/[lmdze]/trunk/phylmd/ini_histins.f
ViewVC logotype

Contents of /trunk/phylmd/ini_histins.f

Parent Directory Parent Directory | Revision Log Revision Log


Revision 301 - (show annotations)
Thu Aug 2 17:23:07 2018 UTC (5 years, 9 months ago) by guez
File size: 14049 byte(s)
Move the call to conf_interface up to physiq, so there is no need to
test first call inside pbl_surface for this.

run_off_lic in fonte_neige was computed but not used. Pass it up to
pbl_surface so we can output it (following LMDZ).

Simplify the logic in interfsur_lim so we do not need debut.

Remove the tests on the order of surface types in interfsurf_hq. Just
add comments in indicesol.

1 module ini_histins_m
2
3 implicit none
4
5 integer, save:: nid_ins
6
7 contains
8
9 subroutine ini_histins(ok_newmicro)
10
11 ! From phylmd/ini_histins.h, version 1.2, 2005/05/25 13:10:09
12
13 use clesphys, only: ecrit_ins, ok_instan
14 use clesphys2, only: conv_emanuel
15 use comconst, only: dtphys
16 use dimensions, only: iim, jjm, llm, nqmx
17 use disvert_m, only: presnivs
18 use dynetat0_m, only: day_ref, annee_ref, rlatu, rlonv
19 USE histbeg_totreg_m, ONLY : histbeg_totreg
20 USE histdef_m, ONLY : histdef
21 USE histend_m, ONLY : histend
22 USE histvert_m, ONLY : histvert
23 use indicesol, only: nbsrf, clnsurf
24 use iniadvtrac_m, only: tname, ttext
25 use nr_util, only: pi
26 use phyetat0_m, only: itau_phy
27 USE ymds2ju_m, only: ymds2ju
28
29 logical, intent(in):: ok_newmicro
30
31 ! Local:
32 real zjulian, zsto, zout
33 integer nhori, nvert, nsrf, iq, it
34
35 !-------------------------------------------------------------------
36
37 print *, 'Call sequence information: ini_histins'
38
39 test_ok_instan: IF (ok_instan) THEN
40 zsto = dtphys * ecrit_ins
41 zout = dtphys * ecrit_ins
42 CALL ymds2ju(annee_ref, 1, day_ref, 0.0, zjulian)
43 CALL histbeg_totreg("histins", rlonv(:iim) / pi * 180., &
44 rlatu / pi * 180., 1, iim, &
45 1, jjm + 1, itau_phy, zjulian, dtphys, nhori, nid_ins)
46 print *, 'itau_phy = ', itau_phy
47 print *, "zjulian = ", zjulian
48 CALL histvert(nid_ins, "presnivs", "Vertical levels", "mb", &
49 presnivs/100., nvert)
50
51 CALL histdef(nid_ins, "phis", "surface geopotential", "m2 s-2", &
52 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
53 "once", zsto, zout)
54 CALL histdef(nid_ins, "aire", "Grid area", "-", &
55 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
56 "once", zsto, zout)
57
58 ! Champs 2D:
59
60 CALL histdef(nid_ins, "tsol", "Surface Temperature", "K", &
61 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
62 "inst(X)", zsto, zout)
63 CALL histdef(nid_ins, "t2m", "Temperature 2m", "K", &
64 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
65 "inst(X)", zsto, zout)
66 CALL histdef(nid_ins, "q2m", "Specific humidity 2m", "Kg/Kg", &
67 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
68 "inst(X)", zsto, zout)
69 CALL histdef(nid_ins, "u10m", "Vent zonal 10m", "m/s", &
70 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
71 "inst(X)", zsto, zout)
72 CALL histdef(nid_ins, "v10m", "Vent meridien 10m", "m/s", &
73 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
74 "inst(X)", zsto, zout)
75 CALL histdef(nid_ins, "psol", "Surface Pressure", "Pa", &
76 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
77 "inst(X)", zsto, zout)
78 CALL histdef(nid_ins, "plul", "Large-scale Precip.", "mm/day", &
79 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
80 "inst(X)", zsto, zout)
81 CALL histdef(nid_ins, "pluc", "Convective Precip.", "mm/day", &
82 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
83 "inst(X)", zsto, zout)
84 CALL histdef(nid_ins, "cdrm", "Momentum drag coef.", "-", &
85 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
86 "inst(X)", zsto, zout)
87 CALL histdef(nid_ins, "cdrh", "Heat drag coef.", "-", &
88 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
89 "inst(X)", zsto, zout)
90 CALL histdef(nid_ins, "precip", "Precipitation Totale liq+sol", &
91 "kg/(s*m2)", &
92 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
93 "inst(X)", zsto, zout)
94 CALL histdef(nid_ins, "snow", "Snow fall", "kg/(s*m2)", &
95 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
96 "inst(X)", zsto, zout)
97 CALL histdef(nid_ins, "topl", "OLR", "W/m2", &
98 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
99 "inst(X)", zsto, zout)
100 CALL histdef(nid_ins, "evap", "Evaporation", "kg/(s*m2)", &
101 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
102 "inst(X)", zsto, zout)
103 CALL histdef(nid_ins, "sols", "Solar rad. at surf.", "W/m2", &
104 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
105 "inst(X)", zsto, zout)
106 CALL histdef(nid_ins, "soll", "IR rad. at surface", "W/m2", &
107 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
108 "inst(X)", zsto, zout)
109 CALL histdef(nid_ins, "solldown", "Down. IR rad. at surface", &
110 "W/m2", iim, (jjm + 1), nhori, 1, 1, 1, -99, &
111 "inst(X)", zsto, zout)
112 CALL histdef(nid_ins, "bils", "Surf. total heat flux", "W/m2", &
113 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
114 "inst(X)", zsto, zout)
115 CALL histdef(nid_ins, "sens", "Sensible heat flux", "W/m2", &
116 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
117 "inst(X)", zsto, zout)
118 CALL histdef(nid_ins, "fder", "Heat flux derivation", "W/m2", &
119 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
120 "inst(X)", zsto, zout)
121 CALL histdef(nid_ins, "dtsvdfo", "Boundary-layer dTs(o)", "K/s", &
122 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
123 "inst(X)", zsto, zout)
124 CALL histdef(nid_ins, "dtsvdft", "Boundary-layer dTs(t)", "K/s", &
125 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
126 "inst(X)", zsto, zout)
127 CALL histdef(nid_ins, "dtsvdfg", "Boundary-layer dTs(g)", "K/s", &
128 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
129 "inst(X)", zsto, zout)
130 CALL histdef(nid_ins, "dtsvdfi", "Boundary-layer dTs(g)", "K/s", &
131 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
132 "inst(X)", zsto, zout)
133 CALL histdef(nid_ins, "msnow", "surface snow amount", "kg/m2", &
134 iim, jjm + 1, nhori, 1, 1, 1, -99, "inst(X)", zsto, zout)
135 CALL histdef(nid_ins, "zxfqcalving", "ice calving", "kg m-2 s-1", &
136 iim, jjm + 1, nhori, 1, 1, 1, -99, "inst(X)", zsto, zout)
137 CALL histdef(nid_ins, "run_off_lic", "land ice melt to ocean", &
138 "kg m-2 s-1", iim, jjm + 1, nhori, 1, 1, 1, -99, "inst(X)", zsto, &
139 zout)
140
141 DO nsrf = 1, nbsrf
142 call histdef(nid_ins, "pourc_"//clnsurf(nsrf), &
143 "% "//clnsurf(nsrf), "%", &
144 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
145 "inst(X)", zsto, zout)
146 call histdef(nid_ins, "fract_"//clnsurf(nsrf), &
147 "Fraction "//clnsurf(nsrf), "1", &
148 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
149 "inst(X)", zsto, zout)
150 call histdef(nid_ins, "sens_"//clnsurf(nsrf), &
151 "Sensible heat flux "//clnsurf(nsrf), "W/m2", &
152 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
153 "inst(X)", zsto, zout)
154 call histdef(nid_ins, "tsol_"//clnsurf(nsrf), &
155 "Surface Temperature"//clnsurf(nsrf), "W/m2", &
156 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
157 "inst(X)", zsto, zout)
158 call histdef(nid_ins, "lat_"//clnsurf(nsrf), &
159 "Latent heat flux "//clnsurf(nsrf), "W/m2", &
160 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
161 "inst(X)", zsto, zout)
162 call histdef(nid_ins, "taux_"//clnsurf(nsrf), &
163 "Zonal wind stress"//clnsurf(nsrf), "Pa", &
164 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
165 "inst(X)", zsto, zout)
166 call histdef(nid_ins, "tauy_"//clnsurf(nsrf), &
167 "Meridional xind stress "//clnsurf(nsrf), "Pa", &
168 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
169 "inst(X)", zsto, zout)
170 call histdef(nid_ins, "albe_"//clnsurf(nsrf), &
171 "Albedo "//clnsurf(nsrf), "-", &
172 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
173 "inst(X)", zsto, zout)
174 call histdef(nid_ins, "rugs_"//clnsurf(nsrf), &
175 "rugosite "//clnsurf(nsrf), "-", &
176 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
177 "inst(X)", zsto, zout)
178 call histdef(nid_ins, "u10m_"//clnsurf(nsrf), &
179 "zonal wind 10 m "//clnsurf(nsrf), "m s-1", &
180 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
181 "inst(X)", zsto, zout)
182 call histdef(nid_ins, "v10m_"//clnsurf(nsrf), &
183 "meridional wind 10 m "//clnsurf(nsrf), "m s-1", &
184 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
185 "inst(X)", zsto, zout)
186 END DO
187
188 CALL histdef(nid_ins, "rugs", "rugosity", "-", &
189 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
190 "inst(X)", zsto, zout)
191 CALL histdef(nid_ins, "albs", "Surface albedo", "-", &
192 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
193 "inst(X)", zsto, zout)
194 CALL histdef(nid_ins, "s_pblh", "Boundary Layer Height", "m", &
195 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
196 "inst(X)", zsto, zout)
197 CALL histdef(nid_ins, "s_pblt", "T at Boundary Layer Height", &
198 "K", &
199 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
200 "inst(X)", zsto, zout)
201 CALL histdef(nid_ins, "s_lcl", "Condensation level", "m", &
202 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
203 "inst(X)", zsto, zout)
204 CALL histdef(nid_ins, "s_capCL", &
205 "Convective available potential energy for atmospheric boundary " &
206 // "layer", "J/m2", iim, (jjm + 1), nhori, 1, 1, 1, -99, &
207 "inst(X)", zsto, zout)
208 CALL histdef(nid_ins, "s_oliqCL", "Liq Water in BL", "kg/m2", &
209 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
210 "inst(X)", zsto, zout)
211 CALL histdef(nid_ins, "s_cteiCL", "Instability criteria (ABL)", "K", &
212 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
213 "inst(X)", zsto, zout)
214 CALL histdef(nid_ins, "s_therm", "Exces du thermique", "K", &
215 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
216 "inst(X)", zsto, zout)
217 CALL histdef(nid_ins, "qsurf", "Surface Air humidity", "", &
218 iim, (jjm + 1), nhori, 1, 1, 1, -99, &
219 "inst(X)", zsto, zout)
220
221 if (conv_emanuel) then
222 CALL histdef(nid_ins, "ptop", "cloud top pressure", &
223 "Pa", iim, jjm + 1, nhori, 1, 1, 1, -99, "inst(X)", zsto, zout)
224 CALL histdef(nid_ins, "dnwd0", "unsaturated downdraft", &
225 "kg/m2/s", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
226 zsto, zout)
227 end if
228
229 ! Champs 3D:
230
231 CALL histdef(nid_ins, "tro3", "ozone mole fraction", "-", &
232 iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", zsto, zout)
233 CALL histdef(nid_ins, "temp", "Temperature", "K", &
234 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
235 "inst(X)", zsto, zout)
236 CALL histdef(nid_ins, "vitu", "Zonal wind", "m/s", &
237 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
238 "inst(X)", zsto, zout)
239 CALL histdef(nid_ins, "vitv", "Merid wind", "m/s", &
240 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
241 "inst(X)", zsto, zout)
242 CALL histdef(nid_ins, "geop", "Geopotential height", "m", &
243 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
244 "inst(X)", zsto, zout)
245 CALL histdef(nid_ins, "pres", "Air pressure", "Pa", &
246 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
247 "inst(X)", zsto, zout)
248 CALL histdef(nid_ins, "dtvdf", "Boundary-layer dT", "K/s", &
249 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
250 "inst(X)", zsto, zout)
251 CALL histdef(nid_ins, "dqvdf", "Boundary-layer dQ", "Kg/Kg/s", &
252 iim, (jjm + 1), nhori, llm, 1, llm, nvert, &
253 "inst(X)", zsto, zout)
254 CALL histdef(nid_ins, "zmasse", "column density of air in cell", &
255 "kg m-2", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
256 zsto, zout)
257 CALL histdef(nid_ins, "rhum", "Relative humidity", &
258 "", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
259 zsto, zout)
260 CALL histdef(nid_ins, "d_t_ec", "kinetic dissipation dT", &
261 "K/s", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
262 zsto, zout)
263 CALL histdef(nid_ins, "dtsw0", "CS SW radiation dT", &
264 "K/s", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
265 zsto, zout)
266 CALL histdef(nid_ins, "dtlw0", "CS LW radiation dT", &
267 "K/s", iim, jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", &
268 zsto, zout)
269
270 if (ok_newmicro) then
271 CALL histdef(nid_ins, "re", "cloud droplet effective radius", &
272 "micrometer", iim, jjm + 1, nhori, llm, 1, llm, nvert, &
273 "inst(X)", zsto, zout)
274 CALL histdef(nid_ins, "fl", &
275 "denominator of Cloud droplet effective radius", "", iim, &
276 jjm + 1, nhori, llm, 1, llm, nvert, "inst(X)", zsto, zout)
277 end if
278
279 DO it = 1, nqmx - 2
280 ! champ 2D
281 iq=it+2
282 CALL histdef(nid_ins, tname(iq), ttext(iq), "U/kga", iim, jjm+1, &
283 nhori, llm, 1, llm, nvert, "inst(X)", zsto, zout)
284 CALL histdef(nid_ins, "fl"//tname(iq), "Flux "//ttext(iq), &
285 "U/m2/s", iim, jjm+1, nhori, llm, 1, llm, nvert, &
286 "inst(X)", zsto, zout)
287 CALL histdef(nid_ins, "d_tr_th_"//tname(iq), &
288 "tendance thermique"// ttext(iq), "?", &
289 iim, jjm+1, nhori, llm, 1, llm, nvert, &
290 "inst(X)", zsto, zout)
291 CALL histdef(nid_ins, "d_tr_cv_"//tname(iq), &
292 "tendance convection"// ttext(iq), "?", &
293 iim, jjm+1, nhori, llm, 1, llm, nvert, &
294 "inst(X)", zsto, zout)
295 CALL histdef(nid_ins, "d_tr_cl_"//tname(iq), &
296 "tendance couche limite"// ttext(iq), "?", &
297 iim, jjm+1, nhori, llm, 1, llm, nvert, &
298 "inst(X)", zsto, zout)
299 ENDDO
300
301 CALL histend(nid_ins)
302 ENDIF test_ok_instan
303
304 end subroutine ini_histins
305
306 end module ini_histins_m

  ViewVC Help
Powered by ViewVC 1.1.21