source: trunk/LMDZ.GENERIC/libf/phystd/radcommon_h.F90 @ 965

Last change on this file since 965 was 959, checked in by jleconte, 12 years ago

15/05/2013 == JL

  • correction in radiative scheme to enforce double precision
File size: 4.9 KB
Line 
1      module radcommon_h
2
3      use radinc_h
4      implicit none
5
6!----------------------------------------------------------------------C
7!
8!                             radcommon.h
9!
10!----------------------------------------------------------------------C
11!
12!  "Include" grid.h and radinc.h before this file in code that uses
13!  some or all of this common data set
14!
15!     WNOI       - Array of wavenumbers at the spectral interval
16!                  centers for the infrared.  Array is NSPECTI
17!                  elements long.
18!     DWNI       - Array of "delta wavenumber", i.e., the width,
19!                  in wavenumbers (cm^-1) of each IR spectral
20!                  interval.  NSPECTI elements long.
21!     WAVEI      - Array (NSPECTI elements long) of the wavelenght
22!                  (in microns) at the center of each IR spectral
23!                  interval.
24!     WNOV       - Array of wavenumbers at the spectral interval
25!                  center for the VISUAL.  Array is NSPECTV
26!                  elements long.
27!     DWNV       - Array of "delta wavenumber", i.e., the width,
28!                  in wavenumbers (cm^-1) of each VISUAL spectral
29!                  interval.  NSPECTV elements long.
30!     WAVEV      - Array (NSPECTV elements long) of the wavelenght
31!                  (in microns) at the center of each VISUAL spectral
32!                  interval.
33!     STELLARF   - Array (NSPECTV elements) of stellar flux (W/M^2) in
34!                  each spectral interval.  Values are for 1 AU,
35!                  scaled to the planetary distance elsewhere.
36!     TAURAY     - Array (NSPECTV elements) of the pressure-independent
37!                  part of Rayleigh scattering optical depth.
38!     FZEROI     - Fraction of zeros in the IR CO2 k-coefficients, for
39!                  each temperature, pressure, and spectral interval
40!     FZEROV     - Fraction of zeros in the VISUAL CO2 k-coefficients, for
41!                  each temperature, pressure, and spectral interval
42!
43!     AEROSOL RADIATIVE OPTICAL CONSTANTS
44!
45!   Shortwave
46!   ~~~~~~~~~
47!
48! For the "naerkind" kind of aerosol radiative properties :
49! QVISsQREF  :  Qext / Qext("longrefvis")
50! omegavis   :  single scattering albedo
51! gvis       :  assymetry factor
52!
53!   Longwave
54!   ~~~~~~~~
55!
56! For the "naerkind" kind of aerosol radiative properties :
57! QIRsQREF :  Qext / Qext("longrefvis")
58! omegaIR  :  mean single scattering albedo
59! gIR      :  mean assymetry factor
60
61      REAL*8 BWNI(L_NSPECTI+1), WNOI(L_NSPECTI), DWNI(L_NSPECTI), WAVEI(L_NSPECTI)
62      REAL*8 BWNV(L_NSPECTV+1), WNOV(L_NSPECTV), DWNV(L_NSPECTV), WAVEV(L_NSPECTV)
63      REAL*8 STELLARF(L_NSPECTV), TAURAY(L_NSPECTV)
64
65      REAL*8 blami(L_NSPECTI+1)
66      REAL*8 blamv(L_NSPECTV+1) ! these are needed by suaer.F90
67
68      !! AS: introduced to avoid doing same computations again for continuum
69      INTEGER, DIMENSION(:,:,:), ALLOCATABLE :: indi
70      INTEGER, DIMENSION(:,:,:), ALLOCATABLE :: indv
71
72      !!! ALLOCATABLE STUFF SO THAT DIMENSIONS ARE READ in *.dat FILES -- AS 12/2011 
73      REAL*8, DIMENSION(:,:,:,:,:), ALLOCATABLE :: gasi, gasv
74      REAL*8, DIMENSION(:), ALLOCATABLE :: PGASREF, TGASREF, WREFVAR, PFGASREF
75      real*8 FZEROI(L_NSPECTI)
76      real*8 FZEROV(L_NSPECTV)
77      real*8 pgasmin, pgasmax
78      real*8 tgasmin, tgasmax
79
80      real QVISsQREF(L_NSPECTV,naerkind,nsizemax)
81      real omegavis(L_NSPECTV,naerkind,nsizemax)
82      real gvis(L_NSPECTV,naerkind,nsizemax)
83      real QIRsQREF(L_NSPECTI,naerkind,nsizemax)
84      real omegair(L_NSPECTI,naerkind,nsizemax)
85      real gir(L_NSPECTI,naerkind,nsizemax)
86
87
88! Reference wavelengths used to compute reference optical depth (m)
89! ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
90
91      REAL lamrefir(naerkind),lamrefvis(naerkind)
92
93! Actual number of grain size classes in each domain for a
94!   given aerosol:
95
96      INTEGER          :: nsize(naerkind,2)
97
98! Particle size axis (depend on the kind of aerosol and the
99!   radiation domain)
100
101      DOUBLE PRECISION :: radiustab(naerkind,2,nsizemax)
102
103! Extinction coefficient at reference wavelengths;
104!   These wavelengths are defined in aeroptproperties, and called
105!   longrefvis and longrefir.
106
107      REAL :: QREFvis(naerkind,nsizemax)
108      REAL :: QREFir(naerkind,nsizemax)
109      REAL :: omegaREFvis(naerkind,nsizemax)
110      REAL :: omegaREFir(naerkind,nsizemax)
111
112      REAL tstellar ! Stellar brightness temperature (SW)
113
114      real*8 planckir(L_NSPECTI,NTstop-NTstar+1)
115
116      real*8 PTOP, TAUREF(L_LEVELS+1)
117
118      real*8, parameter :: UBARI = 0.5D0
119
120      real*8 gweight(L_NGAUSS)
121
122!     If the gas optical depth (top to the surface) is less than
123!     this value, we place that Gauss-point into the "zeros"
124!     channel.
125      real*8, parameter :: TLIMIT =  1.0D-30
126
127!     Factor to convert pressures from millibars to Pascals
128      real*8, parameter :: SCALEP = 1.00D+2
129
130      real*8, parameter :: sigma = 5.67032D-8
131
132      real*8 Cmk
133      save Cmk
134
135
136      end module radcommon_h
Note: See TracBrowser for help on using the repository browser.