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c source 2007 sokolov users 76203 Apr 25 15:29 atmosphere.F |
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3 |
#include "ctrparam.h" |
#include "ctrparam.h" |
4 |
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109 |
logical odifcarbon |
logical odifcarbon |
110 |
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111 |
#if ( defined CLM ) |
#if ( defined CLM ) |
112 |
#include "CLM.COM" |
# include "CLM.h" |
113 |
!#include "TEM.COM" |
# if ( defined CPL_TEM ) |
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#if ( defined CPL_TEM ) |
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114 |
C For TEM |
C For TEM |
115 |
#include "TEM.COM" |
# include "TEM.h" |
116 |
#endif |
# endif |
117 |
#endif |
#endif |
118 |
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119 |
#if ( defined CPL_OCEANCO2 ) |
#if ( defined CPL_OCEANCO2 ) |
120 |
#include "OCM.COM" |
#include "OCM.h" |
121 |
common /Garyflux/pC_atm(jm0),wind_amp,fluxco2(jm0) |
common /Garyflux/pC_atm(jm0),wind_amp,fluxco2(jm0) |
122 |
# if ( defined ML_2D ) |
# if ( defined ML_2D ) |
123 |
common/Garyclim/tggary(jm0),wsgary(jm0),areaml(jm0),arsrf(jm0) |
common/Garyclim/tggary(jm0),wsgary(jm0),areaml(jm0),arsrf(jm0) |
124 |
common/Garydiff/depthml(jm0),edzon(jm0),dzg(lmo),dzog(lmo-1), |
common/Garydiff/depthml(jm0),edzcar(jm0),dzg(lmo),dzog(lmo-1), |
125 |
&Rco2(jm0,lmo),edohd(lmo),zg(lmo),focean(jm0) |
&Rco2(jm0,lmo),edohd(lmo),zg(lmo),focean(jm0) |
126 |
common /Garychem/Hg(jm0) |
common /Garychem/Hg(jm0) |
127 |
common/qfl/QFLUX(JM0,0:13),ZOAV(JM0),QFLUXT(JM0) |
common/qfl/QFLUX(JM0,0:13),ZOAV(JM0),QFLUXT(JM0) |
128 |
common /Garyvdif/iyearocm,vdfocm,acvdfc |
common /Garyvdif/iyearocm,vdfocm,acvdfc |
129 |
common /Garyvlog/odifcarbon |
common /Garyvlog/odifcarbon,ocarcont |
130 |
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common /Garykvct/cfkvct,edzcart(jm0) |
131 |
# endif |
# endif |
132 |
#endif |
#endif |
133 |
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134 |
INTEGER dtatm, mndriver !routine arguments |
INTEGER dtatm, mndriver !routine arguments jrs |
135 |
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136 |
#if ( defined OCEAN_3D || defined ML_2D ) |
#if ( defined OCEAN_3D || defined ML_2D ) |
137 |
#include "AGRID.COM" |
#include "AGRID.h" |
138 |
C#include "HRD4OCN.COM" |
Cjrs elimated COM file/moved elsewhere#include "HRD4OCN.COM" |
139 |
dimension oimeltt(jm0),dhdtav(jm0),devdtav(jm0) |
dimension oimeltt(jm0),dhdtav(jm0),devdtav(jm0) |
140 |
#endif |
#endif |
141 |
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142 |
C **** CLEAR SKY |
C **** CLEAR SKY |
143 |
common/clrsk/CLEAR(JM0),NCLR(JM0),AJCLR(JM0,12),BJCLR(JM0,12), |
common/clrsk/CLEAR(JM0),NCLR(JM0),AJCLR(JM0,12),BJCLR(JM0,12), |
144 |
* CJCLR(JM0,12) |
* CJCLR(JM0,12) |
145 |
common/TSUR/TSURFC(JM0,0:13),TSURFT(JM0),TSURFD(JM0),DTSURF(JM0) |
! common/TSUR/TSURFC(JM0,0:13),TSURFT(JM0),TSURFD(JM0),DTSURF(JM0) |
146 |
real TSURFW(JM0) |
#include "TSRF.COM" |
147 |
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real TSURFW(JM0),TLANDW(JM0) |
148 |
integer CLEAR |
integer CLEAR |
149 |
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150 |
common /ATCO2/atm_co2(jm0) |
common /ATCO2/atm_co2(jm0) |
208 |
IPFLAG=0 15. |
IPFLAG=0 15. |
209 |
C CALL ENQJOB 16. |
C CALL ENQJOB 16. |
210 |
CALL INPUT 17. |
CALL INPUT 17. |
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print *,"After input" |
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print *,"TSURFD" |
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print *,TSURFD |
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print *,"TSURFT" |
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print *,TSURFT |
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211 |
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212 |
#if ( defined CPL_CHEM ) |
#if ( defined CPL_CHEM ) |
213 |
! |
! |
255 |
#if ( defined CPL_OCEANCO2 && defined ML_2D ) |
#if ( defined CPL_OCEANCO2 && defined ML_2D ) |
256 |
odifcarbon=.true. |
odifcarbon=.true. |
257 |
wind_amp=1. |
wind_amp=1. |
258 |
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dtco2=3600.*24. |
259 |
c ncallgary=0 |
c ncallgary=0 |
260 |
do j=1,jm |
do j=1,jm |
261 |
areaml(j)=dxyp(j)*(1-FDATA(1,J,2)) |
areaml(j)=dxyp(j)*(1-FDATA(1,J,2)) |
263 |
DEPTHML(j)=ZOAV(j) |
DEPTHML(j)=ZOAV(j) |
264 |
end do ! j |
end do ! j |
265 |
print *,' RCO2' |
print *,' RCO2' |
266 |
print 5001,((Rco2(j,k),j=1,jm),k=1,LMO) |
! print 5001,((Rco2(j,k),j=1,jm),k=1,LMO) |
267 |
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print 5001,((Rco2(j,k)*1.e2,j=1,jm),k=1,LMO) |
268 |
dzog(1)=10./SQRT(1.7010587) |
dzog(1)=10./SQRT(1.7010587) |
269 |
dzg(2)=10. |
dzg(2)=10. |
270 |
do l=2,lmo-1 |
do l=2,lmo-1 |
365 |
NSTEP2=NSTEP 29.6 |
NSTEP2=NSTEP 29.6 |
366 |
MRCHT=0. 29.7 |
MRCHT=0. 29.7 |
367 |
ITAU=(NSTEP+NSTEP0)*IDTHR 30. |
ITAU=(NSTEP+NSTEP0)*IDTHR 30. |
368 |
TAU=FLOAT(ITAU)/XINT 31. |
cjrs changed to dfloat 8/2/07 |
369 |
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TAU=DFLOAT(ITAU)/XINT 31. |
370 |
IDAY=1+ITAU/I24 32. |
IDAY=1+ITAU/I24 32. |
371 |
TOFDAY=(ITAU-(IDAY-1)*I24)/XINT 33. |
TOFDAY=(ITAU-(IDAY-1)*I24)/XINT 33. |
372 |
if(ISTART.eq.2.or.ISTRT1.eq.0.and..not.CONTRR)then |
! if(ISTART.eq.2.or.ISTRT1.eq.0.and..not.CONTRR)then |
373 |
do 458 j=1,JM |
! do 458 j=1,JM |
374 |
TSURFD(j)=0. |
! TSURFD(j)=0. |
375 |
TSURFT(j)=0. |
! TSURFT(j)=0. |
376 |
458 continue |
! 458 continue |
377 |
endif |
! endif |
378 |
if(JDATE.eq.100)then |
if(JDATE.eq.100)then |
379 |
print *,JDATE,JMONTH,JYEAR |
print *,JDATE,JMONTH,JYEAR |
380 |
print *,' main before daily0' |
print *,' main before daily0' |
389 |
endif |
endif |
390 |
CALL DAILY_NEW0 34. |
CALL DAILY_NEW0 34. |
391 |
print *,' Main after DAILYNEW0 JYEAR=',JYEAR |
print *,' Main after DAILYNEW0 JYEAR=',JYEAR |
392 |
print *,"DTSURF" |
print *,"DT2MGL" |
393 |
print *,DTSURF |
print *,DT2MGL |
394 |
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print *,"DT2MLD" |
395 |
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print *,DT2MLD |
396 |
#if( !defined OCEAN_3D&& !defined ML_2D ) |
#if( !defined OCEAN_3D&& !defined ML_2D ) |
397 |
CALL DAILY_OCEAN |
CALL DAILY_OCEAN |
398 |
print *,' AFTER DAILY_OCEAN IDAY=',IDAY,' IYEAR=',IYEAR |
print *,' AFTER DAILY_OCEAN IDAY=',IDAY,' IYEAR=',IYEAR |
441 |
JDATEATM=JDATE |
JDATEATM=JDATE |
442 |
JYEARATM=JYEAR |
JYEARATM=JYEAR |
443 |
C |
C |
444 |
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#if ( defined CPL_OCEANCO2 ) |
445 |
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do j=1,jm |
446 |
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fluxco2(j)=0.0 |
447 |
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enddo |
448 |
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#endif |
449 |
#if ( defined CPL_CHEM) && ( defined CPL_TEM ) |
#if ( defined CPL_CHEM) && ( defined CPL_TEM ) |
450 |
C For TEM |
C For TEM |
451 |
if(ISTRT1.eq.0) then |
if(ISTRT1.eq.0) then |
465 |
! adupt= 0.25 |
! adupt= 0.25 |
466 |
! adupt= -0.1123070421398009 |
! adupt= -0.1123070421398009 |
467 |
! |
! |
468 |
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! adupt= adupt+0.9 ! for vs23 |
469 |
|
|
470 |
aduptd=adupt/(365.*JM) |
aduptd=adupt/(365.*JM) |
471 |
temnepgl=0.0 |
temnepgl=0.0 |
472 |
do j=1,jm |
do j=1,jm |
483 |
elseif(LMO.eq.12) then |
elseif(LMO.eq.12) then |
484 |
call ODIFS12 |
call ODIFS12 |
485 |
else |
else |
486 |
Print *,' Wromng LMO',LMO |
Print *,' Wrong LMO',LMO |
487 |
stop |
stop |
488 |
endif |
endif |
489 |
endif |
endif |
490 |
#endif |
#endif |
491 |
#if (defined PREDICTED_GASES) |
!#if (defined PREDICTED_GASES) |
492 |
#if (defined CPL_TEM || defined CPL_OCEANCO2 ) |
#if (defined CPL_TEM || defined CPL_OCEANCO2 ) |
493 |
if(OBSFOR) then |
if(OBSFOR) then |
494 |
call obsco2(iyear,imontha) |
call obsco2(iyear,imontha) |
495 |
mnobco2=imonth |
mnobco2=imonth |
496 |
endif |
endif |
497 |
#endif |
#endif |
498 |
#endif |
!#endif |
499 |
|
CJRS removed below from ocean_3d |
500 |
#ifdef ML_2D |
#ifdef ML_2D |
501 |
do j=1,jm |
do j=1,jm |
502 |
do i=1,io |
do i=1,io |
535 |
enddo |
enddo |
536 |
endif |
endif |
537 |
#endif |
#endif |
538 |
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#if (defined CPL_TEM || defined CPL_OCEANCO2 ) |
539 |
print *,'ATM_CO2' |
print *,'ATM_CO2' |
540 |
print *,atm_co2 |
print *,atm_co2 |
541 |
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#endif |
542 |
JDAYLAST=-1 |
JDAYLAST=-1 |
543 |
ncallclm=0 |
ncallclm=0 |
544 |
NOCLM=.true. |
NOCLM=.true. |
546 |
NOCLM=.false. |
NOCLM=.false. |
547 |
#endif |
#endif |
548 |
print *,' atmosphere DTATM=',DTATM |
print *,' atmosphere DTATM=',DTATM |
549 |
|
print *,' It is running' |
550 |
print *,'End of atmospheric model initialization' |
print *,'End of atmospheric model initialization' |
551 |
print *,' ' |
print *,' ' |
552 |
print *,' ' |
print *,' ' |
564 |
c HPRNT=TAU.ge.17520.0.and.TAU.lt.17545.0 |
c HPRNT=TAU.ge.17520.0.and.TAU.lt.17545.0 |
565 |
c print *,' TAUE=',TAUE |
c print *,' TAUE=',TAUE |
566 |
#if ( defined OCEAN_3D || defined ML_2D) |
#if ( defined OCEAN_3D || defined ML_2D) |
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print *,'TAU,DTATM,TAUE: ', TAU,DTATM,TAUE |
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CALL OCEAN4ATM |
|
567 |
do j=1,jm0 |
do j=1,jm0 |
568 |
tauu(j)=0. |
tauu(j)=0. |
569 |
tauv(j)=0. |
tauv(j)=0. |
581 |
dhfidtgeq(j)=0. |
dhfidtgeq(j)=0. |
582 |
devidtgeq(j)=0. |
devidtgeq(j)=0. |
583 |
tempr(j)=0. |
tempr(j)=0. |
584 |
|
cjrs change var name to arunoff |
585 |
arunoff(j)=0. |
arunoff(j)=0. |
586 |
solarinc_ice(j)=0. |
solarinc_ice(j)=0. |
587 |
solarnet_ice(j)=0. |
solarnet_ice(j)=0. |
588 |
solarinc_ocean(j)=0. |
solarinc_ocean(j)=0. |
589 |
solarnet_ocean(j)=0. |
solarnet_ocean(j)=0. |
590 |
Cjrs surfpr(j)=0. |
Cjrs not used anymore (?) surfpr(j)=0. |
591 |
naveo(j)=0. |
naveo(j)=0. |
592 |
navei(j)=0. |
navei(j)=0. |
593 |
navrad(j)=0. |
navrad(j)=0. |
601 |
c |
c |
602 |
enddo |
enddo |
603 |
#endif |
#endif |
604 |
|
#ifdef OCEAN_3D |
605 |
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C get data from atm-ocean common block |
606 |
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do j=1,jm0 |
607 |
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ODATA(1,j,1)=mmsst(j) |
608 |
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ODATA(1,j,2)=mmfice(j) |
609 |
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GDATA(1,j,3)=mmtice(j) |
610 |
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GDATA(1,j,1)=mmsnowm(j) |
611 |
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ODATA(1,j,3)=mmicem(j) |
612 |
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GDATA(1,j,7)=0.5*(mmtice2(j)+mmtice1(j)) |
613 |
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# ifdef CPL_OCEANCO2 |
614 |
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fluxco2(j)=fluxco2(j) + dtatm*3600.*mmco2flux(j) |
615 |
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# endif |
616 |
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enddo |
617 |
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#endif |
618 |
WLMMAX=0.0 |
WLMMAX=0.0 |
619 |
C |
C |
620 |
100 IF(.NOT.EVENT(TAUT)) GO TO 200 46. |
100 IF(.NOT.EVENT(TAUT)) GO TO 200 46. |
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C print *,' atmosphere TAU=',tau |
|
621 |
c HPRNT=TAU.ge.17520.00 |
c HPRNT=TAU.ge.17520.00 |
622 |
NSTEP1=NSTEP 46.5 |
NSTEP1=NSTEP 46.5 |
623 |
C**** WRITE RESTART INFORMATION ONTO DISK 47. |
C**** WRITE RESTART INFORMATION ONTO DISK 47. |
640 |
if(TRANSR)then |
if(TRANSR)then |
641 |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 50. |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 50. |
642 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 51. |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 51. |
643 |
* ,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
644 |
* ,TG3M,RTGO,STG3,DTG3 |
* ,TG3M,RTGO,STG3,DTG3 |
645 |
print *,' STG3' |
print *,' STG3' |
646 |
print 5001,(STG3(1,j),j=1,JM0) |
print 5001,(STG3(1,j),j=1,JM0) |
653 |
else |
else |
654 |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 50. |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 50. |
655 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 51. |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 51. |
656 |
* ,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
657 |
endif |
endif |
658 |
REWIND KDISK0 52. |
REWIND KDISK0 52. |
659 |
end if ! ISTART.eq.2 |
end if ! ISTART.eq.2 |
669 |
NCOMP=0 |
NCOMP=0 |
670 |
210 REWIND 503 61.1 |
210 REWIND 503 61.1 |
671 |
IF(LABSSW.EQ.LABEL1) KSS6=1 61.2 |
IF(LABSSW.EQ.LABEL1) KSS6=1 61.2 |
672 |
IF(KSS6.EQ.1) GO TO 800 62. |
IF(KSS6.EQ.1) GO TO 800 62. |
673 |
IF(TAU+.06125.GE.TAUE) GO TO 820 63. |
IF(TAU+.06125.GE.TAUE) GO TO 820 63. |
674 |
JDAY00=JDAY |
JDAY00=JDAY |
675 |
C**** IF TIME TO ZERO OUT DIAGNOSTIC ACCUMULATING ARRAYS, DO SO 64. |
C**** IF TIME TO ZERO OUT DIAGNOSTIC ACCUMULATING ARRAYS, DO SO 64. |
1056 |
CALL RADIA |
CALL RADIA |
1057 |
endif |
endif |
1058 |
#endif |
#endif |
|
|
|
1059 |
if(HPRNT)then |
if(HPRNT)then |
1060 |
print *,' main after radia',' TAU=',TAU |
print *,' main after radia',' TAU=',TAU |
1061 |
#include "PRNT.COM" |
#include "PRNT.COM" |
1086 |
print *,' main after surf4clm',' TAU=',TAU |
print *,' main after surf4clm',' TAU=',TAU |
1087 |
#include "PRNT.COM" |
#include "PRNT.COM" |
1088 |
endif |
endif |
1089 |
|
i=1 |
1090 |
do j=1,jm |
do j=1,jm |
1091 |
pcpl4clm(j)=pcpl4clm(j)*prlnd2total(j,mndriver) |
pcpl4clm(i,j)=pcpl4clm(i,j)*prlnd2total(j,mndriver) |
1092 |
pcpc4clm(j)=pcpc4clm(j)*prlnd2total(j,mndriver) |
pcpc4clm(i,j)=pcpc4clm(i,j)*prlnd2total(j,mndriver) |
1093 |
enddo |
enddo |
1094 |
! print *,' main after surf4clm',' TAU=',TAU |
! print *,' main after surf4clm',' TAU=',TAU |
1095 |
! print ('2(12f7.2,/,11f7.2,/)'),ps4clm,pcpl4clm, |
! print ('2(12f7.2,/,11f7.2,/)'),ps4clm,pcpl4clm, |
1126 |
endif |
endif |
1127 |
|
|
1128 |
c if(JYEAR.gt.20)then |
c if(JYEAR.gt.20)then |
1129 |
c write (934),tau,tsoiclm,snwdclm,snwcclm, |
! write (934),tau,tsoiclm,snwdclm,snwcclm, |
1130 |
c & lwuclm,tref2mclm,tflxclm,tgndclm, |
! & lwuclm,tref2mclm,tflxclm,tgndclm, |
1131 |
c & lhfclm,shfclm,tauxclm,tauyclm, |
! & lhfclm,shfclm,tauxclm,tauyclm, |
1132 |
c & asdirclm,aldirclm,asdifclm,aldifclm, |
! & asdirclm,aldirclm,asdifclm,aldifclm, |
1133 |
c & sroclm,ssrclm,glrclm |
! & sroclm,ssrclm,glrclm |
1134 |
c &,h2olclm,h2oiclm |
! &,h2olclm,h2oiclm |
1135 |
c endif |
c endif |
1136 |
! print *,' main after clm4mit2d',' TAU=',TAU |
! print *,' main after clm4mit2d',' TAU=',TAU |
1137 |
! print ('2(12f7.2,/,11f7.2,/)'),tsoiclm,snwdclm,snwcclm, |
! print ('2(12f7.2,/,11f7.2,/)'),tsoiclm,snwdclm,snwcclm, |
1257 |
C**** 189. |
C**** 189. |
1258 |
500 NSTEP=NSTEP+NDYN 190. |
500 NSTEP=NSTEP+NDYN 190. |
1259 |
ITAU=(NSTEP+NSTEP0)*IDTHR 191. |
ITAU=(NSTEP+NSTEP0)*IDTHR 191. |
1260 |
TAU=FLOAT(ITAU)/XINT 192. |
cJRS fix to DFLOAT 8/2/07 |
1261 |
|
TAU=DFLOAT(ITAU)/XINT 192. |
1262 |
IDAY=1+ITAU/I24 193. |
IDAY=1+ITAU/I24 193. |
1263 |
TOFDAYPR=TOFDAY+1.00 |
TOFDAYPR=TOFDAY+1.00 |
1264 |
TOFDAY=(ITAU-(IDAY-1)*I24)/XINT 194. |
TOFDAY=(ITAU-(IDAY-1)*I24)/XINT 194. |
1266 |
C 196. |
C 196. |
1267 |
do J=1,JM0 |
do J=1,JM0 |
1268 |
TSURFW(J)=TSURFD(J) |
TSURFW(J)=TSURFD(J) |
1269 |
|
TLANDW(J)=TLANDD(J) |
1270 |
enddo |
enddo |
1271 |
|
|
1272 |
JDATECLM=JDATE |
JDATECLM=JDATE |
1391 |
pC_atm(j)=zco2(1,j,1) |
pC_atm(j)=zco2(1,j,1) |
1392 |
& *28.97296245/44.0*1.e-9 |
& *28.97296245/44.0*1.e-9 |
1393 |
!ppb(m) to kg per volume base |
!ppb(m) to kg per volume base |
1394 |
|
|
1395 |
|
atm_co2(j)=pC_atm(j)*1.e6 |
1396 |
|
|
1397 |
enddo ! j |
enddo ! j |
1398 |
c |
c |
1399 |
c ------- |
c ------- |
1432 |
c print '12f7.1,/,2(11f7.1,/,),12f7.1',(pC_atm(j)*1.e6,j=1,jm) |
c print '12f7.1,/,2(11f7.1,/,),12f7.1',(pC_atm(j)*1.e6,j=1,jm) |
1433 |
c print '12f7.1,/,2(11f7.1,/,),12f7.1',(rco2(j,1),j=1,jm) |
c print '12f7.1,/,2(11f7.1,/,),12f7.1',(rco2(j,1),j=1,jm) |
1434 |
c ncallgary=ncallgary+1 |
c ncallgary=ncallgary+1 |
1435 |
call carb_mxdlyr_chem(focean) |
! 10/28/06 |
1436 |
call carb_airsea_flx |
! call carb_mxdlyr_chem(focean) |
1437 |
|
! call carb_airsea_flx |
1438 |
|
! |
1439 |
|
! 3D ocean chemistry |
1440 |
|
call carb_chem_ocmip(focean) |
1441 |
|
call carb_airsea_flx(dtco2) |
1442 |
|
! 3D ocean chemistry |
1443 |
|
! 10/28/06 |
1444 |
c print *,'FCO2 ncallgary=',ncallgary |
c print *,'FCO2 ncallgary=',ncallgary |
1445 |
c print '12f7.1,/,2(11f7.1,/,),12f7.1', |
c print '12f7.1,/,2(11f7.1,/,),12f7.1', |
1446 |
c & (fluxco2(j)*12.e-15*365.,j=1,jm) |
c & (fluxco2(j)*12.e-15*365.,j=1,jm) |
1447 |
#endif |
#endif |
1448 |
|
|
|
# if ( defined OCEAN_3D) |
|
|
SECDAY=24.*3600. |
|
|
c print *,'CO2F form ocean' |
|
|
c print *,mmco2flux |
|
|
Cjrs fluxco2(1)=SECDAY*mmco2flux(1) |
|
|
fluxco2(1)=SECDAY*mmco2flux(2) |
|
|
do j=2,jm-1 |
|
|
fluxco2(j)=SECDAY*mmco2flux(j-1) |
|
|
enddo |
|
|
fluxco2(JM)=SECDAY*mmco2flux(JM-1) |
|
|
Cjrs fluxco2(JM)=SECDAY*mmco2flux(JMOCEAN) |
|
|
# endif |
|
|
|
|
1449 |
C For ocean carbon model |
C For ocean carbon model |
1450 |
c Annual oceanic CO2 uptake |
c Annual oceanic CO2 uptake |
1451 |
do j=1,jm |
do j=1,jm |
1452 |
OCUPT=OCUPT+fluxco2(j) |
OCUPT=OCUPT+fluxco2(j) |
1453 |
enddo |
enddo |
1454 |
c print *,' OCUPT=',OCUPT*12.e-15 |
! print *,' OCUPT=',OCUPT*12.e-15 |
1455 |
|
|
1456 |
#if ( defined CPL_CHEM ) |
#if ( defined CPL_CHEM ) |
1457 |
! |
! |
1465 |
! |
! |
1466 |
#endif |
#endif |
1467 |
|
|
1468 |
|
do j=1,jm |
1469 |
|
fluxco2(j)=0.0 |
1470 |
|
enddo |
1471 |
#endif |
#endif |
1472 |
|
|
1473 |
#if ( defined CPL_TEM ) |
#if ( defined CPL_TEM ) |
1512 |
#if ( defined CPL_OCEANCO2 && defined ML_2D ) |
#if ( defined CPL_OCEANCO2 && defined ML_2D ) |
1513 |
C For OCM |
C For OCM |
1514 |
|
|
1515 |
dtco2=3600.*24. |
! dtco2=3600.*24. |
1516 |
call diffusco2(lmo,jm,dtco2,0.5,edzon,depthml,focean, |
! cfkvct=1.0 |
1517 |
|
! if (JYEAR.ge.1991) then begin |
1518 |
|
! if (JYEAR.le.2100) then begin |
1519 |
|
! cfkvct=(1.0*(2100-JYEAR)+0.25*(JYEAR-1990))/110. |
1520 |
|
! esle |
1521 |
|
! cfkvct=0.25 |
1522 |
|
! endif |
1523 |
|
! endif |
1524 |
|
! do j=1,jm |
1525 |
|
! edzcatr(j)=cfkvct*edzcar(j) |
1526 |
|
! enddo |
1527 |
|
call diffusco2(lmo,jm,dtco2,0.5,edzcart,depthml,focean, |
1528 |
& dzg,dzog,rco2) |
& dzg,dzog,rco2) |
1529 |
call hdocean(rco2,focean,dxv,dyv,DXYP,depthml,edohd,dtco2) |
call hdocean(rco2,focean,dxv,dyv,DXYP,depthml,edohd,dtco2) |
1530 |
call avegary |
call avegary |
1763 |
c do 5287 j=1,JM+3 |
c do 5287 j=1,JM+3 |
1764 |
c GBUDG(j,38,1)=GBUDG(j,37,1)*1013./GBUDG(jm+3,37,1) |
c GBUDG(j,38,1)=GBUDG(j,37,1)*1013./GBUDG(jm+3,37,1) |
1765 |
c5287 continue |
c5287 continue |
1766 |
print *,'FRMDICE' |
! print *,'FRMDICE' |
1767 |
print '6(1PE12.4)',FRMDICE |
! print '6(1PE12.4)',FRMDICE |
1768 |
ENKE=0.0 |
ENKE=0.0 |
1769 |
ENPT=0.0 |
ENPT=0.0 |
1770 |
do ii=1,4 |
do ii=1,4 |
1815 |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA, |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA, |
1816 |
* BLDATA, |
* BLDATA, |
1817 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 |
1818 |
* ,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
1819 |
* ,TG3M,RTGO,STG3,DTG3 |
* ,TG3M,RTGO,STG3,DTG3 |
1820 |
else |
else |
1821 |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA, |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA, |
1822 |
* BLDATA, |
* BLDATA, |
1823 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 |
1824 |
* ,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
1825 |
c print *,' TSURFT' |
c print *,' TSURFT' |
1826 |
c print 5001,TSURFT |
c print 5001,TSURFT |
1827 |
c print *,' TSURFW' |
c print *,' TSURFW' |
1842 |
IF(TAU.GT.TAUX+3240.) GO TO 683 287. |
IF(TAU.GT.TAUX+3240.) GO TO 683 287. |
1843 |
685 WRITE (KCOPY) TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 287.5 |
685 WRITE (KCOPY) TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 287.5 |
1844 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN 288. |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN 288. |
1845 |
* ,WMGE,TPRIM2,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,WMGE,TPRIM2,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
1846 |
* ,TG3M,RTGO,STG3,DTG3 |
* ,TG3M,RTGO,STG3,DTG3 |
1847 |
REWIND KCOPY 288.5 |
REWIND KCOPY 288.5 |
1848 |
C 690 changed to 691 02/21/2003 |
C 690 changed to 691 02/21/2003 |
1869 |
REWIND KDISK0 303. |
REWIND KDISK0 303. |
1870 |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 304. |
WRITE(KDISK0) AEXP,TAU,JC,C,RC,KEYNR,U,V,T,P,Q,ODATA,GDATA,BLDATA, 304. |
1871 |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 305. |
* RQT,SRHR,TRHR,(AJ(K,1),K=1,KACC),TAU,TSSFC,CKS,CKN,WMGE,TPRIM2 305. |
1872 |
* ,MRCHT,TRSURF,SRSURF,TSURFT,TSURFW,DWAV0 |
* ,MRCHT,TRSURF,SRSURF,TLANDW,TSURFW,DWAV0 |
1873 |
end if |
end if |
1874 |
C WRITE (6,908) 306. |
C WRITE (6,908) 306. |
1875 |
C**** RUN TERMINATED BECAUSE IT REACHED TAUE (OR SS6 WAS TURNED ON) 307. |
C**** RUN TERMINATED BECAUSE IT REACHED TAUE (OR SS6 WAS TURNED ON) 307. |
1880 |
C DTATM time step of atm model in hours |
C DTATM time step of atm model in hours |
1881 |
C precip and evap in mm/day or kg/m**2/day |
C precip and evap in mm/day or kg/m**2/day |
1882 |
do j=1,jm0 |
do j=1,jm0 |
1883 |
#if ( defined OCEAN_3D && defined CPL_OCEANCO2 ) |
Cjrs #if ( defined OCEAN_3D && defined CPL_OCEANCO2 ) |
1884 |
ncallatm=ncallatm+1 |
#ifdef OCEAN_3D |
1885 |
co24ocean(j)=pC_atm(j)*1.e6 |
!jrs ncallatm=ncallatm+1 |
1886 |
|
! 020107 |
1887 |
|
! co24ocean(j)=pC_atm(j)*1.e6 |
1888 |
|
! jrs give CO2 even if ocn carbon off |
1889 |
|
co24ocean(j)=atm_co2(j) |
1890 |
|
# ifdef CPL_OCEANCO2 |
1891 |
co24ocnan(j)=co24ocnan(j)+co24ocean(j) |
co24ocnan(j)=co24ocnan(j)+co24ocean(j) |
1892 |
|
# endif |
1893 |
#endif |
#endif |
1894 |
#ifdef ML_2D |
#ifdef ML_2D |
1895 |
|
cjrs block only MD_2D |
1896 |
rseaice(j)=ODATA(1,J,2) |
rseaice(j)=ODATA(1,J,2) |
1897 |
#endif |
#endif |
1898 |
tauu(j)=tauu(j)/(NSURF*DTATM) |
tauu(j)=tauu(j)/(NSURF*DTATM) |
1904 |
precip(j)=precip(j)*(1.-fland*prlnd2total(j,mndriver)) |
precip(j)=precip(j)*(1.-fland*prlnd2total(j,mndriver)) |
1905 |
& /(1.-fland) |
& /(1.-fland) |
1906 |
endif |
endif |
1907 |
Cjrs surfpr(j)=surfpr(j)/(DTATM/24.) |
Cjrs surfpr(j)=surfpr(j)/(DTATM/24.) |
1908 |
c |
c |
1909 |
if(naveo(j).gt.0)then |
if(naveo(j).gt.0)then |
1910 |
hfluxo(j)=NSURF*hfluxo(j)/(NDYN*DT*naveo(j)) |
hfluxo(j)=NSURF*hfluxo(j)/(NDYN*DT*naveo(j)) |
1942 |
endif |
endif |
1943 |
c Runoff is a flux of water from land in mm/day |
c Runoff is a flux of water from land in mm/day |
1944 |
c not for m**2 |
c not for m**2 |
1945 |
|
cjrs change runoff to new name arunoff |
1946 |
arunoff(j)=arunoff(j)/(DTATM/24.)*FDATA(1,j,2) |
arunoff(j)=arunoff(j)/(DTATM/24.)*FDATA(1,j,2) |
1947 |
& *DXYP(J) |
& *DXYP(J) |
1948 |
if(NWMGEA(J).gt.0)then |
if(NWMGEA(J).gt.0)then |
1972 |
CLAT=20.*TWOPI/360. |
CLAT=20.*TWOPI/360. |
1973 |
do j=1,jm |
do j=1,jm |
1974 |
SLAND=SLAND+FDATA(1,j,2)*DXYP(J) |
SLAND=SLAND+FDATA(1,j,2)*DXYP(J) |
1975 |
|
c jrs runoff->arunoff |
1976 |
rungl=rungl+arunoff(j) |
rungl=rungl+arunoff(j) |
1977 |
if(LAT(J).lt.-CLAT)then |
if(LAT(J).lt.-CLAT)then |
1978 |
runs=runs+arunoff(j) |
runs=runs+arunoff(j) |
1986 |
c print *,rungl/SLAND,rungl,runs,runt,runn |
c print *,rungl/SLAND,rungl,runs,runt,runn |
1987 |
c nmonth=JMNTH0 |
c nmonth=JMNTH0 |
1988 |
#ifdef ML_2D |
#ifdef ML_2D |
1989 |
|
c jrs only ML_2D |
1990 |
nmonth=AMONTH(mndriver) |
nmonth=AMONTH(mndriver) |
1991 |
#endif |
#endif |
1992 |
jdatefl=jdate-1 |
jdatefl=jdate-1 |
2035 |
c & evai,hfluxo,dhfodtg,devodtg,hfluxi,dhfidtg,devidtg, |
c & evai,hfluxo,dhfodtg,devodtg,hfluxi,dhfidtg,devidtg, |
2036 |
c & solarinc_ice,solarnet_ice,rseaice |
c & solarinc_ice,solarnet_ice,rseaice |
2037 |
#ifdef ML_2D |
#ifdef ML_2D |
2038 |
|
c jrs only ML_2D |
2039 |
do j=1,jm |
do j=1,jm |
2040 |
osst(j)=ODATA(1,j,1) |
osst(j)=ODATA(1,j,1) |
2041 |
aoice(j)=ODATA(1,j,3) |
aoice(j)=ODATA(1,j,3) |
2058 |
JYEARATM=JYEAR |
JYEARATM=JYEAR |
2059 |
C |
C |
2060 |
#ifdef ML_2D |
#ifdef ML_2D |
2061 |
|
Cjrs change this block to only ML_2D |
2062 |
IDAYM=IDAY |
IDAYM=IDAY |
2063 |
JDAYM=JDAY |
JDAYM=JDAY |
2064 |
JDATEM=JDATE |
JDATEM=JDATE |
2074 |
c WRITE (6,905) TOFDAY,JDATE,JMONTH,JYEAR |
c WRITE (6,905) TOFDAY,JDATE,JMONTH,JYEAR |
2075 |
WRITE (6,905) TOFDAYPR,JDATEPR,JMONTHPR,JYEARPR |
WRITE (6,905) TOFDAYPR,JDATEPR,JMONTHPR,JYEARPR |
2076 |
endif |
endif |
2077 |
print *,'ncallclm=',ncallclm |
cjrs print *,'ncallclm=',ncallclm |
2078 |
JDAYLAST=JDAY |
JDAYLAST=JDAY |
2079 |
c if(ncallclm.gt.6) stop |
c if(ncallclm.gt.6) stop |
2080 |
c stop |
c stop |