/[lmdze]/trunk/Sources/dyn3d/etat0.f
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Annotation of /trunk/Sources/dyn3d/etat0.f

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Revision 163 - (hide annotations)
Fri Jul 24 18:14:04 2015 UTC (8 years, 10 months ago) by guez
File size: 11693 byte(s)
In etat0, do not use masse computed by caldyn0, use masse averaged at
the poles which is computed higher in etat0 (following LMDZ). Changes
restart.nc.

1 guez 3 module etat0_mod
2    
3     use indicesol, only: nbsrf
4     use dimphy, only: klon
5    
6     IMPLICIT NONE
7    
8     REAL pctsrf(klon, nbsrf)
9 guez 15 ! ("pctsrf(i, :)" is the composition of the surface at horizontal
10 guez 78 ! position "i")
11 guez 3
12     private nbsrf, klon
13    
14     contains
15    
16 guez 107 SUBROUTINE etat0(phis)
17 guez 3
18 guez 90 ! From "etat0_netcdf.F", version 1.3, 2005/05/25 13:10:09
19 guez 3
20 guez 27 use caldyn0_m, only: caldyn0
21 guez 79 use comconst, only: cpp, kappa, iniconst
22 guez 139 use comgeom, only: aire_2d, apoln, apols, cu_2d, cv_2d, inigeom
23 guez 157 use conf_gcm_m, only: nday, day_step, iphysiq
24 guez 27 use dimens_m, only: iim, jjm, llm, nqmx
25 guez 3 use dimphy, only: zmasq
26     use dimsoil, only: nsoilmx
27 guez 79 use disvert_m, only: ap, bp, preff, pa, disvert
28 guez 139 use dynetat0_m, only: day_ref, annee_ref, xprimp025, xprimm025, rlatu1, &
29     rlatu2, rlatu, rlatv, yprimu1, yprimu2, rlonu, rlonv, xprimu, xprimv
30 guez 27 use dynredem0_m, only: dynredem0
31     use dynredem1_m, only: dynredem1
32     use exner_hyb_m, only: exner_hyb
33 guez 139 use fxhyp_m, only: fxhyp
34     use fyhyp_m, only: fyhyp
35 guez 43 use geopot_m, only: geopot
36 guez 3 use grid_atob, only: grille_m
37     use grid_change, only: init_dyn_phy, dyn_phy
38 guez 27 use indicesol, only: is_oce, is_sic, is_ter, is_lic, epsfra
39 guez 18 use iniadvtrac_m, only: iniadvtrac
40 guez 54 use inifilr_m, only: inifilr
41 guez 67 use massdair_m, only: massdair
42 guez 48 use netcdf, only: nf90_nowrite
43 guez 157 use netcdf95, only: nf95_close, nf95_get_var, nf95_gw_var, nf95_put_var, &
44 guez 68 nf95_inq_varid, nf95_open
45 guez 90 use nr_util, only: pi, assert
46 guez 27 use paramet_m, only: ip1jm, ip1jmp1
47 guez 138 use phyetat0_m, only: rlat, rlon
48 guez 157 use phyredem0_m, only: phyredem0, ncid_restartphy
49 guez 27 use phyredem_m, only: phyredem
50     use q_sat_m, only: q_sat
51 guez 7 use regr_lat_time_coefoz_m, only: regr_lat_time_coefoz
52     use regr_pr_o3_m, only: regr_pr_o3
53 guez 68 use startdyn, only: start_init_dyn
54 guez 78 USE start_init_orog_m, only: start_init_orog, mask
55 guez 43 use start_init_phys_m, only: start_init_phys
56 guez 54 use start_inter_3d_m, only: start_inter_3d
57 guez 129 use temps, only: itau_phy
58 guez 99 use test_disvert_m, only: test_disvert
59 guez 129 use unit_nml_m, only: unit_nml
60 guez 3
61 guez 107 REAL, intent(out):: phis(:, :) ! (iim + 1, jjm + 1)
62     ! surface geopotential, in m2 s-2
63 guez 3
64 guez 107 ! Local:
65    
66 guez 73 REAL, dimension(iim + 1, jjm + 1, llm):: ucov, t3d, teta
67 guez 65 REAL vcov(iim + 1, jjm, llm)
68 guez 3
69 guez 68 REAL q(iim + 1, jjm + 1, llm, nqmx)
70 guez 3 ! (mass fractions of trace species
71 guez 68 ! "q(i, j, l)" is at longitude "rlonv(i)", latitude "rlatu(j)"
72 guez 3 ! and pressure level "pls(i, j, l)".)
73    
74     real qsat(iim + 1, jjm + 1, llm) ! mass fraction of saturating water vapor
75 guez 99 REAL qsolsrf(klon, nbsrf), snsrf(klon, nbsrf)
76 guez 3 REAL albe(klon, nbsrf), evap(klon, nbsrf)
77     REAL tsoil(klon, nsoilmx, nbsrf)
78 guez 157 REAL null_array(klon)
79     REAL solsw(klon), sollw(klon)
80 guez 3 !IM "slab" ocean
81     REAL frugs(klon, nbsrf), agesno(klon, nbsrf)
82     REAL rugmer(klon)
83 guez 78 real, dimension(iim + 1, jjm + 1):: zmea_2d, zstd_2d, zsig_2d, zgam_2d
84 guez 3 real, dimension(iim + 1, jjm + 1):: zthe_2d, zpic_2d, zval_2d
85 guez 73 real, dimension(iim + 1, jjm + 1):: tsol_2d, qsol_2d, ps
86 guez 3 REAL zmea(klon), zstd(klon)
87     REAL zsig(klon), zgam(klon)
88     REAL zthe(klon)
89     REAL zpic(klon), zval(klon)
90 guez 78 REAL t_ancien(klon, llm), q_ancien(klon, llm)
91 guez 3 real clwcon(klon, llm), rnebcon(klon, llm), ratqs(klon, llm)
92 guez 68
93 guez 90 ! D\'eclarations pour lecture glace de mer :
94 guez 68 INTEGER iml_lic, jml_lic
95     INTEGER ncid, varid
96     REAL, pointer:: dlon_lic(:), dlat_lic(:)
97 guez 3 REAL, ALLOCATABLE:: fraclic(:, :) ! fraction land ice
98 guez 68 REAL flic_tmp(iim + 1, jjm + 1) ! fraction land ice temporary
99 guez 3
100     INTEGER l, ji
101    
102     REAL pk(iim + 1, jjm + 1, llm) ! fonction d'Exner aux milieux des couches
103     real pks(iim + 1, jjm + 1)
104     REAL masse(iim + 1, jjm + 1, llm)
105 guez 70 REAL phi(iim + 1, jjm + 1, llm)
106 guez 72 real sig1(klon, llm) ! section adiabatic updraft
107     real w01(klon, llm) ! vertical velocity within adiabatic updraft
108    
109 guez 97 real pls(iim + 1, jjm + 1, llm)
110     ! (pressure at mid-layer of LMDZ grid, in Pa)
111     ! "pls(i, j, l)" is at longitude "rlonv(i)", latitude "rlatu(j)",
112     ! for layer "l")
113    
114     REAL p3d(iim + 1, jjm + 1, llm+1) ! pressure at layer interfaces, in Pa
115     ! ("p3d(i, j, l)" is at longitude "rlonv(i)", latitude "rlatu(j)",
116     ! for interface "l")
117    
118 guez 129 namelist /etat0_nml/ day_ref, annee_ref
119    
120 guez 3 !---------------------------------
121    
122     print *, "Call sequence information: etat0"
123    
124 guez 129 print *, "Enter namelist 'etat0_nml'."
125     read(unit=*, nml=etat0_nml)
126     write(unit_nml, nml=etat0_nml)
127    
128 guez 79 CALL iniconst
129 guez 3
130 guez 36 ! Construct a grid:
131    
132 guez 3 pa = 5e4
133 guez 79 CALL disvert
134 guez 99 call test_disvert
135 guez 139
136     CALL fyhyp(rlatu, rlatv, rlatu2, yprimu2, rlatu1, yprimu1)
137     CALL fxhyp(xprimm025, rlonv, xprimv, rlonu, xprimu, xprimp025)
138    
139     rlatu(1) = pi / 2.
140     rlatu(jjm + 1) = -rlatu(1)
141    
142 guez 3 CALL inigeom
143     CALL inifilr
144    
145 guez 138 rlat(1) = 90.
146     rlat(2:klon-1) = pack(spread(rlatu(2:jjm), 1, iim), .true.) * 180. / pi
147 guez 3 ! (with conversion to degrees)
148 guez 138 rlat(klon) = - 90.
149 guez 3
150 guez 138 rlon(1) = 0.
151     rlon(2:klon-1) = pack(spread(rlonv(:iim), 2, jjm - 1), .true.) * 180. / pi
152 guez 3 ! (with conversion to degrees)
153 guez 138 rlon(klon) = 0.
154 guez 3
155 guez 78 call start_init_orog(phis, zmea_2d, zstd_2d, zsig_2d, zgam_2d, zthe_2d, &
156     zpic_2d, zval_2d) ! also compute "mask"
157 guez 3 call init_dyn_phy ! define the mask "dyn_phy" for distinct grid points
158 guez 15 zmasq = pack(mask, dyn_phy)
159 guez 3 PRINT *, 'Masque construit'
160    
161 guez 43 call start_init_phys(tsol_2d, qsol_2d)
162 guez 78 CALL start_init_dyn(tsol_2d, phis, ps)
163 guez 3
164     ! Compute pressure on intermediate levels:
165 guez 73 forall(l = 1: llm + 1) p3d(:, :, l) = ap(l) + bp(l) * ps
166     CALL exner_hyb(ps, p3d, pks, pk)
167 guez 90 call assert(MINVAL(pk) /= MAXVAL(pk), '"pk" should not be constant')
168 guez 3
169 guez 36 pls = preff * (pk / cpp)**(1. / kappa)
170     PRINT *, "minval(pls) = ", minval(pls)
171     print *, "maxval(pls) = ", maxval(pls)
172 guez 3
173 guez 65 call start_inter_3d('U', rlonv, rlatv, pls, ucov)
174     forall (l = 1: llm) ucov(:iim, :, l) = ucov(:iim, :, l) * cu_2d(:iim, :)
175     ucov(iim+1, :, :) = ucov(1, :, :)
176 guez 3
177 guez 65 call start_inter_3d('V', rlonu, rlatu(:jjm), pls(:, :jjm, :), vcov)
178     forall (l = 1: llm) vcov(:iim, :, l) = vcov(:iim, :, l) * cv_2d(:iim, :)
179     vcov(iim + 1, :, :) = vcov(1, :, :)
180 guez 3
181 guez 23 call start_inter_3d('TEMP', rlonu, rlatv, pls, t3d)
182 guez 78 PRINT *, 'minval(t3d) = ', minval(t3d)
183 guez 36 print *, "maxval(t3d) = ", maxval(t3d)
184 guez 3
185 guez 73 teta(:iim, :, :) = t3d(:iim, :, :) * cpp / pk(:iim, :, :)
186     teta(iim + 1, :, :) = teta(1, :, :)
187     DO l = 1, llm
188     teta(:, 1, l) = SUM(aire_2d(:, 1) * teta(:, 1, l)) / apoln
189     teta(:, jjm + 1, l) = SUM(aire_2d(:, jjm + 1) * teta(:, jjm + 1, l)) &
190 guez 3 / apols
191     ENDDO
192    
193 guez 90 ! Calcul de l'humidit\'e \`a saturation :
194 guez 36 qsat = q_sat(t3d, pls)
195     PRINT *, "minval(qsat) = ", minval(qsat)
196     print *, "maxval(qsat) = ", maxval(qsat)
197 guez 3 IF (MINVAL(qsat) == MAXVAL(qsat)) stop '"qsat" should not be constant'
198    
199     ! Water vapor:
200 guez 68 call start_inter_3d('R', rlonu, rlatv, pls, q(:, :, :, 1))
201     q(:, :, :, 1) = 0.01 * q(:, :, :, 1) * qsat
202     WHERE (q(:, :, :, 1) < 0.) q(:, :, :, 1) = 1E-10
203 guez 3 DO l = 1, llm
204 guez 68 q(:, 1, l, 1) = SUM(aire_2d(:, 1) * q(:, 1, l, 1)) / apoln
205     q(:, jjm + 1, l, 1) &
206     = SUM(aire_2d(:, jjm + 1) * q(:, jjm + 1, l, 1)) / apols
207 guez 3 ENDDO
208    
209 guez 68 q(:, :, :, 2:4) = 0. ! liquid water, radon and lead
210 guez 3
211 guez 5 if (nqmx >= 5) then
212     ! Ozone:
213 guez 7 call regr_lat_time_coefoz
214 guez 97 call regr_pr_o3(p3d, q(:, :, :, 5))
215 guez 7 ! Convert from mole fraction to mass fraction:
216 guez 78 q(:, :, :, 5) = q(:, :, :, 5) * 48. / 29.
217 guez 5 end if
218 guez 3
219 guez 157 null_array = 0.
220 guez 13 rugmer = 0.001
221 guez 78 zmea = pack(zmea_2d, dyn_phy)
222 guez 13 zstd = pack(zstd_2d, dyn_phy)
223     zsig = pack(zsig_2d, dyn_phy)
224     zgam = pack(zgam_2d, dyn_phy)
225     zthe = pack(zthe_2d, dyn_phy)
226     zpic = pack(zpic_2d, dyn_phy)
227     zval = pack(zval_2d, dyn_phy)
228 guez 3
229 guez 49 ! On initialise les sous-surfaces.
230 guez 3 ! Lecture du fichier glace de terre pour fixer la fraction de terre
231 guez 49 ! et de glace de terre :
232 guez 68
233 guez 48 call nf95_open("landiceref.nc", nf90_nowrite, ncid)
234 guez 68
235     call nf95_inq_varid(ncid, 'longitude', varid)
236     call nf95_gw_var(ncid, varid, dlon_lic)
237     iml_lic = size(dlon_lic)
238    
239     call nf95_inq_varid(ncid, 'latitude', varid)
240     call nf95_gw_var(ncid, varid, dlat_lic)
241     jml_lic = size(dlat_lic)
242    
243 guez 48 call nf95_inq_varid(ncid, 'landice', varid)
244 guez 68 ALLOCATE(fraclic(iml_lic, jml_lic))
245 guez 48 call nf95_get_var(ncid, varid, fraclic)
246 guez 68
247 guez 48 call nf95_close(ncid)
248 guez 3
249 guez 90 ! Interpolation sur la grille T du mod\`ele :
250 guez 68 PRINT *, 'Dimensions de "landiceref.nc"'
251 guez 3 print *, "iml_lic = ", iml_lic
252     print *, "jml_lic = ", jml_lic
253    
254 guez 90 ! Si les coordonn\'ees sont en degr\'es, on les transforme :
255 guez 78 IF (MAXVAL(dlon_lic) > pi) THEN
256 guez 68 dlon_lic = dlon_lic * pi / 180.
257 guez 3 ENDIF
258 guez 73 IF (maxval(dlat_lic) > pi) THEN
259 guez 68 dlat_lic = dlat_lic * pi/ 180.
260 guez 3 ENDIF
261    
262     flic_tmp(:iim, :) = grille_m(dlon_lic, dlat_lic, fraclic, rlonv(:iim), &
263     rlatu)
264     flic_tmp(iim + 1, :) = flic_tmp(1, :)
265    
266 guez 68 deallocate(dlon_lic, dlat_lic) ! pointers
267    
268 guez 3 ! Passage sur la grille physique
269 guez 15 pctsrf = 0.
270 guez 3 pctsrf(:, is_lic) = pack(flic_tmp, dyn_phy)
271 guez 90 ! Ad\'equation avec le maque terre/mer
272 guez 73 WHERE (pctsrf(:, is_lic) < EPSFRA) pctsrf(:, is_lic) = 0.
273 guez 13 WHERE (zmasq < EPSFRA) pctsrf(:, is_lic) = 0.
274     pctsrf(:, is_ter) = zmasq
275     where (zmasq > EPSFRA)
276     where (pctsrf(:, is_lic) >= zmasq)
277     pctsrf(:, is_lic) = zmasq
278 guez 3 pctsrf(:, is_ter) = 0.
279     elsewhere
280 guez 13 pctsrf(:, is_ter) = zmasq - pctsrf(:, is_lic)
281 guez 3 where (pctsrf(:, is_ter) < EPSFRA)
282     pctsrf(:, is_ter) = 0.
283 guez 13 pctsrf(:, is_lic) = zmasq
284 guez 3 end where
285     end where
286     end where
287    
288 guez 90 ! Sous-surface oc\'ean et glace de mer (pour d\'emarrer on met glace
289     ! de mer \`a 0) :
290 guez 13 pctsrf(:, is_oce) = 1. - zmasq
291 guez 3 WHERE (pctsrf(:, is_oce) < EPSFRA) pctsrf(:, is_oce) = 0.
292    
293 guez 163 ! V\'erification que la somme des sous-surfaces vaut 1 :
294 guez 15 ji = count(abs(sum(pctsrf, dim = 2) - 1.) > EPSFRA)
295     IF (ji /= 0) then
296 guez 91 PRINT *, 'Bad surface percentages for ', ji, 'points'
297 guez 15 end IF
298 guez 3
299 guez 90 ! Calcul interm\'ediaire :
300 guez 3 CALL massdair(p3d, masse)
301    
302 guez 78 forall (l = 1:llm)
303 guez 3 masse(:, 1, l) = SUM(aire_2d(:iim, 1) * masse(:iim, 1, l)) / apoln
304     masse(:, jjm + 1, l) = &
305     SUM(aire_2d(:iim, jjm + 1) * masse(:iim, jjm + 1, l)) / apols
306     END forall
307    
308 guez 5 call iniadvtrac
309 guez 78 CALL geopot(teta, pk , pks, phis, phi)
310 guez 163 CALL caldyn0(ucov, vcov, teta, ps, pk, phis, phi)
311 guez 157 CALL dynredem0(day_ref, phis)
312     CALL dynredem1(vcov, ucov, teta, q, masse, ps, itau = 0)
313 guez 3
314     ! Initialisations :
315 guez 157 snsrf = 0.
316 guez 3 albe(:, is_ter) = 0.08
317     albe(:, is_lic) = 0.6
318     albe(:, is_oce) = 0.5
319     albe(:, is_sic) = 0.6
320 guez 15 evap = 0.
321 guez 99 qsolsrf = 150.
322     tsoil = spread(spread(pack(tsol_2d, dyn_phy), 2, nsoilmx), 3, nbsrf)
323 guez 3 solsw = 165.
324     sollw = -53.
325     t_ancien = 273.15
326     q_ancien = 0.
327     agesno = 0.
328    
329 guez 13 frugs(:, is_oce) = rugmer
330 guez 78 frugs(:, is_ter) = MAX(1e-5, zstd * zsig / 2)
331     frugs(:, is_lic) = MAX(1e-5, zstd * zsig / 2)
332 guez 3 frugs(:, is_sic) = 0.001
333     clwcon = 0.
334     rnebcon = 0.
335     ratqs = 0.
336 guez 72 sig1 = 0.
337     w01 = 0.
338 guez 3
339 guez 157 itau_phy = 0
340     nday = 0
341     call phyredem0(lmt_pas = day_step / iphysiq)
342    
343     call nf95_inq_varid(ncid_restartphy, "trs", varid)
344     call nf95_put_var(ncid_restartphy, varid, null_array)
345    
346     call phyredem(pctsrf, tsoil(:, 1, :), tsoil, tsoil(:, 1, is_oce), &
347     null_array, qsolsrf, pack(qsol_2d, dyn_phy), snsrf, albe, evap, &
348     null_array, null_array, solsw, sollw, null_array, null_array, frugs, &
349 guez 155 agesno, zmea, zstd, zsig, zgam, zthe, zpic, zval, t_ancien, &
350 guez 157 q_ancien, rnebcon, ratqs, clwcon, null_array, sig1, w01)
351 guez 3
352     END SUBROUTINE etat0
353    
354     end module etat0_mod

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