/[lmdze]/trunk/Sources/phylmd/Mobidic/regr_pr_av.f
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Contents of /trunk/Sources/phylmd/Mobidic/regr_pr_av.f

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Revision 168 - (show annotations)
Wed Sep 9 10:41:47 2015 UTC (8 years, 8 months ago) by guez
File size: 2929 byte(s)
In order to be able to choose finer resolutions, set large memory
model in compiler options and use dynamic libraries.

Variables rlatd, rlond, cuphy and cvphy of module comgeomphy were
never used. (In LMDZ, they are used only for Orchid.)

There is a bug in PGI Fortran 13.10 that does not accept the
combination of forall, pack and spread in regr_pr_av and
regr_pr_int. In order to circumvent this bug, created the function
gr_dyn_phy.

In program test_inifilr, use a single latitude coordinate for north
and south.

1 module regr_pr_av_m
2
3 implicit none
4
5 contains
6
7 subroutine regr_pr_av(ncid, name, julien, paprs, v3)
8
9 ! "regr_pr_av" stands for "regrid pressure averaging".
10
11 ! This procedure reads a 2D latitude-pressure field from a NetCDF
12 ! file, at a given day, regrids this field in pressure to the LMDZ
13 ! vertical grid and packs it to the LMDZ horizontal "physics"
14 ! grid.
15
16 ! We assume that, in the input file, the field has 3 dimensions:
17 ! latitude, pressure, julian day.
18
19 ! We assume that the input field is already on the LMDZ "rlatu"
20 ! latitudes, except that latitudes are in ascending order in the
21 ! input file.
22
23 ! The target vertical LMDZ grid is the grid of layer boundaries.
24 ! Regridding in pressure is done by averaging a step function of pressure.
25
26 use dimens_m, only: iim, jjm, llm
27 use dimphy, only: klon
28 use grid_change, only: gr_dyn_phy
29 use netcdf95, only: nf95_inq_varid, nf95_get_var
30 use nr_util, only: assert
31 use numer_rec_95, only: regr1_step_av
32 use press_coefoz_m, only: press_in_edg
33
34 integer, intent(in):: ncid ! NetCDF ID of the file
35 character(len=*), intent(in):: name ! of the NetCDF variable
36 integer, intent(in):: julien ! jour julien, 1 <= julien <= 360
37
38 real, intent(in):: paprs(:, :) ! (klon, llm + 1)
39 ! (pression pour chaque inter-couche, en Pa)
40
41 real, intent(out):: v3(:, :) ! (klon, llm)
42 ! regridded field on the partial "physics" grid
43 ! "v3(i, k)" is at longitude "xlon(i)", latitude "xlat(i)", in
44 ! layer "k".
45
46 ! Variables local to the procedure:
47
48 integer varid ! for NetCDF
49
50 real v1(jjm + 1, size(press_in_edg) - 1)
51 ! input field at day "julien"
52 ! "v1(j, k)" is at latitude "rlatu(j)" and for
53 ! pressure interval "[press_in_edg(k), press_in_edg(k+1)]".
54
55 real v2(klon, size(press_in_edg) - 1)
56 ! Field on the "physics" horizontal grid. "v2(i, k)" is at
57 ! longitude "xlon(i)", latitude "xlat(i)" and for pressure
58 ! interval "[press_in_edg(k), press_in_edg(k+1)]".)
59
60 integer i
61
62 !--------------------------------------------
63
64 call assert(shape(v3) == (/klon, llm/), "regr_pr_av klon llm")
65 call assert(shape(paprs) == (/klon, llm+1/), "regr_pr_av paprs")
66
67 call nf95_inq_varid(ncid, name, varid)
68
69 ! Get data at the right day from the input file:
70 call nf95_get_var(ncid, varid, v1, start=(/1, 1, julien/))
71 ! Latitudes are in ascending order in the input file while
72 ! "rlatu" is in descending order so we need to invert order:
73 v1 = v1(jjm+1:1:-1, :)
74
75 v2 = gr_dyn_phy(spread(v1, dim = 1, ncopies = iim + 1))
76
77 ! Regrid in pressure at each horizontal position:
78 do i = 1, klon
79 v3(i, llm:1:-1) = regr1_step_av(v2(i, :), press_in_edg, &
80 paprs(i, llm+1:1:-1))
81 ! (invert order of indices because "paprs" is in descending order)
82 end do
83
84 end subroutine regr_pr_av
85
86 end module regr_pr_av_m

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