| 1 | program energy |
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| 2 | |
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| 3 | ! SL 12/2009: |
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| 4 | ! This program reads 4D (lon-lat-alt-time) fields directly from LMD outputs without regrid : histmth |
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| 5 | ! |
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| 6 | ! it computes: |
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| 7 | ! dmass -- 4D -- mass of each cell |
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| 8 | ! sek -- 4D -- specific kinetic energy |
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| 9 | ! ek -- 1D -- integrated kinetic energy |
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| 10 | ! sep -- 4D -- specific potential energy |
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| 11 | ! ep -- 1D -- integrated potential energy |
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| 12 | ! |
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| 13 | ! Minimal requirements and dependencies: |
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| 14 | ! The dataset must include the following data: |
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| 15 | ! - surface pressure |
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| 16 | ! - atmospheric temperature |
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| 17 | ! - zonal and meridional winds |
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| 18 | |
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| 19 | ! VERTICAL WIND SPEED IS NEGLECTED IN KINETIC ENERGY |
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| 20 | |
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| 21 | implicit none |
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| 22 | |
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| 23 | include "netcdf.inc" ! NetCDF definitions |
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| 24 | |
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| 25 | character (len=128) :: infile ! input file name (name_P.nc) |
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| 26 | character (len=128) :: outfile ! output file name |
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| 27 | |
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| 28 | character (len=64) :: text ! to store some text |
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| 29 | integer infid ! NetCDF input file ID |
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| 30 | integer outfid ! NetCDF output file ID |
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| 31 | integer lon_dimid,lat_dimid,alt_dimid,time_dimid ! NetCDF dimension IDs |
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| 32 | integer lon_varid,lat_varid,alt_varid,time_varid |
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| 33 | integer :: datashape1d ! shape of 1D datasets |
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| 34 | integer,dimension(2) :: datashape2d ! shape of 2D datasets |
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| 35 | integer,dimension(3) :: datashape3d ! shape of 3D datasets |
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| 36 | integer,dimension(4) :: datashape4d ! shape of 4D datasets |
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| 37 | |
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| 38 | real :: miss_val ! special "missing value" to specify missing data |
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| 39 | real,parameter :: miss_val_def=-9.99e+33 ! default value for "missing value" |
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| 40 | real :: pi |
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| 41 | real,dimension(:),allocatable :: lon ! longitude |
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| 42 | integer lonlength ! # of grid points along longitude |
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| 43 | real,dimension(:),allocatable :: lat ! latitude |
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| 44 | real,dimension(:),allocatable :: coslat ! cos of latitude |
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| 45 | integer latlength ! # of grid points along latitude |
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| 46 | real,dimension(:),allocatable :: plev ! Pressure levels (Pa) |
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| 47 | integer altlength ! # of grid point along presnivs (of input datasets) |
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| 48 | real,dimension(:),allocatable :: time ! time |
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| 49 | integer timelength ! # of points along time |
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| 50 | real,dimension(:,:,:),allocatable :: ps ! surface pressure |
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| 51 | real,dimension(:,:,:,:),allocatable :: temp ! atmospheric temperature |
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| 52 | real,dimension(:,:,:,:),allocatable :: vitu ! zonal wind (in m/s) |
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| 53 | real,dimension(:,:,:,:),allocatable :: vitv ! meridional wind (in m/s) |
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| 54 | |
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| 55 | real,dimension(:,:,:,:),allocatable :: rayon ! distance to center (m) |
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| 56 | real,dimension(:,:,:,:),allocatable :: grav ! gravity field (m s-2) |
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| 57 | real,dimension(:,:,:,:),allocatable :: dmass ! mass in cell (kg) |
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| 58 | real,dimension(:,:,:,:),allocatable :: sek ! specific kinetic energy |
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| 59 | real,dimension(:),allocatable :: ek ! total kinetic energy |
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| 60 | real,dimension(:,:,:,:),allocatable :: sep ! specific potential energy |
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| 61 | real,dimension(:),allocatable :: ep ! total potential energy |
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| 62 | |
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| 63 | integer ierr,ierr1,ierr2 ! NetCDF routines return codes |
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| 64 | integer i,j,ilon,ilat,ilev,itim ! for loops |
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| 65 | |
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| 66 | real :: deltalat,deltalon ! lat and lon intervals in radians |
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| 67 | real,dimension(:,:,:,:),allocatable :: deltap ! pressure thickness of each layer (Pa) |
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| 68 | real :: tmpp ! temporary pressure |
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| 69 | real :: dz ! altitude diff |
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| 70 | real :: signe ! orientation of lon axis for mountain torque computation |
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| 71 | logical :: lmdflag |
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| 72 | |
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| 73 | real :: cpdet |
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| 74 | |
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| 75 | include "planet.h" |
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| 76 | |
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| 77 | !=============================================================================== |
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| 78 | ! 1. Input parameters |
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| 79 | !=============================================================================== |
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| 80 | |
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| 81 | pi = 2.*asin(1.) |
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| 82 | miss_val = miss_val_def |
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| 83 | |
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| 84 | write(*,*) "" |
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| 85 | write(*,*) "You are working on the atmosphere of ",planet |
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| 86 | |
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| 87 | !=============================================================================== |
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| 88 | ! 1.1 Input file |
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| 89 | !=============================================================================== |
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| 90 | |
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| 91 | write(*,*) "" |
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| 92 | write(*,*) " Program valid for Venus or Titan LMD, or Venus CAM output files" |
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| 93 | write(*,*) "Enter input file name:" |
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| 94 | |
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| 95 | read(*,'(a128)') infile |
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| 96 | write(*,*) "" |
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| 97 | |
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| 98 | ! open input file |
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| 99 | |
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| 100 | ierr = NF_OPEN(infile,NF_NOWRITE,infid) |
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| 101 | if (ierr.ne.NF_NOERR) then |
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| 102 | write(*,*) 'ERROR: Pb opening file ',trim(infile) |
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| 103 | stop "" |
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| 104 | endif |
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| 105 | |
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| 106 | !=============================================================================== |
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| 107 | ! 1.2 Get grids in lon,lat,alt(pressure),time |
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| 108 | !=============================================================================== |
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| 109 | |
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| 110 | call get_iddim(infid,lat_varid,latlength,lon_varid,lonlength,& |
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| 111 | alt_varid,altlength,time_varid,timelength,lmdflag ) |
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| 112 | |
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| 113 | allocate(lon(lonlength)) |
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| 114 | ierr=NF_GET_VAR_REAL(infid,lon_varid,lon) |
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| 115 | if (ierr.ne.NF_NOERR) stop "Error: Failed reading longitude" |
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| 116 | if(lon(1).gt.lon(2)) then |
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| 117 | signe=-1. |
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| 118 | else |
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| 119 | signe=1. |
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| 120 | endif |
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| 121 | |
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| 122 | allocate(lat(latlength)) |
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| 123 | ierr=NF_GET_VAR_REAL(infid,lat_varid,lat) |
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| 124 | if (ierr.ne.NF_NOERR) stop "Error: Failed reading lat" |
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| 125 | |
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| 126 | allocate(coslat(latlength)) |
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| 127 | ! Beware of rounding problems at poles... |
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| 128 | coslat(:) = max(0.,cos(lat(:)*pi/180.)) |
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| 129 | |
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| 130 | ! Lat, lon pressure intervals |
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| 131 | deltalat = abs(lat(2)-lat(1))*pi/180. |
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| 132 | deltalon = abs(lon(2)-lon(1))*pi/180. |
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| 133 | |
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| 134 | allocate(plev(altlength)) |
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| 135 | ierr=NF_GET_VAR_REAL(infid,alt_varid,plev) |
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| 136 | if (ierr.ne.NF_NOERR) stop "Error: Failed reading presnivs (ie pressure levels)" |
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| 137 | if(.not.lmdflag) then |
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| 138 | ! in CAM files, pressure in mbar and reversed... |
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| 139 | call reverselev(altlength,plev) |
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| 140 | plev=plev*100. ! convertion to Pa |
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| 141 | endif |
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| 142 | |
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| 143 | allocate(time(timelength)) |
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| 144 | ierr=NF_GET_VAR_REAL(infid,time_varid,time) |
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| 145 | if (ierr.ne.NF_NOERR) stop "Error: Failed reading time" |
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| 146 | |
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| 147 | ! Time axis IN PLANET DAYS |
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| 148 | |
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| 149 | if(.not.lmdflag) then |
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| 150 | ! in CAM files, time in Earth days... |
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| 151 | ! => seconds |
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| 152 | time=time*86400. |
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| 153 | endif |
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| 154 | time=time/localday |
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| 155 | |
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| 156 | !=============================================================================== |
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| 157 | ! 1.3 Get output file name |
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| 158 | !=============================================================================== |
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| 159 | write(*,*) "" |
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| 160 | !write(*,*) "Enter output file name" |
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| 161 | !read(*,*) outfile |
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| 162 | outfile=infile(1:len_trim(infile)-3)//"_NRG.nc" |
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| 163 | write(*,*) "Output file name is: "//trim(outfile) |
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| 164 | |
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| 165 | |
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| 166 | |
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| 167 | !=============================================================================== |
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| 168 | ! 2.1 Store needed fields |
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| 169 | !=============================================================================== |
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| 170 | |
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| 171 | !=============================================================================== |
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| 172 | ! 2.1.1 Surface pressure |
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| 173 | !=============================================================================== |
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| 174 | allocate(ps(lonlength,latlength,timelength)) |
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| 175 | |
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| 176 | text="ps" |
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| 177 | call get_var3d(infid,lonlength,latlength,timelength,text,ps,ierr1,ierr2) |
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| 178 | if (ierr1.ne.NF_NOERR) then |
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| 179 | write(*,*) " looking for psol instead... " |
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| 180 | text="psol" |
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| 181 | call get_var3d(infid,lonlength,latlength,timelength,text,ps,ierr1,ierr2) |
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| 182 | if (ierr1.ne.NF_NOERR) stop "Error: Failed to get psol ID" |
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| 183 | endif |
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| 184 | if (ierr2.ne.NF_NOERR) stop "Error: Failed reading surface pressure" |
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| 185 | if((.not.lmdflag).and.(planet.eq."Venus")) call reverse3d(lonlength,latlength,timelength,ps) |
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| 186 | |
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| 187 | !=============================================================================== |
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| 188 | ! 2.1.2 Atmospheric temperature |
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| 189 | !=============================================================================== |
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| 190 | allocate(temp(lonlength,latlength,altlength,timelength)) |
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| 191 | |
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| 192 | if(lmdflag) then |
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| 193 | text="temp" |
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| 194 | else |
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| 195 | text="T" |
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| 196 | endif |
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| 197 | call get_var4d(infid,lonlength,latlength,altlength,timelength,text,temp,miss_val,ierr1,ierr2) |
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| 198 | if (ierr1.ne.NF_NOERR) then |
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| 199 | write(*,*) " looking for t instead... " |
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| 200 | text="t" |
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| 201 | call get_var4d(infid,lonlength,latlength,altlength,timelength,text,temp,miss_val,ierr1,ierr2) |
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| 202 | if (ierr1.ne.NF_NOERR) stop "Error: Failed to get temperature ID" |
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| 203 | endif |
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| 204 | if (ierr2.ne.NF_NOERR) stop "Error: Failed reading temperature" |
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| 205 | |
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| 206 | if(.not.lmdflag) call reverse4d(lonlength,latlength,altlength,timelength,temp) |
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| 207 | |
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| 208 | !=============================================================================== |
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| 209 | ! 2.1.3 Winds |
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| 210 | !=============================================================================== |
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| 211 | allocate(vitu(lonlength,latlength,altlength,timelength)) |
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| 212 | allocate(vitv(lonlength,latlength,altlength,timelength)) |
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| 213 | |
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| 214 | ! zonal wind vitu (in m/s) |
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| 215 | if(lmdflag) then |
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| 216 | text="vitu" |
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| 217 | else |
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| 218 | text="U" |
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| 219 | endif |
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| 220 | call get_var4d(infid,lonlength,latlength,altlength,timelength,text,vitu,miss_val,ierr1,ierr2) |
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| 221 | if (ierr1.ne.NF_NOERR) stop "Error: Failed to get vitu ID" |
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| 222 | if (ierr2.ne.NF_NOERR) stop "Error: Failed reading zonal wind" |
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| 223 | |
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| 224 | if(.not.lmdflag) call reverse4d(lonlength,latlength,altlength,timelength,vitu) |
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| 225 | |
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| 226 | ! meridional wind vitv (in m/s) |
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| 227 | if(lmdflag) then |
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| 228 | text="vitv" |
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| 229 | else |
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| 230 | text="V" |
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| 231 | endif |
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| 232 | call get_var4d(infid,lonlength,latlength,altlength,timelength,text,vitv,miss_val,ierr1,ierr2) |
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| 233 | if (ierr1.ne.NF_NOERR) stop "Error: Failed to get vitv ID" |
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| 234 | if (ierr2.ne.NF_NOERR) stop "Error: Failed reading meridional wind" |
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| 235 | |
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| 236 | if(.not.lmdflag) call reverse4d(lonlength,latlength,altlength,timelength,vitv) |
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| 237 | |
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| 238 | !=============================================================================== |
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| 239 | ! 2.1.4 Altitude above areoide |
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| 240 | !=============================================================================== |
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| 241 | ! Only needed if g(z) on Titan... |
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| 242 | |
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| 243 | !allocate(za(lonlength,latlength,altlength,timelength)) |
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| 244 | |
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| 245 | !text="zareoid" |
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| 246 | !call get_var4d(infid,lonlength,latlength,altlength,timelength,text,za,miss_val,ierr1,ierr2) |
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| 247 | !if (ierr1.ne.NF_NOERR) stop "Error: Failed to get za ID" |
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| 248 | !if (ierr2.ne.NF_NOERR) stop "Error: Failed reading zareoid" |
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| 249 | |
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| 250 | !=============================================================================== |
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| 251 | ! 2.2 Computations |
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| 252 | !=============================================================================== |
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| 253 | |
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| 254 | !=============================================================================== |
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| 255 | ! 2.2.2 Mass in cells |
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| 256 | !=============================================================================== |
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| 257 | allocate(rayon(lonlength,latlength,altlength,timelength)) |
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| 258 | allocate(grav(lonlength,latlength,altlength,timelength)) |
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| 259 | allocate(dmass(lonlength,latlength,altlength,timelength)) |
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| 260 | |
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| 261 | do itim=1,timelength |
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| 262 | do ilon=1,lonlength |
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| 263 | do ilat=1,latlength |
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| 264 | do ilev=1,altlength |
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| 265 | ! Need to be consistent with GCM computations |
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| 266 | ! if (za(ilon,ilat,ilev,itim).ne.miss_val) then |
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| 267 | rayon(ilon,ilat,ilev,itim) = a0 |
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| 268 | ! rayon(ilon,ilat,ilev,itim) = za(ilon,ilat,ilev,itim) + a0 |
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| 269 | grav(ilon,ilat,ilev,itim) = g0*a0*a0 & |
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| 270 | /(rayon(ilon,ilat,ilev,itim)*rayon(ilon,ilat,ilev,itim)) |
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| 271 | ! else |
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| 272 | ! rayon(ilon,ilat,ilev,itim) = miss_val |
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| 273 | ! grav(ilon,ilat,ilev,itim) = miss_val |
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| 274 | ! endif |
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| 275 | enddo |
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| 276 | enddo |
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| 277 | enddo |
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| 278 | enddo ! timelength |
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| 279 | |
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| 280 | call cellmass(infid,latlength,lonlength,altlength,timelength,lmdflag, & |
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| 281 | miss_val,deltalon,deltalat,coslat,plev,ps,grav,rayon, & |
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| 282 | dmass ) |
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| 283 | |
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| 284 | !=============================================================================== |
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| 285 | ! 2.2.6 Specific energies |
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| 286 | !=============================================================================== |
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| 287 | allocate(sek(lonlength,latlength,altlength,timelength)) |
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| 288 | allocate(sep(lonlength,latlength,altlength,timelength)) |
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| 289 | |
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| 290 | do itim=1,timelength |
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| 291 | |
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| 292 | do ilon=1,lonlength |
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| 293 | do ilat=1,latlength |
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| 294 | do ilev=1,altlength |
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| 295 | if (rayon(ilon,ilat,ilev,itim).ne.miss_val) then |
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| 296 | if ((vitu(ilon,ilat,ilev,itim).lt.miss_val) & |
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| 297 | .and.(vitv(ilon,ilat,ilev,itim).lt.miss_val)) then |
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| 298 | sek(ilon,ilat,ilev,itim) = 0.5 * & |
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| 299 | ( vitu(ilon,ilat,ilev,itim)*vitu(ilon,ilat,ilev,itim) & |
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| 300 | + vitv(ilon,ilat,ilev,itim)*vitv(ilon,ilat,ilev,itim) ) |
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| 301 | else |
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| 302 | sek(ilon,ilat,ilev,itim) = miss_val |
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| 303 | endif |
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| 304 | if (temp(ilon,ilat,ilev,itim).ne.miss_val) then |
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| 305 | sep(ilon,ilat,ilev,itim) = temp(ilon,ilat,ilev,itim) & |
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| 306 | * cpdet(temp(ilon,ilat,ilev,itim)) |
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| 307 | else |
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| 308 | sep(ilon,ilat,ilev,itim) = miss_val |
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| 309 | endif |
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| 310 | else |
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| 311 | sek(ilon,ilat,ilev,itim) = miss_val |
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| 312 | sep(ilon,ilat,ilev,itim) = miss_val |
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| 313 | endif |
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| 314 | enddo |
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| 315 | enddo |
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| 316 | enddo |
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| 317 | |
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| 318 | enddo ! timelength |
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| 319 | |
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| 320 | !=============================================================================== |
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| 321 | ! 2.2.7 Total energies |
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| 322 | !=============================================================================== |
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| 323 | allocate(ek(timelength)) |
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| 324 | allocate(ep(timelength)) |
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| 325 | |
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| 326 | do itim=1,timelength |
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| 327 | |
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| 328 | ek(itim) = 0. |
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| 329 | ep(itim) = 0. |
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| 330 | do ilon=1,lonlength |
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| 331 | do ilat=1,latlength |
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| 332 | do ilev=1,altlength |
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| 333 | if (sek(ilon,ilat,ilev,itim).ne.miss_val) then |
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| 334 | ek(itim) = ek(itim) & |
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| 335 | + sek(ilon,ilat,ilev,itim) * dmass(ilon,ilat,ilev,itim) |
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| 336 | endif |
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| 337 | if (sep(ilon,ilat,ilev,itim).ne.miss_val) then |
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| 338 | ep(itim) = ep(itim) & |
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| 339 | + sep(ilon,ilat,ilev,itim) * dmass(ilon,ilat,ilev,itim) |
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| 340 | endif |
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| 341 | enddo |
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| 342 | enddo |
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| 343 | enddo |
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| 344 | if (ek(itim).eq.0.) then |
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| 345 | ek(itim) = miss_val |
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| 346 | ep(itim) = miss_val |
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| 347 | endif |
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| 348 | |
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| 349 | enddo ! timelength |
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| 350 | |
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| 351 | print*,"End of computations" |
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| 352 | |
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| 353 | !=============================================================================== |
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| 354 | ! 3. Create output file |
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| 355 | !=============================================================================== |
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| 356 | |
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| 357 | ! Create output file |
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| 358 | ierr=NF_CREATE(outfile,NF_CLOBBER,outfid) |
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| 359 | if (ierr.ne.NF_NOERR) then |
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| 360 | write(*,*)"Error: could not create file ",outfile |
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| 361 | stop |
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| 362 | endif |
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| 363 | |
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| 364 | !=============================================================================== |
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| 365 | ! 3.1. Define and write dimensions |
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| 366 | !=============================================================================== |
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| 367 | |
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| 368 | call write_dim(outfid,lonlength,latlength,altlength,timelength, & |
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| 369 | lon,lat,plev,time,lon_dimid,lat_dimid,alt_dimid,time_dimid) |
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| 370 | |
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| 371 | !=============================================================================== |
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| 372 | ! 3.2. Define and write variables |
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| 373 | !=============================================================================== |
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| 374 | |
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| 375 | ! 1D Variables |
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| 376 | |
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| 377 | datashape1d=time_dimid |
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| 378 | |
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| 379 | call write_var1d(outfid,datashape1d,timelength,& |
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| 380 | "ek ", "Total kinetic energy","J ",miss_val,& |
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| 381 | ek ) |
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| 382 | |
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| 383 | call write_var1d(outfid,datashape1d,timelength,& |
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| 384 | "ep ", "Total pot energy ","J ",miss_val,& |
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| 385 | ep ) |
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| 386 | |
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| 387 | ! 3D variables |
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| 388 | |
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| 389 | datashape3d(1)=lon_dimid |
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| 390 | datashape3d(2)=lat_dimid |
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| 391 | datashape3d(3)=time_dimid |
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| 392 | |
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| 393 | call write_var3d(outfid,datashape3d,lonlength,latlength,timelength,& |
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| 394 | "ps ", "Surface pressure ","Pa ",miss_val,& |
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| 395 | ps ) |
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| 396 | |
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| 397 | ! 4D variables |
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| 398 | |
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| 399 | datashape4d(1)=lon_dimid |
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| 400 | datashape4d(2)=lat_dimid |
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| 401 | datashape4d(3)=alt_dimid |
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| 402 | datashape4d(4)=time_dimid |
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| 403 | |
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| 404 | call write_var4d(outfid,datashape4d,lonlength,latlength,altlength,timelength,& |
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| 405 | "dmass ", "Mass ","kg ",miss_val,& |
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| 406 | dmass ) |
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| 407 | |
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| 408 | call write_var4d(outfid,datashape4d,lonlength,latlength,altlength,timelength,& |
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| 409 | "sek ", "Specific kin energy ","J/kg ",miss_val,& |
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| 410 | sek ) |
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| 411 | |
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| 412 | call write_var4d(outfid,datashape4d,lonlength,latlength,altlength,timelength,& |
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| 413 | "sep ", "Specific pot energy ","J/kg ",miss_val,& |
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| 414 | sep ) |
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| 415 | |
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| 416 | |
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| 417 | !!!! Close output file |
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| 418 | ierr=NF_CLOSE(outfid) |
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| 419 | if (ierr.ne.NF_NOERR) then |
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| 420 | write(*,*) 'Error, failed to close output file ',outfile |
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| 421 | endif |
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| 422 | |
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| 423 | |
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| 424 | end program |
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