     S0XAV=0.0
322     RSDISTAV=0.0
323     endif
324     endif
325    
326     endif
327     JMLAST=JMONTH
328     IF (JDAY.NE.JDLAST.AND.KTREND.GT.0) then
329     c print *,'TNOW=',TNOW
330     CALL FORGET(TNOW,KTREND,KWRITE)
331     endif
332    
333     IF (JDAY.NE.JDLAST)then
334    
335     IF (KSTREND.GT.0) then
336     S0X=S0X0*(1.+S0RATE/70.*(TNOW-INYEAR))
337     c print *,'S0X=',S0X,' TNOW=',TNOW
338     ELSEIF (KSTREND.LT.0) then
339     c print *,'Before obssolar JYEAR=',JYEAR
340     c print *,' JDAY=',JDAY,' JMONTH=',JMONTH
341     c print *,' JDATE=',JDATE,' TNOW=',TNOW
342     call obssolar(S0X,TNOW)
343     S0X=S0X/1367.
344     c print *,'S0X=',S0X,' TNOW=',TNOW
345     ENDIF
346     S0=S0X*1367./RSDIST
347     S0AV=S0AV+S0/365.
348     S0XAV=S0XAV+1367.*S0X/365.
349     RSDISTAV=RSDISTAV+RSDIST/365.
350     if(JDAY.eq.365)then
351     print *,'JYEAR=',JYEAR,' JDAY=',JDAY
352     print *,' S0AV=',S0AV,' S0XAV=',s0xav,' RSDISTAV=',RSDISTAV
353     S0AV=0.0
354     S0XAV=0.0
355     RSDISTAV=0.0
356     endif
357    
358    
359    
360     #ifdef PREDICTED_GASES
361     call chemglobal(P)
362     #endif
363    
364     call sulfr(BSO4LAND,BSO4OCEAN,TNOW)
365     !
366     c for sulfate.4x5.1986.new.dat
367     c do j=1,jm
368     c FLAND=FDATA(1,J,2)
369     c if(FLAND.gt.0.0)BSO4LAND(j)=BSO4LAND(j)/FLAND
370     c if(FLAND.lt.1.0)BSO4OCEAN(j)=BSO4OCEAN(j)/(1.-FLAND)
371     c enddo
372     c for sulfate.4x5.1986.new.dat
373     !
374     CALL RCOMPT
375     c print *,'After RCOMPT'
376     c CALL WRITER (1,0)
377     if(CLDFEED)then
378     DTSURFAV=0.
379     do j=1,jm
380     DTSURFAV=DTSURFAV+DTSURF(J)*DXYP(j)
381     end do !j
382     DTSURFAV=DTSURFAV/AREAG
383     do j=1,jm
384     do k=1,3
385     cfcld(j,k)=1.+coefcl(k)*DTSURFAV
386     end do ! k
387     end do ! j
388     endif
389     ENDIF
390     JDLAST=JDAY 5129.
391     IHOUR=1.5+TOFDAY 5130.
392     CB READING OF CLOUD
393     if(abs(PCLOUD-3.).lt.1.5)then
394     910 continue
395     if(nreadcld.eq.nrcldmax)go to 900
396     read(585,END=900)TFDAYF,JDATEF,JMNTHF,CLDSSF,CLDMCF,IRAND
397     nreadcld=nreadcld+1
398     if(IFIRST.eq.1)then
399     print *,' radia.f PCLOUD=',PCLOUD
400     if(PCLOUD.eq.2)print *,' FIXED MC and SS CLOUDS'
401     if(PCLOUD.eq.4)print *,' FIXED MC CLOUDS ONLY'
402     if(PCLOUD.eq.3)print *,' FIXED SS CLOUDS ONLY'
403     print *,TOFDAY,JDATE,JMONTH
404     print *,TFDAYF,JDATEF,JMNTHF
405     print *,' DTCNDS=',DTCNDS/3600.
406     print *,' DT*NRAD=',DT*NRAD/3600.
407     if(.not.WRCLD)IFIRST=0
408     endif
409     if(abs(TOFDAY-TFDAYF).gt.1.e-3.or.JDATE.ne.JDATEF.or.
410     * JMONTH.ne.JMNTHF)then
411     print *,' RADIA, disagrement in clouds'
412     print *,TOFDAY,JDATE,JMONTH
413     print *,TFDAYF,JDATEF,JMNTHF
414     stop
415     endif
416     go to 920
417     900 rewind 585
418     nreadcld=0
419     print *,' END OF file85'
420     print *,JYEAR
421     print *,TOFDAY,JDATE,JMONTH
422     print *,' REWIND 85'
423     go to 910
424     920 continue
425     CALL RINIT (IRAND)
426     do 930 k=1,LM
427     do 930 j=1,JM
428     if(PCLOUD.ne.4)CLDSS(1,j,k)=CLDSSF(j,k)
429     if(PCLOUD.ne.3)CLDMC(1,j,k)=CLDMCF(j,k)
430     930 continue
431     endif
432     CE END OF READING OF CLOUD
433     if(WRCLD)then
434     if(NWRCLD.eq.1)then
435     CALL RFINAL(IRAND)
436     if(IFIRST.eq.1)print *,' SHORT CLOUDS RECORD'
437     write(81)TOFDAY,JDATE,JMONTH,CLDSS,CLDMC,IRAND
438     elseif(NWRCLD.eq.2)then
439     if(IFIRST.eq.1)print *,' LONG CLOUDS RECORD'
440     do 1150 k=1,14
441     do 1150 j=1,JM0
442     if(k.le.2)then
443     ODATA2(j,k)=ODATA(1,j,k)
444     BDATA2(j,k)=BLDATA(1,j,k)
445     FDATA2(j,k)=FDATA(1,j,k+1)
446     endif
447     if(k.le.3)RQT2(j,k)=RQT(1,j,k)
448     GDATA2(j,k)=GDATA(1,j,k)
449     1150 continue
450     CALL RFINAL(IRAND)
451     write(81)TOFDAY,JDATE,JMONTH,CLDSS,CLDMC,IRAND,
452     * JDAY,JYEAR,T,Q,P,
453     * ODATA2,BDATA2,FDATA2,GDATA2,RQT2
454     else
455     print *,' NWRCLD=',NWRCLD
456     stop
457     endif
458     IFIRST=0
459     endif
460     if(CLDFEED)then
461     if (KWRITE.eq.1)then
462     print *,'cfcld'
463     print 9456,cfcld
464     print *,' DTSURF'
465     print 9456,DTSURF
466     print *,' DTSURFAV=',DTSURFAV
467     9456 format(12f6.2)
468     endif
469     do k=1,LM
470     if(k.le.5)then
471     k1=1
472     else
473     k1=2
474     endif
475     do j=1,JM
476     CLDSS(1,j,k)=cfcld(j,k1)*CLDSS(1,j,k)
477     CLDMC(1,j,k)=cfcld(j,3)*CLDMC(1,j,k)
478     enddo
479     enddo
480     endif
481     C**** 5131.
482     C**** MAIN J LOOP 5132.
483     C**** 5133.
484     DO 600 J=1,JM 5134.
485     IF ((J-1)*(JM-J).NE.0) GO TO 140 5135.
486     C**** CONDITIONS AT THE POLES 5136.
487     POLE=.TRUE. 5137.
488     MODRJ=0 5138.
489     IMAX=1 5139.
490     GO TO 160 5140.
491     C**** CONDITIONS AT NON-POLAR POINTS 5141.
492     140 POLE=.FALSE. 5142.
493     MODRJ=MOD(J+JALTER,JRA) 5143.
494     IMAX=IM 5144.
495     160 XFRADJ=.2+1.2*COSP(J)*COSP(J) 5145.
496     JLAT=J 5145.1
497     #if ( defined VOL_AER )
498     c RVOL=0.012
499     JYEARAER=min(JYEAR-1849,NYVADAT)
500     FVOL=cfvolaer*STAERMN(J,MNAER,JYEARAER)
501     FGOLDU(1)=(RVOL+FVOL)/RVOL
502     if (j.eq.-1)then
503     print *,'From radia'
504     print *,MNAER,JYEAR,JYEAR-1849
505     print *,'RVOL=',RVOL,' FVOL=',FVOL
506     endif
507     #else
508     FGOLDU(1)=(RVOL+FVOL)/RVOL
509     #endif
510     IF(MODRJ.EQ.0) CALL RCOMPJ 5146.
511     C**** 5147.
512     C**** MAIN I LOOP 5148.
513     C**** 5149.
514     IM1=IM 5150.
515     DO 500 I=1,IMAX 5151.
516     MODRIJ=MODRJ+MOD(I+IALTER,IRA) 5152.
517     IF(POLE) MODRIJ=0 5153.
518     JR=J
519     C**** DETERMINE FRACTIONS FOR SURFACE TYPES AND COLUMN PRESSURE 5155.
520     PLAND=FDATA(I,J,2) 5156.
521     PWATER=1.-PLAND
522     POICE=ODATA(I,J,2)*(1.-PLAND) 5157.
523     POCEAN=(1.-PLAND)-POICE 5158.
524     if(POCEAN.LE.1.E-5)then
525     POCEAN=0.
526     POICE=PWATER
527     endif
528     PLICE=FDATA(I,J,3)*PLAND 5159.
529     PEARTH=PLAND-PLICE 5160.
530     SP=P(I,J) 5161.
531     C**** 5162.
532     C**** DETERMINE CLOUDS (AND THEIR OPTICAL DEPTHS) SEEN BY RADIATION 5163.
533     C**** 5164.
534     X=999999. 5164.1
535     c RANDSS=RANDU(X) 5165.
536     c RANDMC=RANDU(X) 5166.
537     CALL RANDUU(RANDSS,X)
538     CALL RANDUU(RANDMC,X)
539     C
540     CSS=0. 5167.
541     CMC=0. 5168.
542     DEPTH=0. 5169.
543     LTOP=0 5169.1
544     DO 210 L=1,LM 5170.
545     RTAU(L)=0. 5171.
546     210 TOTCLD(L)=0. 5172.
547     DO 240 L=1,LM 5173.
548     IF(CLDSS(I,J,L).LT.RANDSS) GO TO 220 5174.
549     RTAUSS=.013333*(PTOP-100.+SIG(L)*SP) 5175.
550     IF(RTAUSS.LT.0.) RTAUSS=0. 5176.
551     IF (T(I,J,L)*PK(I,J,L).LT.TCIR) RTAUSS=.3333333 5177.
552     RTAU(L)=RTAUSS 5178.
553     CSS=1. 5179.
554     AJL(J,L,28)=AJL(J,L,28)+CSS 5180.
555     TOTCLD(L)=1. 5181.
556     LTOP=L 5181.1
557     220 IF(CLDMC(I,J,L).LE.RANDMC) GO TO 240 5182.
558     RTAUMC=DSIG(L)*SP*.08 5183.
559     IF(RTAUMC.GT.RTAU(L)) RTAU(L)=RTAUMC 5184.
560     CMC=1. 5185.
561     AJL(J,L,29)=AJL(J,L,29)+CMC 5186.
562     TOTCLD(L)=1. 5187.
563     LTOP=L 5187.1
564     DEPTH=DEPTH+SP*DSIG(L) 5188.
565     240 AJL(J,L,19)=AJL(J,L,19)+TOTCLD(L) 5189.
566     AJ(J,57)=AJ(J,57)+CSS*POCEAN 5190.
567     BJ(J,57)=BJ(J,57)+CSS*PLAND 5191.
568     CJ(J,57)=CJ(J,57)+CSS*POICE 5192.
569     DJ(JR,57)=DJ(JR,57)+CSS*DXYP(J) 5193.
570     AJ(J,58)=AJ(J,58)+CMC*POCEAN 5194.
571     BJ(J,58)=BJ(J,58)+CMC*PLAND 5195.
572     CJ(J,58)=CJ(J,58)+CMC*POICE 5196.
573     DJ(JR,58)=DJ(JR,58)+CMC*DXYP(J) 5197.
574     AIJ(I,J,17)=AIJ(I,J,17)+CMC 5198.
575     AJ(J,80)=AJ(J,80)+DEPTH*POCEAN 5199.
576     BJ(J,80)=BJ(J,80)+DEPTH*PLAND 5200.
577     CJ(J,80)=CJ(J,80)+DEPTH*POICE 5201.
578     DJ(JR,80)=DJ(JR,80)+DEPTH*DXYP(J) 5202.
579     CLDCV=CMC+CSS-CMC*CSS 5203.
580     AJ(J,59)=AJ(J,59)+CLDCV*POCEAN 5204.
581     BJ(J,59)=BJ(J,59)+CLDCV*PLAND 5205.
582     CJ(J,59)=CJ(J,59)+CLDCV*POICE 5206.
583     DJ(JR,59)=DJ(JR,59)+CLDCV*DXYP(J) 5207.
584     AIJ(I,J,19)=AIJ(I,J,19)+CLDCV 5208.
585     DO 250 L=1,LLOW 5209.
586     IF (TOTCLD(L).NE.1.) GO TO 250 5210.
587     AIJ(I,J,41)=AIJ(I,J,41)+1. 5211.
588     GO TO 255 5212.
589     250 CONTINUE 5213.
590     255 DO 260 L=LMID1,LMID 5214.
591     IF (TOTCLD(L).NE.1.) GO TO 260 5215.
592     AIJ(I,J,42)=AIJ(I,J,42)+1. 5216.
593     GO TO 265 5217.
594     260 CONTINUE 5218.
595     265 DO 270 L=LHI1,LHI 5219.
596     IF (TOTCLD(L).NE.1.) GO TO 270 5220.
597     AIJ(I,J,43)=AIJ(I,J,43)+1. 5221.
598     GO TO 275 5222.
599     270 CONTINUE 5223.
600     275 DO 280 LX=1,LM 5224.
601     L=1+LM-LX 5225.
602     IF (TOTCLD(L).NE.1.) GO TO 280 5226.
603     AIJ(I,J,18)=AIJ(I,J,18)+SIGE(L+1)*SP+PTOP 5227.
604     GO TO 285 5228.
605     280 CONTINUE 5229.
606     285 DO 290 KR=1,4 5230.
607     IF(I.EQ.IJD6(1,KR).AND.J.EQ.IJD6(2,KR)) GO TO 292 5231.
608     290 CONTINUE 5232.
609     GO TO 300 5233.
610     292 IH=IHOUR 5234.
611     DO 294 INCH=1,INCHM 5235.
612     IF(IH.GT.24) IH=IH-24 5236.
613     ADAILY(IH,21,KR)=ADAILY(IH,21,KR)+TOTCLD(6) 5237.
614     ADAILY(IH,22,KR)=ADAILY(IH,22,KR)+TOTCLD(5) 5238.
615     ADAILY(IH,23,KR)=ADAILY(IH,23,KR)+TOTCLD(4) 5239.
616     ADAILY(IH,24,KR)=ADAILY(IH,24,KR)+TOTCLD(3) 5240.
617     ADAILY(IH,25,KR)=ADAILY(IH,25,KR)+TOTCLD(2) 5241.
618     ADAILY(IH,26,KR)=ADAILY(IH,26,KR)+TOTCLD(1) 5242.
619     ADAILY(IH,27,KR)=ADAILY(IH,27,KR)+CLDCV 5243.
620     294 IH=IH+1 5244.
621     C**** 5245.
622     300 IF(MODRIJ.NE.0) GO TO 500 5246.
623     BVSURFA=0.0
624     XVSURFA=0.0
625     BNSURFA=0.0
626     XNSURFA=0.0
627     C**** clear sky condinion
628     if(CMC.le.0.and.CSS.le.0)then
629     CLEAR(J)=1
630     else
631     CLEAR(J)=0
632     endif
633     C**** 5247.
634     C**** SET UP VERTICAL ARRAYS OMITTING THE I AND J INDICES 5248.
635     C**** 5249.
636     C**** EVEN PRESSURES 5250.
637     DO 340 L=1,LM 5251.
638     PLE(L)=SIGE(L)*SP+PTOP 5252.
639     C**** TEMPERATURES 5253.
640     TL(L)=T(I,J,L)*PK(I,J,L) 5254.
641     C**** MOISTURE VARIABLES 5255.
642     QL(L)=Q(I,J,L) 5256.
643     340 CONTINUE 5257.
644     C**** 5258.
645     C**** RADIATION, SOLAR AND THERMAL 5259.
646     C**** 5260.
647     DO 420 K=1,3 5261.
648     420 TL(LM+K)=RQT(I,J,K) 5262.
649     COSZ=COSZA(I,J) 5263.
650     TGO=ODATA(I,J,1)+TF 5264.
651     TGOI=GDATA(I,J,3)+TF 5265.
652     TGLI=GDATA(I,J,13)+TF 5266.
653     TGE=GDATA(I,J,4)+TF 5267.
654     TS=BLDATA(I,J,2) 5268.
655     SNOWOI=GDATA(I,J,1) 5269.
656     SNOWLI=GDATA(I,J,12) 5270.
657     SNOWE=GDATA(I,J,2) 5271.
658     AGESN=GDATA(I,J,11) 5272.
659     WEARTH=(GDATA(I,J,5)+GDATA(I,J,6))/(VDATA(I,J,9)+1.E-20) 5273.
660     DO 430 K=1,8 5274.
661     430 PVT(K)=VDATA(I,J,K) 5275.
662     WS=BLDATA(I,J,1) 5276.
663     do 439 L=1,LM+1
664     SRHR(I,J,L)=0.
665     TRHR(I,J,L)=0.
666     if(L.le.4)then
667     SNFS(I,J,L)=0.
668     TNFS(I,J,L)=0.
669     if(L.le.3)then
670     SRHRS(I,J,L)=0.
671     TRHRS(I,J,L)=0.
672     endif
673     endif
674     439 continue
675     TRNFP0(J)=0.
676     TRNFP1(J)=0.
677     TRINCG(I,J)=0.
678     BTMPW(I,J)=0.
679     SRDAN=0.
680     SRNAN=0.
681     do 449 K=1,9
682     ALB(I,J,K)=0.
683     ALBJ(J,K)=0.
684     449 continue
685     do 499 ii=1,3
686     COSZ=COSZA(I,J)
687     PLAND=FDATA(I,J,2)
688     PWATER=1.-PLAND
689     POICE=ODATA(I,J,2)*(1.-PLAND)
690     POCEAN=(1.-PLAND)-POICE
691     if(POCEAN.LE.1.E-5)then
692     POCEAN=0.
693     POICE=PWATER
694     endif
695     PLICE=FDATA(I,J,3)*PLAND
696     PEARTH=PLAND-PLICE
697     if(ii.eq.1)then
698     BSO4=BSO4OCEAN(J)
699     PTYPE=POCEAN
700     POICE=0.
701     POCEAN=1.
702     PLAND=0.
703     PEARTH=0.
704     PLICE=0.
705     TGAL=0.
706     else if(ii.eq.3)then
707     BSO4=BSO4OCEAN(J)
708     PTYPE=POICE
709     POICE=1.
710     POCEAN=0.
711     PLAND=0.
712     PEARTH=0.
713     PLICE=0.
714     TGAL=TGOI
715     else
716     BSO4=BSO4LAND(J)
717     PTYPE=PLAND
718     POCEAN=0.
719     POICE=0.
720     PWATER=0.
721     PLICE=FDATA(I,J,3)
722     PEARTH=1.-PLICE
723     TGAL=TGE*PEARTH+TGLI*PLICE
724     PLAND=1.
725     endif
726     if(PTYPE.lt.1.e-10)go to 499
727     if(ii.gt.1)then
728     c if(TGAL.lt.268.)then
729     c FRSNALB=0.35
730     c elseif(TGAL.lt.273.)then
731     c FRSNALB=0.35-0.04*(TGAL-268.)
732     c else
733     c FRSNALB=0.15
734     c endif
735     if(TGAL.lt.263.)then
736     FRSNALB=0.30
737     elseif(TGAL.lt.273.)then
738     FRSNALB=0.30-0.015*(TGAL-263.)
739     else
740     FRSNALB=0.15
741     endif
742     endif !ii
743     c FGOLDU(2)=XFRADJ*(1.-PEARTH) 5277.
744     c FGOLDU(3)=XFRADJ*PEARTH 5278.
745     FGOLDU(2)=XFRADJ*(1.-PLAND)
746     FGOLDU(3)=XFRADJ*PLAND
747     ILON=I 5278.1
748     JLAT=J 5278.2
749     if(CLEAR(J).eq.1)then
750     BVSURFA=BETA*ALFA*BSO4
751     XVSURFA=BETA*ALFA*BSO4
752     BNSURFA=BETA*ALFA*BSO4
753     XNSURFA=BETA*ALFA*BSO4
754     else
755     BVSURFA=0.0
756     XVSURFA=0.0
757     BNSURFA=0.0
758     XNSURFA=0.0
759     endif
760     if(J.le.-2)then
761     print *,' From Radia J=',J,' ii=',ii
762     print *,' BSO4=',BSO4
763     print *,' CLEAR(J)=',CLEAR(J)
764     c print *,' Delta Asrf=',BETA*ALFA*BSO4
765     endif
766     CALL RCOMPX 5279.
767     if (IRFIRST.eq.1.and.READGHG.eq.1)then
768     CALL WRITER(12)
769     if(ii.ge.2)IRFIRST=0
770     endif
771     IF(DMOD(TAU,365.*24.).EQ.0..and.J.eq.JM/2) then
772     print *,' tau=',TAU,' J=',J
773     CALL WRITER (1,0)
774     endif
775     SRHR(I,J,1)=SRHR(I,J,1)+SRNFLB(1)*PTYPE
776     TRHR(I,J,1)=TRHR(I,J,1)+(STBO*(POCEAN*TGO**4+POICE*TGOI**4
777     * +PLICE*TGLI**4+PEARTH*TGE**4)-TRNFLB(1))*PTYPE
778     C *****
779     TRSURF(J,ii)=STBO*(POCEAN*TGO**4+POICE*TGOI**4
780     * +PLICE*TGLI**4+PEARTH*TGE**4)-TRNFLB(1)
781     SRSURF(J,ii)=SRNFLB(1)
782     DO 440 L=1,LM 5284.
783     SRHR(I,J,L+1)=SRHR(I,J,L+1)+SRFHRL(L)*PTYPE
784     440 TRHR(I,J,L+1)=TRHR(I,J,L+1)-TRFCRL(L)*PTYPE
785     DO 450 LR=1,3 5287.
786     SRHRS(I,J,LR)=SRHRS(I,J,LR)+SRFHRL(LM+LR)*PTYPE
787     450 TRHRS(I,J,LR)=TRHRS(I,J,LR)-TRFCRL(LM+LR)*PTYPE
788     DO 460 K=1,4 5290.
789     SNFS(I,J,K)=SNFS(I,J,K)+SRNFLB(K+LM)*PTYPE
790     460 TNFS(I,J,K)=TNFS(I,J,K)+(TRNFLB(K+LM)-TRNFLB(1))*PTYPE
791     TRNFP0(J)=TRNFP0(J)+TRNFLB(4+LM)*PTYPE
792     c 05/02/2003
793     c LS1 is a lowest stratospheric layer (LS1=8 for
794     c both LM=9 and 11)
795     c TRNFP1(J)=TRNFP1(J)+TRNFLB(1+LM)*PTYPE
796     TRNFP1(J)=TRNFP1(J)+TRNFLB(LS1)*PTYPE
797     c 05/02/2003
798     TRINCG(I,J)=TRINCG(I,J)+TRDFLB(1)*PTYPE
799     BTMPW(I,J)=BTMPW(I,J)+(BTEMPW-TF)*PTYPE
800     SRDAN=SRDAN+SRDFLB(1)*PTYPE
801     SRNAN=SRNAN+SRNFLB(1)*PTYPE
802     ALB(I,J,2)=ALB(I,J,2)+PLAVIS*PTYPE
803     ALB(I,J,3)=ALB(I,J,3)+PLANIR*PTYPE
804     ALB(I,J,4)=ALB(I,J,4)+ALBVIS*PTYPE
805     ALB(I,J,5)=ALB(I,J,5)+ALBNIR*PTYPE
806     ALB(I,J,6)=ALB(I,J,6)+SRRVIS*PTYPE
807     ALB(I,J,7)=ALB(I,J,7)+SRRNIR*PTYPE
808     ALB(I,J,8)=ALB(I,J,8)+SRAVIS*PTYPE
809     ALB(I,J,9)=ALB(I,J,9)+SRANIR*PTYPE
810     ALB1=SRNFLB(1)/(SRDFLB(1)+1.E-20)
811     C **********
812     ALBJ(J,2)=PLAVIS
813     ALBJ(J,3)=PLANIR
814     ALBJ(J,4)=ALBVIS
815     ALBJ(J,5)=ALBNIR
816     ALBJ(J,6)=SRRVIS
817     ALBJ(J,7)=SRRNIR
818     ALBJ(J,8)=SRAVIS
819     ALBJ(J,9)=SRANIR
820     ALBJ(J,1)=SRNFLB(1)/(SRDFLB(1)+1.E-20)
821     C *********
822     if(CLEAR(j).eq.0)then
823     SRHRCL(J)=SRNFLB(1)
824     TRHRCL(J)=-TRNFLB(1)
825     ALBCL(J)=SRNFLB(1)/(SRDFLB(1)+1.e-20)
826     c 05/02/2003
827     c SNP1CL(J)=SRNFLB(LM+1)
828     SNP1CL(J)=SRNFLB(LS1)
829     c 05/02/2003
830     SNP0CL(J)=SRNFLB(LM+4)
831     TRINCL(J)=TRDFLB(1)
832     TRP0CL(J)=TRNFLB(LM+4)
833     c 05/02/2003
834     c TRP1CL(J)=TRNFLB(LM+1)
835     TRP1CL(J)=TRNFLB(LS1)
836     c 05/02/2003
837     endif
838     COSZ=COSZ2(I,J)
839     if(ii.eq.2)then
840     #if ( defined CLM )
841     C for TEM CLM
842     DSWSRF(j)=SRDFLB(1)
843     DLWSRF(j)=TRSURF(J,2)
844     DSWVIS(j)=SRDVIS
845     DSWNIR(j)=SRDNIR
846     ALBV(j)=ALBVIS
847     ALBN(j)=ALBNIR
848     C for TEM CLM
849     #endif
850     PLAND=PTYPE
851     BJ(J,1)=BJ(J,1)+(S0*COSZ)*PLAND
852     BJ(J,2)=BJ(J,2)+(SRNFLB(4+LM)*COSZ)*PLAND
853     BJ(J,5)=BJ(J,5)+(SRDFLB(1)*COSZ)*PLAND
854     BJ(J,6)=BJ(J,6)+(SRNFLB(1)*COSZ)*PLAND
855     BJ(J,55)=BJ(J,55)+(BTEMPW-TF)*PLAND
856     BJ(J,67)=BJ(J,67)+TRDFLB(1)*PLAND
857     BJ(J,70)=BJ(J,70)-(TRNFLB(4+LM)-TRNFLB(1))*PLAND
858     BJ(J,7)=BJ(J,7)-TRNFLB(4+LM)*PLAND
859     c 05/02/2003
860     c BJ(J,8)=BJ(J,8)-TRNFLB(1+LM)*PLAND
861     c BJ(J,3)=BJ(J,3)+(SRNFLB(1+LM)*COSZ)*PLAND
862     BJ(J,8)=BJ(J,8)-TRNFLB(LS1)*PLAND
863     BJ(J,3)=BJ(J,3)+(SRNFLB(LS1)*COSZ)*PLAND
864     c 05/02/2003
865     BJ(J,71)=BJ(J,71)-(TRNFLB(1+LM)-TRNFLB(1))*PLAND
866     DO 761 K=2,9
867     BJ(J,K+70)=BJ(J,K+70)+(S0*COSZ)*ALBJ(J,K)*PLAND
868     761 CONTINUE
869     if(CLEAR(J).eq.0)then
870     BJCLR(J,1)=BJCLR(J,1)+(S0*COSZ)*PLAND
871     BJCLR(J,2)=BJCLR(J,2)+(SNP0CL(J)*COSZ)*PLAND
872     BJCLR(J,4)=BJCLR(J,4)+(SRHRCL(J)*COSZ)*PLAND
873     BJCLR(J,5)=BJCLR(J,5)+(SRDFLB(1)*COSZ)*PLAND
874     c
875     BJCLR(J,6)=BJCLR(J,6)+TRINCL(J)*PLAND
876     BJCLR(J,8)=BJCLR(J,8)-TRP0CL(J)*PLAND
877     BJCLR(J,9)=BJCLR(J,9)-TRP1CL(J)*PLAND
878     BJCLR(J,3)=BJCLR(J,3)+(SNP1CL(J)*COSZ)*PLAND
879     BJCLR(J,7)=BJCLR(J,7)+TRHRCL(J)*PLAND
880     endif
881     else if(ii.eq.1)then
882     POCEAN=PTYPE
883     AJ(J,1)=AJ(J,1)+(S0*COSZ)*POCEAN
884     AJ(J,2)=AJ(J,2)+(SRNFLB(4+LM)*COSZ)*POCEAN
885     AJ(J,5)=AJ(J,5)+(SRDFLB(1)*COSZ)*POCEAN
886     AJ(J,6)=AJ(J,6)+(SRNFLB(1)*COSZ)*POCEAN
887     AJ(J,55)=AJ(J,55)+(BTEMPW-TF)*POCEAN
888     AJ(J,67)=AJ(J,67)+TRDFLB(1)*POCEAN
889     AJ(J,70)=AJ(J,70)-(TRNFLB(4+LM)-TRNFLB(1))*POCEAN
890     AJ(J,7)=AJ(J,7)-TRNFLB(4+LM)*POCEAN
891     c 05/02/2003
892     c AJ(J,8)=AJ(J,8)-TRNFLB(1+LM)*POCEAN
893     c AJ(J,3)=AJ(J,3)+(SRNFLB(1+LM)*COSZ)*POCEAN
894     AJ(J,8)=AJ(J,8)-TRNFLB(LS1)*POCEAN
895     AJ(J,3)=AJ(J,3)+(SRNFLB(LS1)*COSZ)*POCEAN
896     c 05/02/2003
897     AJ(J,71)=AJ(J,71)-(TRNFLB(1+LM)-TRNFLB(1))*POCEAN
898     #if ( defined OCEAN_3D )
899     solarinc_ocean(J)=solarinc_ocean(J)+SRDFLB(1)*COSZ
900     solarnet_ocean(J)=solarnet_ocean(J)+SRNFLB(1)*COSZ
901     navrado(j)=navrado(j)+1
902     #endif
903     C
904     DO K=2,9
905     AJ(J,K+70)=AJ(J,K+70)+(S0*COSZ)*ALBJ(J,K)*POCEAN
906     END DO
907     if(CLEAR(J).eq.0)then
908     AJCLR(J,1)=AJCLR(J,1)+(S0*COSZ)*POCEAN
909     AJCLR(J,2)=AJCLR(J,2)+(SNP0CL(J)*COSZ)*POCEAN
910     AJCLR(J,4)=AJCLR(J,4)+(SRHRCL(J)*COSZ)*POCEAN
911     AJCLR(J,5)=AJCLR(J,5)+(SRDFLB(1)*COSZ)*POCEAN
912     AJCLR(J,6)=AJCLR(J,6)+TRINCL(J)*POCEAN
913     AJCLR(J,8)=AJCLR(J,8)-TRP0CL(J)*POCEAN
914     AJCLR(J,9)=AJCLR(J,9)-TRP1CL(J)*POCEAN
915     AJCLR(J,3)=AJCLR(J,3)+(SNP1CL(J)*COSZ)*POCEAN
916     AJCLR(J,7)=AJCLR(J,7)+TRHRCL(J)*POCEAN
917     endif
918     C
919     else
920     POICE=PTYPE
921     CJ(J,1)=CJ(J,1)+(S0*COSZ)*POICE
922     CJ(J,2)=CJ(J,2)+(SRNFLB(4+LM)*COSZ)*POICE
923     CJ(J,5)=CJ(J,5)+(SRDFLB(1)*COSZ)*POICE
924     CJ(J,6)=CJ(J,6)+(SRNFLB(1)*COSZ)*POICE
925     CJ(J,55)=CJ(J,55)+(BTEMPW-TF)*POICE
926     CJ(J,67)=CJ(J,67)+TRDFLB(1)*POICE
927     CJ(J,70)=CJ(J,70)-(TRNFLB(4+LM)-TRNFLB(1))*POICE
928     CJ(J,7)=CJ(J,7)-TRNFLB(4+LM)*POICE
929     c 05/02/2003
930     c CJ(J,8)=CJ(J,8)-TRNFLB(1+LM)*POICE
931     c CJ(J,3)=CJ(J,3)+(SRNFLB(1+LM)*COSZ)*POICE
932     CJ(J,8)=CJ(J,8)-TRNFLB(LS1)*POICE
933     CJ(J,3)=CJ(J,3)+(SRNFLB(LS1)*COSZ)*POICE
934     c 05/02/2003
935     CJ(J,71)=CJ(J,71)-(TRNFLB(1+LM)-TRNFLB(1))*POICE
936     #if ( defined OCEAN_3D )
937     solarinc_ice(J)=solarinc_ice(J)+SRDFLB(1)*COSZ
938     solarnet_ice(J)=solarnet_ice(J)+SRNFLB(1)*COSZ
939     navrad(j)=navrad(j)+1
940     #endif
941     if(CLEAR(J).eq.0)then
942     CJCLR(J,1)=CJCLR(J,1)+(S0*COSZ)*POICE
943     CJCLR(J,2)=CJCLR(J,2)+(SNP0CL(J)*COSZ)*POICE
944     CJCLR(J,4)=CJCLR(J,4)+(SRHRCL(J)*COSZ)*POICE
945     CJCLR(J,5)=CJCLR(J,5)+(SRDFLB(1)*COSZ)*POICE
946     c
947     CJCLR(J,6)=CJCLR(J,6)+TRINCL(J)*POICE
948     CJCLR(J,8)=CJCLR(J,8)-TRP0CL(J)*POICE
949     CJCLR(J,9)=CJCLR(J,9)-TRP1CL(J)*POICE
950     CJCLR(J,3)=CJCLR(J,3)+(SNP1CL(J)*COSZ)*POICE
951     CJCLR(J,7)=CJCLR(J,7)+TRHRCL(J)*POICE
952     endif
953     C
954     DO K=2,9
955     CJ(J,K+70)=CJ(J,K+70)+(S0*COSZ)*ALBJ(J,K)*POICE
956     END DO
957     endif
958     499 continue
959     ALB(I,J,1)=SRNAN/(SRDAN+1.E-20)
960     500 IM1=I 5304.
961     I=1
962     PLAND=FDATA(I,J,2)
963     PWATER=1.-PLAND
964     POICE=ODATA(I,J,2)*(1.-PLAND)
965     POCEAN=(1.-PLAND)-POICE
966     if(POCEAN.LE.1.E-5)then
967     POCEAN=0.
968     POICE=PWATER
969     endif
970     PLICE=FDATA(I,J,3)*PLAND
971     PEARTH=PLAND-PLICE
972     if(CLEAR(J).eq.1)then
973     BVSURFA=0.0
974     XVSURFA=0.0
975     BNSURFA=0.0
976     XNSURFA=0.0
977     COSZ=COSZA(I,J)
978     c CSS=0.
979     c CMC=0.
980     c DEPTH=0.
981     c LTOP=0.
982     c do 1210 L=1,LM
983     c RTAU(L)=0.
984     c TOTCLD(L)=0.
985     c1210 continue
986     do 599 ii=1,3
987     BSO4=0.
988     COSZ=COSZA(I,J)
989     PLAND=FDATA(I,J,2)
990     PWATER=1.-PLAND
991     POICE=ODATA(I,J,2)*(1.-PLAND)
992     POCEAN=(1.-PLAND)-POICE
993     if(POCEAN.LE.1.E-5)then
994     POCEAN=0.
995     POICE=PWATER
996     endif
997     PLICE=FDATA(I,J,3)*PLAND
998     PEARTH=PLAND-PLICE
999     if(ii.eq.1)then
1000     BSO4=BSO4OCEAN(J)
1001     PTYPE=POCEAN
1002     POICE=0.
1003     POCEAN=1.
1004     PLAND=0.
1005     PEARTH=0.
1006     PLICE=0.
1007     TGAL=0.
1008     else if(ii.eq.3)then
1009     BSO4=BSO4OCEAN(J)
1010     PTYPE=POICE
1011     POICE=1.
1012     POCEAN=0.
1013     PLAND=0.
1014     PEARTH=0.
1015     PLICE=0.
1016     TGAL=TGOI
1017     else
1018     BSO4=BSO4LAND(J)
1019     PTYPE=PLAND
1020     POCEAN=0.
1021     POICE=0.
1022     PWATER=0.
1023     PLICE=FDATA(I,J,3)
1024     PEARTH=1.-PLICE
1025     TGAL=TGE*PEARTH+TGLI*PLICE
1026     PLAND=1.
1027     endif
1028     if(PTYPE.lt.1.e-10)go to 599
1029     if(ii.gt.1)then
1030     if(TGAL.lt.263.)then
1031     FRSNALB=0.30
1032     elseif(TGAL.lt.273.)then
1033     FRSNALB=0.30-0.015*(TGAL-263.)
1034     else
1035     FRSNALB=0.15
1036     endif
1037     endif !ii
1038     FGOLDU(2)=XFRADJ*(1.-PLAND)
1039     FGOLDU(3)=XFRADJ*PLAND
1040     CALL RCOMPX
1041     SRHRCL(J)=SRNFLB(1)
1042     TRHRCL(J)=-TRNFLB(1)
1043     ALBCL(J)=SRNFLB(1)/(SRDFLB(1)+1.e-20)
1044     c 05/02/2003
1045     c SNP1CL(J)=SRNFLB(LM+1)
1046     SNP1CL(J)=SRNFLB(LS1)
1047     c 05/02/2003
1048     SNP0CL(J)=SRNFLB(LM+4)
1049     TRINCL(J)=TRDFLB(1)
1050     TRP0CL(J)=TRNFLB(LM+4)
1051     c 05/02/2003
1052     c TRP1CL(J)=TRNFLB(LM+1)
1053     TRP1CL(J)=TRNFLB(LS1)
1054     c 05/02/2003
1055     C *********
1056     COSZ=COSZ2(I,J)
1057     if(ii.eq.2)then
1058     #if ( defined CLM )
1059     C for TEM CLM
1060     ALBVC(j)=ALBVIS
1061     ALBNC(j)=ALBNIR
1062     C for TEM CLM
1063     #endif
1064     PLAND=PTYPE
1065     BJCLR(J,1)=BJCLR(J,1)+(S0*COSZ)*PLAND
1066     BJCLR(J,2)=BJCLR(J,2)+(SNP0CL(J)*COSZ)*PLAND
1067     BJCLR(J,4)=BJCLR(J,4)+(SRHRCL(J)*COSZ)*PLAND
1068     BJCLR(J,5)=BJCLR(J,5)+(SRDFLB(1)*COSZ)*PLAND
1069     BJCLR(J,6)=BJCLR(J,6)+TRINCL(J)*PLAND
1070     BJCLR(J,8)=BJCLR(J,8)-TRP0CL(J)*PLAND
1071     BJCLR(J,9)=BJCLR(J,9)-TRP1CL(J)*PLAND
1072     BJCLR(J,3)=BJCLR(J,3)+(SNP1CL(J)*COSZ)*PLAND
1073     BJCLR(J,7)=BJCLR(J,7)+TRHRCL(J)*PLAND
1074    
1075     else if(ii.eq.1)then
1076     POCEAN=PTYPE
1077     AJCLR(J,1)=AJCLR(J,1)+(S0*COSZ)*POCEAN
1078     AJCLR(J,2)=AJCLR(J,2)+(SNP0CL(J)*COSZ)*POCEAN
1079     AJCLR(J,4)=AJCLR(J,4)+(SRHRCL(J)*COSZ)*POCEAN
1080     AJCLR(J,5)=AJCLR(J,5)+(SRDFLB(1)*COSZ)*POCEAN
1081     AJCLR(J,6)=AJCLR(J,6)+TRINCL(J)*POCEAN
1082     AJCLR(J,8)=AJCLR(J,8)-TRP0CL(J)*POCEAN
1083     AJCLR(J,9)=AJCLR(J,9)-TRP1CL(J)*POCEAN
1084     AJCLR(J,3)=AJCLR(J,3)+(SNP1CL(J)*COSZ)*POCEAN
1085     AJCLR(J,7)=AJCLR(J,7)+TRHRCL(J)*POCEAN
1086     else
1087     POICE=PTYPE
1088     CJCLR(J,1)=CJCLR(J,1)+(S0*COSZ)*POICE
1089     CJCLR(J,2)=CJCLR(J,2)+(SNP0CL(J)*COSZ)*POICE
1090     CJCLR(J,4)=CJCLR(J,4)+(SRHRCL(J)*COSZ)*POICE
1091     CJCLR(J,5)=CJCLR(J,5)+(SRDFLB(1)*COSZ)*POICE
1092     CJCLR(J,6)=CJCLR(J,6)+TRINCL(J)*POICE
1093     CJCLR(J,8)=CJCLR(J,8)-TRP0CL(J)*POICE
1094     CJCLR(J,9)=CJCLR(J,9)-TRP1CL(J)*POICE
1095     CJCLR(J,3)=CJCLR(J,3)+(SNP1CL(J)*COSZ)*POICE
1096     CJCLR(J,7)=CJCLR(J,7)+TRHRCL(J)*POICE
1097    
1098     endif
1099     599 continue ! ii
1100     endif
1101     if(J.le.-2)then
1102     print *,' Del SW TOA=',SNP0CL(J)-SNFS(I,J,4)
1103     print *,' Del Srf alb=',ALBCL(J)-ALB(I,J,1)
1104     endif
1105     C**** 5305.
1106     C**** END OF MAIN LOOP FOR I INDEX 5306.
1107     C**** 5307.
1108     600 CONTINUE 5345.
1109     C**** 5346.
1110     C**** END OF MAIN LOOP FOR J INDEX 5347.
1111     C**** 5348.
1112     C**** ACCUMULATE THE RADIATION DIAGNOSTICS 5394.
1113     C**** 5395.
1114     700 DO 780 J=1,JM 5396.
1115     DXYPJ=DXYP(J) 5397.
1116     IMAX=IM 5398.
1117     IF(J.EQ.1.OR.J.EQ.JM) IMAX=1 5399.
1118     DO 720 L=1,LM 5400.
1119     ASRHR=0. 5401.
1120     ATRHR=0. 5402.
1121     DO 710 I=1,IMAX 5403.
1122     ASRHR=ASRHR+SRHR(I,J,L+1)*COSZ2(I,J) 5404.
1123     710 ATRHR=ATRHR+TRHR(I,J,L+1) 5405.
1124     AJL(J,L,9)=AJL(J,L,9)+ASRHR 5406.
1125     720 AJL(J,L,10)=AJL(J,L,10)+ATRHR 5407.
1126     ASNFS1=0. 5408.
1127     BSNFS1=0. 5409.
1128     CSNFS1=0. 5410.
1129     ATNFS1=0. 5411.
1130     BTNFS1=0. 5412.
1131     CTNFS1=0. 5413.
1132     DO 770 I=1,IMAX 5414.
1133     SP=P(I,J) 5415.
1134     COSZ=COSZ2(I,J) 5416.
1135     PLAND=FDATA(I,J,2) 5417.
1136     PWATER=1.-PLAND
1137     POICE=ODATA(I,J,2)*(1.-PLAND) 5418.
1138     POCEAN=(1.-PLAND)-POICE 5419.
1139     if(POCEAN.LE.1.E-5)then
1140     POCEAN=0.
1141     POICE=PWATER
1142     endif
1143     JR=J
1144     DO 740 LR=1,3 5421.
1145     ASJL(J,LR,3)=ASJL(J,LR,3)+SRHRS(I,J,LR)*COSZ 5422.
1146     740 ASJL(J,LR,4)=ASJL(J,LR,4)+TRHRS(I,J,LR) 5423.
1147     DO 742 KR=1,4 5424.
1148     IF(I.EQ.IJD6(1,KR).AND.J.EQ.IJD6(2,KR)) GO TO 744 5425.
1149     742 CONTINUE 5426.
1150     GO TO 750 5427.
1151     744 IH=IHOUR 5428.
1152     DO 746 INCH=1,INCHM 5429.
1153     IF(IH.GT.24) IH=IH-24 5430.
1154     ADAILY(IH,2,KR)=ADAILY(IH,2,KR)+(1.-SNFS(I,J,4)/S0) 5431.
1155     ADAILY(IH,3,KR)=ADAILY(IH,3,KR)+(1.-ALB(I,J,1)) 5432.
1156     ADAILY(IH,4,KR)=ADAILY(IH,4,KR) 5433.
1157     * +((SNFS(I,J,4)-SNFS(I,J,1))*COSZ-TNFS(I,J,4)+TNFS(I,J,1)) 5434.
1158     746 IH=IH+1 5435.
1159     750 CONTINUE 5436.
1160     DJ(JR,1)=DJ(JR,1)+(S0*COSZ)*DXYPJ 5440.
1161     DJ(JR,2)=DJ(JR,2)+(SNFS(I,J,4)*COSZ)*DXYPJ 5444.
1162     DJ(JR,3)=DJ(JR,3)+(SNFS(I,J,1)*COSZ)*DXYPJ 5448.
1163     DJ(JR,5)=DJ(JR,5)+(SRHR(I,J,1)*COSZ/(ALB(I,J,1)+1.E-20))*DXYPJ 5452.
1164     DJ(JR,6)=DJ(JR,6)+(SRHR(I,J,1)*COSZ)*DXYPJ 5456.
1165     DJ(JR,55)=DJ(JR,55)+BTMPW(I,J)*DXYPJ 5460.
1166     DJ(JR,67)=DJ(JR,67)+TRINCG(I,J)*DXYPJ 5464.
1167     DJ(JR,70)=DJ(JR,70)-TNFS(I,J,4)*DXYPJ 5468.
1168     C *******
1169     NCLR(J)=NCLR(J)+1
1170     C *********
1171     DJ(JR,71)=DJ(JR,71)-TNFS(I,J,1)*DXYPJ 5472.
1172     AIJ(I,J,21)=AIJ(I,J,21)-TNFS(I,J,4) 5478.
1173     AIJ(I,J,24)=AIJ(I,J,24)+(SNFS(I,J,4)*COSZ) 5479.
1174     AIJ(I,J,25)=AIJ(I,J,25)+(S0*COSZ) 5480.
1175     AIJ(I,J,26)=AIJ(I,J,26)+(SRHR(I,J,1)*COSZ) 5481.
1176     AIJ(I,J,27)=AIJ(I,J,27)+(SRHR(I,J,1)*COSZ/(ALB(I,J,1)+1.E-20)) 5482.
1177     AIJ(I,J,44)=AIJ(I,J,44)+BTMPW(I,J) 5483.
1178     AIJ(I,J,45)=AIJ(I,J,45)+S0*COSZ*ALB(I,J,2) 5484.
1179     770 CONTINUE 5485.
1180     780 CONTINUE 5492.
1181     IF(JM.NE.24) GO TO 800 5493.
1182     DO 790 L=1,LM 5494.
1183     DO 790 I=1,IM 5495.
1184     AIL(I,L,7)=AIL(I,L,7)+((SRHR(I,11,L+1)*COSZ2(I,11)+ 5496.
1185     * TRHR(I,11,L+1))*DXYP(11)+(SRHR(I,12,L+1)*COSZ2(I,12)+ 5497.
1186     * TRHR(I,12,L+1))*DXYP(12)+(SRHR(I,13,L+1)*COSZ2(I,13)+ 5498.
1187     * TRHR(I,13,L+1))*DXYP(13)) 5499.
1188     AIL(I,L,11)=AIL(I,L,11)+(SRHR(I,19,L+1)*COSZ2(I,19)+ 5500.
1189     * TRHR(I,19,L+1))*DXYP(19) 5501.
1190     790 AIL(I,L,15)=AIL(I,L,15)+(SRHR(I,21,L+1)*COSZ2(I,21)+ 5502.
1191     * TRHR(I,21,L+1))*DXYP(21) 5503.
1192     C**** 5504.
1193     C**** UPDATE THE TEMPERATURES BY RADIATION 5505.
1194     C**** 5506.
1195     800 DO 820 J=1,JM 5507.
1196     IMAX=IM 5508.
1197     IF(J.EQ.1.OR.J.EQ.JM) IMAX=1 5509.
1198     DO 820 LR=1,3 5510.
1199     DO 820 I=1,IMAX 5511.
1200     820 RQT(I,J,LR)=RQT(I,J,LR)+(SRHRS(I,J,LR)*COSZ2(I,J) 5512.
1201     * +TRHRS(I,J,LR))*COE(LR+LM) 5513.
1202     840 DO 860 J=1,JM 5514.
1203     #if ( defined CLM )
1204     ALBAER=0.6*ALBV(j)+0.4*ALBN(j)
1205     ALBC=0.6*ALBVC(j)+0.4*ALBNC(j)
1206     if(CLEAR(j).eq.1.and.ALBAER.lt.1)then
1207     if (ALBAER-ALBC.lt.-1.e10) then
1208     print *,'Wrong ALBAER and ALBC'
1209     print *,J,ALBAER,ALBC
1210     BSO4=BSO4LAND(J)
1211     AERAL= BETA*ALFA*BSO4
1212     if(COSZA(1,J).ge.0.01)then
1213     DSALV=AERAL*(1-ALBC)**2/COSZA(1,J)
1214     DSALN=AERAL*(1-ALBC)**2/COSZA(1,J)
1215     else
1216     DSALV=0.0
1217     DSALN=0.0
1218     DSAL=0.0
1219     endif
1220     print *,BSO4LAND(J),AERAL,DSALV
1221     print *,COSZA(1,J),DSWSRF(j)
1222     stop
1223     endif
1224     c print *,'From radigso_clm'
1225     c print *,CLEAR(j),ALBAER,ALBC,(1.-ALBAER)/(1.-ALBC)
1226     dsw4clm(j)=DSWSRF(j)*(1.-ALBAER)/(1.-ALBC)*COSZ1(1,j)
1227     swinr4clm(j)=DSWNIR(j)*(1.-ALBN(j))/(1.-ALBNC(j))*COSZ1(1,j)
1228     swvis4clm(j)=DSWVIS(j)*(1.-ALBV(j))/(1.-ALBVC(j))*COSZ1(1,j)
1229     else
1230     dsw4clm(j)=DSWSRF(j)*COSZ1(1,j)
1231     swinr4clm(j)=DSWNIR(j)*COSZ1(1,j)
1232     swvis4clm(j)=DSWVIS(j)*COSZ1(1,j)
1233     endif
1234     dlw4clm(j)=DLWSRF(j)
1235     c For TEM
1236     swtd4tem(j)=swtd4tem(j)+S0*COSZ1(1,j)
1237     ! swsd4tem(j)=swsd4tem(j)+DSWSRF(j)*COSZ1(1,j)
1238     ! 7/30/2005
1239     swsd4tem(j)=swsd4tem(j)+dsw4clm(j)
1240     nradd4tem(j)=nradd4tem(j)+1
1241     #endif
1242     IMAX=IM 5515.
1243     IF(J.EQ.1.OR.J.EQ.JM) IMAX=1 5516.
1244     DO 860 L=1,LM 5517.
1245     DO 860 I=1,IMAX 5518.
1246     860 T(I,J,L)=T(I,J,L)+(SRHR(I,J,L+1)*COSZ1(I,J)+TRHR(I,J,L+1)) 5519.
1247     * *COE(L)/(P(I,J)*PK(I,J,L)) 5520.
1248     RETURN 5521.
1249     END 5522.

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