1 | !> @file data_output_mask.f90 |
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2 | !--------------------------------------------------------------------------------! |
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3 | ! This file is part of PALM. |
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4 | ! |
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5 | ! PALM is free software: you can redistribute it and/or modify it under the terms |
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6 | ! of the GNU General Public License as published by the Free Software Foundation, |
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7 | ! either version 3 of the License, or (at your option) any later version. |
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8 | ! |
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9 | ! PALM is distributed in the hope that it will be useful, but WITHOUT ANY |
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10 | ! WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR |
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11 | ! A PARTICULAR PURPOSE. See the GNU General Public License for more details. |
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12 | ! |
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13 | ! You should have received a copy of the GNU General Public License along with |
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14 | ! PALM. If not, see <http://www.gnu.org/licenses/>. |
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15 | ! |
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16 | ! Copyright 1997-2015 Leibniz Universitaet Hannover |
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17 | !--------------------------------------------------------------------------------! |
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18 | ! |
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19 | ! Current revisions: |
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20 | ! ----------------- |
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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: data_output_mask.f90 1692 2015-10-26 16:29:17Z knoop $ |
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26 | ! |
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27 | ! 1691 2015-10-26 16:17:44Z maronga |
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28 | ! Added output of radiative heating rates for RRTMG |
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29 | ! |
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30 | ! 1682 2015-10-07 23:56:08Z knoop |
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31 | ! Code annotations made doxygen readable |
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32 | ! |
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33 | ! 1585 2015-04-30 07:05:52Z maronga |
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34 | ! Added support for RRTMG |
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35 | ! |
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36 | ! 1438 2014-07-22 14:14:06Z heinze |
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37 | ! +nr, qc, qr |
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38 | ! |
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39 | ! 1359 2014-04-11 17:15:14Z hoffmann |
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40 | ! New particle structure integrated. |
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41 | ! |
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42 | ! 1353 2014-04-08 15:21:23Z heinze |
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43 | ! REAL constants provided with KIND-attribute |
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44 | ! |
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45 | ! 1327 2014-03-21 11:00:16Z raasch |
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46 | ! |
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47 | ! |
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48 | ! 1320 2014-03-20 08:40:49Z raasch |
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49 | ! ONLY-attribute added to USE-statements, |
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50 | ! kind-parameters added to all INTEGER and REAL declaration statements, |
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51 | ! kinds are defined in new module kinds, |
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52 | ! revision history before 2012 removed, |
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53 | ! comment fields (!:) to be used for variable explanations added to |
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54 | ! all variable declaration statements |
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55 | ! |
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56 | ! 1318 2014-03-17 13:35:16Z raasch |
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57 | ! barrier argument removed from cpu_log, |
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58 | ! module interfaces removed |
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59 | ! |
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60 | ! 1092 2013-02-02 11:24:22Z raasch |
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61 | ! unused variables removed |
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62 | ! |
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63 | ! 1036 2012-10-22 13:43:42Z raasch |
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64 | ! code put under GPL (PALM 3.9) |
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65 | ! |
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66 | ! 1031 2012-10-19 14:35:30Z raasch |
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67 | ! netCDF4 without parallel file support implemented |
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68 | ! |
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69 | ! 1007 2012-09-19 14:30:36Z franke |
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70 | ! Bugfix: calculation of pr must depend on the particle weighting factor, |
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71 | ! missing calculation of ql_vp added |
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72 | ! |
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73 | ! 410 2009-12-04 17:05:40Z letzel |
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74 | ! Initial version |
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75 | ! |
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76 | ! Description: |
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77 | ! ------------ |
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78 | !> Masked data output in netCDF format for current mask (current value of mid). |
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79 | !------------------------------------------------------------------------------! |
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80 | SUBROUTINE data_output_mask( av ) |
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81 | |
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82 | |
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83 | |
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84 | #if defined( __netcdf ) |
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85 | USE arrays_3d, & |
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86 | ONLY: e, nr, p, pt, q, qc, ql, ql_c, ql_v, qr, rho, sa, tend, u, & |
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87 | v, vpt, w |
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88 | |
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89 | USE averaging, & |
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90 | ONLY: e_av, lpt_av, nr_av, p_av, pc_av, pr_av, pt_av, q_av, qc_av, & |
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91 | ql_av, ql_c_av, ql_v_av, ql_vp_av, qv_av, qr_av, rho_av, s_av, & |
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92 | sa_av, u_av, v_av, vpt_av, w_av |
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93 | |
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94 | USE cloud_parameters, & |
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95 | ONLY: l_d_cp, pt_d_t |
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96 | |
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97 | USE control_parameters, & |
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98 | ONLY: cloud_physics, domask, domask_no, domask_time_count, & |
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99 | mask_i, mask_j, mask_k, mask_size, mask_size_l, & |
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100 | mask_start_l, max_masks, message_string, mid, & |
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101 | netcdf_data_format, nz_do3d, simulated_time |
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102 | USE cpulog, & |
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103 | ONLY: cpu_log, log_point |
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104 | |
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105 | |
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106 | |
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107 | USE indices, & |
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108 | ONLY: nbgp, nxl, nxr, nyn, nys, nzb, nzt |
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109 | |
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110 | USE kinds |
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111 | |
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112 | USE netcdf |
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113 | |
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114 | USE netcdf_control |
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115 | |
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116 | USE particle_attributes, & |
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117 | ONLY: grid_particles, number_of_particles, particles, & |
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118 | particle_advection_start, prt_count |
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119 | |
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120 | USE pegrid |
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121 | |
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122 | USE radiation_model_mod, & |
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123 | ONLY: rad_lw_in, rad_lw_in_av, rad_lw_out, rad_lw_out_av, & |
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124 | rad_lw_cs_hr, rad_lw_cs_hr_av, rad_lw_hr, rad_lw_hr_av, & |
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125 | rad_sw_in, rad_sw_in_av, rad_sw_out, rad_sw_out_av, & |
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126 | rad_sw_cs_hr, rad_sw_cs_hr_av, rad_sw_hr, rad_sw_hr_av |
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127 | |
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128 | |
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129 | IMPLICIT NONE |
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130 | |
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131 | INTEGER(iwp) :: av !< |
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132 | INTEGER(iwp) :: ngp !< |
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133 | INTEGER(iwp) :: i !< |
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134 | INTEGER(iwp) :: if !< |
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135 | INTEGER(iwp) :: j !< |
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136 | INTEGER(iwp) :: k !< |
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137 | INTEGER(iwp) :: n !< |
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138 | INTEGER(iwp) :: psi !< |
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139 | INTEGER(iwp) :: sender !< |
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140 | INTEGER(iwp) :: ind(6) !< |
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141 | |
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142 | LOGICAL :: found !< |
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143 | LOGICAL :: resorted !< |
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144 | |
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145 | REAL(wp) :: mean_r !< |
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146 | REAL(wp) :: s_r2 !< |
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147 | REAL(wp) :: s_r3 !< |
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148 | |
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149 | REAL(wp), DIMENSION(:,:,:), ALLOCATABLE :: local_pf !< |
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150 | #if defined( __parallel ) |
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151 | REAL(wp), DIMENSION(:,:,:), ALLOCATABLE :: total_pf !< |
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152 | #endif |
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153 | REAL(wp), DIMENSION(:,:,:), POINTER :: to_be_resorted !< |
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154 | |
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155 | ! |
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156 | !-- Return, if nothing to output |
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157 | IF ( domask_no(mid,av) == 0 ) RETURN |
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158 | |
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159 | CALL cpu_log (log_point(49),'data_output_mask','start') |
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160 | |
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161 | ! |
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162 | !-- Open output file. |
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163 | IF ( myid == 0 .OR. netcdf_data_format > 4 ) THEN |
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164 | CALL check_open( 200+mid+av*max_masks ) |
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165 | ENDIF |
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166 | |
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167 | ! |
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168 | !-- Allocate total and local output arrays. |
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169 | #if defined( __parallel ) |
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170 | IF ( myid == 0 ) THEN |
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171 | ALLOCATE( total_pf(mask_size(mid,1),mask_size(mid,2),mask_size(mid,3)) ) |
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172 | ENDIF |
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173 | #endif |
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174 | ALLOCATE( local_pf(mask_size_l(mid,1),mask_size_l(mid,2), & |
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175 | mask_size_l(mid,3)) ) |
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176 | |
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177 | ! |
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178 | !-- Update the netCDF time axis. |
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179 | domask_time_count(mid,av) = domask_time_count(mid,av) + 1 |
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180 | IF ( myid == 0 .OR. netcdf_data_format > 4 ) THEN |
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181 | nc_stat = NF90_PUT_VAR( id_set_mask(mid,av), id_var_time_mask(mid,av), & |
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182 | (/ simulated_time /), & |
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183 | start = (/ domask_time_count(mid,av) /), & |
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184 | count = (/ 1 /) ) |
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185 | CALL handle_netcdf_error( 'data_output_mask', 460 ) |
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186 | ENDIF |
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187 | |
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188 | ! |
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189 | !-- Loop over all variables to be written. |
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190 | if = 1 |
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191 | |
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192 | DO WHILE ( domask(mid,av,if)(1:1) /= ' ' ) |
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193 | ! |
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194 | !-- Reallocate local_pf on PE 0 since its shape changes during MPI exchange |
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195 | IF ( netcdf_data_format < 5 .AND. myid == 0 .AND. if > 1 ) THEN |
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196 | DEALLOCATE( local_pf ) |
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197 | ALLOCATE( local_pf(mask_size_l(mid,1),mask_size_l(mid,2), & |
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198 | mask_size_l(mid,3)) ) |
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199 | ENDIF |
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200 | ! |
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201 | !-- Store the variable chosen. |
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202 | resorted = .FALSE. |
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203 | SELECT CASE ( TRIM( domask(mid,av,if) ) ) |
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204 | |
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205 | CASE ( 'e' ) |
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206 | IF ( av == 0 ) THEN |
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207 | to_be_resorted => e |
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208 | ELSE |
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209 | to_be_resorted => e_av |
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210 | ENDIF |
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211 | |
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212 | CASE ( 'lpt' ) |
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213 | IF ( av == 0 ) THEN |
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214 | to_be_resorted => pt |
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215 | ELSE |
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216 | to_be_resorted => lpt_av |
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217 | ENDIF |
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218 | |
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219 | CASE ( 'nr' ) |
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220 | IF ( av == 0 ) THEN |
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221 | to_be_resorted => nr |
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222 | ELSE |
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223 | to_be_resorted => nr_av |
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224 | ENDIF |
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225 | |
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226 | CASE ( 'p' ) |
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227 | IF ( av == 0 ) THEN |
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228 | to_be_resorted => p |
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229 | ELSE |
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230 | to_be_resorted => p_av |
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231 | ENDIF |
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232 | |
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233 | CASE ( 'pc' ) ! particle concentration (requires ghostpoint exchange) |
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234 | IF ( av == 0 ) THEN |
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235 | tend = prt_count |
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236 | CALL exchange_horiz( tend, nbgp ) |
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237 | DO i = 1, mask_size_l(mid,1) |
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238 | DO j = 1, mask_size_l(mid,2) |
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239 | DO k = 1, mask_size_l(mid,3) |
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240 | local_pf(i,j,k) = tend(mask_k(mid,k), & |
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241 | mask_j(mid,j),mask_i(mid,i)) |
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242 | ENDDO |
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243 | ENDDO |
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244 | ENDDO |
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245 | resorted = .TRUE. |
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246 | ELSE |
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247 | CALL exchange_horiz( pc_av, nbgp ) |
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248 | to_be_resorted => pc_av |
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249 | ENDIF |
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250 | |
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251 | CASE ( 'pr' ) ! mean particle radius (effective radius) |
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252 | IF ( av == 0 ) THEN |
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253 | IF ( simulated_time >= particle_advection_start ) THEN |
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254 | DO i = nxl, nxr |
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255 | DO j = nys, nyn |
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256 | DO k = nzb, nz_do3d |
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257 | number_of_particles = prt_count(k,j,i) |
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258 | IF (number_of_particles <= 0) CYCLE |
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259 | particles => grid_particles(k,j,i)%particles(1:number_of_particles) |
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260 | s_r2 = 0.0_wp |
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261 | s_r3 = 0.0_wp |
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262 | DO n = 1, number_of_particles |
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263 | IF ( particles(n)%particle_mask ) THEN |
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264 | s_r2 = s_r2 + grid_particles(k,j,i)%particles(n)%radius**2 * & |
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265 | grid_particles(k,j,i)%particles(n)%weight_factor |
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266 | s_r3 = s_r3 + grid_particles(k,j,i)%particles(n)%radius**3 * & |
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267 | grid_particles(k,j,i)%particles(n)%weight_factor |
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268 | ENDIF |
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269 | ENDDO |
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270 | IF ( s_r2 > 0.0_wp ) THEN |
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271 | mean_r = s_r3 / s_r2 |
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272 | ELSE |
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273 | mean_r = 0.0_wp |
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274 | ENDIF |
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275 | tend(k,j,i) = mean_r |
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276 | ENDDO |
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277 | ENDDO |
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278 | ENDDO |
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279 | CALL exchange_horiz( tend, nbgp ) |
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280 | ELSE |
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281 | tend = 0.0_wp |
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282 | ENDIF |
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283 | DO i = 1, mask_size_l(mid,1) |
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284 | DO j = 1, mask_size_l(mid,2) |
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285 | DO k = 1, mask_size_l(mid,3) |
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286 | local_pf(i,j,k) = tend(mask_k(mid,k), & |
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287 | mask_j(mid,j),mask_i(mid,i)) |
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288 | ENDDO |
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289 | ENDDO |
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290 | ENDDO |
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291 | resorted = .TRUE. |
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292 | ELSE |
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293 | CALL exchange_horiz( pr_av, nbgp ) |
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294 | to_be_resorted => pr_av |
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295 | ENDIF |
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296 | |
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297 | CASE ( 'pt' ) |
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298 | IF ( av == 0 ) THEN |
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299 | IF ( .NOT. cloud_physics ) THEN |
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300 | to_be_resorted => pt |
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301 | ELSE |
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302 | DO i = 1, mask_size_l(mid,1) |
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303 | DO j = 1, mask_size_l(mid,2) |
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304 | DO k = 1, mask_size_l(mid,3) |
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305 | local_pf(i,j,k) = & |
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306 | pt(mask_k(mid,k),mask_j(mid,j),mask_i(mid,i)) & |
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307 | + l_d_cp * pt_d_t(mask_k(mid,k)) * & |
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308 | ql(mask_k(mid,k),mask_j(mid,j),mask_i(mid,i)) |
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309 | ENDDO |
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310 | ENDDO |
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311 | ENDDO |
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312 | resorted = .TRUE. |
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313 | ENDIF |
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314 | ELSE |
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315 | to_be_resorted => pt_av |
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316 | ENDIF |
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317 | |
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318 | CASE ( 'q' ) |
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319 | IF ( av == 0 ) THEN |
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320 | to_be_resorted => q |
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321 | ELSE |
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322 | to_be_resorted => q_av |
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323 | ENDIF |
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324 | |
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325 | CASE ( 'qc' ) |
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326 | IF ( av == 0 ) THEN |
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327 | to_be_resorted => qc |
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328 | ELSE |
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329 | to_be_resorted => qc_av |
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330 | ENDIF |
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331 | |
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332 | CASE ( 'ql' ) |
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333 | IF ( av == 0 ) THEN |
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334 | to_be_resorted => ql |
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335 | ELSE |
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336 | to_be_resorted => ql_av |
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337 | ENDIF |
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338 | |
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339 | CASE ( 'ql_c' ) |
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340 | IF ( av == 0 ) THEN |
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341 | to_be_resorted => ql_c |
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342 | ELSE |
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343 | to_be_resorted => ql_c_av |
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344 | ENDIF |
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345 | |
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346 | CASE ( 'ql_v' ) |
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347 | IF ( av == 0 ) THEN |
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348 | to_be_resorted => ql_v |
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349 | ELSE |
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350 | to_be_resorted => ql_v_av |
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351 | ENDIF |
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352 | |
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353 | CASE ( 'ql_vp' ) |
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354 | IF ( av == 0 ) THEN |
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355 | IF ( simulated_time >= particle_advection_start ) THEN |
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356 | DO i = nxl, nxr |
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357 | DO j = nys, nyn |
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358 | DO k = nzb, nz_do3d |
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359 | number_of_particles = prt_count(k,j,i) |
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360 | IF (number_of_particles <= 0) CYCLE |
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361 | particles => grid_particles(k,j,i)%particles(1:number_of_particles) |
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362 | DO n = 1, number_of_particles |
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363 | IF ( particles(n)%particle_mask ) THEN |
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364 | tend(k,j,i) = tend(k,j,i) + & |
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365 | particles(n)%weight_factor / & |
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366 | prt_count(k,j,i) |
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367 | ENDIF |
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368 | ENDDO |
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369 | ENDDO |
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370 | ENDDO |
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371 | ENDDO |
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372 | CALL exchange_horiz( tend, nbgp ) |
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373 | ELSE |
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374 | tend = 0.0_wp |
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375 | ENDIF |
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376 | DO i = 1, mask_size_l(mid,1) |
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377 | DO j = 1, mask_size_l(mid,2) |
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378 | DO k = 1, mask_size_l(mid,3) |
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379 | local_pf(i,j,k) = tend(mask_k(mid,k), & |
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380 | mask_j(mid,j),mask_i(mid,i)) |
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381 | ENDDO |
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382 | ENDDO |
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383 | ENDDO |
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384 | resorted = .TRUE. |
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385 | ELSE |
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386 | CALL exchange_horiz( ql_vp_av, nbgp ) |
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387 | to_be_resorted => ql_vp_av |
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388 | ENDIF |
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389 | |
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390 | CASE ( 'qv' ) |
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391 | IF ( av == 0 ) THEN |
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392 | DO i = 1, mask_size_l(mid,1) |
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393 | DO j = 1, mask_size_l(mid,2) |
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394 | DO k = 1, mask_size_l(mid,3) |
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395 | local_pf(i,j,k) = & |
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396 | q(mask_k(mid,k),mask_j(mid,j),mask_i(mid,i)) - & |
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397 | ql(mask_k(mid,k),mask_j(mid,j),mask_i(mid,i)) |
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398 | ENDDO |
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399 | ENDDO |
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400 | ENDDO |
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401 | resorted = .TRUE. |
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402 | ELSE |
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403 | to_be_resorted => qv_av |
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404 | ENDIF |
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405 | |
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406 | CASE ( 'qr' ) |
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407 | IF ( av == 0 ) THEN |
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408 | to_be_resorted => qr |
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409 | ELSE |
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410 | to_be_resorted => qr_av |
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411 | ENDIF |
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412 | |
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413 | CASE ( 'rad_lw_in' ) |
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414 | IF ( av == 0 ) THEN |
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415 | to_be_resorted => rad_lw_in |
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416 | ELSE |
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417 | to_be_resorted => rad_lw_in_av |
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418 | ENDIF |
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419 | |
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420 | CASE ( 'rad_lw_out' ) |
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421 | IF ( av == 0 ) THEN |
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422 | to_be_resorted => rad_lw_out |
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423 | ELSE |
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424 | to_be_resorted => rad_lw_out_av |
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425 | ENDIF |
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426 | |
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427 | CASE ( 'rad_lw_cs_hr' ) |
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428 | IF ( av == 0 ) THEN |
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429 | to_be_resorted => rad_lw_cs_hr |
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430 | ELSE |
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431 | to_be_resorted => rad_lw_cs_hr_av |
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432 | ENDIF |
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433 | |
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434 | CASE ( 'rad_lw_hr' ) |
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435 | IF ( av == 0 ) THEN |
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436 | to_be_resorted => rad_lw_hr |
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437 | ELSE |
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438 | to_be_resorted => rad_lw_hr_av |
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439 | ENDIF |
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440 | |
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441 | CASE ( 'rad_sw_in' ) |
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442 | IF ( av == 0 ) THEN |
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443 | to_be_resorted => rad_sw_in |
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444 | ELSE |
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445 | to_be_resorted => rad_sw_in_av |
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446 | ENDIF |
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447 | |
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448 | CASE ( 'rad_sw_out' ) |
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449 | IF ( av == 0 ) THEN |
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450 | to_be_resorted => rad_sw_out |
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451 | ELSE |
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452 | to_be_resorted => rad_sw_out_av |
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453 | ENDIF |
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454 | |
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455 | CASE ( 'rad_sw_cs_hr' ) |
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456 | IF ( av == 0 ) THEN |
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457 | to_be_resorted => rad_sw_cs_hr |
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458 | ELSE |
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459 | to_be_resorted => rad_sw_cs_hr_av |
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460 | ENDIF |
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461 | |
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462 | CASE ( 'rad_sw_hr' ) |
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463 | IF ( av == 0 ) THEN |
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464 | to_be_resorted => rad_sw_hr |
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465 | ELSE |
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466 | to_be_resorted => rad_sw_hr_av |
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467 | ENDIF |
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468 | |
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469 | CASE ( 'rho' ) |
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470 | IF ( av == 0 ) THEN |
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471 | to_be_resorted => rho |
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472 | ELSE |
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473 | to_be_resorted => rho_av |
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474 | ENDIF |
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475 | |
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476 | CASE ( 's' ) |
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477 | IF ( av == 0 ) THEN |
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478 | to_be_resorted => q |
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479 | ELSE |
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480 | to_be_resorted => s_av |
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481 | ENDIF |
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482 | |
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483 | CASE ( 'sa' ) |
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484 | IF ( av == 0 ) THEN |
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485 | to_be_resorted => sa |
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486 | ELSE |
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487 | to_be_resorted => sa_av |
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488 | ENDIF |
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489 | |
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490 | CASE ( 'u' ) |
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491 | IF ( av == 0 ) THEN |
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492 | to_be_resorted => u |
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493 | ELSE |
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494 | to_be_resorted => u_av |
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495 | ENDIF |
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496 | |
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497 | CASE ( 'v' ) |
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498 | IF ( av == 0 ) THEN |
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499 | to_be_resorted => v |
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500 | ELSE |
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501 | to_be_resorted => v_av |
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502 | ENDIF |
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503 | |
---|
504 | CASE ( 'vpt' ) |
---|
505 | IF ( av == 0 ) THEN |
---|
506 | to_be_resorted => vpt |
---|
507 | ELSE |
---|
508 | to_be_resorted => vpt_av |
---|
509 | ENDIF |
---|
510 | |
---|
511 | CASE ( 'w' ) |
---|
512 | IF ( av == 0 ) THEN |
---|
513 | to_be_resorted => w |
---|
514 | ELSE |
---|
515 | to_be_resorted => w_av |
---|
516 | ENDIF |
---|
517 | |
---|
518 | CASE DEFAULT |
---|
519 | ! |
---|
520 | !-- User defined quantity |
---|
521 | CALL user_data_output_mask(av, domask(mid,av,if), found, local_pf ) |
---|
522 | resorted = .TRUE. |
---|
523 | |
---|
524 | IF ( .NOT. found ) THEN |
---|
525 | WRITE ( message_string, * ) 'no output available for: ', & |
---|
526 | TRIM( domask(mid,av,if) ) |
---|
527 | CALL message( 'data_output_mask', 'PA0327', 0, 0, 0, 6, 0 ) |
---|
528 | ENDIF |
---|
529 | |
---|
530 | END SELECT |
---|
531 | |
---|
532 | ! |
---|
533 | !-- Resort the array to be output, if not done above |
---|
534 | IF ( .NOT. resorted ) THEN |
---|
535 | DO i = 1, mask_size_l(mid,1) |
---|
536 | DO j = 1, mask_size_l(mid,2) |
---|
537 | DO k = 1, mask_size_l(mid,3) |
---|
538 | local_pf(i,j,k) = to_be_resorted(mask_k(mid,k), & |
---|
539 | mask_j(mid,j),mask_i(mid,i)) |
---|
540 | ENDDO |
---|
541 | ENDDO |
---|
542 | ENDDO |
---|
543 | ENDIF |
---|
544 | |
---|
545 | ! |
---|
546 | !-- I/O block. I/O methods are implemented |
---|
547 | !-- (1) for parallel execution |
---|
548 | !-- a. with netCDF 4 parallel I/O-enabled library |
---|
549 | !-- b. with netCDF 3 library |
---|
550 | !-- (2) for serial execution. |
---|
551 | !-- The choice of method depends on the correct setting of preprocessor |
---|
552 | !-- directives __parallel and __netcdf4_parallel as well as on the parameter |
---|
553 | !-- netcdf_data_format. |
---|
554 | #if defined( __parallel ) |
---|
555 | #if defined( __netcdf4_parallel ) |
---|
556 | IF ( netcdf_data_format > 4 ) THEN |
---|
557 | ! |
---|
558 | !-- (1) a. Parallel I/O using netCDF 4 (not yet tested) |
---|
559 | nc_stat = NF90_PUT_VAR( id_set_mask(mid,av), & |
---|
560 | id_var_domask(mid,av,if), & |
---|
561 | local_pf, & |
---|
562 | start = (/ mask_start_l(mid,1), mask_start_l(mid,2), & |
---|
563 | mask_start_l(mid,3), domask_time_count(mid,av) /), & |
---|
564 | count = (/ mask_size_l(mid,1), mask_size_l(mid,2), & |
---|
565 | mask_size_l(mid,3), 1 /) ) |
---|
566 | CALL handle_netcdf_error( 'data_output_mask', 461 ) |
---|
567 | ELSE |
---|
568 | #endif |
---|
569 | ! |
---|
570 | !-- (1) b. Conventional I/O only through PE0 |
---|
571 | !-- PE0 receives partial arrays from all processors of the respective mask |
---|
572 | !-- and outputs them. Here a barrier has to be set, because otherwise |
---|
573 | !-- "-MPI- FATAL: Remote protocol queue full" may occur. |
---|
574 | CALL MPI_BARRIER( comm2d, ierr ) |
---|
575 | |
---|
576 | ngp = mask_size_l(mid,1) * mask_size_l(mid,2) * mask_size_l(mid,3) |
---|
577 | IF ( myid == 0 ) THEN |
---|
578 | ! |
---|
579 | !-- Local array can be relocated directly. |
---|
580 | total_pf( & |
---|
581 | mask_start_l(mid,1):mask_start_l(mid,1)+mask_size_l(mid,1)-1, & |
---|
582 | mask_start_l(mid,2):mask_start_l(mid,2)+mask_size_l(mid,2)-1, & |
---|
583 | mask_start_l(mid,3):mask_start_l(mid,3)+mask_size_l(mid,3)-1 ) & |
---|
584 | = local_pf |
---|
585 | ! |
---|
586 | !-- Receive data from all other PEs. |
---|
587 | DO n = 1, numprocs-1 |
---|
588 | ! |
---|
589 | !-- Receive index limits first, then array. |
---|
590 | !-- Index limits are received in arbitrary order from the PEs. |
---|
591 | CALL MPI_RECV( ind(1), 6, MPI_INTEGER, MPI_ANY_SOURCE, 0, & |
---|
592 | comm2d, status, ierr ) |
---|
593 | ! |
---|
594 | !-- Not all PEs have data for the mask |
---|
595 | IF ( ind(1) /= -9999 ) THEN |
---|
596 | ngp = ( ind(2)-ind(1)+1 ) * (ind(4)-ind(3)+1 ) * & |
---|
597 | ( ind(6)-ind(5)+1 ) |
---|
598 | sender = status(MPI_SOURCE) |
---|
599 | DEALLOCATE( local_pf ) |
---|
600 | ALLOCATE(local_pf(ind(1):ind(2),ind(3):ind(4),ind(5):ind(6))) |
---|
601 | CALL MPI_RECV( local_pf(ind(1),ind(3),ind(5)), ngp, & |
---|
602 | MPI_REAL, sender, 1, comm2d, status, ierr ) |
---|
603 | total_pf(ind(1):ind(2),ind(3):ind(4),ind(5):ind(6)) & |
---|
604 | = local_pf |
---|
605 | ENDIF |
---|
606 | ENDDO |
---|
607 | |
---|
608 | nc_stat = NF90_PUT_VAR( id_set_mask(mid,av), & |
---|
609 | id_var_domask(mid,av,if), total_pf, & |
---|
610 | start = (/ 1, 1, 1, domask_time_count(mid,av) /), & |
---|
611 | count = (/ mask_size(mid,1), mask_size(mid,2), & |
---|
612 | mask_size(mid,3), 1 /) ) |
---|
613 | CALL handle_netcdf_error( 'data_output_mask', 462 ) |
---|
614 | |
---|
615 | ELSE |
---|
616 | ! |
---|
617 | !-- If at least part of the mask resides on the PE, send the index |
---|
618 | !-- limits for the target array, otherwise send -9999 to PE0. |
---|
619 | IF ( mask_size_l(mid,1) > 0 .AND. mask_size_l(mid,2) > 0 .AND. & |
---|
620 | mask_size_l(mid,3) > 0 ) & |
---|
621 | THEN |
---|
622 | ind(1) = mask_start_l(mid,1) |
---|
623 | ind(2) = mask_start_l(mid,1) + mask_size_l(mid,1) - 1 |
---|
624 | ind(3) = mask_start_l(mid,2) |
---|
625 | ind(4) = mask_start_l(mid,2) + mask_size_l(mid,2) - 1 |
---|
626 | ind(5) = mask_start_l(mid,3) |
---|
627 | ind(6) = mask_start_l(mid,3) + mask_size_l(mid,3) - 1 |
---|
628 | ELSE |
---|
629 | ind(1) = -9999; ind(2) = -9999 |
---|
630 | ind(3) = -9999; ind(4) = -9999 |
---|
631 | ind(5) = -9999; ind(6) = -9999 |
---|
632 | ENDIF |
---|
633 | CALL MPI_SEND( ind(1), 6, MPI_INTEGER, 0, 0, comm2d, ierr ) |
---|
634 | ! |
---|
635 | !-- If applicable, send data to PE0. |
---|
636 | IF ( ind(1) /= -9999 ) THEN |
---|
637 | CALL MPI_SEND( local_pf(1,1,1), ngp, MPI_REAL, 0, 1, comm2d, & |
---|
638 | ierr ) |
---|
639 | ENDIF |
---|
640 | ENDIF |
---|
641 | ! |
---|
642 | !-- A barrier has to be set, because otherwise some PEs may proceed too |
---|
643 | !-- fast so that PE0 may receive wrong data on tag 0. |
---|
644 | CALL MPI_BARRIER( comm2d, ierr ) |
---|
645 | #if defined( __netcdf4_parallel ) |
---|
646 | ENDIF |
---|
647 | #endif |
---|
648 | #else |
---|
649 | ! |
---|
650 | !-- (2) For serial execution of PALM, the single processor (PE0) holds all |
---|
651 | !-- data and writes them directly to file. |
---|
652 | nc_stat = NF90_PUT_VAR( id_set_mask(mid,av), & |
---|
653 | id_var_domask(mid,av,if), & |
---|
654 | local_pf, & |
---|
655 | start = (/ 1, 1, 1, domask_time_count(mid,av) /), & |
---|
656 | count = (/ mask_size_l(mid,1), mask_size_l(mid,2), & |
---|
657 | mask_size_l(mid,3), 1 /) ) |
---|
658 | CALL handle_netcdf_error( 'data_output_mask', 463 ) |
---|
659 | #endif |
---|
660 | |
---|
661 | if = if + 1 |
---|
662 | |
---|
663 | ENDDO |
---|
664 | |
---|
665 | ! |
---|
666 | !-- Deallocate temporary arrays. |
---|
667 | DEALLOCATE( local_pf ) |
---|
668 | #if defined( __parallel ) |
---|
669 | IF ( myid == 0 ) THEN |
---|
670 | DEALLOCATE( total_pf ) |
---|
671 | ENDIF |
---|
672 | #endif |
---|
673 | |
---|
674 | |
---|
675 | CALL cpu_log( log_point(49), 'data_output_mask', 'stop' ) |
---|
676 | #endif |
---|
677 | |
---|
678 | END SUBROUTINE data_output_mask |
---|