1 |
C $Header$ |
C $Header$ |
2 |
C $Name$ |
C $Name$ |
3 |
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4 |
#include "CPP_OPTIONS.h" |
#include "FIZHI_OPTIONS.h" |
5 |
#include "PACKAGES_CONFIG.h" |
subroutine lwrio (nymd,nhms,bi,bj,myid,istrip,npcs, |
6 |
subroutine lwrio (nymd,nhms,bi,bj,istrip,npcs,low_level,mid_level, |
. low_level,mid_level, |
7 |
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. im,jm,lm, |
8 |
. pz,plz,plze,dpres,pkht,pkz,tz,qz,oz, |
. pz,plz,plze,dpres,pkht,pkz,tz,qz,oz, |
9 |
. co2,cfc11,cfc12,cfc22,methane,n2o,emissivity, |
. co2,cfc11,cfc12,cfc22,methane,n2o,emissivity, |
10 |
. tgz,radlwg,st4,dst4, |
. tgz,radlwg,st4,dst4, |
11 |
. dtradlw,dlwdtg,dtradlwc,lwgclr, |
. dtradlw,dlwdtg,dtradlwc,lwgclr, |
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. im,jm,lm,ptop, |
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12 |
. nlwcld,cldlw,clwmo,nlwlz,lwlz, |
. nlwcld,cldlw,clwmo,nlwlz,lwlz, |
13 |
. lpnt,imstturb,qliqave,fccave,landtype) |
. lpnt,imstturb,qliqave,fccave,landtype) |
14 |
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15 |
implicit none |
implicit none |
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#ifdef ALLOW_DIAGNOSTICS |
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#include "diagnostics.h" |
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#endif |
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16 |
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17 |
c Input Variables |
c Input Variables |
18 |
c --------------- |
c --------------- |
19 |
integer nymd,nhms,istrip,npcs,bi,bj |
integer nymd,nhms,istrip,npcs,bi,bj,myid |
20 |
integer mid_level,low_level |
integer mid_level,low_level |
21 |
integer im,jm,lm |
integer im,jm,lm |
22 |
real ptop |
_RL pz(im,jm),plz(im,jm,lm),plze(im,jm,lm+1) |
23 |
real pz(im,jm),plz(im,jm,lm),plze(im,jm,lm+1) |
_RL dpres(im,jm,lm),pkht(im,jm,lm+1),pkz(im,jm,lm) |
24 |
real dpres(im,jm,lm),pkht(im,jm,lm+1),pkz(im,jm,lm) |
_RL tz(im,jm,lm),qz(im,jm,lm),oz(im,jm,lm) |
25 |
real tz(im,jm,lm),qz(im,jm,lm),oz(im,jm,lm) |
_RL co2,cfc11,cfc12,cfc22,methane(lm),n2o(lm) |
26 |
real co2,cfc11,cfc12,cfc22,methane(lm),n2o(lm) |
_RL emissivity(im,jm,10) |
27 |
real emissivity(im,jm,10) |
_RL tgz(im,jm),radlwg(im,jm),st4(im,jm),dst4(im,jm) |
28 |
real tgz(im,jm),radlwg(im,jm),st4(im,jm),dst4(im,jm) |
_RL dtradlw(im,jm,lm),dlwdtg (im,jm,lm) |
29 |
real dtradlw(im,jm,lm),dlwdtg (im,jm,lm) |
_RL dtradlwc(im,jm,lm),lwgclr(im,jm) |
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real dtradlwc(im,jm,lm),lwgclr(im,jm) |
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30 |
integer nlwcld,nlwlz |
integer nlwcld,nlwlz |
31 |
real cldlw(im,jm,lm),clwmo(im,jm,lm),lwlz(im,jm,lm) |
_RL cldlw(im,jm,lm),clwmo(im,jm,lm),lwlz(im,jm,lm) |
32 |
logical lpnt |
logical lpnt |
33 |
integer imstturb |
integer imstturb |
34 |
real qliqave(im,jm,lm),fccave(im,jm,lm) |
_RL qliqave(im,jm,lm),fccave(im,jm,lm) |
35 |
integer landtype(im,jm) |
integer landtype(im,jm) |
36 |
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37 |
c Local Variables |
c Local Variables |
38 |
c --------------- |
c --------------- |
39 |
integer i,j,l,n,nn |
integer i,j,l,n,nn |
40 |
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41 |
real cldtot (im,jm,lm) |
_RL cldtot (im,jm,lm) |
42 |
real cldmxo (im,jm,lm) |
_RL cldmxo (im,jm,lm) |
43 |
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44 |
real pl(istrip,lm) |
_RL pl(istrip,lm) |
45 |
real pk(istrip,lm) |
_RL pk(istrip,lm) |
46 |
real pke(istrip,lm) |
_RL pke(istrip,lm) |
47 |
real ple(istrip,lm+1) |
_RL ple(istrip,lm+1) |
48 |
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49 |
real ADELPL(ISTRIP,lm) |
_RL ADELPL(ISTRIP,lm) |
50 |
real dtrad(istrip,lm),dtradc(istrip,lm) |
_RL dtrad(istrip,lm),dtradc(istrip,lm) |
51 |
real OZL(ISTRIP,lm),TZL(ISTRIP,lm) |
_RL OZL(ISTRIP,lm),TZL(ISTRIP,lm) |
52 |
real SHZL(ISTRIP,lm),CLRO(ISTRIP,lm) |
_RL SHZL(ISTRIP,lm),CLRO(ISTRIP,lm) |
53 |
real CLMO(ISTRIP,lm) |
_RL CLMO(ISTRIP,lm) |
54 |
real flx(ISTRIP,lm+1),flxclr(ISTRIP,lm+1) |
_RL flx(ISTRIP,lm+1),flxclr(ISTRIP,lm+1) |
55 |
real cldlz(istrip,lm) |
_RL cldlz(istrip,lm) |
56 |
real dfdts(istrip,lm+1),dtdtg(istrip,lm) |
_RL dfdts(istrip,lm+1),dtdtg(istrip,lm) |
57 |
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58 |
real emiss(istrip,10) |
_RL emiss(istrip,10) |
59 |
real taual(istrip,lm,10) |
_RL taual(istrip,lm,10) |
60 |
real ssaal(istrip,lm,10) |
_RL ssaal(istrip,lm,10) |
61 |
real asyal(istrip,lm,10) |
_RL asyal(istrip,lm,10) |
62 |
real cwc(istrip,lm,3) |
_RL cwc(istrip,lm,3) |
63 |
real reff(istrip,lm,3) |
_RL reff(istrip,lm,3) |
64 |
real tauc(istrip,lm,3) |
_RL tauc(istrip,lm,3) |
65 |
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66 |
real SGMT4(ISTRIP),TSURF(ISTRIP),dsgmt4(ISTRIP) |
_RL SGMT4(ISTRIP),TSURF(ISTRIP),dsgmt4(ISTRIP) |
67 |
integer lwi(istrip) |
integer lwi(istrip) |
68 |
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69 |
real getcon,secday,convrt,pcheck |
_RL tmpstrip(istrip,lm) |
70 |
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_RL tmpimjm(im,jm,lm) |
71 |
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_RL tempor1(im,jm),tempor2(im,jm) |
72 |
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73 |
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_RL getcon,secday,convrt |
74 |
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#ifdef ALLOW_DIAGNOSTICS |
75 |
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logical diagnostics_is_on |
76 |
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external diagnostics_is_on |
77 |
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_RL tmpdiag(im,jm) |
78 |
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#endif |
79 |
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80 |
logical high, trace, cldwater |
logical high, trace, cldwater |
81 |
data high /.true./ |
c data high /.true./ |
82 |
data trace /.true./ |
c data trace /.true./ |
83 |
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data high /.false./ |
84 |
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data trace /.false./ |
85 |
data cldwater /.false./ |
data cldwater /.false./ |
86 |
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87 |
C ********************************************************************** |
C ********************************************************************** |
140 |
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141 |
call stripitint (landtype,lwi,im*jm,im*jm,istrip,1,nn) |
call stripitint (landtype,lwi,im*jm,im*jm,istrip,1,nn) |
142 |
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143 |
DO I = 1,ISTRIP*lm |
DO L = 1,lm |
144 |
ADELPL(I,1) = convrt / ( ple(I,2)-ple(I,1) ) |
DO I = 1,ISTRIP |
145 |
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ADELPL(I,L) = convrt / ( ple(I,L+1)-ple(I,L) ) |
146 |
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ENDDO |
147 |
ENDDO |
ENDDO |
148 |
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149 |
C Compute Clouds |
C Compute Clouds |
157 |
ENDDO |
ENDDO |
158 |
ENDIF |
ENDIF |
159 |
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160 |
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C Convert to Temperature from Fizhi Theta |
161 |
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C --------------------------------------- |
162 |
DO L = 1,lm |
DO L = 1,lm |
163 |
DO I = 1,ISTRIP |
DO I = 1,ISTRIP |
164 |
TZL(I,L) = TZL(I,L)*pk(I,L) |
TZL(I,L) = TZL(I,L)*pk(I,L) |
222 |
do L = 1,lm |
do L = 1,lm |
223 |
do i = 1,istrip |
do i = 1,istrip |
224 |
dtrad(i,L) = ( flx(i,L)- flx(i,L+1))*adelpl(i,L) |
dtrad(i,L) = ( flx(i,L)- flx(i,L+1))*adelpl(i,L) |
225 |
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tmpstrip(i,L) = flx(i,L) |
226 |
dtdtg(i,L) = ( dfdts(i,L)- dfdts(i,L+1))*adelpl(i,L) |
dtdtg(i,L) = ( dfdts(i,L)- dfdts(i,L+1))*adelpl(i,L) |
227 |
dtradc(i,L) = (flxclr(i,L)-flxclr(i,L+1))*adelpl(i,L) |
dtradc(i,L) = (flxclr(i,L)-flxclr(i,L+1))*adelpl(i,L) |
228 |
enddo |
enddo |
251 |
C **** PASTE AND BUMP SOME DIAGNOSTICS **** |
C **** PASTE AND BUMP SOME DIAGNOSTICS **** |
252 |
C ********************************************************************** |
C ********************************************************************** |
253 |
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254 |
IF(IOLR.GT.0)CALL PSTBMP(flx(1,1),QDIAG(1,1,IOLR,bi,bj),ISTRIP, |
CALL PASTE(flx(1,1),tempor1,ISTRIP,im*jm,1,NN) |
255 |
. im*jm, 1,NN) |
CALL PASTE(flxclr(1,1),tempor2,ISTRIP,im*jm,1,NN) |
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IF(IOLRCLR.GT.0)CALL PSTBMP(flxclr(1,1),QDIAG(1,1,IOLRCLR,bi,bj), |
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. ISTRIP,im*jm,1,NN) |
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IF(IOZLW.GT.0)CALL PSTBMP(OZL(1,1),QDIAG(1,1,IOZLW,bi,bj),ISTRIP, |
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. im*jm,lm,NN) |
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256 |
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257 |
C ********************************************************************** |
C ********************************************************************** |
258 |
C **** TENDENCY UPDATES **** |
C **** TENDENCY UPDATES **** |
260 |
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261 |
DO L = 1,lm |
DO L = 1,lm |
262 |
DO I = 1,ISTRIP |
DO I = 1,ISTRIP |
263 |
DTRAD (I,L) = ( ple(i,lm+1)-PTOP ) * DTRAD (I,L)/pk(I,L) |
DTRAD (I,L) = ple(i,lm+1) * DTRAD (I,L)/pk(I,L) |
264 |
DTRADC(I,L) = ( ple(i,lm+1)-PTOP ) * DTRADC(I,L)/pk(I,L) |
DTRADC(I,L) = ple(i,lm+1) * DTRADC(I,L)/pk(I,L) |
265 |
dtdtg(I,L) = ( ple(i,lm+1)-PTOP ) * dtdtg (I,L)/pk(I,L) |
dtdtg(I,L) = ple(i,lm+1) * dtdtg (I,L)/pk(I,L) |
266 |
ENDDO |
ENDDO |
267 |
ENDDO |
ENDDO |
268 |
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CALL PASTE ( tmpstrip ,tmpimjm ,ISTRIP,im*jm,lm,NN ) |
269 |
CALL PASTE ( DTRAD ,DTRADLW ,ISTRIP,im*jm,lm,NN ) |
CALL PASTE ( DTRAD ,DTRADLW ,ISTRIP,im*jm,lm,NN ) |
270 |
CALL PASTE ( DTRADC,DTRADLWC,ISTRIP,im*jm,lm,NN ) |
CALL PASTE ( DTRADC,DTRADLWC,ISTRIP,im*jm,lm,NN ) |
271 |
CALL PASTE ( dtdtg ,dlwdtg ,ISTRIP,im*jm,lm,NN ) |
CALL PASTE ( dtdtg ,dlwdtg ,ISTRIP,im*jm,lm,NN ) |
276 |
C **** BUMP DIAGNOSTICS **** |
C **** BUMP DIAGNOSTICS **** |
277 |
C ********************************************************************** |
C ********************************************************************** |
278 |
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279 |
if(itgrlw.ne.0) then |
#ifdef ALLOW_DIAGNOSTICS |
280 |
do j = 1,jm |
if(diagnostics_is_on('TGRLW ',myid) ) then |
281 |
do i = 1,im |
call diagnostics_fill(tgz,'TGRLW ',0,1,3,bi,bj,myid) |
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qdiag(i,j,itgrlw,bi,bj) = qdiag(i,j,itgrlw,bi,bj) + tgz(i,j) |
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enddo |
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enddo |
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282 |
endif |
endif |
283 |
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if (itlw.ne.0) then |
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284 |
do L = 1,lm |
do L = 1,lm |
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do j = 1,jm |
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do i = 1,im |
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qdiag(i,j,itlw+L-1,bi,bj) = qdiag(i,j,itlw+L-1,bi,bj) + |
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. tz(i,j,L)*pkz(i,j,L) |
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enddo |
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enddo |
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enddo |
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endif |
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285 |
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286 |
if (ishrad.ne.0) then |
if(diagnostics_is_on('TLW ',myid) ) then |
287 |
do L = 1,lm |
do j = 1,jm |
288 |
do j = 1,jm |
do i = 1,im |
289 |
do i = 1,im |
tmpdiag(i,j) = tz(i,j,L)*pkz(i,j,L) |
290 |
qdiag(i,j,ishrad+L-1,bi,bj) = qdiag(i,j,ishrad+L-1,bi,bj) + |
enddo |
291 |
. qz(i,j,L)*1000 |
enddo |
292 |
enddo |
call diagnostics_fill(tmpdiag,'TLW ',L,1,3,bi,bj,myid) |
293 |
enddo |
endif |
294 |
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295 |
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if(diagnostics_is_on('SHRAD ',myid) ) then |
296 |
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do j = 1,jm |
297 |
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do i = 1,im |
298 |
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tmpdiag(i,j) = qz(i,j,L)*1000. |
299 |
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enddo |
300 |
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enddo |
301 |
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call diagnostics_fill(tmpdiag,'SHRAD ',L,1,3,bi,bj,myid) |
302 |
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endif |
303 |
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304 |
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if(diagnostics_is_on('OZLW ',myid) ) then |
305 |
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do j = 1,jm |
306 |
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do i = 1,im |
307 |
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tmpdiag(i,j) = oz(i,j,L) |
308 |
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enddo |
309 |
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enddo |
310 |
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call diagnostics_fill(tmpdiag,'OZLW ',L,1,3,bi,bj,myid) |
311 |
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endif |
312 |
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313 |
enddo |
enddo |
314 |
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315 |
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if(diagnostics_is_on('OLR ',myid) ) then |
316 |
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call diagnostics_fill(tempor1,'OLR ',0,1,3,bi,bj,myid) |
317 |
endif |
endif |
318 |
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319 |
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if(diagnostics_is_on('OLRCLR ',myid) ) then |
320 |
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call diagnostics_fill(tempor2,'OLRCLR ',0,1,3,bi,bj,myid) |
321 |
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endif |
322 |
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#endif |
323 |
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324 |
C ********************************************************************** |
C ********************************************************************** |
325 |
C **** Increment Diagnostics Counters and Zero-Out Cloud Info **** |
C **** Increment Diagnostics Counters and Zero-Out Cloud Info **** |
326 |
C ********************************************************************** |
C ********************************************************************** |
327 |
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ntlw = ntlw + 1 |
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nshrad = nshrad + 1 |
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nozlw = nozlw + 1 |
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ntgrlw = ntgrlw + 1 |
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nolr = nolr + 1 |
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nolrclr = nolrclr + 1 |
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328 |
nlwlz = 0 |
nlwlz = 0 |
329 |
nlwcld = 0 |
nlwcld = 0 |
330 |
imstturb = 0 |
imstturb = 0 |
565 |
c---- input parameters ------ |
c---- input parameters ------ |
566 |
|
|
567 |
integer m,n,ndim,np,ict,icb |
integer m,n,ndim,np,ict,icb |
568 |
real pl(m,ndim,np+1),ta(m,ndim,np),wa(m,ndim,np),oa(m,ndim,np), |
_RL pl(m,ndim,np+1),ta(m,ndim,np),wa(m,ndim,np),oa(m,ndim,np), |
569 |
* ts(m,ndim) |
* ts(m,ndim) |
570 |
real co2,n2o(np),ch4(np),cfc11,cfc12,cfc22,emiss(m,ndim,10) |
_RL co2,n2o(np),ch4(np),cfc11,cfc12,cfc22,emiss(m,ndim,10) |
571 |
real cwc(m,ndim,np,3),taucl(m,ndim,np,3),reff(m,ndim,np,3), |
_RL cwc(m,ndim,np,3),taucl(m,ndim,np,3),reff(m,ndim,np,3), |
572 |
* fcld(m,ndim,np) |
* fcld(m,ndim,np) |
573 |
real taual(m,ndim,np,10),ssaal(m,ndim,np,10),asyal(m,ndim,np,10) |
_RL taual(m,ndim,np,10),ssaal(m,ndim,np,10),asyal(m,ndim,np,10) |
574 |
logical cldwater,high,trace |
logical cldwater,high,trace |
575 |
|
|
576 |
c---- output parameters ------ |
c---- output parameters ------ |
577 |
|
|
578 |
real flx(m,ndim,np+1),flc(m,ndim,np+1),dfdts(m,ndim,np+1), |
_RL flx(m,ndim,np+1),flc(m,ndim,np+1),dfdts(m,ndim,np+1), |
579 |
* st4(m,ndim) |
* st4(m,ndim) |
580 |
|
|
581 |
c---- static data ----- |
c---- static data ----- |
582 |
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|
583 |
real cb(5,10) |
_RL cb(5,10) |
584 |
real xkw(9),aw(9),bw(9),pm(9),fkw(6,9),gkw(6,3),xke(9) |
_RL xkw(9),aw(9),bw(9),pm(9),fkw(6,9),gkw(6,3),xke(9) |
585 |
real aib(3,10),awb(4,10),aiw(4,10),aww(4,10),aig(4,10),awg(4,10) |
_RL aib(3,10),awb(4,10),aiw(4,10),aww(4,10),aig(4,10),awg(4,10) |
586 |
integer ne(9),mw(9) |
integer ne(9),mw(9) |
587 |
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|
588 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
589 |
|
|
590 |
real pa(m,n,np),dt(m,n,np) |
_RL pa(m,n,np),dt(m,n,np) |
591 |
real sh2o(m,n,np+1),swpre(m,n,np+1),swtem(m,n,np+1) |
_RL sh2o(m,n,np+1),swpre(m,n,np+1),swtem(m,n,np+1) |
592 |
real sco3(m,n,np+1),scopre(m,n,np+1),scotem(m,n,np+1) |
_RL sco3(m,n,np+1),scopre(m,n,np+1),scotem(m,n,np+1) |
593 |
real dh2o(m,n,np),dcont(m,n,np),dco2(m,n,np),do3(m,n,np) |
_RL dh2o(m,n,np),dcont(m,n,np),dco2(m,n,np),do3(m,n,np) |
594 |
real dn2o(m,n,np),dch4(m,n,np) |
_RL dn2o(m,n,np),dch4(m,n,np) |
595 |
real df11(m,n,np),df12(m,n,np),df22(m,n,np) |
_RL df11(m,n,np),df12(m,n,np),df22(m,n,np) |
596 |
real th2o(m,n,6),tcon(m,n,3),tco2(m,n,6,2) |
_RL th2o(m,n,6),tcon(m,n,3),tco2(m,n,6,2) |
597 |
real tn2o(m,n,4),tch4(m,n,4),tcom(m,n,2) |
_RL tn2o(m,n,4),tch4(m,n,4),tcom(m,n,2) |
598 |
real tf11(m,n),tf12(m,n),tf22(m,n) |
_RL tf11(m,n),tf12(m,n),tf22(m,n) |
599 |
real h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
_RL h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
600 |
real n2oexp(m,n,np,4),ch4exp(m,n,np,4),comexp(m,n,np,2) |
_RL n2oexp(m,n,np,4),ch4exp(m,n,np,4),comexp(m,n,np,2) |
601 |
real f11exp(m,n,np), f12exp(m,n,np), f22exp(m,n,np) |
_RL f11exp(m,n,np), f12exp(m,n,np), f22exp(m,n,np) |
602 |
real clr(m,n,0:np+1),fclr(m,n) |
_RL clr(m,n,0:np+1),fclr(m,n) |
603 |
real blayer(m,n,0:np+1),dlayer(m,n,np+1),dbs(m,n) |
_RL blayer(m,n,0:np+1),dlayer(m,n,np+1),dbs(m,n) |
604 |
real clrlw(m,n),clrmd(m,n),clrhi(m,n) |
_RL clrlw(m,n),clrmd(m,n),clrhi(m,n) |
605 |
real cwp(m,n,np,3) |
_RL cwp(m,n,np,3) |
606 |
real trant(m,n),tranal(m,n),transfc(m,n,np+1),trantcr(m,n,np+1) |
_RL trant(m,n),tranal(m,n),transfc(m,n,np+1),trantcr(m,n,np+1) |
607 |
real flxu(m,n,np+1),flxd(m,n,np+1),flcu(m,n,np+1),flcd(m,n,np+1) |
_RL flxu(m,n,np+1),flxd(m,n,np+1),flcu(m,n,np+1),flcd(m,n,np+1) |
608 |
real rflx(m,n,np+1),rflc(m,n,np+1) |
_RL rflx(m,n,np+1),rflc(m,n,np+1) |
609 |
|
|
610 |
logical oznbnd,co2bnd,h2otbl,conbnd,n2obnd |
logical oznbnd,co2bnd,h2otbl,conbnd,n2obnd |
611 |
logical ch4bnd,combnd,f11bnd,f12bnd,f22bnd,b10bnd |
logical ch4bnd,combnd,f11bnd,f12bnd,f22bnd,b10bnd |
612 |
|
|
613 |
real c1 (nx,nc,nt),c2 (nx,nc,nt),c3 (nx,nc,nt) |
_RL c1 (nx,nc,nt),c2 (nx,nc,nt),c3 (nx,nc,nt) |
614 |
real o1 (nx,no,nt),o2 (nx,no,nt),o3 (nx,no,nt) |
_RL o1 (nx,no,nt),o2 (nx,no,nt),o3 (nx,no,nt) |
615 |
real h11(nx,nh,nt),h12(nx,nh,nt),h13(nx,nh,nt) |
_RL h11(nx,nh,nt),h12(nx,nh,nt),h13(nx,nh,nt) |
616 |
real h21(nx,nh,nt),h22(nx,nh,nt),h23(nx,nh,nt) |
_RL h21(nx,nh,nt),h22(nx,nh,nt),h23(nx,nh,nt) |
617 |
real h81(nx,nh,nt),h82(nx,nh,nt),h83(nx,nh,nt) |
_RL h81(nx,nh,nt),h82(nx,nh,nt),h83(nx,nh,nt) |
618 |
|
|
619 |
real dp,xx,p1,dwe,dpe,a1,b1,fk1,a2,b2,fk2 |
_RL dp,xx,p1,dwe,dpe,a1,b1,fk1,a2,b2,fk2 |
620 |
real w1,w2,w3,g1,g2,g3,ww,gg,ff,taux,reff1,reff2 |
_RL w1,w2,w3,g1,g2,g3,ww,gg,ff,taux,reff1,reff2 |
621 |
|
|
622 |
c-----the following coefficients (equivalent to table 2 of |
c-----the following coefficients (equivalent to table 2 of |
623 |
c chou and suarez, 1995) are for computing spectrally |
c chou and suarez, 1995) are for computing spectrally |
790 |
#include "co2-tran3.h" |
#include "co2-tran3.h" |
791 |
#include "o3-tran3.h" |
#include "o3-tran3.h" |
792 |
|
|
793 |
save c1,c2,c3,o1,o2,o3 |
c save c1,c2,c3,o1,o2,o3 |
794 |
save h11,h12,h13,h21,h22,h23,h81,h82,h83 |
c save h11,h12,h13,h21,h22,h23,h81,h82,h83 |
795 |
|
|
796 |
if (first) then |
if (first) then |
797 |
|
|
1238 |
enddo |
enddo |
1239 |
enddo |
enddo |
1240 |
|
|
|
|
|
1241 |
do 2000 k1=1,np |
do 2000 k1=1,np |
1242 |
|
|
1243 |
c-----initialize fclr, th2o, tcon, tco2, and tranal |
c-----initialize fclr, th2o, tcon, tco2, and tranal |
1418 |
if (ib.eq.1) then |
if (ib.eq.1) then |
1419 |
call tablup(k1,k2,m,n,np,nx,nh,nt,sh2o,swpre,swtem, |
call tablup(k1,k2,m,n,np,nx,nh,nt,sh2o,swpre,swtem, |
1420 |
* w1,p1,dwe,dpe,h11,h12,h13,trant) |
* w1,p1,dwe,dpe,h11,h12,h13,trant) |
|
|
|
1421 |
endif |
endif |
1422 |
if (ib.eq.2) then |
if (ib.eq.2) then |
1423 |
call tablup(k1,k2,m,n,np,nx,nh,nt,sh2o,swpre,swtem, |
call tablup(k1,k2,m,n,np,nx,nh,nt,sh2o,swpre,swtem, |
1452 |
dpe=0.2 |
dpe=0.2 |
1453 |
call tablup(k1,k2,m,n,np,nx,nc,nt,sco3,scopre,scotem, |
call tablup(k1,k2,m,n,np,nx,nc,nt,sco3,scopre,scotem, |
1454 |
* w1,p1,dwe,dpe,c1,c2,c3,trant) |
* w1,p1,dwe,dpe,c1,c2,c3,trant) |
1455 |
|
|
1456 |
else |
else |
1457 |
|
|
1458 |
c-----compute co2 transmittance using k-distribution method |
c-----compute co2 transmittance using k-distribution method |
1471 |
dpe=0.2 |
dpe=0.2 |
1472 |
call tablup(k1,k2,m,n,np,nx,no,nt,sco3,scopre,scotem, |
call tablup(k1,k2,m,n,np,nx,no,nt,sco3,scopre,scotem, |
1473 |
* w1,p1,dwe,dpe,o1,o2,o3,trant) |
* w1,p1,dwe,dpe,o1,o2,o3,trant) |
1474 |
|
|
1475 |
endif |
endif |
1476 |
|
|
1477 |
c***** for trace gases ***** |
c***** for trace gases ***** |
1731 |
|
|
1732 |
c---- input parameters ----- |
c---- input parameters ----- |
1733 |
|
|
1734 |
real pa(m,n,np),dt(m,n,np),sabs0(m,n,np) |
_RL pa(m,n,np),dt(m,n,np),sabs0(m,n,np) |
1735 |
|
|
1736 |
c---- output parameters ----- |
c---- output parameters ----- |
1737 |
|
|
1738 |
real sabs(m,n,np+1),spre(m,n,np+1),stem(m,n,np+1) |
_RL sabs(m,n,np+1),spre(m,n,np+1),stem(m,n,np+1) |
1739 |
|
|
1740 |
c********************************************************************* |
c********************************************************************* |
1741 |
do j=1,n |
do j=1,n |
1786 |
|
|
1787 |
c---- input parameters ------ |
c---- input parameters ------ |
1788 |
|
|
1789 |
real dh2o(m,n,np),pa(m,n,np),dt(m,n,np) |
_RL dh2o(m,n,np),pa(m,n,np),dt(m,n,np) |
1790 |
|
|
1791 |
c---- output parameters ----- |
c---- output parameters ----- |
1792 |
|
|
1793 |
real h2oexp(m,n,np,6) |
_RL h2oexp(m,n,np,6) |
1794 |
|
|
1795 |
c---- static data ----- |
c---- static data ----- |
1796 |
|
|
1797 |
integer mw(9) |
integer mw(9) |
1798 |
real xkw(9),aw(9),bw(9),pm(9) |
_RL xkw(9),aw(9),bw(9),pm(9) |
1799 |
|
|
1800 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
1801 |
|
|
1802 |
real xh,xh1 |
_RL xh,xh1 |
1803 |
|
|
1804 |
c********************************************************************** |
c********************************************************************** |
1805 |
c note that the 3 sub-bands in band 3 use the same set of xkw, aw, |
c note that the 3 sub-bands in band 3 use the same set of xkw, aw, |
1902 |
|
|
1903 |
c---- input parameters ------ |
c---- input parameters ------ |
1904 |
|
|
1905 |
real dcont(m,n,np) |
_RL dcont(m,n,np) |
1906 |
|
|
1907 |
c---- updated parameters ----- |
c---- updated parameters ----- |
1908 |
|
|
1909 |
real conexp(m,n,np,3) |
_RL conexp(m,n,np,3) |
1910 |
|
|
1911 |
c---- static data ----- |
c---- static data ----- |
1912 |
|
|
1913 |
real xke(9) |
_RL xke(9) |
1914 |
|
|
1915 |
c********************************************************************** |
c********************************************************************** |
1916 |
|
|
1963 |
|
|
1964 |
c---- input parameters ----- |
c---- input parameters ----- |
1965 |
|
|
1966 |
real dco2(m,n,np),pa(m,n,np),dt(m,n,np) |
_RL dco2(m,n,np),pa(m,n,np),dt(m,n,np) |
1967 |
|
|
1968 |
c---- output parameters ----- |
c---- output parameters ----- |
1969 |
|
|
1970 |
real co2exp(m,n,np,6,2) |
_RL co2exp(m,n,np,6,2) |
1971 |
|
|
1972 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
1973 |
|
|
1974 |
real xc |
_RL xc |
1975 |
|
|
1976 |
c********************************************************************** |
c********************************************************************** |
1977 |
|
|
2065 |
|
|
2066 |
c---- input parameters ----- |
c---- input parameters ----- |
2067 |
|
|
2068 |
real dn2o(m,n,np),pa(m,n,np),dt(m,n,np) |
_RL dn2o(m,n,np),pa(m,n,np),dt(m,n,np) |
2069 |
|
|
2070 |
c---- output parameters ----- |
c---- output parameters ----- |
2071 |
|
|
2072 |
real n2oexp(m,n,np,4) |
_RL n2oexp(m,n,np,4) |
2073 |
|
|
2074 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2075 |
|
|
2076 |
real xc,xc1,xc2 |
_RL xc,xc1,xc2 |
2077 |
|
|
2078 |
c********************************************************************** |
c********************************************************************** |
2079 |
|
|
2141 |
|
|
2142 |
c---- input parameters ----- |
c---- input parameters ----- |
2143 |
|
|
2144 |
real dch4(m,n,np),pa(m,n,np),dt(m,n,np) |
_RL dch4(m,n,np),pa(m,n,np),dt(m,n,np) |
2145 |
|
|
2146 |
c---- output parameters ----- |
c---- output parameters ----- |
2147 |
|
|
2148 |
real ch4exp(m,n,np,4) |
_RL ch4exp(m,n,np,4) |
2149 |
|
|
2150 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2151 |
|
|
2152 |
real xc |
_RL xc |
2153 |
|
|
2154 |
c********************************************************************** |
c********************************************************************** |
2155 |
|
|
2213 |
|
|
2214 |
c---- input parameters ----- |
c---- input parameters ----- |
2215 |
|
|
2216 |
real dcom(m,n,np),dt(m,n,np) |
_RL dcom(m,n,np),dt(m,n,np) |
2217 |
|
|
2218 |
c---- output parameters ----- |
c---- output parameters ----- |
2219 |
|
|
2220 |
real comexp(m,n,np,2) |
_RL comexp(m,n,np,2) |
2221 |
|
|
2222 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2223 |
|
|
2224 |
real xc,xc1,xc2 |
_RL xc,xc1,xc2 |
2225 |
|
|
2226 |
c********************************************************************** |
c********************************************************************** |
2227 |
|
|
2290 |
|
|
2291 |
c---- input parameters ----- |
c---- input parameters ----- |
2292 |
|
|
2293 |
real dcfc(m,n,np),dt(m,n,np) |
_RL dcfc(m,n,np),dt(m,n,np) |
2294 |
|
|
2295 |
c---- output parameters ----- |
c---- output parameters ----- |
2296 |
|
|
2297 |
real cfcexp(m,n,np) |
_RL cfcexp(m,n,np) |
2298 |
|
|
2299 |
c---- static data ----- |
c---- static data ----- |
2300 |
|
|
2301 |
real a1,b1,fk1,a2,b2,fk2 |
_RL a1,b1,fk1,a2,b2,fk2 |
2302 |
|
|
2303 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2304 |
|
|
2305 |
real xf |
_RL xf |
2306 |
|
|
2307 |
c********************************************************************** |
c********************************************************************** |
2308 |
|
|
2352 |
|
|
2353 |
c---- input parameters ----- |
c---- input parameters ----- |
2354 |
|
|
2355 |
real dh2o(m,n,np),dcont(m,n,np),dn2o(m,n,np) |
_RL dh2o(m,n,np),dcont(m,n,np),dn2o(m,n,np) |
2356 |
real dco2(m,n,np),pa(m,n,np),dt(m,n,np) |
_RL dco2(m,n,np),pa(m,n,np),dt(m,n,np) |
2357 |
|
|
2358 |
c---- output parameters ----- |
c---- output parameters ----- |
2359 |
|
|
2360 |
real h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
_RL h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
2361 |
* ,n2oexp(m,n,np,4) |
* ,n2oexp(m,n,np,4) |
2362 |
|
|
2363 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2364 |
|
|
2365 |
real xx,xx1,xx2,xx3 |
_RL xx,xx1,xx2,xx3 |
2366 |
|
|
2367 |
c********************************************************************** |
c********************************************************************** |
2368 |
|
|
2503 |
|
|
2504 |
c---- input parameters ----- |
c---- input parameters ----- |
2505 |
|
|
2506 |
real w1,p1,dwe,dpe |
_RL w1,p1,dwe,dpe |
2507 |
real sabs(m,n,np+1),spre(m,n,np+1),stem(m,n,np+1) |
_RL sabs(m,n,np+1),spre(m,n,np+1),stem(m,n,np+1) |
2508 |
real coef1(nx,nh,nt),coef2(nx,nh,nt),coef3(nx,nh,nt) |
_RL coef1(nx,nh,nt),coef2(nx,nh,nt),coef3(nx,nh,nt) |
2509 |
|
|
2510 |
c---- update parameter ----- |
c---- update parameter ----- |
2511 |
|
|
2512 |
real tran(m,n) |
_RL tran(m,n) |
2513 |
|
|
2514 |
c---- temporary variables ----- |
c---- temporary variables ----- |
2515 |
|
|
2516 |
real x1,x2,x3,we,pe,fw,fp,pa,pb,pc,ax,ba,bb,t1,ca,cb,t2 |
_RL x1,x2,x3,we,pe,fw,fp,pa,pb,pc,ax,ba,bb,t1,ca,cb,t2 |
2517 |
integer iw,ip,nn |
integer iw,ip,nn |
2518 |
|
|
2519 |
c********************************************************************** |
c********************************************************************** |
2611 |
|
|
2612 |
c---- input parameters ------ |
c---- input parameters ------ |
2613 |
|
|
2614 |
real conexp(m,n,np,3),h2oexp(m,n,np,6) |
_RL conexp(m,n,np,3),h2oexp(m,n,np,6) |
2615 |
integer ne(9) |
integer ne(9) |
2616 |
real fkw(6,9),gkw(6,3) |
_RL fkw(6,9),gkw(6,3) |
2617 |
|
|
2618 |
c---- updated parameters ----- |
c---- updated parameters ----- |
2619 |
|
|
2620 |
real th2o(m,n,6),tcon(m,n,3),tran(m,n) |
_RL th2o(m,n,6),tcon(m,n,3),tran(m,n) |
2621 |
|
|
2622 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2623 |
|
|
2624 |
real trnth2o |
_RL trnth2o |
2625 |
|
|
2626 |
c-----tco2 are the six exp factors between levels k1 and k2 |
c-----tco2 are the six exp factors between levels k1 and k2 |
2627 |
c tran is the updated total transmittance between levels k1 and k2 |
c tran is the updated total transmittance between levels k1 and k2 |
2745 |
|
|
2746 |
c---- input parameters ----- |
c---- input parameters ----- |
2747 |
|
|
2748 |
real co2exp(m,n,np,6,2) |
_RL co2exp(m,n,np,6,2) |
2749 |
|
|
2750 |
c---- updated parameters ----- |
c---- updated parameters ----- |
2751 |
|
|
2752 |
real tco2(m,n,6,2),tran(m,n) |
_RL tco2(m,n,6,2),tran(m,n) |
2753 |
|
|
2754 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2755 |
|
|
2756 |
real xc |
_RL xc |
2757 |
|
|
2758 |
c-----tco2 is the 6 exp factors between levels k1 and k2. |
c-----tco2 is the 6 exp factors between levels k1 and k2. |
2759 |
c xc is the total co2 transmittance given by eq. (53). |
c xc is the total co2 transmittance given by eq. (53). |
2834 |
|
|
2835 |
c---- input parameters ----- |
c---- input parameters ----- |
2836 |
|
|
2837 |
real n2oexp(m,n,np,4) |
_RL n2oexp(m,n,np,4) |
2838 |
|
|
2839 |
c---- updated parameters ----- |
c---- updated parameters ----- |
2840 |
|
|
2841 |
real tn2o(m,n,4),tran(m,n) |
_RL tn2o(m,n,4),tran(m,n) |
2842 |
|
|
2843 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2844 |
|
|
2845 |
real xc |
_RL xc |
2846 |
|
|
2847 |
c-----tn2o is the 2 exp factors between levels k1 and k2. |
c-----tn2o is the 2 exp factors between levels k1 and k2. |
2848 |
c xc is the total n2o transmittance |
c xc is the total n2o transmittance |
2911 |
|
|
2912 |
c---- input parameters ----- |
c---- input parameters ----- |
2913 |
|
|
2914 |
real ch4exp(m,n,np,4) |
_RL ch4exp(m,n,np,4) |
2915 |
|
|
2916 |
c---- updated parameters ----- |
c---- updated parameters ----- |
2917 |
|
|
2918 |
real tch4(m,n,4),tran(m,n) |
_RL tch4(m,n,4),tran(m,n) |
2919 |
|
|
2920 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2921 |
|
|
2922 |
real xc |
_RL xc |
2923 |
|
|
2924 |
c-----tch4 is the 2 exp factors between levels k1 and k2. |
c-----tch4 is the 2 exp factors between levels k1 and k2. |
2925 |
c xc is the total ch4 transmittance |
c xc is the total ch4 transmittance |
2985 |
|
|
2986 |
c---- input parameters ----- |
c---- input parameters ----- |
2987 |
|
|
2988 |
real comexp(m,n,np,2) |
_RL comexp(m,n,np,2) |
2989 |
|
|
2990 |
c---- updated parameters ----- |
c---- updated parameters ----- |
2991 |
|
|
2992 |
real tcom(m,n,2),tran(m,n) |
_RL tcom(m,n,2),tran(m,n) |
2993 |
|
|
2994 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
2995 |
|
|
2996 |
real xc |
_RL xc |
2997 |
|
|
2998 |
c-----tcom is the 2 exp factors between levels k1 and k2. |
c-----tcom is the 2 exp factors between levels k1 and k2. |
2999 |
c xc is the total co2-minor transmittance |
c xc is the total co2-minor transmittance |
3053 |
|
|
3054 |
c---- input parameters ----- |
c---- input parameters ----- |
3055 |
|
|
3056 |
real cfcexp(m,n,np) |
_RL cfcexp(m,n,np) |
3057 |
|
|
3058 |
c---- updated parameters ----- |
c---- updated parameters ----- |
3059 |
|
|
3060 |
real tcfc(m,n),tran(m,n) |
_RL tcfc(m,n),tran(m,n) |
3061 |
|
|
3062 |
c-----tcfc is the exp factors between levels k1 and k2. |
c-----tcfc is the exp factors between levels k1 and k2. |
3063 |
|
|
3109 |
|
|
3110 |
c---- input parameters ----- |
c---- input parameters ----- |
3111 |
|
|
3112 |
real h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
_RL h2oexp(m,n,np,6),conexp(m,n,np,3),co2exp(m,n,np,6,2) |
3113 |
* ,n2oexp(m,n,np,4) |
* ,n2oexp(m,n,np,4) |
3114 |
|
|
3115 |
c---- updated parameters ----- |
c---- updated parameters ----- |
3116 |
|
|
3117 |
real th2o(m,n,6),tcon(m,n,3),tco2(m,n,6,2),tn2o(m,n,4) |
_RL th2o(m,n,6),tcon(m,n,3),tco2(m,n,6,2),tn2o(m,n,4) |
3118 |
* ,tran(m,n) |
* ,tran(m,n) |
3119 |
|
|
3120 |
c---- temporary arrays ----- |
c---- temporary arrays ----- |
3121 |
|
|
3122 |
real xx |
_RL xx |
3123 |
|
|
3124 |
c-----initialize tran |
c-----initialize tran |
3125 |
|
|