[1564] | 1 | MODULE inigeomphy_mod |
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[1563] | 2 | |
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| 3 | CONTAINS |
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| 4 | |
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[1564] | 5 | SUBROUTINE inigeomphy(iim,jjm,nlayer, & |
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[1563] | 6 | nbp, communicator, & |
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| 7 | rlatu,rlatv,rlonu,rlonv,aire,cu,cv) |
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| 8 | USE mod_grid_phy_lmdz, ONLY: klon_glo, & ! number of atmospheric columns (on full grid) |
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[2471] | 9 | regular_lonlat ! regular longitude-latitude grid type |
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[1563] | 10 | USE mod_phys_lmdz_para, ONLY: klon_omp, & ! number of columns (on local omp grid) |
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| 11 | klon_omp_begin, & ! start index of local omp subgrid |
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| 12 | klon_omp_end, & ! end index of local omp subgrid |
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| 13 | klon_mpi_begin ! start indes of columns (on local mpi grid) |
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[3078] | 14 | USE geometry_mod, ONLY : init_geometry, init_geometry_cell_area_for_outputs |
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[1563] | 15 | USE physics_distribution_mod, ONLY : init_physics_distribution |
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| 16 | USE regular_lonlat_mod, ONLY : init_regular_lonlat, & |
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| 17 | east, west, north, south, & |
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| 18 | north_east, north_west, & |
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| 19 | south_west, south_east |
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| 20 | USE mod_interface_dyn_phys, ONLY : init_interface_dyn_phys |
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| 21 | USE nrtype, ONLY: pi |
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[1621] | 22 | USE comvert_mod, ONLY: preff, ap, bp, aps, bps, presnivs, & |
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| 23 | scaleheight, pseudoalt |
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| 24 | USE vertical_layers_mod, ONLY: init_vertical_layers |
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[1563] | 25 | IMPLICIT NONE |
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| 26 | |
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| 27 | ! ======================================================================= |
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| 28 | ! Initialisation of the physical constants and some positional and |
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| 29 | ! geometrical arrays for the physics |
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| 30 | ! ======================================================================= |
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| 31 | |
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| 32 | include "iniprint.h" |
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| 33 | |
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| 34 | INTEGER, INTENT (IN) :: nlayer ! number of atmospheric layers |
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| 35 | INTEGER, INTENT (IN) :: iim ! number of atmospheric columns along longitudes |
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| 36 | INTEGER, INTENT (IN) :: jjm ! number of atompsheric columns along latitudes |
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| 37 | INTEGER, INTENT(IN) :: nbp ! number of physics columns for this MPI process |
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| 38 | INTEGER, INTENT(IN) :: communicator ! MPI communicator |
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| 39 | REAL, INTENT (IN) :: rlatu(jjm+1) ! latitudes of the physics grid |
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| 40 | REAL, INTENT (IN) :: rlatv(jjm) ! latitude boundaries of the physics grid |
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| 41 | REAL, INTENT (IN) :: rlonv(iim+1) ! longitudes of the physics grid |
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| 42 | REAL, INTENT (IN) :: rlonu(iim+1) ! longitude boundaries of the physics grid |
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| 43 | REAL, INTENT (IN) :: aire(iim+1,jjm+1) ! area of the dynamics grid (m2) |
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| 44 | REAL, INTENT (IN) :: cu((iim+1)*(jjm+1)) ! cu coeff. (u_covariant = cu * u) |
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| 45 | REAL, INTENT (IN) :: cv((iim+1)*jjm) ! cv coeff. (v_covariant = cv * v) |
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| 46 | |
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| 47 | INTEGER :: ibegin, iend, offset |
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| 48 | INTEGER :: i,j,k |
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[2471] | 49 | CHARACTER (LEN=20) :: modname = 'inigeomphy' |
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[1563] | 50 | CHARACTER (LEN=80) :: abort_message |
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| 51 | REAL :: total_area_phy, total_area_dyn |
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| 52 | |
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| 53 | ! boundaries, on global grid |
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| 54 | REAL,ALLOCATABLE :: boundslon_reg(:,:) |
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| 55 | REAL,ALLOCATABLE :: boundslat_reg(:,:) |
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| 56 | |
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| 57 | ! global array, on full physics grid: |
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| 58 | REAL,ALLOCATABLE :: latfi_glo(:) |
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| 59 | REAL,ALLOCATABLE :: lonfi_glo(:) |
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| 60 | REAL,ALLOCATABLE :: cufi_glo(:) |
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| 61 | REAL,ALLOCATABLE :: cvfi_glo(:) |
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| 62 | REAL,ALLOCATABLE :: airefi_glo(:) |
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[3078] | 63 | REAL,ALLOCATABLE :: aire_glo(:) |
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[1563] | 64 | REAL,ALLOCATABLE :: boundslonfi_glo(:,:) |
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| 65 | REAL,ALLOCATABLE :: boundslatfi_glo(:,:) |
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| 66 | |
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| 67 | ! local arrays, on given MPI/OpenMP domain: |
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| 68 | REAL,ALLOCATABLE,SAVE :: latfi(:) |
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| 69 | REAL,ALLOCATABLE,SAVE :: lonfi(:) |
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| 70 | REAL,ALLOCATABLE,SAVE :: cufi(:) |
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| 71 | REAL,ALLOCATABLE,SAVE :: cvfi(:) |
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| 72 | REAL,ALLOCATABLE,SAVE :: airefi(:) |
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[3078] | 73 | REAL,ALLOCATABLE,SAVE :: airefi_for_outputs(:) |
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[1563] | 74 | REAL,ALLOCATABLE,SAVE :: boundslonfi(:,:) |
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| 75 | REAL,ALLOCATABLE,SAVE :: boundslatfi(:,:) |
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[1682] | 76 | INTEGER,ALLOCATABLE,SAVE :: ind_cell_glo_fi(:) |
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[3078] | 77 | !$OMP THREADPRIVATE (latfi,lonfi,cufi,cvfi,airefi,airefi_for_outputs) |
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| 78 | !$OMP THREADPRIVATE (boundslonfi,boundslatfi,ind_cell_glo_fi) |
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[1563] | 79 | |
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| 80 | ! Initialize Physics distibution and parameters and interface with dynamics |
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| 81 | IF (iim*jjm>1) THEN ! general 3D case |
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| 82 | CALL init_physics_distribution(regular_lonlat,4, & |
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| 83 | nbp,iim,jjm+1,nlayer,communicator) |
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| 84 | ELSE ! For 1D model |
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| 85 | CALL init_physics_distribution(regular_lonlat,4, & |
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| 86 | 1,1,1,nlayer,communicator) |
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| 87 | ENDIF |
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| 88 | CALL init_interface_dyn_phys |
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| 89 | |
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| 90 | ! init regular global longitude-latitude grid points and boundaries |
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| 91 | ALLOCATE(boundslon_reg(iim,2)) |
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| 92 | ALLOCATE(boundslat_reg(jjm+1,2)) |
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| 93 | |
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[2519] | 94 | ! specific handling of the -180 longitude scalar grid point boundaries |
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| 95 | boundslon_reg(1,east)=rlonu(1) |
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| 96 | boundslon_reg(1,west)=rlonu(iim)-2*PI |
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| 97 | DO i=2,iim |
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[1563] | 98 | boundslon_reg(i,east)=rlonu(i) |
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[2519] | 99 | boundslon_reg(i,west)=rlonu(i-1) |
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[1563] | 100 | ENDDO |
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| 101 | |
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| 102 | boundslat_reg(1,north)= PI/2 |
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| 103 | boundslat_reg(1,south)= rlatv(1) |
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| 104 | DO j=2,jjm |
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| 105 | boundslat_reg(j,north)=rlatv(j-1) |
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| 106 | boundslat_reg(j,south)=rlatv(j) |
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| 107 | ENDDO |
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| 108 | boundslat_reg(jjm+1,north)= rlatv(jjm) |
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| 109 | boundslat_reg(jjm+1,south)= -PI/2 |
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| 110 | |
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| 111 | ! Write values in module regular_lonlat_mod |
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| 112 | CALL init_regular_lonlat(iim,jjm+1, rlonv(1:iim), rlatu, & |
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| 113 | boundslon_reg, boundslat_reg) |
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| 114 | |
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| 115 | ! Generate global arrays on full physics grid |
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| 116 | ALLOCATE(latfi_glo(klon_glo),lonfi_glo(klon_glo)) |
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| 117 | ALLOCATE(cufi_glo(klon_glo),cvfi_glo(klon_glo)) |
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| 118 | ALLOCATE(airefi_glo(klon_glo)) |
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[3078] | 119 | ALLOCATE(aire_glo(klon_glo)) |
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[1563] | 120 | ALLOCATE(boundslonfi_glo(klon_glo,4)) |
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| 121 | ALLOCATE(boundslatfi_glo(klon_glo,4)) |
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| 122 | |
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| 123 | IF (klon_glo>1) THEN ! general case |
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| 124 | ! North pole |
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| 125 | latfi_glo(1)=rlatu(1) |
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| 126 | lonfi_glo(1)=0. |
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| 127 | cufi_glo(1) = cu(1) |
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| 128 | cvfi_glo(1) = cv(1) |
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[2500] | 129 | boundslonfi_glo(1,north_east)= PI |
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| 130 | boundslatfi_glo(1,north_east)= PI/2 |
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| 131 | boundslonfi_glo(1,north_west)= -PI |
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| 132 | boundslatfi_glo(1,north_west)= PI/2 |
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| 133 | boundslonfi_glo(1,south_west)= -PI |
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| 134 | boundslatfi_glo(1,south_west)= rlatv(1) |
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| 135 | boundslonfi_glo(1,south_east)= PI |
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| 136 | boundslatfi_glo(1,south_east)= rlatv(1) |
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[1563] | 137 | DO j=2,jjm |
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| 138 | DO i=1,iim |
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| 139 | k=(j-2)*iim+1+i |
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| 140 | latfi_glo(k)= rlatu(j) |
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| 141 | lonfi_glo(k)= rlonv(i) |
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| 142 | cufi_glo(k) = cu((j-1)*(iim+1)+i) |
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| 143 | cvfi_glo(k) = cv((j-1)*(iim+1)+i) |
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| 144 | boundslonfi_glo(k,north_east)=rlonu(i) |
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| 145 | boundslatfi_glo(k,north_east)=rlatv(j-1) |
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[2500] | 146 | if (i.eq.1) then |
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| 147 | ! special case for the first longitude's west bound |
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| 148 | boundslonfi_glo(k,north_west)=rlonu(iim)-2*PI |
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| 149 | boundslonfi_glo(k,south_west)=rlonu(iim)-2*PI |
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| 150 | else |
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| 151 | boundslonfi_glo(k,north_west)=rlonu(i-1) |
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| 152 | boundslonfi_glo(k,south_west)=rlonu(i-1) |
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| 153 | endif |
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[1563] | 154 | boundslatfi_glo(k,north_west)=rlatv(j-1) |
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| 155 | boundslatfi_glo(k,south_west)=rlatv(j) |
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| 156 | boundslonfi_glo(k,south_east)=rlonu(i) |
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| 157 | boundslatfi_glo(k,south_east)=rlatv(j) |
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| 158 | ENDDO |
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| 159 | ENDDO |
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| 160 | ! South pole |
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| 161 | latfi_glo(klon_glo)= rlatu(jjm+1) |
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| 162 | lonfi_glo(klon_glo)= 0. |
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| 163 | cufi_glo(klon_glo) = cu((iim+1)*jjm+1) |
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| 164 | cvfi_glo(klon_glo) = cv((iim+1)*jjm-iim) |
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[2500] | 165 | boundslonfi_glo(klon_glo,north_east)= PI |
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[1563] | 166 | boundslatfi_glo(klon_glo,north_east)= rlatv(jjm) |
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[2500] | 167 | boundslonfi_glo(klon_glo,north_west)= -PI |
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[1563] | 168 | boundslatfi_glo(klon_glo,north_west)= rlatv(jjm) |
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[2500] | 169 | boundslonfi_glo(klon_glo,south_west)= -PI |
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[1563] | 170 | boundslatfi_glo(klon_glo,south_west)= -PI/2 |
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[2500] | 171 | boundslonfi_glo(klon_glo,south_east)= PI |
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| 172 | boundslatfi_glo(klon_glo,south_east)= -PI/2 |
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[1563] | 173 | |
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| 174 | ! build airefi(), mesh area on physics grid |
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| 175 | CALL gr_dyn_fi(1,iim+1,jjm+1,klon_glo,aire,airefi_glo) |
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| 176 | ! Poles are single points on physics grid |
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| 177 | airefi_glo(1)=sum(aire(1:iim,1)) |
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| 178 | airefi_glo(klon_glo)=sum(aire(1:iim,jjm+1)) |
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[3078] | 179 | ! but we also want to store mesh area with poles as on dyn grid |
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| 180 | ! (for lon-lat outputs) |
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| 181 | CALL gr_dyn_fi(1,iim+1,jjm+1,klon_glo,aire,aire_glo) |
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[1563] | 182 | |
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| 183 | ! Sanity check: do total planet area match between physics and dynamics? |
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| 184 | total_area_dyn=sum(aire(1:iim,1:jjm+1)) |
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| 185 | total_area_phy=sum(airefi_glo(1:klon_glo)) |
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| 186 | IF (total_area_dyn/=total_area_phy) THEN |
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[2471] | 187 | WRITE (lunout, *) 'inigeomphy: planet total surface discrepancy !!!' |
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[1563] | 188 | WRITE (lunout, *) ' in the dynamics total_area_dyn=', total_area_dyn |
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| 189 | WRITE (lunout, *) ' but in the physics total_area_phy=', total_area_phy |
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| 190 | IF (abs(total_area_dyn-total_area_phy)>0.00001*total_area_dyn) THEN |
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| 191 | ! stop here if the relative difference is more than 0.001% |
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| 192 | abort_message = 'planet total surface discrepancy' |
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| 193 | CALL abort_gcm(modname, abort_message, 1) |
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| 194 | ENDIF |
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| 195 | ENDIF |
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| 196 | ELSE ! klon_glo==1, running the 1D model |
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| 197 | ! just copy over input values |
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| 198 | latfi_glo(1)=rlatu(1) |
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| 199 | lonfi_glo(1)=rlonv(1) |
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| 200 | cufi_glo(1)=cu(1) |
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| 201 | cvfi_glo(1)=cv(1) |
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| 202 | airefi_glo(1)=aire(1,1) |
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[3078] | 203 | aire_glo(1)=aire(1,1) |
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[1563] | 204 | boundslonfi_glo(1,north_east)=rlonu(1) |
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| 205 | boundslatfi_glo(1,north_east)=PI/2 |
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| 206 | boundslonfi_glo(1,north_west)=rlonu(2) |
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| 207 | boundslatfi_glo(1,north_west)=PI/2 |
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| 208 | boundslonfi_glo(1,south_west)=rlonu(2) |
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| 209 | boundslatfi_glo(1,south_west)=rlatv(1) |
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| 210 | boundslonfi_glo(1,south_east)=rlonu(1) |
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| 211 | boundslatfi_glo(1,south_east)=rlatv(1) |
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| 212 | ENDIF ! of IF (klon_glo>1) |
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| 213 | |
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| 214 | !$OMP PARALLEL |
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| 215 | ! Now generate local lon/lat/cu/cv/area/bounds arrays |
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| 216 | ALLOCATE(latfi(klon_omp),lonfi(klon_omp),cufi(klon_omp),cvfi(klon_omp)) |
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| 217 | ALLOCATE(airefi(klon_omp)) |
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[3078] | 218 | ALLOCATE(airefi_for_outputs(klon_omp)) |
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[1563] | 219 | ALLOCATE(boundslonfi(klon_omp,4)) |
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| 220 | ALLOCATE(boundslatfi(klon_omp,4)) |
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[1682] | 221 | ALLOCATE(ind_cell_glo_fi(klon_omp)) |
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[1563] | 222 | |
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[1682] | 223 | |
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[1563] | 224 | offset = klon_mpi_begin - 1 |
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| 225 | airefi(1:klon_omp) = airefi_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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[3078] | 226 | airefi_for_outputs(1:klon_omp) = & |
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| 227 | aire_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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[1563] | 228 | cufi(1:klon_omp) = cufi_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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| 229 | cvfi(1:klon_omp) = cvfi_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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| 230 | lonfi(1:klon_omp) = lonfi_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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| 231 | latfi(1:klon_omp) = latfi_glo(offset+klon_omp_begin:offset+klon_omp_end) |
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| 232 | boundslonfi(1:klon_omp,:) = boundslonfi_glo(offset+klon_omp_begin:offset+klon_omp_end,:) |
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| 233 | boundslatfi(1:klon_omp,:) = boundslatfi_glo(offset+klon_omp_begin:offset+klon_omp_end,:) |
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[1682] | 234 | ind_cell_glo_fi(1:klon_omp)=(/ (i,i=offset+klon_omp_begin,offset+klon_omp_end) /) |
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[1563] | 235 | |
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| 236 | ! copy over local grid longitudes and latitudes |
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| 237 | CALL init_geometry(klon_omp,lonfi,latfi,boundslonfi,boundslatfi, & |
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[1682] | 238 | airefi,ind_cell_glo_fi,cufi,cvfi) |
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[1563] | 239 | |
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[3078] | 240 | ! copy over lon-lat mesh area for outputs (with polar "correction") |
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| 241 | CALL init_geometry_cell_area_for_outputs(klon_omp,airefi_for_outputs) |
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| 242 | |
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[1621] | 243 | ! copy over preff , ap(), bp(), etc |
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| 244 | CALL init_vertical_layers(nlayer,preff,scaleheight, & |
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| 245 | ap,bp,aps,bps,presnivs,pseudoalt) |
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| 246 | |
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[1563] | 247 | !$OMP END PARALLEL |
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| 248 | |
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| 249 | |
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[1564] | 250 | END SUBROUTINE inigeomphy |
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[1563] | 251 | |
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[1564] | 252 | END MODULE inigeomphy_mod |
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