source: LMDZ5/branches/testing/libf/cosp/cosp_isccp_simulator.F90 @ 1663

Last change on this file since 1663 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: 4.1 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:
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24
25MODULE MOD_COSP_ISCCP_SIMULATOR
26  USE MOD_COSP_CONSTANTS
27  USE MOD_COSP_TYPES
28  IMPLICIT NONE
29
30CONTAINS
31
32
33!%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
34!-------------- SUBROUTINE COSP_ISCCP_SIMULATOR -----------------
35!%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
36SUBROUTINE COSP_ISCCP_SIMULATOR(gbx,sgx,y)
37 
38  ! Arguments
39  type(cosp_gridbox),intent(in) :: gbx  ! Gridbox info
40  type(cosp_subgrid),intent(in) :: sgx  ! Subgridbox info
41  type(cosp_isccp),intent(inout) :: y   ! ISCCP simulator output
42 
43  ! Local variables
44  integer :: i,Nlevels,Npoints
45  real :: pfull(gbx%Npoints, gbx%Nlevels)
46  real :: phalf(gbx%Npoints, gbx%Nlevels + 1)
47  real :: qv(gbx%Npoints, gbx%Nlevels)
48  real :: cc(gbx%Npoints, gbx%Nlevels)
49  real :: conv(gbx%Npoints, gbx%Nlevels)
50  real :: dtau_s(gbx%Npoints, gbx%Nlevels)
51  real :: dtau_c(gbx%Npoints, gbx%Nlevels)
52  real :: at(gbx%Npoints, gbx%Nlevels)
53  real :: dem_s(gbx%Npoints, gbx%Nlevels)
54  real :: dem_c(gbx%Npoints, gbx%Nlevels)
55  real :: frac_out(gbx%Npoints, gbx%Ncolumns, gbx%Nlevels)
56  integer :: sunlit(gbx%Npoints)
57 
58  Nlevels = gbx%Nlevels
59  Npoints = gbx%Npoints
60  ! Flip inputs. Levels from TOA to surface
61  pfull  = gbx%p(:,Nlevels:1:-1)
62  phalf(:,1)         = 0.0 ! Top level
63  phalf(:,2:Nlevels+1) = gbx%ph(:,Nlevels:1:-1)
64  qv     = gbx%sh(:,Nlevels:1:-1)
65  cc     = 0.999999*gbx%tca(:,Nlevels:1:-1)
66  conv   = 0.999999*gbx%cca(:,Nlevels:1:-1)
67  dtau_s = gbx%dtau_s(:,Nlevels:1:-1)
68  dtau_c = gbx%dtau_c(:,Nlevels:1:-1)
69  at     = gbx%T(:,Nlevels:1:-1)
70  dem_s  = gbx%dem_s(:,Nlevels:1:-1)
71  dem_c  = gbx%dem_c(:,Nlevels:1:-1)
72  frac_out(1:Npoints,:,1:Nlevels) = sgx%frac_out(1:Npoints,:,Nlevels:1:-1)
73  sunlit = int(gbx%sunlit)
74  call icarus(0,0,gbx%npoints,sunlit,gbx%nlevels,gbx%ncolumns, &
75            pfull,phalf,qv,cc,conv,dtau_s,dtau_c, &
76            gbx%isccp_top_height,gbx%isccp_top_height_direction, &
77            gbx%isccp_overlap,frac_out, &
78            gbx%skt,gbx%isccp_emsfc_lw,at,dem_s,dem_c,y%fq_isccp,y%totalcldarea, &
79            y%meanptop,y%meantaucld,y%meanalbedocld, &
80            y%meantb,y%meantbclr,y%boxtau,y%boxptop)
81
82  ! Flip outputs. Levels from surface to TOA
83  ! --- (npoints,tau=7,pressure=7)
84  y%fq_isccp(:,:,:) = y%fq_isccp(:,:,7:1:-1)
85     
86  ! Change boxptop from hPa to Pa. This avoids using UDUNITS in CMOR
87!  y%boxptop = y%boxptop*100.0
88 
89  ! Check if there is any value slightly greater than 1
90  where ((y%totalcldarea > 1.0-1.e-5) .and. (y%totalcldarea < 1.0+1.e-5))
91    y%totalcldarea = 1.0
92  endwhere
93             
94END SUBROUTINE COSP_ISCCP_SIMULATOR
95
96END MODULE MOD_COSP_ISCCP_SIMULATOR
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