/[MITgcm]/MITgcm/pkg/dic/dic_atmos.F
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Revision 1.12 - (hide annotations) (download)
Mon Aug 11 17:41:05 2008 UTC (16 years, 11 months ago) by dfer
Branch: MAIN
CVS Tags: checkpoint61f, checkpoint61g, checkpoint61d, checkpoint61e, checkpoint61c, checkpoint61l, checkpoint61j, checkpoint61k, checkpoint61h, checkpoint61i
Changes since 1.11: +13 -15 lines
Small fix.

1 dfer 1.12 C $Header: /u/gcmpack/MITgcm/pkg/dic/dic_atmos.F,v 1.11 2008/04/24 21:35:53 gforget Exp $
2 jmc 1.5 C $Name: $
3    
4 stephd 1.1 #include "DIC_OPTIONS.h"
5     #include "PTRACERS_OPTIONS.h"
6    
7     CBOP
8     C !ROUTINE: DIC_ATMOS
9    
10     C !INTERFACE: ==========================================================
11 jmc 1.5 SUBROUTINE DIC_ATMOS( istate, myTime, myIter, myThid )
12 stephd 1.1
13     C !DESCRIPTION:
14     C Calculate the atmospheric pCO2
15 dfer 1.10 C dic_int1:
16 stephd 1.1 C 0=use default 278.d-6
17 dfer 1.10 C 1=use constant value - dic_pCO2, read in from data.dic
18 jmc 1.5 C 2=read in from file
19 stephd 1.1 C 3=interact with atmospheric box
20     C !USES: ===============================================================
21     IMPLICIT NONE
22     #include "SIZE.h"
23     #include "DYNVARS.h"
24     #include "EEPARAMS.h"
25     #include "PARAMS.h"
26     #include "GRID.h"
27     #include "FFIELDS.h"
28 dfer 1.8 #include "DIC_VARS.h"
29 stephd 1.1 #include "PTRACERS_SIZE.h"
30     #include "PTRACERS_FIELDS.h"
31     #include "DIC_ATMOS.h"
32    
33     C !INPUT PARAMETERS: ===================================================
34     C myThid :: thread number
35     C myIter :: current timestep
36     C myTime :: current time
37     C istate :: 0=initial call, 1=subsequent calls
38     INTEGER myIter, myThid, istate
39     _RL myTime
40    
41     #ifdef ALLOW_PTRACERS
42     LOGICAL DIFFERENT_MULTIPLE
43     EXTERNAL DIFFERENT_MULTIPLE
44    
45     C !LOCAL VARIABLES: ====================================================
46     INTEGER bi, bj, I,J,k
47 dfer 1.12 INTEGER ntim, iUnit
48 stephd 1.1 c
49     _RL total_flux
50     _RL total_ocean_carbon_old
51     _RL total_atmos_carbon_old
52     _RL total_atmos_moles
53     _RL atpco2
54     _RL total_carbon_old, total_carbon, carbon_diff
55     _RL tmp
56     _RL year_diff_ocean, year_diff_atmos, year_total
57     _RL start_diff_ocean, start_diff_atmos, start_total
58     C variables for reading CO2 input files
59     _RL aWght, bWght
60     c
61     CHARACTER*(MAX_LEN_FNAM) fn
62     LOGICAL permCheckPoint
63     CEOP
64    
65     cccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccccc
66    
67     c if coupled to atmsopheric model, use the
68     c Co2 value passed from the coupler
69     #ifndef USE_ATMOSCO2
70    
71 jmc 1.6 IF ( nThreads .GT. 1 .AND.
72 dfer 1.10 & ( dic_int1.EQ.2 .OR. dic_int1.EQ.3 ) ) THEN
73 jmc 1.5 C Problem with I/O and global-sum for multi-threaded execution
74     C Needs to be fixed before using this S/R in multi-threaded run
75     STOP 'S/R DIC_ATMOS: multi-threaded not right'
76     ENDIF
77    
78 stephd 1.1 c default - set only once
79 dfer 1.10 if (dic_int1.eq.0.and.istate.eq.0) then
80 stephd 1.1 DO bj=myByLo(myThid),myByHi(myThid)
81     DO bi=myBxLo(myThid),myBxHi(myThid)
82    
83     DO j=1-OLy,sNy+OLy
84     DO i=1-OLx,sNx+OLx
85     AtmospCO2(i,j,bi,bj)=278.0 _d -6
86     ENDDO
87     ENDDO
88    
89     ENDDO
90 dfer 1.12 ENDDO
91 stephd 1.1 endif
92    
93     c user specified value - set only once
94 dfer 1.10 if (dic_int1.eq.1.and.istate.eq.0) then
95 stephd 1.1 DO bj=myByLo(myThid),myByHi(myThid)
96     DO bi=myBxLo(myThid),myBxHi(myThid)
97    
98     DO j=1-OLy,sNy+OLy
99     DO i=1-OLx,sNx+OLx
100 dfer 1.10 AtmospCO2(i,j,bi,bj)=dic_pCO2
101 stephd 1.1 ENDDO
102     ENDDO
103    
104     ENDDO
105 dfer 1.12 ENDDO
106 jmc 1.6 endif
107 stephd 1.1
108     c read from a file (note:
109 dfer 1.10 c dic_int2=number entries to read
110     c dic_int3=start timestep,
111     c dic_int4=timestep between file entries)
112     if (dic_int1.eq.2) then
113 stephd 1.1 c linearly interpolate between file entries
114 dfer 1.10 ntim=int((myIter-dic_int3)/dic_int4)+1
115     aWght = FLOAT(myIter-dic_int3)
116     bWght = FLOAT(dic_int4)
117 jmc 1.5 aWght = 0.5 _d 0 + aWght/bWght - FLOAT(ntim-1)
118     if (aWght.gt.1. _d 0) then
119 stephd 1.1 ntim=ntim+1
120 jmc 1.5 aWght=aWght-1. _d 0
121 stephd 1.1 endif
122 jmc 1.5 bWght = 1. _d 0 - aWght
123 stephd 1.1 tmp=co2atmos(ntim)*bWght+co2atmos(ntim+1)*aWght
124     c print*,'weights',ntim, aWght, bWght, tmp
125    
126     DO bj=myByLo(myThid),myByHi(myThid)
127     DO bi=myBxLo(myThid),myBxHi(myThid)
128    
129     DO j=1-OLy,sNy+OLy
130     DO i=1-OLx,sNx+OLx
131     AtmospCO2(i,j,bi,bj)=tmp
132     ENDDO
133     ENDDO
134    
135     print*,'AtmospCO2(20,20)',AtmospCO2(20,20,bi,bj)
136 jmc 1.5
137 stephd 1.1 ENDDO
138     ENDDO
139    
140    
141 jmc 1.6 endif
142 stephd 1.1
143    
144     c interactive atmosphere
145 dfer 1.10 if (dic_int1.eq.3) then
146 stephd 1.1
147 stephd 1.2 c _BEGIN_MASTER(myThid)
148 stephd 1.1
149 stephd 1.3 cMass dry atmosphere = (5.1352+/-0.0003)d18 kg (Trenberth & Smith,
150     cJournal of Climate 2005)
151     cand Mean molecular mass air = 28.97 g/mol (NASA earth fact sheet)
152     total_atmos_moles= 1.77 _d 20
153     c for 278ppmv we need total_atmos_carbon=4.9206e+16
154    
155 stephd 1.1 if (istate.gt.0) then
156     total_ocean_carbon_old=total_ocean_carbon
157     total_atmos_carbon_old=total_atmos_carbon
158     else
159     total_ocean_carbon_old=0. _d 0
160     total_atmos_carbon_old=0. _d 0
161     endif
162    
163     total_flux= 0. _d 0
164     total_ocean_carbon= 0. _d 0
165    
166     DO bj=myByLo(myThid),myByHi(myThid)
167     DO bi=myBxLo(myThid),myBxHi(myThid)
168     DO i=1,sNx
169     DO j=1,sNy
170     if (istate.gt.0) then
171     total_flux=total_flux+FluxCO2(i,j,bi,bj)*rA(i,j,bi,bj)*
172 dfer 1.12 & maskC(i,j,1,bi,bj)*dTtracerLev(1)
173 jmc 1.5 endif
174 stephd 1.1 DO k=1,nR
175     total_ocean_carbon= total_ocean_carbon+
176 dfer 1.7 & ( Ptracer(i,j,k,bi,bj,1)
177     #ifdef DIC_BIOTIC
178     & +R_cp*Ptracer(i,j,k,bi,bj,4)
179     #endif
180     & ) * rA(i,j,bi,bj)*
181 stephd 1.1 & drF(k)*hFacC(i,j,k,bi,bj)
182     ENDDO
183     ENDDO
184     ENDDO
185     ENDDO
186     ENDDO
187 stephd 1.2
188 stephd 1.1 _GLOBAL_SUM_R8(total_flux,myThid)
189     _GLOBAL_SUM_R8(total_ocean_carbon,myThid)
190    
191     if (istate.eq.0) then
192 gforget 1.11 c use value read in dic_init_fixed
193 dfer 1.12 total_atmos_carbon=total_atmos_carbon_ini
194 stephd 1.1 else
195     c calculate new atmos pCO2
196     total_atmos_carbon=total_atmos_carbon - total_flux
197     c write out if time for a new pickup
198     permCheckPoint = .FALSE.
199     permCheckPoint =
200     & DIFFERENT_MULTIPLE(pChkptFreq,myTime,deltaTClock)
201     if (permCheckPoint) then
202     DO i = 1,MAX_LEN_FNAM
203     fn(i:i) = ' '
204     ENDDO
205     WRITE(fn,'(A,I10.10)') 'dic_atmos.',myIter
206     C Going to really do some IO. Make everyone except master thread wait.
207     _BARRIER
208 stephd 1.3 c write values to new pickup
209 dfer 1.12
210     CALL MDSFINDUNIT( iUnit, myThid )
211     open(iUnit,file=fn,status='new')
212     write(iUnit,*) total_atmos_carbon, atpco2
213     close(iUnit)
214 stephd 1.1
215     endif
216     endif
217    
218 dfer 1.12 atpco2=total_atmos_carbon/total_atmos_moles
219 stephd 1.1
220 jmc 1.5 c print*,'QQpCO2', total_atmos_carbon, atpco2, total_ocean_carbon,
221 stephd 1.1 c & total_flux
222    
223     DO bj=myByLo(myThid),myByHi(myThid)
224     DO bi=myBxLo(myThid),myBxHi(myThid)
225    
226     DO j=1-OLy,sNy+OLy
227     DO i=1-OLx,sNx+OLx
228     AtmospCO2(i,j,bi,bj)=atpco2
229     ENDDO
230     ENDDO
231    
232     ENDDO
233 dfer 1.12 ENDDO
234 stephd 1.1
235     print*,'QQ atmos C, total, pCo2', total_atmos_carbon, atpco2
236     total_carbon=total_atmos_carbon + total_ocean_carbon
237     total_carbon_old=total_atmos_carbon_old + total_ocean_carbon_old
238     carbon_diff=total_carbon-total_carbon_old
239 jmc 1.5 print*,'QQ total C, current, old, diff', total_carbon,
240 stephd 1.1 & total_carbon_old, carbon_diff
241     carbon_diff=total_ocean_carbon-total_ocean_carbon_old
242     tmp=carbon_diff-total_flux
243     print*,'QQ ocean C, current, old, diff',total_ocean_carbon,
244     & total_ocean_carbon_old, carbon_diff
245     print*,'QQ air-sea flux, addition diff', total_flux, tmp
246    
247     c if end of forcing cycle, find total change in ocean carbon
248     if (istate.eq.0) then
249     total_ocean_carbon_start=total_ocean_carbon
250     total_ocean_carbon_year=total_ocean_carbon
251     total_atmos_carbon_start=total_atmos_carbon
252     total_atmos_carbon_year=total_atmos_carbon
253     else
254     permCheckPoint = .FALSE.
255     permCheckPoint =
256     & DIFFERENT_MULTIPLE(externForcingCycle,myTime,deltaTClock)
257     if (permCheckPoint) then
258     year_diff_ocean=total_ocean_carbon-total_ocean_carbon_year
259     year_diff_atmos=total_atmos_carbon-total_atmos_carbon_year
260     year_total=(total_ocean_carbon+total_atmos_carbon) -
261     & (total_ocean_carbon_year+total_atmos_carbon_year)
262     start_diff_ocean=total_ocean_carbon-total_ocean_carbon_start
263     start_diff_atmos=total_atmos_carbon-total_atmos_carbon_start
264     start_total=(total_ocean_carbon+total_atmos_carbon) -
265     & (total_ocean_carbon_start+total_atmos_carbon_start)
266     print*,'QQ YEAR END'
267     print*,'year diff: ocean, atmos, total', year_diff_ocean,
268     & year_diff_atmos, year_total
269     print*,'start diff: ocean, atmos, total ', start_diff_ocean,
270     & start_diff_atmos, start_total
271     c
272     total_ocean_carbon_year=total_ocean_carbon
273     total_atmos_carbon_year=total_atmos_carbon
274     endif
275     endif
276    
277 stephd 1.2 c _END_MASTER(myThid)
278 stephd 1.1
279 jmc 1.6 endif
280 stephd 1.1
281     #endif
282     #endif
283    
284 jmc 1.6 RETURN
285     END

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