/[lmdze]/trunk/phylmd/Mobidic/regr_pr_comb_coefoz.f
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Annotation of /trunk/phylmd/Mobidic/regr_pr_comb_coefoz.f

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Revision 82 - (hide annotations)
Wed Mar 5 14:57:53 2014 UTC (10 years, 3 months ago) by guez
File size: 4030 byte(s)
Changed all ".f90" suffixes to ".f".
1 guez 7 module regr_pr_comb_coefoz_m
2 guez 3
3     use dimens_m, only: llm
4     use dimphy, only: klon
5    
6     implicit none
7    
8 guez 10 ! The five module variables declared here are on the "physics" grid.
9     ! The value of each variable for index "(i, k)" is at longitude
10     ! "rlon(i)", latitude "rlat(i)" and middle of layer "k".
11    
12 guez 7 real, save:: c_Mob(klon, llm)
13 guez 3 ! (sum of Mobidic terms in the net mass production rate of ozone
14     ! by chemistry, per unit mass of air, in s-1)
15    
16 guez 7 real, save:: a2(klon, llm)
17 guez 3 ! (derivative of mass production rate of ozone per unit mass of
18     ! air with respect to ozone mass fraction, in s-1)
19    
20 guez 7 real, save:: a4_mass(klon, llm)
21 guez 3 ! (derivative of mass production rate of ozone per unit mass of
22     ! air with respect to temperature, in s-1 K-1)
23    
24 guez 7 real, save:: a6_mass(klon, llm)
25 guez 3 ! (derivative of mass production rate of ozone per unit mass of
26     ! air with respect to mass column-density of ozone above, in m2 s-1 kg-1)
27    
28 guez 7 real, save:: r_het_interm(klon, llm)
29 guez 3 ! (net mass production rate by heterogeneous chemistry, per unit
30     ! mass of ozone, corrected for chlorine content and latitude, but
31     ! not for temperature and sun direction, in s-1)
32    
33     private klon, llm
34    
35     contains
36    
37 guez 7 subroutine regr_pr_comb_coefoz(julien)
38 guez 3
39 guez 7 ! "regr_pr_comb_coefoz" stands for "regrid pressure combine
40     ! coefficients ozone".
41 guez 3
42 guez 7 ! This subroutine :
43 guez 10 ! -- reads from a file all eight coefficients for ozone chemistry,
44 guez 7 ! at the current day ;
45 guez 10 ! -- regrids the coefficients in pressure to the LMDZ vertical grid ;
46     ! -- packs the coefficients to the "physics" horizontal grid ;
47     ! -- combines the eight coefficients to define the five module variables.
48 guez 7
49 guez 18 use netcdf95, only: nf95_open, nf95_close
50 guez 7 use netcdf, only: nf90_nowrite
51     use regr_pr_coefoz, only: regr_pr_av_coefoz, regr_pr_int_coefoz
52 guez 3 use phyetat0_m, only: rlat
53    
54 guez 7 integer, intent(in):: julien ! jour julien, 1 <= julien <= 360
55    
56 guez 3 ! Variables local to the procedure:
57 guez 18
58 guez 3 integer ncid ! for NetCDF
59    
60 guez 7 real coefoz(klon, llm)
61     ! (temporary storage for an ozone coefficient)
62     ! (On the "physics" grid.
63     ! "coefoz(i, k)" is at longitude "rlon(i)", latitude "rlat(i)",
64     ! middle of layer "k".)
65    
66     real a6(klon, llm)
67     ! (derivative of "P_net_Mob" with respect to column-density of ozone
68 guez 3 ! above, in cm2 s-1)
69     ! (On the "physics" grid.
70 guez 7 ! "a6(i, k)" is at longitude "rlon(i)", latitude "rlat(i)",
71 guez 3 ! middle of layer "k".)
72    
73     real, parameter:: amu = 1.6605402e-27 ! atomic mass unit, in kg
74    
75     real, parameter:: Clx = 3.8e-9
76     ! (total chlorine content in the upper stratosphere)
77    
78 guez 7 integer k
79 guez 3
80     !------------------------------------
81    
82 guez 10 print *, "Call sequence information: regr_pr_comb_coefoz"
83 guez 3
84     call nf95_open("coefoz_LMDZ.nc", nf90_nowrite, ncid)
85    
86 guez 17 call regr_pr_av_coefoz(ncid, "a2", julien, a2)
87 guez 3
88 guez 17 call regr_pr_av_coefoz(ncid, "a4", julien, a4_mass)
89 guez 7 a4_mass = a4_mass * 48. / 29.
90    
91 guez 17 call regr_pr_av_coefoz(ncid, "a6", julien, a6)
92 guez 7
93 guez 3 ! Compute "a6_mass" avoiding underflow, do not divide by 1e4
94     ! before dividing by molecular mass:
95     a6_mass = a6 / (1e4 * 29. * amu)
96     ! (factor 1e4: conversion from cm2 to m2)
97    
98 guez 7 ! Combine coefficients to get "c_Mob":
99     ! (We use as few local variables as possible, in order to spare
100     ! main memory.)
101 guez 3
102 guez 17 call regr_pr_av_coefoz(ncid, "P_net_Mob", julien, c_Mob)
103 guez 7
104 guez 17 call regr_pr_av_coefoz(ncid, "r_Mob", julien, coefoz)
105 guez 9 c_mob = c_mob - a2 * coefoz
106 guez 7
107 guez 17 call regr_pr_int_coefoz(ncid, "Sigma_Mob", julien, top_value=0., v3=coefoz)
108 guez 7 c_mob = (c_mob - a6 * coefoz) * 48. / 29.
109    
110 guez 17 call regr_pr_av_coefoz(ncid, "temp_Mob", julien, coefoz)
111 guez 7 c_mob = c_mob - a4_mass * coefoz
112    
113 guez 17 call regr_pr_av_coefoz(ncid, "R_Het", julien, r_het_interm)
114 guez 3 ! Heterogeneous chemistry is only at high latitudes:
115 guez 7 forall (k = 1: llm)
116     where (abs(rlat) <= 45.) r_het_interm(:, k) = 0.
117 guez 3 end forall
118 guez 11 r_het_interm = r_het_interm * (Clx / 3.8e-9)**2
119 guez 3
120     call nf95_close(ncid)
121    
122 guez 7 end subroutine regr_pr_comb_coefoz
123 guez 3
124 guez 7 end module regr_pr_comb_coefoz_m

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