[137] | 1 | |
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| 2 | |
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| 3 | program lslin |
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| 4 | |
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| 5 | ! Program to interpolate data in Solar Longitude linear time coordinate |
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| 6 | ! (usable with grads) from Netcdf diagfi or concatnc files |
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| 7 | ! author Y. Wanherdrick, K. Dassas 2004 |
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| 8 | ! Modified by F.Forget 04/2005 |
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| 9 | ! More modifications by Ehouarn Millour 12/2005 |
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| 10 | ! Modified by Ehouarn Millour 10/2007 (changed evaluation of 'start_var' |
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| 11 | ! from hard-coded values to a computed value) |
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[1073] | 12 | ! Read controle field, if available TN, October 2013 |
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[1409] | 13 | ! Allow to chose a starting Ls and to average within Ls timestep a |
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| 14 | ! (great to compare with TES and MCS data. F. Forget december 2013) |
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[137] | 15 | |
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[1073] | 16 | |
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[137] | 17 | implicit none |
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| 18 | |
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| 19 | include "netcdf.inc" ! NetCDF definitions |
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| 20 | |
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| 21 | character (len=50) :: infile |
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| 22 | ! infile(): input file name |
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| 23 | character (len=50), dimension(:), allocatable :: var |
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| 24 | ! var(): names of the variables |
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[2450] | 25 | character (len=50) :: long_name,units |
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| 26 | ! long_name(),units(): [netcdf] "long_name" and "units" attributes |
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[2432] | 27 | character (len=50) :: altlong_name,altunits,altpositive |
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| 28 | ! altlong_name(): [netcdf] altitude "long_name" attribute |
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| 29 | ! altunits(): [netcdf] altitude "units" attribute |
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| 30 | ! altpositive(): [netcdf] altitude "positive" attribute |
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| 31 | |
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[137] | 32 | character (len=100) :: outfile |
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| 33 | ! outfile(): output file name |
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| 34 | character (len=100) :: vartmp |
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| 35 | ! vartmp(): used for temporary storage of various strings |
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| 36 | character (len=1) :: answer |
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[2450] | 37 | ! answer: user's answers at multiple questions (especially, answer='y'/'Y') |
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[1409] | 38 | character (len=1) :: average |
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| 39 | ! average: the character 'y' to average within the Ls timestep |
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[2432] | 40 | integer :: nid,varid,ierr,miss,validr |
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[137] | 41 | ! nid: [netcdf] ID # of input file |
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| 42 | ! varid: [netcdf] ID # of a variable |
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| 43 | ! ierr: [netcdf] error code (returned by subroutines) |
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| 44 | integer :: nout,varidout |
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| 45 | ! nout: [netcdf] ID # of output file |
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| 46 | ! varidout: [netcdf] ID # of a variable (to write in the output file) |
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[1409] | 47 | integer :: i,j,k,l,x,y,n |
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[137] | 48 | ! counters for various loops |
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| 49 | integer :: start_var |
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| 50 | ! starting index/ID # from which physical variables are to be found |
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| 51 | integer :: reptime ! Ehouarn: integer or real ? |
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| 52 | ! rep_time: starting date/time of the run (given by user) |
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| 53 | integer :: day_ini ! Ehouarn: integer or real ? |
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| 54 | ! day_ini: starting date/time of the run stored in input file |
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[2432] | 55 | real, dimension(:), allocatable:: lat,lon,alt,time,lsgcm,timels,ctl |
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[137] | 56 | ! lat(): latitude coordinates (read from input file) |
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| 57 | ! lon(): longitude coordinates (read from input file) |
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| 58 | ! alt(): altitude coordinates (read from input file) |
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| 59 | ! time(): time coordinates (in "sol", read from input file) |
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| 60 | ! lsgcm(): time coordinate (in unevenly spaced "Ls") |
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| 61 | ! timels(): new time coordinates (evenly spaced "Ls"; written to output file) |
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[2432] | 62 | ! ctl(): array, stores controle array |
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| 63 | integer :: latlen,lonlen,altlen,timelen,Nls,Sls,ctllen |
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[137] | 64 | ! latlen: # of elements of lat() array |
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| 65 | ! lonlen: # of elements of lon() array |
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| 66 | ! altvar: # of elements of alt() array |
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| 67 | ! timelen: # of elements of time() and lsgcm() arrays |
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| 68 | ! Nls: # of elements of timels() array |
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| 69 | integer :: nbvarfile,nbvar,ndim !,nbfile |
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| 70 | ! nbvar: # of time-dependent variables |
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| 71 | ! nbvarfile: total # of variables (in netcdf file) |
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| 72 | ! ndim: [netcdf] # of dimensions (3 or 4) of a variable |
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[2432] | 73 | integer :: latdim,londim,altdim,timedim,ctldim |
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[137] | 74 | ! latdim: [netcdf] "latitude" dim ID |
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| 75 | ! londim: [netcdf] "longitude" dim ID |
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| 76 | ! altdim: [netcdf] "altdim" dim ID |
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| 77 | ! timedim: [netcdf] "timedim" dim ID |
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[2432] | 78 | ! ctldim: [netcdf] "controle" dim ID |
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| 79 | integer :: latvar,lonvar,altvar,timevar,ctlvar |
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[137] | 80 | ! latvar: [netcdf] ID of "latitude" variable |
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| 81 | ! lonvar: [netcdf] ID of "longitude" variable |
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| 82 | ! altvar: [netcdf] ID of "altitude" variable |
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| 83 | ! timevar: [netcdf] ID of "Time" variable |
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| 84 | integer :: latdimout,londimout,altdimout,timedimout,timevarout |
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| 85 | ! latdimout: [netcdf] output latitude (dimension) ID |
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| 86 | ! londimout: [netcdf] output longitude (dimension) ID |
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| 87 | ! altdimout: [netcdf] output altitude (dimension) ID |
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| 88 | ! timedimout: [netcdf] output time (dimension) ID |
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| 89 | ! timevarout: [netcdf] ID of output "Time" variable |
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| 90 | integer, dimension(4) :: corner,edges,dim |
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| 91 | ! corner(4): [netcdf] start indexes (where block of data will be written) |
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| 92 | ! edges(4): [netcdf] lenght (along dimensions) of block of data to write |
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| 93 | ! dim(4): [netcdf] lat, long, alt and time dimensions |
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| 94 | real, dimension(:,:,:,:), allocatable :: var3d,var3dls |
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| 95 | ! var3d(,,,): 4D array to store a variable (on initial lat/lon/alt/sol grid) |
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| 96 | ! var3dls(,,,): 4D array to store a variable (on new lat/lon/alt/Ls grid) |
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| 97 | real, dimension(:), allocatable :: var3dxy |
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| 98 | ! var3dxy(): to store the temporal evolution of a variable (at fixed lat/lon/alt) |
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[1409] | 99 | real :: deltatsol,deltals,resultat,ls0 |
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[137] | 100 | ! deltatsol: time step (in sols) of input file data |
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| 101 | ! deltals: time step (in Ls) for the data sent to output |
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[1409] | 102 | ! ls0: first Ls value for the data sent to output |
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[137] | 103 | ! resultat: to temporarily store the result of the interpolation |
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| 104 | character (len=3) :: mon |
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| 105 | ! mon(3): to store (and write to file) the 3 first letters of a month |
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| 106 | real :: date |
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| 107 | ! date: used to compute/build a fake date (for grads output) |
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[1409] | 108 | real :: missing |
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| 109 | ! to handle missing value when reading /writing files |
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| 110 | real, dimension(2) :: valid_range |
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| 111 | ! valid range |
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[137] | 112 | |
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| 113 | !============================================================================== |
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| 114 | ! 1. Initialisation step |
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| 115 | !============================================================================== |
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| 116 | |
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| 117 | !============================================================================== |
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| 118 | ! 1.1. Get input file name and 'type' (to initialize start_var and reptime) |
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| 119 | !============================================================================== |
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| 120 | |
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| 121 | write(*,*) "which file do you want to use?" |
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| 122 | read(*,'(a50)') infile |
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| 123 | |
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| 124 | !============================================================================== |
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| 125 | ! 1.2. Open input file and read/list the variables it contains |
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| 126 | !============================================================================== |
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| 127 | |
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| 128 | write(*,*) "opening "//trim(infile)//"..." |
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| 129 | ierr = NF_OPEN(infile,NF_NOWRITE,nid) |
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| 130 | if (ierr.NE.NF_NOERR) then |
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| 131 | write(*,*) 'Failed to open file '//infile |
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| 132 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 133 | stop |
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[137] | 134 | endif |
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| 135 | |
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| 136 | ! Compute 'start_var', the index from which variables are lon-lat-time |
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| 137 | ! and/or lon-lat-alt-time |
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| 138 | ! WARNING: We assume here that the ordering of variables in the NetCDF |
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| 139 | ! file is such that 0D, 1D and 2D variables are placed BEFORE 3D and 4D |
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| 140 | ! variables |
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| 141 | |
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| 142 | i=1 ! dummy initialization to enter loop below |
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| 143 | start_var=0 ! initialization |
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| 144 | do while (i.lt.3) |
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| 145 | start_var=start_var+1 |
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| 146 | ! request number of dims of variable number 'start_var' |
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| 147 | ierr=NF_INQ_VARNDIMS(nid,start_var,i) |
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| 148 | if (ierr.ne.NF_NOERR) then |
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| 149 | write(*,*) "Failed to get number of dims for variable number:",start_var |
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| 150 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 151 | stop |
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[137] | 152 | endif |
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| 153 | enddo |
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| 154 | write(*,*) "start_var=",start_var |
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| 155 | |
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| 156 | |
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| 157 | ierr=NF_INQ_NVARS(nid,nbvarfile) |
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| 158 | ! nbvarfile is now equal to the (total) number of variables in input file |
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| 159 | |
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| 160 | ! Get the variables' names from the input file (and store them in var()) |
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[2450] | 161 | write(*,*) "" |
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[137] | 162 | nbvar=nbvarfile-(start_var-1) |
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[2450] | 163 | allocate(var(nbvar)) |
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[137] | 164 | do i=1,nbvar |
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| 165 | ierr=NF_INQ_VARNAME(nid,i+(start_var-1),var(i)) |
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| 166 | write(*,'(a9,1x,i2,1x,a1,1x,a50)') "variable ",i,":",var(i) |
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| 167 | enddo |
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| 168 | |
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| 169 | !============================================================================== |
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| 170 | ! 1.3. Output file name |
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| 171 | !============================================================================== |
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| 172 | outfile=infile(1:len_trim(infile)-3)//"_Ls.nc" |
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[2450] | 173 | write(*,*) "" |
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| 174 | write(*,*) "Output file : "//trim(outfile) |
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[137] | 175 | |
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| 176 | |
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| 177 | !============================================================================== |
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| 178 | ! 2. Work: read input, build new time coordinate and write it to output |
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| 179 | !============================================================================== |
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| 180 | |
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| 181 | !============================================================================== |
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| 182 | ! 2.1. Read (and check) latitude, longitude and altitude from input file |
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| 183 | !============================================================================== |
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| 184 | |
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| 185 | ierr=NF_INQ_DIMID(nid,"latitude",latdim) |
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| 186 | ierr=NF_INQ_VARID(nid,"latitude",latvar) |
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| 187 | if (ierr.NE.NF_NOERR) then |
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| 188 | write(*,*) 'ERROR: Field <latitude> is missing' |
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| 189 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 190 | stop |
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[137] | 191 | endif |
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| 192 | ierr=NF_INQ_DIMLEN(nid,latdim,latlen) |
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| 193 | ! write(*,*) "latlen: ",latlen |
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| 194 | |
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| 195 | ierr=NF_INQ_DIMID(nid,"longitude",londim) |
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| 196 | ierr=NF_INQ_VARID(nid,"longitude",lonvar) |
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| 197 | if (ierr.NE.NF_NOERR) then |
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| 198 | write(*,*) 'ERROR: Field <longitude> is missing' |
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| 199 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 200 | stop |
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[137] | 201 | endif |
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| 202 | ierr=NF_INQ_DIMLEN(nid,londim,lonlen) |
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| 203 | ! write(*,*) "lonlen: ",lonlen |
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| 204 | |
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| 205 | ierr=NF_INQ_DIMID(nid,"altitude",altdim) |
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| 206 | ierr=NF_INQ_VARID(nid,"altitude",altvar) |
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| 207 | if (ierr.NE.NF_NOERR) then |
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| 208 | write(*,*) 'ERROR: Field <altitude> is missing' |
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| 209 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 210 | ! stop |
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[137] | 211 | altlen = 1 |
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| 212 | else |
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| 213 | ierr=NF_INQ_DIMLEN(nid,altdim,altlen) |
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[2450] | 214 | |
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| 215 | ! Get altitude attributes to handle files with any altitude type |
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| 216 | ierr=nf_get_att_text(nid,altvar,'long_name',altlong_name) |
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| 217 | ierr=nf_get_att_text(nid,altvar,'units',altunits) |
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| 218 | ierr=nf_get_att_text(nid,altvar,'positive',altpositive) |
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[137] | 219 | endif |
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[2450] | 220 | ! write(*,*) "altlen: ",altlen |
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[137] | 221 | |
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[2432] | 222 | |
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[137] | 223 | ! Allocate lat(), lon() and alt() |
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[2450] | 224 | allocate(lat(latlen)) |
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| 225 | allocate(lon(lonlen)) |
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| 226 | allocate(alt(altlen)) |
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[137] | 227 | |
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| 228 | ! Read lat(),lon() and alt() from input file |
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[2450] | 229 | ierr = NF_GET_VAR_REAL(nid,latvar,lat) |
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| 230 | ierr = NF_GET_VAR_REAL(nid,lonvar,lon) |
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| 231 | ierr = NF_GET_VAR_REAL(nid,altvar,alt) |
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| 232 | if (ierr.NE.NF_NOERR) then |
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| 233 | if (altlen.eq.1) alt(1)=0. |
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| 234 | end if |
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[137] | 235 | |
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| 236 | |
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[2432] | 237 | ierr=NF_INQ_DIMID(nid,"index",ctldim) |
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| 238 | if (ierr.NE.NF_NOERR) then |
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| 239 | write(*,*) ' Dimension <index> is missing in file '//trim(infile) |
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| 240 | ctllen=0 |
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[2567] | 241 | !stop |
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[2432] | 242 | endif |
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| 243 | ierr=NF_INQ_VARID(nid,"controle",ctlvar) |
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| 244 | if (ierr.NE.NF_NOERR) then |
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| 245 | write(*,*) 'Field <controle> is missing in file '//trim(infile) |
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| 246 | ctllen=0 |
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[2567] | 247 | !stop |
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[2432] | 248 | else |
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| 249 | ierr=NF_INQ_DIMLEN(nid,ctldim,ctllen) |
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| 250 | endif |
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| 251 | |
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| 252 | allocate(ctl(ctllen),stat=ierr) |
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| 253 | if (ierr.ne.0) then |
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| 254 | write(*,*) "Error: failed to allocate ctl(ctllen)" |
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| 255 | stop |
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| 256 | endif |
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| 257 | |
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| 258 | if (ctllen .ne. 0) then |
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| 259 | ierr = NF_GET_VAR_REAL(nid,ctlvar,ctl) |
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| 260 | if (ierr.ne.0) then |
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| 261 | write(*,*) "Error: failed to load controle" |
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| 262 | write(*,*) NF_STRERROR(ierr) |
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| 263 | stop |
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| 264 | endif |
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| 265 | endif ! of if (ctllen .ne. 0) |
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| 266 | |
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| 267 | |
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| 268 | |
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[137] | 269 | !============================================================================== |
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[2450] | 270 | ! 2.2. Create (and initialize) latitude, longitude and altitude in output file |
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[137] | 271 | !============================================================================== |
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| 272 | |
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[2432] | 273 | ! Initialize output file's lat,lon,alt and time dimensions |
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| 274 | call initiate(outfile,lat,lon,alt,ctl,latlen,lonlen,altlen,ctllen,& |
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| 275 | altlong_name,altunits,altpositive,& |
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| 276 | nout,latdimout,londimout,altdimout,timedimout,timevarout) |
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[137] | 277 | |
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[2432] | 278 | ! Initialize output file's aps,bps and phisinit variables |
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| 279 | call init2(nid,lonlen,latlen,altlen,altdim,& |
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| 280 | nout,londimout,latdimout,altdimout) |
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| 281 | |
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[2450] | 282 | write(*,*)"" |
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[137] | 283 | !============================================================================== |
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| 284 | ! 2.3. Read time from input file |
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| 285 | !============================================================================== |
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| 286 | |
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| 287 | ierr=NF_INQ_DIMID(nid,"Time",timedim) |
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| 288 | if (ierr.NE.NF_NOERR) then |
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| 289 | write(*,*) 'ERROR: Dimension <Time> is missing' |
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| 290 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 291 | stop |
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[137] | 292 | endif |
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| 293 | ierr=NF_INQ_VARID(nid,"Time",timevar) |
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| 294 | if (ierr.NE.NF_NOERR) then |
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| 295 | write(*,*) 'ERROR: Field <Time> is missing' |
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| 296 | write(*,*) NF_STRERROR(ierr) |
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[2567] | 297 | stop |
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[137] | 298 | endif |
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| 299 | |
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| 300 | ierr=NF_INQ_DIMLEN(nid,timedim,timelen) |
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| 301 | write(*,*) "timelen: ",timelen |
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| 302 | |
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| 303 | allocate(time(timelen)) |
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| 304 | allocate(lsgcm(timelen)) |
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| 305 | |
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| 306 | ierr = NF_GET_VAR_REAL(nid,timevar,time) |
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| 307 | |
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| 308 | !============================================================================== |
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| 309 | ! 2.4. Initialize day_ini (starting day of the run) |
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| 310 | !============================================================================== |
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| 311 | |
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[2450] | 312 | if (ctllen .ne. 0) then ! controle is present in input file |
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| 313 | write(*,*) "Do you want to specify the beginning day of the file (y/n) ?" |
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| 314 | write(*,*) "If 'n', the value stored in the controle field will be used." |
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| 315 | read(*,*) answer |
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| 316 | else ! controle is not present in the input file |
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| 317 | write(*,*) "There is no field controle in file "//trim(infile) |
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| 318 | write(*,*) "You have to specify the beginning day of the file." |
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| 319 | answer="y" |
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| 320 | endif |
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[137] | 321 | |
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[2450] | 322 | if ((answer=="y").or.(answer=="Y")) then |
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| 323 | write(*,*) "Beginning day of the file?" |
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| 324 | read(*,*) reptime |
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| 325 | endif |
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| 326 | |
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| 327 | write(*,*) 'answer : ',answer |
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[137] | 328 | if ((answer/="y").and.(answer/="Y")) then |
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[2450] | 329 | ! the starting date of the run |
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[137] | 330 | ! is stored in the "controle" array |
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[2450] | 331 | |
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| 332 | day_ini = nint(ctl(4)) |
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[1073] | 333 | day_ini = modulo(day_ini,669) |
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[137] | 334 | write(*,*) 'day_ini', day_ini |
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| 335 | else |
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| 336 | day_ini= reptime |
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| 337 | write(*,*) 'day_ini', day_ini |
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| 338 | endif |
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| 339 | |
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| 340 | !============================================================================== |
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| 341 | ! 2.5. Build timels() (i.e.: time, but in evenly spaced "Ls" time steps) |
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| 342 | !============================================================================== |
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| 343 | |
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| 344 | ! compute time step, in sols, of input dataset |
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| 345 | deltatsol=time(2)-time(1) |
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| 346 | write(*,*) 'deltatsol',deltatsol |
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| 347 | |
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| 348 | ! compute time/dates in "Ls"; result stored in lsgcm() |
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| 349 | do i=1,timelen |
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| 350 | call sol2ls(day_ini+time(i),lsgcm(i)) |
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[1409] | 351 | if (lsgcm(i).lt.lsgcm(1)) lsgcm(i)=lsgcm(i) + 360. |
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[137] | 352 | enddo |
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| 353 | |
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| 354 | write(*,*) 'Input data LS range :', lsgcm(1),lsgcm(timelen) |
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| 355 | |
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[2450] | 356 | ! generate the time step of the new Ls axis for the output |
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| 357 | write(*,*) "Automatic Ls timestep (y/n)?" |
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[137] | 358 | read(*,*) answer |
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| 359 | if ((answer=="y").or.(answer=="Y")) then |
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| 360 | ! ********************************************* |
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| 361 | ! Trick of the trade: |
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| 362 | ! Use the value of deltatsol to determine |
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| 363 | ! a suitable value for deltals |
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| 364 | ! ********************************************* |
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| 365 | deltals=1./12. |
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| 366 | if (0.6*deltatsol.ge.1/6.) deltals=1./6. |
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| 367 | if (0.6*deltatsol.ge.0.25) deltals=0.25 |
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| 368 | if (0.6*deltatsol.ge.0.5) deltals=0.5 |
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| 369 | if (0.6*deltatsol.ge.0.75) deltals=0.75 |
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| 370 | if (0.6*deltatsol.ge.1) deltals=1. |
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| 371 | if (0.6*deltatsol.ge.2) deltals=2. |
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| 372 | if (0.6*deltatsol.ge.3) deltals=3. |
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| 373 | if (0.6*deltatsol.ge.5) deltals=5. |
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[1409] | 374 | ls0=lsgcm(1) ! First Ls date |
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[137] | 375 | else |
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[2450] | 376 | write(*,*) "New timestep in Ls (deg) :" |
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[137] | 377 | read(*,*) deltals |
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[2450] | 378 | write(*,*) "First Ls (deg) :" |
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[1409] | 379 | read(*,*) ls0 |
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| 380 | if (ls0.lt.lsgcm(1)) then |
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| 381 | write(*,*) 'with this file, the earliest Ls is ',lsgcm(1),'let s use it' |
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| 382 | ls0=lsgcm(1) |
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| 383 | end if |
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| 384 | write(*,*) "First Ls date (deg) = ", ls0 ! FF2013 |
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[2450] | 385 | endif |
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[1409] | 386 | |
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[2450] | 387 | NLs=int(int((lsgcm(timelen)-ls0)/deltals) +1) ! FF2013 |
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[137] | 388 | allocate(timels(Nls)) |
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| 389 | |
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| 390 | ! Build timels() |
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[2450] | 391 | timels(1) = 0.01*nint(100.*ls0) ! 2 decimals |
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[137] | 392 | do k=2,Nls |
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| 393 | timels(k) = timels(k-1) + deltals |
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| 394 | end do |
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| 395 | |
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[2450] | 396 | write(*,*) 'New timestep in Ls (deg) ', deltals |
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| 397 | write(*,*) 'Output data LS range : ', timels(1),timels(Nls) |
---|
[137] | 398 | |
---|
[2450] | 399 | ! create averaged bins or interpolate at exact Ls ? |
---|
| 400 | write(*,*) "Average data within the Ls timestep (y/n) or interpolate ? " |
---|
| 401 | read(*,*) average |
---|
| 402 | write(*,*)"" |
---|
| 403 | |
---|
[137] | 404 | !============================================================================== |
---|
| 405 | ! 2.6. Write timels() to output file |
---|
| 406 | !============================================================================== |
---|
| 407 | |
---|
| 408 | do k=1,Nls |
---|
[2567] | 409 | ierr= NF_PUT_VARA_REAL(nout,timevarout,(/k/),(/1/),timels(k)) |
---|
[137] | 410 | enddo |
---|
| 411 | |
---|
| 412 | !============================================================================== |
---|
| 413 | ! 3. Read variables, interpolate them along the new time coordinate |
---|
| 414 | ! and send the result to output |
---|
| 415 | !============================================================================== |
---|
| 416 | |
---|
| 417 | do j=1,nbvar ! loop on the variables to read/interpolate/write |
---|
| 418 | |
---|
| 419 | !============================================================================== |
---|
| 420 | ! 3.1 Check that variable exists, and get some of its attributes |
---|
| 421 | !============================================================================== |
---|
| 422 | write(*,*) "variable ",var(j) |
---|
| 423 | ! Get the variable's ID |
---|
| 424 | ierr=NF_INQ_VARID(nid,var(j),varid) |
---|
| 425 | if (ierr.NE.NF_NOERR) then |
---|
| 426 | write(*,*) 'ERROR: Field <',var(j),'> not found' |
---|
| 427 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 428 | write(*,*) "Better stop now..." |
---|
| 429 | stop |
---|
[137] | 430 | endif |
---|
[2450] | 431 | |
---|
[137] | 432 | ! Get the value of 'ndim' for this varriable |
---|
| 433 | ierr=NF_INQ_VARNDIMS(nid,varid,ndim) |
---|
| 434 | write(*,*) 'ndim', ndim |
---|
[2450] | 435 | |
---|
| 436 | ! Check that it is a 3D or 4D variable |
---|
| 437 | if (ndim.lt.3) then |
---|
| 438 | write(*,*) "Error:",trim(var(j))," is neither a 3D nor a 4D variable" |
---|
| 439 | write(*,*) "We'll skip that variable..." |
---|
| 440 | CYCLE ! go directly to the next variable |
---|
| 441 | endif |
---|
[137] | 442 | |
---|
| 443 | !============================================================================== |
---|
| 444 | ! 3.2 Prepare a few things in order to interpolate/write |
---|
| 445 | !============================================================================== |
---|
| 446 | |
---|
| 447 | if (ndim==3) then |
---|
| 448 | allocate(var3d(lonlen,latlen,timelen,1)) |
---|
| 449 | allocate(var3dls(lonlen,latlen,Nls,1)) |
---|
| 450 | allocate(var3dxy(timelen)) |
---|
| 451 | |
---|
| 452 | dim(1)=londimout |
---|
| 453 | dim(2)=latdimout |
---|
| 454 | dim(3)=timedimout |
---|
| 455 | |
---|
| 456 | corner(1)=1 |
---|
| 457 | corner(2)=1 |
---|
| 458 | corner(3)=1 |
---|
| 459 | corner(4)=1 |
---|
| 460 | |
---|
| 461 | edges(1)=lonlen |
---|
| 462 | edges(2)=latlen |
---|
| 463 | edges(3)=Nls |
---|
| 464 | edges(4)=1 |
---|
| 465 | |
---|
| 466 | else if (ndim==4) then |
---|
| 467 | allocate(var3d(lonlen,latlen,altlen,timelen)) |
---|
| 468 | allocate(var3dls(lonlen,latlen,altlen,Nls)) |
---|
| 469 | allocate(var3dxy(timelen)) |
---|
| 470 | |
---|
| 471 | dim(1)=londimout |
---|
| 472 | dim(2)=latdimout |
---|
| 473 | dim(3)=altdimout |
---|
| 474 | dim(4)=timedimout |
---|
| 475 | |
---|
| 476 | corner(1)=1 |
---|
| 477 | corner(2)=1 |
---|
| 478 | corner(3)=1 |
---|
| 479 | corner(4)=1 |
---|
| 480 | |
---|
| 481 | edges(1)=lonlen |
---|
| 482 | edges(2)=latlen |
---|
| 483 | edges(3)=altlen |
---|
| 484 | edges(4)=Nls |
---|
| 485 | endif |
---|
| 486 | |
---|
| 487 | !============================================================================== |
---|
| 488 | ! 3.3 Write this variable's definition and attributes to the output file |
---|
| 489 | !============================================================================== |
---|
[2450] | 490 | units=" " |
---|
| 491 | long_name=" " |
---|
| 492 | ierr=nf_get_att_text(nid,varid,"long_name",long_name) |
---|
| 493 | if (ierr.ne.nf_noerr) then |
---|
| 494 | ! if no attribute "long_name", try "title" |
---|
| 495 | ierr=nf_get_att_text(nid,varid,"title",long_name) |
---|
| 496 | endif |
---|
| 497 | ierr=nf_get_att_text(nid,varid,"units",units) |
---|
[137] | 498 | |
---|
[2450] | 499 | call def_var(nout,var(j),long_name,units,ndim,dim,varidout,ierr) |
---|
[137] | 500 | |
---|
| 501 | !============================================================================== |
---|
| 502 | ! 3.4 Read variable |
---|
[2450] | 503 | !============================================================================== |
---|
[137] | 504 | |
---|
[2450] | 505 | ierr = NF_GET_VAR_REAL(nid,varid,var3d) |
---|
[2577] | 506 | miss=NF_GET_ATT_REAL(nid,varid,"missing_value",[missing]) |
---|
[2450] | 507 | validr=NF_GET_ATT_REAL(nid,varid,"valid_range",valid_range) |
---|
[137] | 508 | |
---|
| 509 | !============================================================================== |
---|
[1409] | 510 | ! 3.6 interpolate or average |
---|
[137] | 511 | !============================================================================== |
---|
| 512 | |
---|
| 513 | ! 2D variable (lon, lat, time) |
---|
| 514 | ! interpolation of var at timels |
---|
| 515 | if (ndim==3) then |
---|
| 516 | do x=1,lonlen |
---|
| 517 | do y=1,latlen |
---|
| 518 | ! write(*,*) 'd: x, y', x, y |
---|
| 519 | do l=1,timelen |
---|
[1409] | 520 | var3dxy(l)=var3d(x,y,l,1) |
---|
[137] | 521 | enddo |
---|
[1409] | 522 | do n=1,Nls |
---|
| 523 | if(average.eq.'y') then |
---|
| 524 | resultat=0. |
---|
| 525 | Sls=0 ! (gcm data counter within each Ls timestep) |
---|
| 526 | do l=1,timelen |
---|
| 527 | if((lsgcm(l).ge.(timels(n)-deltals/2.)).and. & |
---|
| 528 | (lsgcm(l).lt.(timels(n)+deltals/2.))) then |
---|
| 529 | if(var3dxy(l) .ne. missing) then |
---|
| 530 | Sls= Sls +1 |
---|
| 531 | resultat = resultat + var3dxy(l) |
---|
| 532 | end if |
---|
| 533 | end if |
---|
| 534 | if (Sls.ne.0) then |
---|
| 535 | var3dls(x,y,n,1)=resultat/float(Sls) |
---|
| 536 | else |
---|
| 537 | var3dls(x,y,n,1)=missing |
---|
| 538 | endif |
---|
| 539 | enddo |
---|
[2450] | 540 | else ! average = 'n' |
---|
| 541 | call interpolf(timels(n),resultat,missing,lsgcm,var3dxy,timelen) |
---|
[1409] | 542 | var3dls(x,y,n,1)=resultat |
---|
| 543 | endif |
---|
[137] | 544 | enddo |
---|
| 545 | enddo |
---|
| 546 | enddo |
---|
| 547 | ! 3D variable (lon, lat, alt, time) |
---|
| 548 | ! interpolation of var at timels |
---|
| 549 | else if (ndim==4) then |
---|
| 550 | do x=1,lonlen |
---|
| 551 | do y=1,latlen |
---|
| 552 | do k=1,altlen |
---|
| 553 | do l=1,timelen |
---|
| 554 | var3dxy(l)=var3d(x,y,k,l) |
---|
| 555 | enddo |
---|
[1409] | 556 | do n=1,Nls |
---|
| 557 | if(average.eq.'y') then |
---|
| 558 | resultat=0. |
---|
| 559 | Sls=0 ! (gcm data counter within each Ls timestep) |
---|
| 560 | do l=1,timelen |
---|
| 561 | if((lsgcm(l).ge.(timels(n)-deltals/2.)).and. & |
---|
| 562 | (lsgcm(l).lt.(timels(n)+deltals/2.))) then |
---|
| 563 | if(var3dxy(l) .ne. missing) then |
---|
| 564 | Sls= Sls +1 |
---|
| 565 | resultat = resultat + var3dxy(l) |
---|
| 566 | end if |
---|
| 567 | end if |
---|
| 568 | if (Sls.ne.0) then |
---|
| 569 | var3dls(x,y,k,n)=resultat/float(Sls) |
---|
| 570 | else |
---|
| 571 | var3dls(x,y,k,n)=missing |
---|
| 572 | endif |
---|
| 573 | enddo |
---|
[2450] | 574 | else ! average = 'n' |
---|
| 575 | call interpolf(timels(n),resultat,missing,lsgcm,var3dxy,timelen) |
---|
[1409] | 576 | var3dls(x,y,k,n)=resultat |
---|
[2450] | 577 | endif |
---|
[137] | 578 | enddo |
---|
| 579 | enddo |
---|
| 580 | enddo |
---|
| 581 | enddo |
---|
| 582 | endif |
---|
| 583 | |
---|
| 584 | !============================================================================== |
---|
[1409] | 585 | ! 3.7 Write variable to output file |
---|
[137] | 586 | !============================================================================== |
---|
| 587 | |
---|
[2450] | 588 | ierr= NF_PUT_VARA_REAL(nout,varidout,corner,edges,var3dls) |
---|
[137] | 589 | |
---|
[2450] | 590 | if (ierr.ne.NF_NOERR) then |
---|
| 591 | write(*,*) 'PUT_VAR ERROR: ',NF_STRERROR(ierr) |
---|
[2567] | 592 | stop |
---|
[2450] | 593 | endif |
---|
[137] | 594 | |
---|
[1409] | 595 | ! In case there is a "missing value" attribute and "valid range" |
---|
[2450] | 596 | if (miss.eq.NF_NOERR) then |
---|
| 597 | call missing_value(nout,varidout,missing) |
---|
| 598 | endif |
---|
[1409] | 599 | |
---|
[2450] | 600 | deallocate(var3d) |
---|
| 601 | deallocate(var3dls) |
---|
| 602 | deallocate(var3dxy) |
---|
[137] | 603 | |
---|
| 604 | enddo ! of do j=1,nbvar loop |
---|
| 605 | |
---|
| 606 | deallocate(time) |
---|
| 607 | deallocate(lsgcm) |
---|
| 608 | |
---|
| 609 | ! close input and output files |
---|
| 610 | ierr=nf_close(nid) |
---|
| 611 | ierr=NF_CLOSE(nout) |
---|
| 612 | |
---|
| 613 | |
---|
| 614 | !============================================================================== |
---|
| 615 | ! 4. Build a companion file 'lslin.ctl', so that output file can be |
---|
| 616 | ! processed by Grads |
---|
| 617 | !============================================================================== |
---|
| 618 | |
---|
| 619 | ! ---------------------------------------------------- |
---|
| 620 | ! Writing ctl file to directly read Ls coordinate in grads |
---|
| 621 | ! (because of bug in grads that refuse to read date like 0089 in .nc files) |
---|
[2450] | 622 | write(*,*)"" |
---|
| 623 | write(*,*) "Writing a controle file to directly read Ls coordinate with Grads..." |
---|
| 624 | |
---|
[137] | 625 | open(33,file=infile(1:len_trim(infile)-3)//"_Ls.ctl") |
---|
| 626 | date= (timels(1)-int(timels(1)))*365. |
---|
| 627 | mon='jan' |
---|
| 628 | if(date.ge.32) mon='feb' |
---|
| 629 | if(date.ge.60) mon='mar' |
---|
| 630 | if(date.ge.91) mon='apr' |
---|
| 631 | if(date.ge.121) mon='may' |
---|
| 632 | if(date.ge.152) mon='jun' |
---|
| 633 | if(date.ge.182) mon='jul' |
---|
| 634 | if(date.ge.213) mon='aug' |
---|
| 635 | if(date.ge.244) mon='sep' |
---|
| 636 | if(date.ge.274) mon='oct' |
---|
| 637 | if(date.ge.305) mon='nov' |
---|
| 638 | if(date.ge.335) mon='dec' |
---|
[1409] | 639 | write(33,98) "^"//outfile |
---|
[137] | 640 | 98 format("DSET ",a) |
---|
| 641 | write(33,99) Nls, 15,mon, int(timels(1)),nint(deltals*12),'mo' |
---|
| 642 | 99 format("TDEF Time ",i5," LINEAR ", i2,a3,i4.4,1x,i2,a2) |
---|
| 643 | |
---|
[2450] | 644 | deallocate(timels) |
---|
| 645 | |
---|
| 646 | write(*,*)"" |
---|
| 647 | write(*,*) "Program completed !" |
---|
| 648 | |
---|
[137] | 649 | contains |
---|
| 650 | |
---|
[2432] | 651 | !****************************************************************************** |
---|
| 652 | |
---|
| 653 | subroutine initiate(filename,lat,lon,alt,ctl,latlen,lonlen,altlen,ctllen,& |
---|
| 654 | altlong_name,altunits,altpositive,& |
---|
| 655 | nout,latdimout,londimout,altdimout,timedimout,timevarout) |
---|
[137] | 656 | !============================================================================== |
---|
| 657 | ! Purpose: |
---|
| 658 | ! Create and initialize a data file (NetCDF format) |
---|
| 659 | !============================================================================== |
---|
| 660 | ! Remarks: |
---|
| 661 | ! The NetCDF file (created in this subroutine) remains open |
---|
| 662 | !============================================================================== |
---|
| 663 | |
---|
| 664 | implicit none |
---|
| 665 | |
---|
| 666 | include "netcdf.inc" ! NetCDF definitions |
---|
| 667 | |
---|
| 668 | !============================================================================== |
---|
| 669 | ! Arguments: |
---|
| 670 | !============================================================================== |
---|
| 671 | character (len=*), intent(in):: filename |
---|
| 672 | ! filename(): the file's name |
---|
[2432] | 673 | integer,intent(in) ::latlen,lonlen,altlen,ctllen |
---|
| 674 | real, intent(in):: lat(latlen) |
---|
[137] | 675 | ! lat(): latitude |
---|
[2432] | 676 | real, intent(in):: lon(lonlen) |
---|
[137] | 677 | ! lon(): longitude |
---|
[2432] | 678 | real, intent(in):: alt(altlen) |
---|
[137] | 679 | ! alt(): altitude |
---|
[2432] | 680 | real, intent(in):: ctl(ctllen) |
---|
| 681 | ! ctl(): controle |
---|
| 682 | character (len=*), intent(in) :: altlong_name |
---|
| 683 | ! altlong_name(): [netcdf] altitude "long_name" attribute |
---|
| 684 | character (len=*), intent(in) :: altunits |
---|
| 685 | ! altunits(): [netcdf] altitude "units" attribute |
---|
| 686 | character (len=*), intent(in) :: altpositive |
---|
| 687 | ! altpositive(): [netcdf] altitude "positive" attribute |
---|
[137] | 688 | integer, intent(out):: nout |
---|
| 689 | ! nout: [netcdf] file ID |
---|
| 690 | integer, intent(out):: latdimout |
---|
| 691 | ! latdimout: [netcdf] lat() (i.e.: latitude) ID |
---|
| 692 | integer, intent(out):: londimout |
---|
| 693 | ! londimout: [netcdf] lon() ID |
---|
| 694 | integer, intent(out):: altdimout |
---|
| 695 | ! altdimout: [netcdf] alt() ID |
---|
| 696 | integer, intent(out):: timedimout |
---|
| 697 | ! timedimout: [netcdf] "Time" ID |
---|
| 698 | integer, intent(out):: timevarout |
---|
| 699 | ! timevarout: [netcdf] "Time" (considered as a variable) ID |
---|
| 700 | |
---|
| 701 | !============================================================================== |
---|
| 702 | ! Local variables: |
---|
| 703 | !============================================================================== |
---|
| 704 | !integer :: latdim,londim,altdim,timedim |
---|
| 705 | integer :: nvarid,ierr |
---|
[2432] | 706 | integer :: ctldimout |
---|
[137] | 707 | ! nvarid: [netcdf] ID of a variable |
---|
| 708 | ! ierr: [netcdf] return error code (from called subroutines) |
---|
| 709 | |
---|
| 710 | !============================================================================== |
---|
| 711 | ! 1. Create (and open) output file |
---|
| 712 | !============================================================================== |
---|
| 713 | write(*,*) "creating "//trim(adjustl(filename))//'...' |
---|
[410] | 714 | ierr = NF_CREATE(filename,IOR(NF_CLOBBER,NF_64BIT_OFFSET),nout) |
---|
[137] | 715 | ! NB: setting NF_CLOBBER mode means that it's OK to overwrite an existing file |
---|
| 716 | if (ierr.NE.NF_NOERR) then |
---|
[2432] | 717 | WRITE(*,*)'ERROR: Impossible to create the file ',trim(filename) |
---|
| 718 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 719 | stop |
---|
[137] | 720 | endif |
---|
| 721 | |
---|
| 722 | !============================================================================== |
---|
| 723 | ! 2. Define/write "dimensions" and get their IDs |
---|
| 724 | !============================================================================== |
---|
| 725 | |
---|
[2432] | 726 | ierr = NF_DEF_DIM(nout, "latitude", latlen, latdimout) |
---|
| 727 | if (ierr.NE.NF_NOERR) then |
---|
| 728 | WRITE(*,*)'initiate: error failed to define dimension <latitude>' |
---|
| 729 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 730 | stop |
---|
[2432] | 731 | endif |
---|
| 732 | ierr = NF_DEF_DIM(nout, "longitude", lonlen, londimout) |
---|
| 733 | if (ierr.NE.NF_NOERR) then |
---|
| 734 | WRITE(*,*)'initiate: error failed to define dimension <longitude>' |
---|
| 735 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 736 | stop |
---|
[2432] | 737 | endif |
---|
| 738 | ierr = NF_DEF_DIM(nout, "altitude", altlen, altdimout) |
---|
| 739 | if (ierr.NE.NF_NOERR) then |
---|
| 740 | WRITE(*,*)'initiate: error failed to define dimension <altitude>' |
---|
| 741 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 742 | stop |
---|
[2432] | 743 | endif |
---|
| 744 | if (size(ctl).ne.0) then |
---|
| 745 | ierr = NF_DEF_DIM(nout, "index", ctllen, ctldimout) |
---|
| 746 | if (ierr.NE.NF_NOERR) then |
---|
| 747 | WRITE(*,*)'initiate: error failed to define dimension <index>' |
---|
| 748 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 749 | stop |
---|
[2432] | 750 | endif |
---|
| 751 | endif |
---|
[137] | 752 | ierr = NF_DEF_DIM(nout, "Time", NF_UNLIMITED, timedimout) |
---|
[2432] | 753 | if (ierr.NE.NF_NOERR) then |
---|
| 754 | WRITE(*,*)'initiate: error failed to define dimension <Time>' |
---|
| 755 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 756 | stop |
---|
[2432] | 757 | endif |
---|
[137] | 758 | |
---|
| 759 | ! End netcdf define mode |
---|
| 760 | ierr = NF_ENDDEF(nout) |
---|
[2432] | 761 | if (ierr.NE.NF_NOERR) then |
---|
| 762 | WRITE(*,*)'initiate: error failed to switch out of define mode' |
---|
| 763 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 764 | stop |
---|
[2432] | 765 | endif |
---|
[137] | 766 | |
---|
| 767 | !============================================================================== |
---|
| 768 | ! 3. Write "Time" and its attributes |
---|
| 769 | !============================================================================== |
---|
| 770 | |
---|
[2432] | 771 | call def_var(nout,"Time","Ls (Solar Longitude)","degrees",1,& |
---|
[137] | 772 | (/timedimout/),timevarout,ierr) |
---|
[2432] | 773 | ! Switch to netcdf define mode |
---|
| 774 | ierr = NF_REDEF (nout) |
---|
| 775 | ierr = NF_ENDDEF(nout) |
---|
[137] | 776 | |
---|
| 777 | !============================================================================== |
---|
| 778 | ! 4. Write "latitude" (data and attributes) |
---|
| 779 | !============================================================================== |
---|
| 780 | |
---|
| 781 | call def_var(nout,"latitude","latitude","degrees_north",1,& |
---|
| 782 | (/latdimout/),nvarid,ierr) |
---|
| 783 | |
---|
| 784 | ierr = NF_PUT_VAR_REAL (nout,nvarid,lat) |
---|
[2432] | 785 | if (ierr.NE.NF_NOERR) then |
---|
| 786 | WRITE(*,*)'initiate: error failed writing variable <latitude>' |
---|
| 787 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 788 | stop |
---|
[2432] | 789 | endif |
---|
[137] | 790 | |
---|
| 791 | !============================================================================== |
---|
| 792 | ! 4. Write "longitude" (data and attributes) |
---|
| 793 | !============================================================================== |
---|
| 794 | |
---|
| 795 | call def_var(nout,"longitude","East longitude","degrees_east",1,& |
---|
| 796 | (/londimout/),nvarid,ierr) |
---|
| 797 | |
---|
| 798 | ierr = NF_PUT_VAR_REAL (nout,nvarid,lon) |
---|
[2432] | 799 | if (ierr.NE.NF_NOERR) then |
---|
| 800 | WRITE(*,*)'initiate: error failed writing variable <longitude>' |
---|
| 801 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 802 | stop |
---|
[2432] | 803 | endif |
---|
[137] | 804 | |
---|
| 805 | !============================================================================== |
---|
[2432] | 806 | ! 5. Write "altitude" (data and attributes) |
---|
[137] | 807 | !============================================================================== |
---|
| 808 | |
---|
| 809 | ! Switch to netcdf define mode |
---|
| 810 | ierr = NF_REDEF (nout) |
---|
| 811 | |
---|
[2577] | 812 | ierr = NF_DEF_VAR (nout,"altitude",NF_FLOAT,1,[altdimout],nvarid) |
---|
[137] | 813 | |
---|
[2432] | 814 | ierr = NF_PUT_ATT_TEXT (nout,nvarid,'long_name',len_trim(adjustl(altlong_name)),adjustl(altlong_name)) |
---|
| 815 | ierr = NF_PUT_ATT_TEXT (nout,nvarid,'units',len_trim(adjustl(altunits)),adjustl(altunits)) |
---|
| 816 | ierr = NF_PUT_ATT_TEXT (nout,nvarid,'positive',len_trim(adjustl(altpositive)),adjustl(altpositive)) |
---|
[137] | 817 | |
---|
| 818 | ! End netcdf define mode |
---|
| 819 | ierr = NF_ENDDEF(nout) |
---|
| 820 | |
---|
| 821 | ierr = NF_PUT_VAR_REAL (nout,nvarid,alt) |
---|
[2432] | 822 | if (ierr.NE.NF_NOERR) then |
---|
| 823 | WRITE(*,*)'initiate: error failed writing variable <altitude>' |
---|
| 824 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 825 | stop |
---|
[2432] | 826 | endif |
---|
[137] | 827 | |
---|
[2432] | 828 | !============================================================================== |
---|
| 829 | ! 6. Write "controle" (data and attributes) |
---|
| 830 | !============================================================================== |
---|
| 831 | |
---|
| 832 | if (size(ctl).ne.0) then |
---|
| 833 | ! Switch to netcdf define mode |
---|
| 834 | ierr = NF_REDEF (nout) |
---|
| 835 | |
---|
[2577] | 836 | ierr = NF_DEF_VAR (nout,"controle",NF_FLOAT,1,[ctldimout],nvarid) |
---|
[2432] | 837 | |
---|
[2450] | 838 | ierr = NF_PUT_ATT_TEXT (nout,nvarid,"long_name",18,"Control parameters") |
---|
[2432] | 839 | |
---|
| 840 | ! End netcdf define mode |
---|
| 841 | ierr = NF_ENDDEF(nout) |
---|
| 842 | |
---|
| 843 | ierr = NF_PUT_VAR_REAL (nout,nvarid,ctl) |
---|
| 844 | if (ierr.NE.NF_NOERR) then |
---|
| 845 | WRITE(*,*)'initiate: error failed writing variable <controle>' |
---|
| 846 | write(*,*) NF_STRERROR(ierr) |
---|
[2567] | 847 | stop |
---|
[2432] | 848 | endif |
---|
| 849 | endif |
---|
| 850 | |
---|
[137] | 851 | end Subroutine initiate |
---|
[2432] | 852 | |
---|
| 853 | !****************************************************************************** |
---|
| 854 | subroutine init2(infid,lonlen,latlen,altlen,altdimid, & |
---|
| 855 | outfid,londimout,latdimout,altdimout) |
---|
| 856 | !============================================================================== |
---|
| 857 | ! Purpose: |
---|
| 858 | ! Copy aps(), bps() and phisinit() from input file to output file |
---|
| 859 | !============================================================================== |
---|
| 860 | ! Remarks: |
---|
| 861 | ! The NetCDF files must be open |
---|
| 862 | !============================================================================== |
---|
| 863 | |
---|
| 864 | implicit none |
---|
| 865 | |
---|
| 866 | include "netcdf.inc" ! NetCDF definitions |
---|
| 867 | |
---|
| 868 | !============================================================================== |
---|
| 869 | ! Arguments: |
---|
| 870 | !============================================================================== |
---|
| 871 | integer, intent(in) :: infid ! NetCDF output file ID |
---|
| 872 | integer, intent(in) :: lonlen ! # of grid points along longitude |
---|
| 873 | integer, intent(in) :: latlen ! # of grid points along latitude |
---|
| 874 | integer, intent(in) :: altlen ! # of grid points along altitude |
---|
| 875 | integer, intent(in) :: altdimid ! ID of altitude dimension |
---|
| 876 | integer, intent(in) :: outfid ! NetCDF output file ID |
---|
| 877 | integer, intent(in) :: londimout ! longitude dimension ID |
---|
| 878 | integer, intent(in) :: latdimout ! latitude dimension ID |
---|
| 879 | integer, intent(in) :: altdimout ! altitude dimension ID |
---|
| 880 | !============================================================================== |
---|
| 881 | ! Local variables: |
---|
| 882 | !============================================================================== |
---|
| 883 | real,dimension(:),allocatable :: aps,bps ! hybrid vertical coordinates |
---|
| 884 | real,dimension(:,:),allocatable :: phisinit ! Ground geopotential |
---|
| 885 | integer :: apsid,bpsid,phisinitid |
---|
| 886 | integer :: ierr |
---|
| 887 | integer :: tmpdimid ! temporary dimension ID |
---|
| 888 | integer :: tmpvarid ! temporary variable ID |
---|
| 889 | integer :: tmplen ! temporary variable length |
---|
| 890 | logical :: phis, aps_ok, bps_ok ! are "phisinit" "aps" "bps" available ? |
---|
| 891 | |
---|
| 892 | |
---|
| 893 | !============================================================================== |
---|
| 894 | ! 1. Read data from input file |
---|
| 895 | !============================================================================== |
---|
| 896 | |
---|
| 897 | ! hybrid coordinate aps |
---|
| 898 | allocate(aps(altlen),stat=ierr) |
---|
| 899 | if (ierr.ne.0) then |
---|
| 900 | write(*,*) "init2: failed to allocate aps(altlen)" |
---|
| 901 | stop |
---|
| 902 | endif |
---|
| 903 | |
---|
| 904 | ierr=NF_INQ_VARID(infid,"aps",tmpvarid) |
---|
| 905 | if (ierr.ne.NF_NOERR) then |
---|
| 906 | write(*,*) "oops Failed to get aps ID. OK" |
---|
| 907 | aps_ok=.false. |
---|
| 908 | else |
---|
| 909 | ! Check that aps() is the right size (it most likely won't be if |
---|
| 910 | ! zrecast has be used to generate the input file) |
---|
| 911 | ierr=NF_INQ_VARDIMID(infid,tmpvarid,tmpdimid) |
---|
| 912 | ierr=NF_INQ_DIMLEN(infid,tmpdimid,tmplen) |
---|
| 913 | if (tmplen.ne.altlen) then |
---|
| 914 | write(*,*) "tmplen,altlen", tmpdimid, altdimid |
---|
| 915 | write(*,*) "init2: wrong dimension size for aps(), skipping it ..." |
---|
| 916 | aps_ok=.false. |
---|
| 917 | else |
---|
| 918 | ierr=NF_GET_VAR_REAL(infid,tmpvarid,aps) |
---|
| 919 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 920 | write(*,*) "init2 error: Failed reading aps" |
---|
| 921 | stop |
---|
[2432] | 922 | aps_ok=.false. |
---|
| 923 | endif |
---|
| 924 | aps_ok=.true. |
---|
| 925 | endif |
---|
| 926 | endif |
---|
| 927 | |
---|
| 928 | ! hybrid coordinate bps |
---|
| 929 | allocate(bps(altlen),stat=ierr) |
---|
| 930 | if (ierr.ne.0) then |
---|
| 931 | write(*,*) "init2: failed to allocate bps(altlen)" |
---|
| 932 | stop |
---|
| 933 | endif |
---|
| 934 | |
---|
| 935 | ierr=NF_INQ_VARID(infid,"bps",tmpvarid) |
---|
| 936 | if (ierr.ne.NF_NOERR) then |
---|
| 937 | write(*,*) "oops: Failed to get bps ID. OK" |
---|
| 938 | bps_ok=.false. |
---|
| 939 | else |
---|
| 940 | ! Check that bps() is the right size |
---|
| 941 | ierr=NF_INQ_VARDIMID(infid,tmpvarid,tmpdimid) |
---|
| 942 | ierr=NF_INQ_DIMLEN(infid,tmpdimid,tmplen) |
---|
| 943 | if (tmplen.ne.altlen) then |
---|
| 944 | write(*,*) "init2: wrong dimension size for bps(), skipping it ..." |
---|
| 945 | bps_ok=.false. |
---|
| 946 | else |
---|
| 947 | ierr=NF_GET_VAR_REAL(infid,tmpvarid,bps) |
---|
| 948 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 949 | write(*,*) "init2 Error: Failed reading bps" |
---|
| 950 | stop |
---|
[2432] | 951 | bps_ok=.false. |
---|
| 952 | endif |
---|
| 953 | bps_ok=.true. |
---|
| 954 | endif |
---|
| 955 | endif |
---|
| 956 | |
---|
| 957 | ! ground geopotential phisinit |
---|
| 958 | allocate(phisinit(lonlen,latlen),stat=ierr) |
---|
| 959 | if (ierr.ne.0) then |
---|
| 960 | write(*,*) "init2: failed to allocate phisinit(lonlen,latlen)" |
---|
| 961 | stop |
---|
| 962 | endif |
---|
| 963 | ierr=NF_INQ_VARID(infid,"phisinit",tmpvarid) |
---|
| 964 | if (ierr.ne.NF_NOERR) then |
---|
| 965 | write(*,*) "Failed to get phisinit ID. OK" |
---|
| 966 | phisinit = 0. |
---|
| 967 | phis = .false. |
---|
| 968 | else |
---|
| 969 | ierr=NF_GET_VAR_REAL(infid,tmpvarid,phisinit) |
---|
| 970 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 971 | write(*,*) "init2 Error: Failed reading phisinit" |
---|
| 972 | stop |
---|
[2432] | 973 | endif |
---|
| 974 | phis = .true. |
---|
| 975 | endif |
---|
| 976 | |
---|
| 977 | |
---|
| 978 | !============================================================================== |
---|
| 979 | ! 2. Write |
---|
| 980 | !============================================================================== |
---|
| 981 | |
---|
| 982 | !============================================================================== |
---|
| 983 | ! 2.2. Hybrid coordinates aps() and bps() |
---|
| 984 | !============================================================================== |
---|
| 985 | |
---|
| 986 | IF (aps_ok) then |
---|
| 987 | ! define aps |
---|
| 988 | call def_var(outfid,"aps","hybrid pressure at midlayers"," ",1,& |
---|
| 989 | (/altdimout/),apsid,ierr) |
---|
| 990 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 991 | write(*,*) "Error: Failed to def_var aps" |
---|
| 992 | stop |
---|
[2432] | 993 | endif |
---|
| 994 | |
---|
| 995 | ! write aps |
---|
| 996 | ierr=NF_PUT_VAR_REAL(outfid,apsid,aps) |
---|
| 997 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 998 | write(*,*) "Error: Failed to write aps" |
---|
| 999 | stop |
---|
[2432] | 1000 | endif |
---|
| 1001 | ENDIF ! of IF (aps_ok) |
---|
| 1002 | |
---|
| 1003 | IF (bps_ok) then |
---|
| 1004 | ! define bps |
---|
| 1005 | call def_var(outfid,"bps","hybrid sigma at midlayers"," ",1,& |
---|
| 1006 | (/altdimout/),bpsid,ierr) |
---|
| 1007 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 1008 | write(*,*) "Error: Failed to def_var bps" |
---|
| 1009 | stop |
---|
[2432] | 1010 | endif |
---|
| 1011 | |
---|
| 1012 | ! write bps |
---|
| 1013 | ierr=NF_PUT_VAR_REAL(outfid,bpsid,bps) |
---|
| 1014 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 1015 | write(*,*) "Error: Failed to write bps" |
---|
| 1016 | stop |
---|
[2432] | 1017 | endif |
---|
| 1018 | ENDIF ! of IF (bps_ok) |
---|
| 1019 | |
---|
| 1020 | !============================================================================== |
---|
| 1021 | ! 2.2. phisinit() |
---|
| 1022 | !============================================================================== |
---|
| 1023 | |
---|
| 1024 | IF (phis) THEN |
---|
| 1025 | |
---|
| 1026 | !define phisinit |
---|
| 1027 | call def_var(outfid,"phisinit","Ground level geopotential"," ",2,& |
---|
| 1028 | (/londimout,latdimout/),phisinitid,ierr) |
---|
| 1029 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 1030 | write(*,*) "Error: Failed to def_var phisinit" |
---|
| 1031 | stop |
---|
[2432] | 1032 | endif |
---|
| 1033 | |
---|
| 1034 | ! write phisinit |
---|
| 1035 | ierr=NF_PUT_VAR_REAL(outfid,phisinitid,phisinit) |
---|
| 1036 | if (ierr.ne.NF_NOERR) then |
---|
[2567] | 1037 | write(*,*) "Error: Failed to write phisinit" |
---|
| 1038 | stop |
---|
[2432] | 1039 | endif |
---|
| 1040 | |
---|
| 1041 | ENDIF ! of IF (phis) |
---|
| 1042 | |
---|
| 1043 | |
---|
| 1044 | ! Cleanup |
---|
| 1045 | deallocate(aps) |
---|
| 1046 | deallocate(bps) |
---|
| 1047 | deallocate(phisinit) |
---|
| 1048 | |
---|
| 1049 | end subroutine init2 |
---|
| 1050 | |
---|
| 1051 | !****************************************************************************** |
---|
[2450] | 1052 | subroutine def_var(nid,name,long_name,units,nbdim,dim,nvarid,ierr) |
---|
[137] | 1053 | !============================================================================== |
---|
| 1054 | ! Purpose: Write a variable (i.e: add a variable to a dataset) |
---|
[2450] | 1055 | ! called "name"; along with its attributes "long_name", "units"... |
---|
[137] | 1056 | ! to a file (following the NetCDF format) |
---|
| 1057 | !============================================================================== |
---|
| 1058 | ! Remarks: |
---|
| 1059 | ! The NetCDF file must be open |
---|
| 1060 | !============================================================================== |
---|
| 1061 | |
---|
| 1062 | implicit none |
---|
| 1063 | |
---|
| 1064 | include "netcdf.inc" ! NetCDF definitions |
---|
| 1065 | |
---|
| 1066 | !============================================================================== |
---|
| 1067 | ! Arguments: |
---|
| 1068 | !============================================================================== |
---|
| 1069 | integer, intent(in) :: nid |
---|
| 1070 | ! nid: [netcdf] file ID # |
---|
| 1071 | character (len=*), intent(in) :: name |
---|
| 1072 | ! name(): [netcdf] variable's name |
---|
[2450] | 1073 | character (len=*), intent(in) :: long_name |
---|
| 1074 | ! long_name(): [netcdf] variable's "long_name" attribute |
---|
[137] | 1075 | character (len=*), intent(in) :: units |
---|
| 1076 | ! unit(): [netcdf] variable's "units" attribute |
---|
| 1077 | integer, intent(in) :: nbdim |
---|
| 1078 | ! nbdim: number of dimensions of the variable |
---|
| 1079 | integer, dimension(nbdim), intent(in) :: dim |
---|
| 1080 | ! dim(nbdim): [netcdf] dimension(s) ID(s) |
---|
| 1081 | integer, intent(out) :: nvarid |
---|
| 1082 | ! nvarid: [netcdf] ID # of the variable |
---|
| 1083 | integer, intent(out) :: ierr |
---|
| 1084 | ! ierr: [netcdf] subroutines returned error code |
---|
| 1085 | |
---|
| 1086 | ! Switch to netcdf define mode |
---|
| 1087 | ierr=NF_REDEF(nid) |
---|
| 1088 | |
---|
| 1089 | ! Insert the definition of the variable |
---|
| 1090 | ierr=NF_DEF_VAR(nid,adjustl(name),NF_FLOAT,nbdim,dim,nvarid) |
---|
| 1091 | |
---|
| 1092 | ! Write the attributes |
---|
[2450] | 1093 | ierr=NF_PUT_ATT_TEXT(nid,nvarid,"long_name",len_trim(adjustl(long_name)),adjustl(long_name)) |
---|
[137] | 1094 | ierr=NF_PUT_ATT_TEXT(nid,nvarid,"units",len_trim(adjustl(units)),adjustl(units)) |
---|
| 1095 | |
---|
| 1096 | ! End netcdf define mode |
---|
| 1097 | ierr=NF_ENDDEF(nid) |
---|
| 1098 | |
---|
| 1099 | end subroutine def_var |
---|
[2432] | 1100 | |
---|
| 1101 | !****************************************************************************** |
---|
| 1102 | subroutine missing_value(nout,nvarid,missing) |
---|
| 1103 | !============================================================================== |
---|
| 1104 | ! Purpose: |
---|
| 1105 | ! Write "valid_range" and "missing_value" attributes (of a given |
---|
| 1106 | ! variable) to a netcdf file |
---|
| 1107 | !============================================================================== |
---|
| 1108 | ! Remarks: |
---|
| 1109 | ! NetCDF file must be open |
---|
| 1110 | ! Variable (nvarid) ID must be set |
---|
| 1111 | !============================================================================== |
---|
| 1112 | |
---|
| 1113 | implicit none |
---|
| 1114 | |
---|
| 1115 | include "netcdf.inc" ! NetCDF definitions |
---|
| 1116 | |
---|
| 1117 | !============================================================================== |
---|
| 1118 | ! Arguments: |
---|
| 1119 | !============================================================================== |
---|
| 1120 | integer, intent(in) :: nout |
---|
| 1121 | ! nout: [netcdf] file ID # |
---|
| 1122 | integer, intent(in) :: nvarid |
---|
| 1123 | ! varid: [netcdf] variable ID # |
---|
| 1124 | !real, dimension(2), intent(in) :: valid_range |
---|
| 1125 | ! valid_range(2): [netcdf] "valid_range" attribute (min and max) |
---|
| 1126 | real, intent(in) :: missing |
---|
| 1127 | ! missing: [netcdf] "missing_value" attribute |
---|
| 1128 | |
---|
| 1129 | !============================================================================== |
---|
| 1130 | ! Local variables: |
---|
| 1131 | !============================================================================== |
---|
| 1132 | integer :: ierr |
---|
| 1133 | ! ierr: [netcdf] subroutine returned error code |
---|
| 1134 | ! INTEGER nout,nvarid,ierr |
---|
| 1135 | ! REAL missing |
---|
| 1136 | ! REAL valid_range(2) |
---|
| 1137 | |
---|
| 1138 | ! Switch to netcdf dataset define mode |
---|
| 1139 | ierr = NF_REDEF (nout) |
---|
| 1140 | if (ierr.ne.NF_NOERR) then |
---|
| 1141 | print*,'missing_value: ' |
---|
| 1142 | print*, NF_STRERROR(ierr) |
---|
| 1143 | endif |
---|
| 1144 | |
---|
| 1145 | |
---|
| 1146 | !********* valid range not used in Lslin **************** |
---|
| 1147 | ! Write valid_range() attribute |
---|
| 1148 | !ierr=NF_PUT_ATT_REAL(nout,nvarid,'valid_range',NF_FLOAT,2,valid_range) |
---|
| 1149 | ! |
---|
| 1150 | !if (ierr.ne.NF_NOERR) then |
---|
| 1151 | ! print*,'missing_value: valid_range attribution failed' |
---|
| 1152 | ! print*, NF_STRERROR(ierr) |
---|
[2567] | 1153 | ! stop |
---|
[2432] | 1154 | !endif |
---|
| 1155 | !********************************************************* |
---|
| 1156 | |
---|
| 1157 | ! Write "missing_value" attribute |
---|
| 1158 | ierr= NF_PUT_ATT_REAL(nout,nvarid,'missing_value',NF_FLOAT,1,missing) |
---|
| 1159 | if (ierr.NE.NF_NOERR) then |
---|
| 1160 | print*, 'missing_value: missing value attribution failed' |
---|
| 1161 | print*, NF_STRERROR(ierr) |
---|
[2567] | 1162 | stop |
---|
[2432] | 1163 | endif |
---|
| 1164 | |
---|
| 1165 | ! End netcdf dataset define mode |
---|
| 1166 | ierr = NF_ENDDEF(nout) |
---|
| 1167 | |
---|
| 1168 | end subroutine missing_value |
---|
| 1169 | |
---|
| 1170 | !****************************************************************************** |
---|
[137] | 1171 | subroutine sol2ls(sol,Ls) |
---|
| 1172 | !============================================================================== |
---|
| 1173 | ! Purpose: |
---|
| 1174 | ! Convert a date/time, given in sol (martian day), |
---|
| 1175 | ! into solar longitude date/time, in Ls (in degrees), |
---|
| 1176 | ! where sol=0 is (by definition) the northern hemisphere |
---|
| 1177 | ! spring equinox (where Ls=0). |
---|
| 1178 | !============================================================================== |
---|
| 1179 | ! Notes: |
---|
| 1180 | ! Even though "Ls" is cyclic, if "sol" is greater than N (martian) year, |
---|
| 1181 | ! "Ls" will be increased by N*360 |
---|
| 1182 | ! Won't work as expected if sol is negative (then again, |
---|
| 1183 | ! why would that ever happen?) |
---|
| 1184 | !============================================================================== |
---|
| 1185 | |
---|
| 1186 | implicit none |
---|
| 1187 | |
---|
| 1188 | !============================================================================== |
---|
| 1189 | ! Arguments: |
---|
| 1190 | !============================================================================== |
---|
| 1191 | real,intent(in) :: sol |
---|
| 1192 | real,intent(out) :: Ls |
---|
| 1193 | |
---|
| 1194 | !============================================================================== |
---|
| 1195 | ! Local variables: |
---|
| 1196 | !============================================================================== |
---|
| 1197 | real year_day,peri_day,timeperi,e_elips,twopi,degrad |
---|
| 1198 | data year_day /669./ ! # of sols in a martian year |
---|
| 1199 | data peri_day /485.0/ |
---|
[1409] | 1200 | data timeperi /1.9082314/! True anomaly at vernal equinox = 2*PI-Lsperi |
---|
[137] | 1201 | data e_elips /0.093358/ |
---|
| 1202 | data twopi /6.2831853/ ! 2.*pi |
---|
| 1203 | data degrad /57.2957795/ ! pi/180 |
---|
| 1204 | |
---|
| 1205 | real zanom,xref,zx0,zdx,zteta,zz |
---|
| 1206 | |
---|
| 1207 | integer count_years |
---|
| 1208 | integer iter |
---|
| 1209 | |
---|
| 1210 | !============================================================================== |
---|
| 1211 | ! 1. Compute Ls |
---|
| 1212 | !============================================================================== |
---|
| 1213 | |
---|
| 1214 | zz=(sol-peri_day)/year_day |
---|
| 1215 | zanom=twopi*(zz-nint(zz)) |
---|
| 1216 | xref=abs(zanom) |
---|
| 1217 | |
---|
| 1218 | ! The equation zx0 - e * sin (zx0) = xref, solved by Newton |
---|
| 1219 | zx0=xref+e_elips*sin(xref) |
---|
| 1220 | do iter=1,20 ! typically, 2 or 3 iterations are enough |
---|
| 1221 | zdx=-(zx0-e_elips*sin(zx0)-xref)/(1.-e_elips*cos(zx0)) |
---|
| 1222 | zx0=zx0+zdx |
---|
| 1223 | if(abs(zdx).le.(1.e-7)) then |
---|
| 1224 | ! write(*,*)'iter:',iter,' |zdx|:',abs(zdx) |
---|
| 1225 | exit |
---|
| 1226 | endif |
---|
| 1227 | enddo |
---|
| 1228 | |
---|
| 1229 | if(zanom.lt.0.) zx0=-zx0 |
---|
| 1230 | |
---|
| 1231 | zteta=2.*atan(sqrt((1.+e_elips)/(1.-e_elips))*tan(zx0/2.)) |
---|
| 1232 | Ls=zteta-timeperi |
---|
| 1233 | |
---|
| 1234 | if(Ls.lt.0.) then |
---|
| 1235 | Ls=Ls+twopi |
---|
| 1236 | else |
---|
| 1237 | if(Ls.gt.twopi) then |
---|
| 1238 | Ls=Ls-twopi |
---|
| 1239 | endif |
---|
| 1240 | endif |
---|
| 1241 | |
---|
| 1242 | Ls=degrad*Ls |
---|
| 1243 | ! Ls is now in degrees |
---|
| 1244 | |
---|
| 1245 | !============================================================================== |
---|
| 1246 | ! 1. Account for (eventual) years included in input date/time sol |
---|
| 1247 | !============================================================================== |
---|
| 1248 | |
---|
| 1249 | count_years=0 ! initialize |
---|
| 1250 | zz=sol ! use "zz" to store (and work on) the value of sol |
---|
| 1251 | do while (zz.ge.year_day) |
---|
| 1252 | count_years=count_years+1 |
---|
| 1253 | zz=zz-year_day |
---|
| 1254 | enddo |
---|
| 1255 | |
---|
| 1256 | ! Add 360 degrees to Ls for every year |
---|
| 1257 | if (count_years.ne.0) then |
---|
| 1258 | Ls=Ls+360.*count_years |
---|
| 1259 | endif |
---|
| 1260 | |
---|
| 1261 | |
---|
| 1262 | end subroutine sol2ls |
---|
| 1263 | |
---|
[2450] | 1264 | !****************************************************************************** |
---|
| 1265 | subroutine interpolf(x,y,missing,xd,yd,nd) |
---|
| 1266 | !============================================================================== |
---|
| 1267 | ! Purpose: |
---|
| 1268 | ! Yield y=f(x), where xd() end yd() are arrays of known values, |
---|
| 1269 | ! using linear interpolation |
---|
| 1270 | ! If x is not included in the interval spaned by xd(), then y is set |
---|
| 1271 | ! to a default value 'missing' |
---|
| 1272 | ! Note: |
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| 1273 | ! Array xd() should contain ordered (either increasing or decreasing) abscissas |
---|
| 1274 | !============================================================================== |
---|
| 1275 | implicit none |
---|
| 1276 | !============================================================================== |
---|
| 1277 | ! Arguments: |
---|
| 1278 | !============================================================================== |
---|
| 1279 | real,intent(in) :: x ! abscissa at which interpolation is to be done |
---|
| 1280 | real,intent(in) :: missing ! missing value (if no interpolation is performed) |
---|
| 1281 | integer :: nd ! size of arrays |
---|
| 1282 | real,dimension(nd),intent(in) :: xd ! array of known absissas |
---|
| 1283 | real,dimension(nd),intent(in) :: yd ! array of correponding values |
---|
[137] | 1284 | |
---|
[2450] | 1285 | real,intent(out) :: y ! interpolated value |
---|
| 1286 | !============================================================================== |
---|
| 1287 | ! Local variables: |
---|
| 1288 | !============================================================================== |
---|
| 1289 | integer :: i |
---|
| 1290 | |
---|
| 1291 | ! default: set y to 'missing' |
---|
| 1292 | y=missing |
---|
| 1293 | |
---|
| 1294 | do i=1,nd-1 |
---|
| 1295 | if (((x.ge.xd(i)).and.(x.le.xd(i+1))).or.& |
---|
| 1296 | ((x.le.xd(i)).and.(x.ge.xd(i+1)))) then |
---|
| 1297 | if ((yd(i).eq.missing).or.(yd(i+1).eq.missing)) then |
---|
| 1298 | ! cannot perform the interpolation if an encompasing value |
---|
| 1299 | ! is already set to 'missing' |
---|
| 1300 | else |
---|
| 1301 | !linear interpolation based on encompassing values |
---|
| 1302 | y=yd(i)+(x-xd(i))*(yd(i+1)-yd(i))/(xd(i+1)-xd(i)) |
---|
| 1303 | endif |
---|
| 1304 | exit |
---|
| 1305 | endif |
---|
| 1306 | enddo |
---|
| 1307 | |
---|
| 1308 | |
---|
[137] | 1309 | end subroutine interpolf |
---|
[2450] | 1310 | |
---|
| 1311 | !****************************************************************************** |
---|
| 1312 | |
---|
[2432] | 1313 | end program lslin |
---|