1 | PROGRAM analyze_particle_netcdf_data |
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2 | |
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3 | !------------------------------------------------------------------------------! |
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4 | ! This file is part of PALM. |
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5 | ! |
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6 | ! PALM is free software: you can redistribute it and/or modify it under the terms |
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7 | ! of the GNU General Public License as published by the Free Software Foundation, |
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8 | ! either version 3 of the License, or (at your option) any later version. |
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9 | ! |
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10 | ! PALM is distributed in the hope that it will be useful, but WITHOUT ANY |
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11 | ! WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR |
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12 | ! A PARTICULAR PURPOSE. See the GNU General Public License for more details. |
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13 | ! |
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14 | ! You should have received a copy of the GNU General Public License along with |
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15 | ! PALM. If not, see <http://www.gnu.org/licenses/>. |
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16 | ! |
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17 | ! Copyright 1997-2014 Leibniz Universitaet Hannover |
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18 | !--------------------------------------------------------------------------------! |
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19 | ! |
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20 | ! Current revisions: |
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21 | ! ----------------- |
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22 | ! |
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23 | ! Former revisions: |
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24 | ! ----------------- |
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25 | ! $Id: analyze_particle_netcdf_data.f90 1310 2014-03-14 08:01:56Z raasch $ |
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26 | ! |
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27 | ! 1046 2012-11-09 14:38:45Z maronga |
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28 | ! code put under GPL (PALM 3.9) |
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29 | ! |
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30 | ! Initial revision 12/07/05 |
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31 | ! |
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32 | ! |
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33 | ! Description: |
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34 | ! ------------ |
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35 | ! This is an EXAMPLE routine how to read NetCDF particle data output by PALM. |
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36 | ! As an example, the mean heigth and radius of all particles are calculated |
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37 | ! and output for each output time available on the file |
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38 | ! |
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39 | ! |
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40 | ! Any additonal analyzation requested has to be added by the user by following |
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41 | ! the steps given in this example! |
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42 | ! |
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43 | ! |
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44 | ! |
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45 | ! This routine must be compiled with: |
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46 | ! decalpha: |
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47 | ! f95 -fast -r8 -I/usr/local/netcdf-3.5.1/include |
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48 | ! -L/usr/local/netcdf-3.5.1/lib -lnetcdf |
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49 | ! IBM-Regatta: |
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50 | ! xlf95 -qsuffix=cpp=f90 -qrealsize=8 -q64 -qmaxmem=-1 -Q |
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51 | ! -I /aws/dataformats/netcdf-3.5.0/netcdf-64-32-3.5.0/include_F90_64 |
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52 | ! -L/aws/dataformats/netcdf-3.5.0/netcdf-64-32-3.5.0/lib -lnetcdf -O3 |
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53 | ! IBM-Regatta KISTI: |
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54 | ! xlf95 -qsuffix=cpp=f90 -qrealsize=8 -q64 -qmaxmem=-1 -Q |
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55 | ! -I /applic/netcdf64/src/f90 |
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56 | ! -L/applic/lib/NETCDF64 -lnetcdf -O3 |
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57 | ! IMUK: |
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58 | ! ifort analyze_particle_netcdf_data |
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59 | ! -I /muksoft/packages/netcdf/linux/include -axW -r8 -nbs -Vaxlib |
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60 | ! -L /muksoft/packages/netcdf/linux/lib -lnetcdf |
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61 | ! NEC-SX6: |
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62 | ! sxf90 analyze_particle_netcdf_data.f90 |
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63 | ! -I /pool/SX-6/netcdf/netcdf-3.6.0-p1/include -C hopt -Wf '-A idbl4' |
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64 | ! -D__netcdf -L/pool/SX-6/netcdf/netcdf-3.6.0-p1/lib -lnetcdf |
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65 | !------------------------------------------------------------------------------! |
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66 | |
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67 | USE netcdf |
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68 | |
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69 | IMPLICIT NONE |
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70 | |
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71 | ! |
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72 | !-- Local variables |
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73 | CHARACTER (LEN=7) :: id_char |
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74 | CHARACTER (LEN=2000) :: string |
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75 | |
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76 | |
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77 | INTEGER :: f, fn, i, id_dim_time, id_var_rnop, id_var_r, id_var_time, & |
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78 | id_var_x, id_var_y, id_var_z, n, nc_stat, ntl, start |
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79 | |
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80 | INTEGER, DIMENSION(1000) :: id_set |
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81 | INTEGER, DIMENSION(1) :: id_dim_time_old |
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82 | |
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83 | INTEGER, DIMENSION(:), ALLOCATABLE :: total_nop |
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84 | INTEGER, DIMENSION(:,:), ALLOCATABLE :: nop |
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85 | |
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86 | LOGICAL :: found |
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87 | |
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88 | REAL :: mean_r, mean_z |
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89 | REAL, DIMENSION(:), ALLOCATABLE :: prt_r, prt_x, prt_y, prt_z, tl |
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90 | |
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91 | ! |
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92 | !-- Check, if file from PE0 exists. If it does not exist, PALM did not |
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93 | !-- create any output for this cross-section. |
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94 | fn = 0 |
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95 | WRITE (id_char,'(''_'',I4.4)') fn |
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96 | INQUIRE ( FILE=id_char, EXIST=found ) |
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97 | |
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98 | ! |
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99 | !-- Find out the number of files (equal to the number of PEs which |
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100 | !-- have been used in PALM) and open them |
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101 | IF ( .NOT. found ) THEN |
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102 | PRINT*, '+++ no file _0000 found in current working directory' |
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103 | STOP |
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104 | ENDIF |
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105 | |
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106 | DO WHILE ( found ) |
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107 | |
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108 | ! |
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109 | !-- Open NetCDF dataset |
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110 | nc_stat = NF90_OPEN( id_char, NF90_NOWRITE, id_set(fn) ) |
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111 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 1 ) |
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112 | fn = fn + 1 |
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113 | WRITE (id_char,'(''_'',I4.4)') fn |
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114 | INQUIRE ( FILE=id_char, EXIST=found ) |
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115 | |
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116 | ENDDO |
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117 | fn = fn - 1 |
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118 | |
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119 | PRINT*, '*** ', fn+1, ' files found' |
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120 | |
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121 | ! |
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122 | !-- Get the run description header and print it out |
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123 | string = ' ' |
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124 | nc_stat = NF90_GET_ATT( id_set(0), NF90_GLOBAL, 'title', string ) |
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125 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 2 ) |
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126 | PRINT*, '*** run: ', TRIM( string ) |
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127 | |
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128 | ! |
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129 | !-- Get the available time levels |
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130 | nc_stat = NF90_INQ_VARID( id_set(0), 'time', id_var_time ) |
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131 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 3 ) |
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132 | |
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133 | nc_stat = NF90_INQUIRE_VARIABLE( id_set(0), id_var_time, & |
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134 | dimids = id_dim_time_old ) |
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135 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 4 ) |
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136 | id_dim_time = id_dim_time_old(1) |
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137 | |
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138 | nc_stat = NF90_INQUIRE_DIMENSION( id_set(0), id_dim_time, len = ntl ) |
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139 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 5 ) |
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140 | ALLOCATE( tl(1:ntl) ) |
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141 | print*, 'ntl=',ntl |
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142 | |
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143 | nc_stat = NF90_GET_VAR( id_set(0), id_var_time, tl ) |
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144 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 6 ) |
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145 | |
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146 | DO n = 1, ntl |
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147 | print*, '*** time_level(', n, ') =', tl(n) |
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148 | ENDDO |
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149 | |
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150 | ! |
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151 | !-- Get the number of particles used |
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152 | nc_stat = NF90_INQ_VARID( id_set(0), 'real_num_of_prt', id_var_rnop ) |
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153 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 7 ) |
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154 | |
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155 | ALLOCATE( nop(1:ntl,0:fn), total_nop(1:ntl) ) |
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156 | |
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157 | DO f = 0, fn |
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158 | |
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159 | nc_stat = NF90_GET_VAR( id_set(f), id_var_rnop, nop(1:ntl,f) ) |
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160 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 8 ) |
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161 | |
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162 | ENDDO |
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163 | |
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164 | total_nop = 0 |
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165 | DO n = 1, ntl |
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166 | |
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167 | DO f = 0, fn |
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168 | total_nop(n) = total_nop(n) + nop(n,f) |
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169 | ENDDO |
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170 | |
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171 | PRINT*, '*** time = ', tl(n), ' total # of particles: ', total_nop(n) |
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172 | |
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173 | ENDDO |
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174 | |
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175 | ! |
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176 | !-- Get the particle x and y coordinates |
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177 | nc_stat = NF90_INQ_VARID( id_set(0), 'pt_x', id_var_x ) |
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178 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 9 ) |
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179 | |
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180 | nc_stat = NF90_INQ_VARID( id_set(0), 'pt_y', id_var_y ) |
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181 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 10 ) |
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182 | |
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183 | nc_stat = NF90_INQ_VARID( id_set(0), 'pt_z', id_var_z ) |
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184 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 11 ) |
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185 | |
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186 | nc_stat = NF90_INQ_VARID( id_set(0), 'pt_radius', id_var_r ) |
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187 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 12 ) |
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188 | |
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189 | PRINT*, ' ' |
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190 | ! |
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191 | !-- Loop over all timelevels |
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192 | DO n = 1, ntl |
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193 | |
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194 | ALLOCATE( prt_x(total_nop(n)), prt_y(total_nop(n)), & |
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195 | prt_z(total_nop(n)), prt_r(total_nop(n)) ) |
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196 | |
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197 | start = 1 |
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198 | |
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199 | ! |
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200 | !-- Read the data from the files (one file per processor) |
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201 | DO f = 0, fn |
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202 | |
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203 | nc_stat = NF90_GET_VAR( id_set(f), id_var_x, & |
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204 | prt_x(start:start+nop(n,f)-1), & |
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205 | start = (/ 1, n /), & |
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206 | count = (/ nop(n,f), 1 /) ) |
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207 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 13 ) |
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208 | |
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209 | nc_stat = NF90_GET_VAR( id_set(f), id_var_y, & |
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210 | prt_y(start:start+nop(n,f)-1), & |
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211 | start = (/ 1, n /), & |
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212 | count = (/ nop(n,f), 1 /) ) |
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213 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 14 ) |
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214 | |
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215 | nc_stat = NF90_GET_VAR( id_set(f), id_var_z, & |
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216 | prt_z(start:start+nop(n,f)-1), & |
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217 | start = (/ 1, n /), & |
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218 | count = (/ nop(n,f), 1 /) ) |
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219 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 15 ) |
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220 | |
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221 | nc_stat = NF90_GET_VAR( id_set(f), id_var_r, & |
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222 | prt_r(start:start+nop(n,f)-1), & |
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223 | start = (/ 1, n /), & |
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224 | count = (/ nop(n,f), 1 /) ) |
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225 | IF ( nc_stat /= NF90_NOERR ) CALL handle_netcdf_error( nc_stat, 16 ) |
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226 | |
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227 | start = start + nop(n,f) |
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228 | |
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229 | ENDDO |
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230 | |
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231 | mean_z = 0.0 |
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232 | mean_r = 0.0 |
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233 | DO i = 1, total_nop(n) |
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234 | mean_z = mean_z + prt_z(i) |
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235 | mean_r = mean_r + prt_r(i) |
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236 | ENDDO |
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237 | mean_z = mean_z / total_nop(n) |
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238 | mean_r = mean_r / total_nop(n) |
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239 | |
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240 | PRINT*, '*** time = ', tl(n), ' mean height = ', mean_z, & |
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241 | ' mean radius = ', mean_r |
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242 | |
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243 | ! |
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244 | !-- prt_x, prt_y, prt_z, and prt_r contain the particle coordinates and |
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245 | !-- radii, respectively. Please output these data or carry out the |
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246 | !-- requested analyzing in this program before you deallocate the arrays. |
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247 | |
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248 | DEALLOCATE( prt_x, prt_y, prt_z, prt_r ) |
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249 | |
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250 | ENDDO |
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251 | |
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252 | |
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253 | END PROGRAM analyze_particle_netcdf_data |
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254 | |
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255 | |
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256 | |
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257 | SUBROUTINE handle_netcdf_error( nc_stat, position ) |
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258 | ! |
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259 | !-- Prints out a text message corresponding to the current NetCDF status |
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260 | |
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261 | USE netcdf |
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262 | |
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263 | IMPLICIT NONE |
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264 | |
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265 | INTEGER, INTENT(IN) :: nc_stat, position |
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266 | |
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267 | IF ( nc_stat /= NF90_NOERR ) THEN |
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268 | PRINT*, '+++ analyze_particle_netcdf_data' |
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269 | PRINT*, ' netcdf error: ', TRIM( nf90_strerror( nc_stat ) ) |
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270 | PRINT*, ' position = ', position |
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271 | STOP |
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272 | ENDIF |
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273 | |
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274 | END SUBROUTINE handle_netcdf_error |
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