source: LMDZ4/trunk/libf/cosp/cosp_constants.F90 @ 1414

Last change on this file since 1414 was 1414, checked in by idelkadi, 14 years ago

Passage a la version cosp.v1.3 pour le Lidar et ISCCP
Corrections de bugs pour ISCCP et optimisation pour le Lidar

File size: 6.6 KB
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1! (c) British Crown Copyright 2008, the Met Office.
2! All rights reserved.
3!
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5! provided that the following conditions are met:
6!
7!     * Redistributions of source code must retain the above copyright notice, this list
8!       of conditions and the following disclaimer.
9!     * Redistributions in binary form must reproduce the above copyright notice, this list
10!       of conditions and the following disclaimer in the documentation and/or other materials
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12!     * Neither the name of the Met Office nor the names of its contributors may be used
13!       to endorse or promote products derived from this software without specific prior written
14!       permission.
15!
16! THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
17! IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
18! FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
19! CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20! DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21! DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
22! IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
23! OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
24
25!
26! History:
27! Jul 2007 - A. Bodas-Salcedo - Initial version
28! Jul 2008 - A. Bodas-Salcedo - Added definitions of ISCCP axes
29! Oct 2008 - H. Chepfer       - Added PARASOL_NREFL
30!
31!
32MODULE MOD_COSP_CONSTANTS
33!    use netcdf, only: nf90_fill_rea
34    IMPLICIT NONE
35   
36    ! Indices to address arrays of LS and CONV hydrometeors
37    integer,parameter :: I_LSCLIQ = 1
38    integer,parameter :: I_LSCICE = 2
39    integer,parameter :: I_LSRAIN = 3
40    integer,parameter :: I_LSSNOW = 4
41    integer,parameter :: I_CVCLIQ = 5
42    integer,parameter :: I_CVCICE = 6
43    integer,parameter :: I_CVRAIN = 7
44    integer,parameter :: I_CVSNOW = 8
45    integer,parameter :: I_LSGRPL = 9
46   
47    ! Missing value
48!!    real,parameter :: R_UNDEF = -1.0E30
49     real,parameter :: R_UNDEF = 9.96921e+36
50!      real,parameter :: R_UNDEF = nf90_fill_rea
51    ! Number of possible output variables
52    integer,parameter :: N_OUT_LIST = 27
53    ! Value for forward model result from a level that is under the ground
54    real,parameter :: R_GROUND = -1.0E20
55
56    ! Stratiform and convective clouds in frac_out
57    integer, parameter :: I_LSC = 1, & ! Large-scale clouds
58                          I_CVC = 2    ! Convective clouds
59   
60    !--- Radar constants
61    ! CFAD constants
62    integer,parameter :: DBZE_BINS     =   15   ! Number of dBZe bins in histogram (cfad)
63    real,parameter    :: DBZE_MIN      = -100.0 ! Minimum value for radar reflectivity
64    real,parameter    :: DBZE_MAX      =   80.0 ! Maximum value for radar reflectivity
65    real,parameter    :: CFAD_ZE_MIN   =  -50.0 ! Lower value of the first CFAD Ze bin
66    real,parameter    :: CFAD_ZE_WIDTH =    5.0 ! Bin width (dBZe)
67
68   
69    !--- Lidar constants
70    ! CFAD constants
71    integer,parameter :: SR_BINS       =   15
72    integer,parameter :: DPOL_BINS     =   6
73    real,parameter    :: LIDAR_UNDEF   =   999.999
74    ! Other constants
75    integer,parameter :: LIDAR_NCAT    =   4
76    integer,parameter :: PARASOL_NREFL =   5 ! parasol
77    real,parameter,dimension(PARASOL_NREFL) :: PARASOL_SZA = (/0.0, 20.0, 40.0, 6.0, 80.0/)
78!    real,parameter,dimension(PARASOL_NREFL) :: PARASOL_SZA = (/1.0, 2.0, 3.0, 4.0, 5.0/)
79    real,parameter    :: DEFAULT_LIDAR_REFF = 30.0e-6 ! Default lidar effective radius
80   
81    !--- MISR constants
82    integer,parameter :: MISR_N_CTH = 16
83
84    !--- RTTOV constants
85    integer,parameter :: RTTOV_MAX_CHANNELS = 20
86   
87    ! ISCCP tau-Pc axes
88    real,parameter,dimension(7) :: ISCCP_TAU = (/0.15, 0.80, 2.45, 6.5, 16.2, 41.5, 50000.0/)
89    real,parameter,dimension(2,7) :: ISCCP_TAU_BNDS = reshape(source=(/0.0,0.3,0.3,1.30,1.30,3.6,3.6,9.4, &
90                                                      9.4,23.0,23.0,60.0,60.0,100000.0/), shape=(/2,7/))
91   
92!     real,parameter,dimension(7) :: ISCCP_PC = (/9000., 24500., 37500., 50000., 62000., 74000., 90000./)
93!     real,parameter,dimension(2,7) :: ISCCP_PC_BNDS = reshape(source=(/0.0,18000.0,18000.0,31000.0,31000.0, &
94!                                44000.0,44000.0,56000.0,56000.0,68000.0,68000.0,80000.0,80000.0,100000.0/), shape=(/2,7/))
95   
96    real,parameter,dimension(7) :: ISCCP_PC = (/90000., 74000., 62000., 50000., 37500., 24500., 9000./)
97    real,parameter,dimension(2,7) :: ISCCP_PC_BNDS = reshape(source=(/100000.0,80000.0,80000.0,68000.0,68000.0,56000.0 &
98                               ,56000.0,44000.0,44000.0,31000.0,31000.0,18000.0,18000.0,0.0/), shape=(/2,7/))
99   
100    real,parameter,dimension(MISR_N_CTH) :: MISR_CTH = (/ 0., 0.25, 0.75, 1.25, 1.75, 2.25, 2.75, 3.5, &
101                                            4.5, 6., 8., 10., 12., 14.5, 16., 18./)
102    real,parameter,dimension(2,MISR_N_CTH) :: MISR_CTH_BNDS = reshape(source=(/ &
103                                            -99.0,  0.0,       0.0,  0.5,       0.5,  1.0,      1.0,  1.5, &
104                                              1.5,  2.0,       2.0,  2.5,       2.5,  3.0,      3.0,  4.0, &
105                                              4.0,  5.0,       5.0,  7.0,       7.0,  9.0,      9.0, 11.0, &
106                                             11.0, 13.0,      13.0, 15.0,      15.0, 17.0,     17.0, 99.0/), &
107                                             shape=(/2,MISR_N_CTH/))
108           
109    !  Table hclass for quickbeam
110    integer,parameter :: N_HYDRO = 9
111    real :: HCLASS_TYPE(N_HYDRO),HCLASS_COL(N_HYDRO),HCLASS_PHASE(N_HYDRO), &
112            HCLASS_CP(N_HYDRO),HCLASS_DMIN(N_HYDRO),HCLASS_DMAX(N_HYDRO)
113    real :: HCLASS_APM(N_HYDRO),HCLASS_BPM(N_HYDRO),HCLASS_RHO(N_HYDRO), &
114            HCLASS_P1(N_HYDRO),HCLASS_P2(N_HYDRO),HCLASS_P3(N_HYDRO)
115    data HCLASS_TYPE/5,1,2,2,5,1,2,2,2/
116    data HCLASS_COL/1,2,3,4,5,6,7,8,9/
117    data HCLASS_PHASE/0,1,0,1,0,1,0,1,1/
118    data HCLASS_CP/0,0,1,1,0,0,1,1,1/
119    data HCLASS_DMIN/-1,-1,-1,-1,-1,-1,-1,-1,-1/
120    data HCLASS_DMAX/-1,-1,-1,-1,-1,-1,-1,-1,-1/
121    data HCLASS_APM/524,110.8,524,-1,524,110.8,524,-1,-1/
122    data HCLASS_BPM/3,2.91,3,-1,3,2.91,3,-1,-1/
123    data HCLASS_RHO/-1,-1,-1,100,-1,-1,-1,100,400/
124    data HCLASS_P1/-1,-1,8000000.,3000000.,-1,-1,8000000.,3000000.,4000000./
125    data HCLASS_P2/6,40,-1,-1,6,40,-1,-1,-1/
126    data HCLASS_P3/0.3,2,-1,-1,0.3,2,-1,-1,-1/
127
128   
129   
130END MODULE MOD_COSP_CONSTANTS
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