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Contents of /trunk/dyn3d/gcm.f

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Revision 115 - (show annotations)
Fri Sep 19 17:36:20 2014 UTC (9 years, 7 months ago) by guez
File size: 5010 byte(s)
Extracted code from tau2alpha for first call into new procedure
init_tau2alpha. dxdys, dxdyu, dxdyv are now local variables if guide
computed by init_tau2alpha. This allows us to remove terrible argument
type of tau2alpha: we just give to tau2alpha the right dxdy and
rlat.

In module conf_guide_m, changed default values of tau_min_*, because
0.02 is too small for the default daystep = 240, iperiod = 5. Changed
default values of guide_[uv] to false. Moved variable ok_guide from
conf_gcm_m to conf_guide_m, ok_guide is no longer an input parameter,
it is computed from guide_*. Had then to move test on ok_guide and
day_step from conf_gcm_m to conf_guide_m. Added checks on input
nudging parameters in procedure conf_guide. Upgraded variable factt to
module conf_guide_m in order to check nudging parameters. Bug fix:
variable guide_q was not in namelist conf_guide_nml.

Removed unused variables aire_min, aire_max of MODULE guide_m.

Moved the call to conf_guide from guide to gcm. This was needed to
define ok_guide before getting into guide (since ok_guide is no longer
in conf_gcm_m). Moved test on grossismx and grossismy from tau2alpha
to guide. It is clearer now that only tau_max is used for a regular
grid, and we do not have to repeat this test in each call to
tau2alpha. In guide, we only call writefield when alpha is not a
constant.

1 PROGRAM gcm
2
3 ! Authors: P. Le Van, L. Fairhead, F. Hourdin
4 ! From "gcm.F", version 1.4, 2006/04/04 15:05:16
5
6 ! General circulation model of LMD. Avec coordonnée verticale
7 ! hybride, avec nouveaux opérateurs de dissipation "*" ("gradiv2",
8 ! "divgrad2", "nxgraro2"). Possibilité de choisir le schéma pour
9 ! l'advection de "q", en modifiant "iadv" dans "traceur.def".
10
11 use comconst, only: daysec, dtvr, iniconst
12 use comgeom, only: rlatu, aire_2d, cu_2d, cv_2d, rlonv, inigeom
13 use comgeomphy, only: airephy, cuphy, cvphy, rlatd, rlond
14 use conf_gcm_m, only: day_step, iperiod, anneeref, dayref, iecri, iphysiq, &
15 nday, raz_date, periodav, conf_gcm, iflag_phys
16 use conf_guide_m, only: conf_guide
17 use dimens_m, only: iim, jjm, llm, nqmx
18 use dimphy, only: klon
19 USE disvert_m, ONLY : disvert
20 use dynetat0_m, only: dynetat0, day_ini
21 use dynredem0_m, only: dynredem0
22 use grid_change, only: dyn_phy, init_dyn_phy
23 use histclo_m, only: histclo
24 use iniadvtrac_m, only: iniadvtrac
25 use inidissip_m, only: inidissip
26 use inifilr_m, only: inifilr
27 use initdynav_m, only: initdynav
28 use inithist_m, only: inithist
29 use init_dynzon_m, only: init_dynzon
30 USE ioconf_calendar_m, only: ioconf_calendar
31 use jumble, only: new_unit
32 use leapfrog_m, only: leapfrog
33 use netcdf95, only: nf95_close
34 use suphec_m, only: suphec
35 use temps, only: day_ref, annee_ref, day_end, itau_dyn
36 use tracstoke, only: istdyn, istphy
37 use unit_nml_m, only: unit_nml
38 use yoethf_m, only: yoethf
39 use createnewfield_m, only: NbField, Ncid
40
41 IMPLICIT NONE
42
43 ! Variables dynamiques :
44 REAL ucov(iim + 1, jjm + 1, llm), vcov(iim + 1, jjm, llm) ! vent covariant
45 REAL teta(iim + 1, jjm + 1, llm) ! température potentielle
46 REAL q(iim + 1, jjm + 1, llm, nqmx) ! champs advectés
47 REAL ps(iim + 1, jjm + 1) ! pression au sol (Pa)
48 REAL masse(iim + 1, jjm + 1, llm) ! masse d'air
49 REAL phis(iim + 1, jjm + 1) ! géopotentiel au sol
50
51 ! Variables pour le fichier histoire :
52 REAL time_0 ! time in day, as a fraction of day, in [0, 1[
53
54 ! Calendrier :
55 LOGICAL:: true_calendar = .false. ! default value
56
57 logical mask_v(iim + 1, jjm)
58 ! (mask for points in the "v" grid, first index is for longitude,
59 ! second index is for latitude)
60
61 integer i
62
63 namelist /main_nml/true_calendar
64
65 !------------------------------------------------------------
66
67 call new_unit(unit_nml)
68 open(unit_nml, file="used_namelists.txt", status="replace", action="write")
69
70 CALL conf_gcm
71
72 print *, "Enter namelist 'main_nml'."
73 read (unit=*, nml=main_nml)
74 write(unit_nml, nml=main_nml)
75
76 ! Choix du calendrier :
77 if (true_calendar) then
78 call ioconf_calendar('gregorian')
79 else
80 call ioconf_calendar('360d')
81 endif
82
83 ! Initialisation des traceurs
84 ! Choix du schéma pour l'advection dans le fichier "traceur.def" ou via INCA
85 call iniadvtrac
86
87 CALL iniconst
88
89 ! Lecture du fichier "start.nc" :
90 CALL dynetat0(vcov, ucov, teta, q, masse, ps, phis, time_0)
91
92 ! On remet le calendrier à zéro si demandé :
93 if (raz_date) then
94 print *, 'On réinitialise à la date lue dans la namelist.'
95 annee_ref = anneeref
96 day_ref = dayref
97 day_ini = dayref
98 itau_dyn = 0
99 time_0 = 0.
100 else
101 print *, 'On garde les dates du fichier "start".'
102 endif
103
104 CALL disvert
105 CALL inigeom ! initialisation de la géometrie
106 CALL inifilr ! initialisation du filtre
107 CALL inidissip
108 call init_dyn_phy
109
110 ! Initialisation de la physique :
111 IF (iflag_phys == 1) THEN
112 rlatd(1)=rlatu(1)
113 rlatd(2:klon-1) = pack(spread(rlatu(2:jjm), 1, iim), .true.)
114 rlatd(klon)= rlatu(jjm + 1)
115
116 rlond(1)=0.
117 rlond(2:klon-1) = pack(spread(rlonv(:iim), 2, jjm - 1), .true.)
118 rlond(klon)= 0.
119
120 cuphy = pack(cu_2d, dyn_phy)
121
122 ! Construct a mask for points in the "v" grid:
123 mask_v = .true.
124 mask_v(2:, 1) = .false.
125 mask_v(iim + 1, 2:) = .false.
126
127 cvphy(:klon - 1) = pack(cv_2d, mask_v)
128 cvphy(klon) = cv_2d(1, jjm)
129 ! (that value of "cv_2d" is used twice in "cvphy")
130
131 airephy = pack(aire_2d, dyn_phy)
132 CALL suphec
133 call yoethf
134 ENDIF
135
136 ! Initialisation des entrées-sorties :
137 day_end = day_ini + nday
138 print *, "day_ini = ", day_ini
139 print *, "day_end = ", day_end
140
141 CALL dynredem0("restart.nc", day_end, phis)
142 CALL inithist(day_ref, annee_ref, dtvr, nqmx, t_ops = iecri * daysec, &
143 t_wrt = iecri * daysec)
144 CALL initdynav(day_ref, annee_ref, dtvr, nqmx, t_ops = iperiod * dtvr, &
145 t_wrt = periodav * daysec)
146 call init_dynzon(dt_app = dtvr * iperiod)
147
148 ! Choix des fréquences de stockage pour le hors-ligne :
149 istdyn = day_step / 4 ! stockage toutes les 6 h = 1 jour / 4
150 istphy = istdyn / iphysiq
151
152 CALL conf_guide
153
154 ! Intégration temporelle du modèle :
155 CALL leapfrog(ucov, vcov, teta, ps, masse, phis, q, time_0)
156
157 close(unit_nml)
158 call histclo
159
160 do i = 1, nbfield
161 call nf95_close(Ncid(i))
162 end do
163
164 print *, 'Simulation finished'
165 print *, 'Everything is cool'
166
167 END PROGRAM gcm

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