/[lmdze]/trunk/libf/phylmd/Mobidic/regr_pr_o3.f90
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Contents of /trunk/libf/phylmd/Mobidic/regr_pr_o3.f90

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Revision 52 - (show annotations)
Fri Sep 23 12:28:01 2011 UTC (12 years, 7 months ago) by guez
File size: 4234 byte(s)
Split "conflx.f" into single-procedure files in directory "Conflx".

Split "cv_routines.f" into single-procedure files in directory
"CV_routines". Made module "cvparam" from included file
"cvparam.h". No included file other than "netcdf.inc" left in LMDZE.

1 module regr_pr_o3_m
2
3 implicit none
4
5 contains
6
7 subroutine regr_pr_o3(o3_mob_regr)
8
9 ! "regr_pr_o3" stands for "regrid pressure ozone".
10 ! This procedure reads Mobidic ozone mole fraction from
11 ! "coefoz_LMDZ.nc" at the initial day and regrids it in pressure.
12 ! Ozone mole fraction from "coefoz_LMDZ.nc" is a 2D latitude --
13 ! pressure variable.
14 ! The target horizontal LMDZ grid is the "scalar" grid: "rlonv", "rlatu".
15 ! The target vertical LMDZ grid is the grid of layer boundaries.
16 ! We assume that the input variable is already on the LMDZ "rlatu"
17 ! latitude grid.
18 ! The input variable does not depend on longitude, but the
19 ! pressure at LMDZ layers does.
20 ! Therefore, the values on the LMDZ grid do depend on longitude.
21 ! Regridding is by averaging, assuming a step function.
22 ! We assume that, in the input file, the pressure levels are in
23 ! hPa and strictly increasing.
24
25 use conf_gcm_m, only: dayref
26 use dimens_m, only: iim, jjm, llm
27 use netcdf95, only: nf95_open, nf95_close, nf95_inq_varid, handle_err, &
28 nf95_gw_var
29 use netcdf, only: nf90_nowrite, nf90_get_var
30 use nr_util, only: assert
31 use grid_change, only: dyn_phy
32 use numer_rec, only: regr1_step_av
33 use pressure_var, only: p3d
34
35 real, intent(out):: o3_mob_regr(:, :, :) ! (iim + 1, jjm + 1, llm)
36 ! (ozone mole fraction from Mobidic adapted to the LMDZ grid)
37 ! ("o3_mob_regr(i, j, l)" is at longitude "rlonv(i)", latitude
38 ! "rlatu(j)" and pressure level "pls(i, j, l)")
39
40 ! Variables local to the procedure:
41
42 real, pointer:: plev(:)
43 ! (pressure levels of Mobidic data, in Pa, in strictly increasing order)
44
45 real, allocatable:: press_in_edg(:)
46 ! (edges of pressure intervals for Mobidic data, in Pa, in strictly
47 ! increasing order)
48
49 integer ncid, varid, ncerr ! for NetCDF
50 integer n_plev ! number of pressure levels in Mobidic data
51 integer i, j
52
53 real, allocatable:: r_mob(:, :)! (jjm + 1, n_plev)
54 ! (ozone mole fraction from Mobidic at day "dayref")
55 ! (r_mob(j, k) is at latitude "rlatu(j)" and pressure level "plev(k)".)
56
57 !------------------------------------------------------------
58
59 print *, "Call sequence information: regr_pr_o3"
60 call assert(shape(o3_mob_regr) == (/iim + 1, jjm + 1, llm/), "regr_pr_o3")
61
62 call nf95_open("coefoz_LMDZ.nc", nf90_nowrite, ncid)
63
64 call nf95_inq_varid(ncid, "plev", varid)
65 call nf95_gw_var(ncid, varid, plev)
66 ! Convert from hPa to Pa because "regr_pr_av" requires so:
67 plev = plev * 100.
68 n_plev = size(plev)
69
70 ! Compute edges of pressure intervals:
71 allocate(press_in_edg(n_plev + 1))
72 press_in_edg(1) = 0.
73 ! We choose edges halfway in logarithm:
74 forall (j = 2:n_plev) press_in_edg(j) = sqrt(plev(j - 1) * plev(j))
75 press_in_edg(n_plev + 1) = huge(0.)
76 ! (infinity, but any value guaranteed to be greater than the
77 ! surface pressure would do)
78
79 deallocate(plev) ! pointer
80
81 call nf95_inq_varid(ncid, "r_Mob", varid)
82 allocate(r_mob(jjm + 1, n_plev))
83
84 ! Get data at the right day from the input file:
85 ncerr = nf90_get_var(ncid, varid, r_mob, start=(/1, 1, dayref/))
86 call handle_err("nf90_get_var r_Mob", ncerr)
87 ! Latitudes are in increasing order in the input file while
88 ! "rlatu" is in decreasing order so we need to invert order:
89 r_mob = r_mob(jjm+1:1:-1, :)
90
91 call nf95_close(ncid)
92
93 ! Regrid in pressure by averaging a step function of pressure:
94 do j = 1, jjm + 1
95 do i = 1, iim
96 if (dyn_phy(i, j)) then
97 o3_mob_regr(i, j, llm:1:-1) &
98 = regr1_step_av(r_mob(j, :), press_in_edg, &
99 p3d(i, j, llm+1:1:-1))
100 ! (invert order of indices because "p3d" is decreasing)
101 end if
102 end do
103 end do
104
105 ! Duplicate pole values on all longitudes:
106 o3_mob_regr(2:, 1, :) = spread(o3_mob_regr(1, 1, :), dim=1, ncopies=iim)
107 o3_mob_regr(2:, jjm + 1, :) &
108 = spread(o3_mob_regr(1, jjm + 1, :), dim=1, ncopies=iim)
109
110 ! Duplicate first longitude to last longitude:
111 o3_mob_regr(iim + 1, 2:jjm, :) = o3_mob_regr(1, 2:jjm, :)
112
113 end subroutine regr_pr_o3
114
115 end module regr_pr_o3_m

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