[1] | 1 | MODULE buoyancy_mod |
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| 2 | |
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[1036] | 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 1997-2012 Leibniz University Hannover |
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| 18 | !--------------------------------------------------------------------------------! |
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| 19 | ! |
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[247] | 20 | ! Currrent revisions: |
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[1179] | 21 | ! ------------------ |
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[1239] | 22 | ! Generalize calc_mean_profile for wider use: use additional steering |
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| 23 | ! character loc |
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[98] | 24 | ! |
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[1182] | 25 | ! |
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[98] | 26 | ! Former revisions: |
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| 27 | ! ----------------- |
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| 28 | ! $Id: buoyancy.f90 1239 2013-10-29 10:11:53Z heinze $ |
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| 29 | ! |
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[1182] | 30 | ! 1179 2013-06-14 05:57:58Z raasch |
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| 31 | ! steering of reference state revised (var_reference and pr removed from |
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| 32 | ! parameter list), use_reference renamed use_single_reference_value |
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| 33 | ! |
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[1172] | 34 | ! 1171 2013-05-30 11:27:45Z raasch |
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| 35 | ! openacc statements added to use_reference-case in accelerator version |
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| 36 | ! |
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[1154] | 37 | ! 1153 2013-05-10 14:33:08Z raasch |
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| 38 | ! code adjustments of accelerator version required by PGI 12.3 / CUDA 5.0 |
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| 39 | ! |
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[1132] | 40 | ! 1128 2013-04-12 06:19:32Z raasch |
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| 41 | ! loop index bounds in accelerator version replaced by i_left, i_right, j_south, |
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| 42 | ! j_north |
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| 43 | ! |
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[1037] | 44 | ! 1036 2012-10-22 13:43:42Z raasch |
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| 45 | ! code put under GPL (PALM 3.9) |
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| 46 | ! |
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[1017] | 47 | ! 1015 2012-09-27 09:23:24Z raasch |
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| 48 | ! accelerator version (*_acc) added |
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| 49 | ! |
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[1011] | 50 | ! 1010 2012-09-20 07:59:54Z raasch |
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| 51 | ! cpp switch __nopointer added for pointer free version |
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| 52 | ! |
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[623] | 53 | ! 622 2010-12-10 08:08:13Z raasch |
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| 54 | ! optional barriers included in order to speed up collective operations |
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| 55 | ! |
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[516] | 56 | ! 515 2010-03-18 02:30:38Z raasch |
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| 57 | ! PGI-compiler creates SIGFPE in routine buoyancy, if opt>1 is used! Therefore, |
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| 58 | ! opt=1 is forced by compiler-directive. |
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| 59 | ! |
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[392] | 60 | ! 247 2009-02-27 14:01:30Z heinze |
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| 61 | ! Output of messages replaced by message handling routine |
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| 62 | ! |
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[139] | 63 | ! 132 2007-11-20 09:46:11Z letzel |
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| 64 | ! Vertical scalar profiles now based on nzb_s_inner and ngp_2dh_s_inner. |
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| 65 | ! |
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[110] | 66 | ! 106 2007-08-16 14:30:26Z raasch |
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| 67 | ! i loop for u-component (sloping surface) is starting from nxlu (needed for |
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| 68 | ! non-cyclic boundary conditions) |
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| 69 | ! |
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[98] | 70 | ! 97 2007-06-21 08:23:15Z raasch |
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[97] | 71 | ! Routine reneralized to be used with temperature AND density: |
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| 72 | ! argument theta renamed var, new argument var_reference, |
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| 73 | ! use_pt_reference renamed use_reference, |
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[96] | 74 | ! calc_mean_pt_profile renamed calc_mean_profile |
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[1] | 75 | ! |
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[77] | 76 | ! 57 2007-03-09 12:05:41Z raasch |
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| 77 | ! Reference temperature pt_reference can be used. |
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| 78 | ! |
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[3] | 79 | ! RCS Log replace by Id keyword, revision history cleaned up |
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| 80 | ! |
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[1] | 81 | ! Revision 1.19 2006/04/26 12:09:56 raasch |
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| 82 | ! OpenMP optimization (one dimension added to sums_l) |
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| 83 | ! |
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| 84 | ! Revision 1.1 1997/08/29 08:56:48 raasch |
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| 85 | ! Initial revision |
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| 86 | ! |
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| 87 | ! |
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| 88 | ! Description: |
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| 89 | ! ------------ |
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| 90 | ! Buoyancy term of the third component of the equation of motion. |
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| 91 | ! WARNING: humidity is not regarded when using a sloping surface! |
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| 92 | !------------------------------------------------------------------------------! |
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| 93 | |
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| 94 | PRIVATE |
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[1015] | 95 | PUBLIC buoyancy, buoyancy_acc, calc_mean_profile |
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[1] | 96 | |
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| 97 | INTERFACE buoyancy |
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| 98 | MODULE PROCEDURE buoyancy |
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| 99 | MODULE PROCEDURE buoyancy_ij |
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| 100 | END INTERFACE buoyancy |
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| 101 | |
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[1015] | 102 | INTERFACE buoyancy_acc |
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| 103 | MODULE PROCEDURE buoyancy_acc |
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| 104 | END INTERFACE buoyancy_acc |
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| 105 | |
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[96] | 106 | INTERFACE calc_mean_profile |
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| 107 | MODULE PROCEDURE calc_mean_profile |
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| 108 | END INTERFACE calc_mean_profile |
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[1] | 109 | |
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| 110 | CONTAINS |
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| 111 | |
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| 112 | |
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| 113 | !------------------------------------------------------------------------------! |
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| 114 | ! Call for all grid points |
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| 115 | !------------------------------------------------------------------------------! |
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[1179] | 116 | SUBROUTINE buoyancy( var, wind_component ) |
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[1] | 117 | |
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| 118 | USE arrays_3d |
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| 119 | USE control_parameters |
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| 120 | USE indices |
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| 121 | USE pegrid |
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| 122 | |
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| 123 | IMPLICIT NONE |
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| 124 | |
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[1179] | 125 | INTEGER :: i, j, k, wind_component |
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[1010] | 126 | #if defined( __nopointer ) |
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| 127 | REAL, DIMENSION(nzb:nzt+1,nysg:nyng,nxlg:nxrg) :: var |
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| 128 | #else |
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| 129 | REAL, DIMENSION(:,:,:), POINTER :: var |
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| 130 | #endif |
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[1] | 131 | |
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| 132 | |
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| 133 | IF ( .NOT. sloping_surface ) THEN |
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| 134 | ! |
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| 135 | !-- Normal case: horizontal surface |
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[1179] | 136 | DO i = nxl, nxr |
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| 137 | DO j = nys, nyn |
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| 138 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 139 | tend(k,j,i) = tend(k,j,i) + atmos_ocean_sign * g * 0.5 * ( & |
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| 140 | ( var(k,j,i) - ref_state(k) ) / ref_state(k) + & |
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| 141 | ( var(k+1,j,i) - ref_state(k+1) ) / ref_state(k+1) & |
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| 142 | ) |
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[57] | 143 | ENDDO |
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| 144 | ENDDO |
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[1179] | 145 | ENDDO |
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[1] | 146 | |
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| 147 | ELSE |
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| 148 | ! |
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| 149 | !-- Buoyancy term for a surface with a slope in x-direction. The equations |
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| 150 | !-- for both the u and w velocity-component contain proportionate terms. |
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| 151 | !-- Temperature field at time t=0 serves as environmental temperature. |
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| 152 | !-- Reference temperature (pt_surface) is the one at the lower left corner |
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| 153 | !-- of the total domain. |
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| 154 | IF ( wind_component == 1 ) THEN |
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| 155 | |
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[106] | 156 | DO i = nxlu, nxr |
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[1] | 157 | DO j = nys, nyn |
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| 158 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 159 | tend(k,j,i) = tend(k,j,i) + g * sin_alpha_surface * & |
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| 160 | 0.5 * ( ( pt(k,j,i-1) + pt(k,j,i) ) & |
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| 161 | - ( pt_slope_ref(k,i-1) + pt_slope_ref(k,i) ) & |
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| 162 | ) / pt_surface |
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| 163 | ENDDO |
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| 164 | ENDDO |
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| 165 | ENDDO |
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| 166 | |
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| 167 | ELSEIF ( wind_component == 3 ) THEN |
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| 168 | |
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| 169 | DO i = nxl, nxr |
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| 170 | DO j = nys, nyn |
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| 171 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 172 | tend(k,j,i) = tend(k,j,i) + g * cos_alpha_surface * & |
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| 173 | 0.5 * ( ( pt(k,j,i) + pt(k+1,j,i) ) & |
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| 174 | - ( pt_slope_ref(k,i) + pt_slope_ref(k+1,i) ) & |
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| 175 | ) / pt_surface |
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| 176 | ENDDO |
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| 177 | ENDDO |
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| 178 | ENDDO |
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| 179 | |
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| 180 | ELSE |
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[247] | 181 | |
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| 182 | WRITE( message_string, * ) 'no term for component "',& |
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[1] | 183 | wind_component,'"' |
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[247] | 184 | CALL message( 'buoyancy', 'PA0159', 1, 2, 0, 6, 0 ) |
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[1] | 185 | |
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| 186 | ENDIF |
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| 187 | |
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| 188 | ENDIF |
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| 189 | |
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| 190 | END SUBROUTINE buoyancy |
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| 191 | |
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| 192 | |
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| 193 | !------------------------------------------------------------------------------! |
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[1015] | 194 | ! Call for all grid points - accelerator version |
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| 195 | !------------------------------------------------------------------------------! |
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[1179] | 196 | SUBROUTINE buoyancy_acc( var, wind_component ) |
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[1015] | 197 | |
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| 198 | USE arrays_3d |
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| 199 | USE control_parameters |
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| 200 | USE indices |
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| 201 | USE pegrid |
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| 202 | |
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| 203 | IMPLICIT NONE |
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| 204 | |
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[1179] | 205 | INTEGER :: i, j, k, wind_component |
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[1015] | 206 | #if defined( __nopointer ) |
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| 207 | REAL, DIMENSION(nzb:nzt+1,nysg:nyng,nxlg:nxrg) :: var |
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| 208 | #else |
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| 209 | REAL, DIMENSION(:,:,:), POINTER :: var |
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| 210 | #endif |
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| 211 | |
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| 212 | |
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| 213 | IF ( .NOT. sloping_surface ) THEN |
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| 214 | ! |
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| 215 | !-- Normal case: horizontal surface |
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[1179] | 216 | !$acc kernels present( nzb_s_inner, ref_state, tend, var ) |
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| 217 | !$acc loop |
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| 218 | DO i = i_left, i_right |
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| 219 | DO j = j_south, j_north |
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| 220 | !$acc loop independent vector(32) |
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| 221 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 222 | tend(k,j,i) = tend(k,j,i) + atmos_ocean_sign * g * 0.5 * ( & |
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| 223 | ( var(k,j,i) - ref_state(k) ) / ref_state(k) + & |
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| 224 | ( var(k+1,j,i) - ref_state(k+1) ) / ref_state(k+1) & |
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| 225 | ) |
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[1015] | 226 | ENDDO |
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| 227 | ENDDO |
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[1179] | 228 | ENDDO |
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| 229 | !$acc end kernels |
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[1015] | 230 | |
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| 231 | ELSE |
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| 232 | ! |
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| 233 | !-- Buoyancy term for a surface with a slope in x-direction. The equations |
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| 234 | !-- for both the u and w velocity-component contain proportionate terms. |
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| 235 | !-- Temperature field at time t=0 serves as environmental temperature. |
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| 236 | !-- Reference temperature (pt_surface) is the one at the lower left corner |
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| 237 | !-- of the total domain. |
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| 238 | IF ( wind_component == 1 ) THEN |
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| 239 | |
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| 240 | DO i = nxlu, nxr |
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| 241 | DO j = nys, nyn |
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| 242 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 243 | tend(k,j,i) = tend(k,j,i) + g * sin_alpha_surface * & |
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| 244 | 0.5 * ( ( pt(k,j,i-1) + pt(k,j,i) ) & |
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| 245 | - ( pt_slope_ref(k,i-1) + pt_slope_ref(k,i) ) & |
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| 246 | ) / pt_surface |
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| 247 | ENDDO |
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| 248 | ENDDO |
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| 249 | ENDDO |
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| 250 | |
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| 251 | ELSEIF ( wind_component == 3 ) THEN |
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| 252 | |
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| 253 | DO i = nxl, nxr |
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| 254 | DO j = nys, nyn |
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| 255 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 256 | tend(k,j,i) = tend(k,j,i) + g * cos_alpha_surface * & |
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| 257 | 0.5 * ( ( pt(k,j,i) + pt(k+1,j,i) ) & |
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| 258 | - ( pt_slope_ref(k,i) + pt_slope_ref(k+1,i) ) & |
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| 259 | ) / pt_surface |
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| 260 | ENDDO |
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| 261 | ENDDO |
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| 262 | ENDDO |
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| 263 | |
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| 264 | ELSE |
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| 265 | |
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| 266 | WRITE( message_string, * ) 'no term for component "',& |
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| 267 | wind_component,'"' |
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| 268 | CALL message( 'buoyancy', 'PA0159', 1, 2, 0, 6, 0 ) |
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| 269 | |
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| 270 | ENDIF |
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| 271 | |
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| 272 | ENDIF |
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| 273 | |
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| 274 | END SUBROUTINE buoyancy_acc |
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| 275 | |
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| 276 | |
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| 277 | !------------------------------------------------------------------------------! |
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[1] | 278 | ! Call for grid point i,j |
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[515] | 279 | ! ATTENTION: PGI-compiler creates SIGFPE if opt>1 is used! Therefore, opt=1 is |
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| 280 | ! forced by compiler-directive. |
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[1] | 281 | !------------------------------------------------------------------------------! |
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[515] | 282 | !pgi$r opt=1 |
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[1179] | 283 | SUBROUTINE buoyancy_ij( i, j, var, wind_component ) |
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[1] | 284 | |
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| 285 | USE arrays_3d |
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| 286 | USE control_parameters |
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| 287 | USE indices |
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| 288 | USE pegrid |
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| 289 | |
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| 290 | IMPLICIT NONE |
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| 291 | |
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| 292 | INTEGER :: i, j, k, pr, wind_component |
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[1010] | 293 | #if defined( __nopointer ) |
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| 294 | REAL, DIMENSION(nzb:nzt+1,nysg:nyng,nxlg:nxrg) :: var |
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| 295 | #else |
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| 296 | REAL, DIMENSION(:,:,:), POINTER :: var |
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| 297 | #endif |
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[1] | 298 | |
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| 299 | |
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| 300 | IF ( .NOT. sloping_surface ) THEN |
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| 301 | ! |
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| 302 | !-- Normal case: horizontal surface |
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[1179] | 303 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 304 | tend(k,j,i) = tend(k,j,i) + atmos_ocean_sign * g * 0.5 * ( & |
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| 305 | ( var(k,j,i) - ref_state(k) ) / ref_state(k) + & |
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| 306 | ( var(k+1,j,i) - ref_state(k+1) ) / ref_state(k+1) & |
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| 307 | ) |
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| 308 | ENDDO |
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[1] | 309 | |
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| 310 | ELSE |
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| 311 | ! |
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| 312 | !-- Buoyancy term for a surface with a slope in x-direction. The equations |
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| 313 | !-- for both the u and w velocity-component contain proportionate terms. |
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| 314 | !-- Temperature field at time t=0 serves as environmental temperature. |
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| 315 | !-- Reference temperature (pt_surface) is the one at the lower left corner |
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| 316 | !-- of the total domain. |
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| 317 | IF ( wind_component == 1 ) THEN |
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| 318 | |
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| 319 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 320 | tend(k,j,i) = tend(k,j,i) + g * sin_alpha_surface * & |
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| 321 | 0.5 * ( ( pt(k,j,i-1) + pt(k,j,i) ) & |
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| 322 | - ( pt_slope_ref(k,i-1) + pt_slope_ref(k,i) ) & |
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| 323 | ) / pt_surface |
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| 324 | ENDDO |
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| 325 | |
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| 326 | ELSEIF ( wind_component == 3 ) THEN |
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| 327 | |
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| 328 | DO k = nzb_s_inner(j,i)+1, nzt-1 |
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| 329 | tend(k,j,i) = tend(k,j,i) + g * cos_alpha_surface * & |
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| 330 | 0.5 * ( ( pt(k,j,i) + pt(k+1,j,i) ) & |
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| 331 | - ( pt_slope_ref(k,i) + pt_slope_ref(k+1,i) ) & |
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| 332 | ) / pt_surface |
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| 333 | ENDDO |
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| 334 | |
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| 335 | ELSE |
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| 336 | |
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[247] | 337 | WRITE( message_string, * ) 'no term for component "',& |
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[1] | 338 | wind_component,'"' |
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[247] | 339 | CALL message( 'buoyancy', 'PA0159', 1, 2, 0, 6, 0 ) |
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[1] | 340 | |
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| 341 | ENDIF |
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| 342 | |
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| 343 | ENDIF |
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| 344 | |
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| 345 | END SUBROUTINE buoyancy_ij |
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| 346 | |
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| 347 | |
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[1239] | 348 | SUBROUTINE calc_mean_profile( var, pr, loc ) |
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[1] | 349 | |
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| 350 | !------------------------------------------------------------------------------! |
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| 351 | ! Description: |
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| 352 | ! ------------ |
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| 353 | ! Calculate the horizontally averaged vertical temperature profile (pr=4 in case |
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[1179] | 354 | ! of potential temperature, 44 in case of virtual potential temperature, and 64 |
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| 355 | ! in case of density (ocean runs)). |
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[1] | 356 | !------------------------------------------------------------------------------! |
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| 357 | |
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[1179] | 358 | USE arrays_3d, ONLY: ref_state |
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[1] | 359 | USE control_parameters |
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| 360 | USE indices |
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| 361 | USE pegrid |
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| 362 | USE statistics |
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| 363 | |
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| 364 | IMPLICIT NONE |
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| 365 | |
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| 366 | INTEGER :: i, j, k, omp_get_thread_num, pr, tn |
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[1239] | 367 | CHARACTER (LEN=*) :: loc |
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[1010] | 368 | #if defined( __nopointer ) |
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| 369 | REAL, DIMENSION(:,:,:) :: var |
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| 370 | #else |
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| 371 | REAL, DIMENSION(:,:,:), POINTER :: var |
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| 372 | #endif |
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[1] | 373 | |
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| 374 | ! |
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[96] | 375 | !-- Computation of the horizontally averaged profile of variable var, unless |
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[1] | 376 | !-- already done by the relevant call from flow_statistics. The calculation |
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| 377 | !-- is done only for the first respective intermediate timestep in order to |
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| 378 | !-- spare communication time and to produce identical model results with jobs |
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| 379 | !-- which are calling flow_statistics at different time intervals. |
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| 380 | IF ( .NOT. flow_statistics_called .AND. & |
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| 381 | intermediate_timestep_count == 1 ) THEN |
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| 382 | |
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| 383 | ! |
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[96] | 384 | !-- Horizontal average of variable var |
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[1] | 385 | tn = 0 ! Default thread number in case of one thread |
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| 386 | !$OMP PARALLEL PRIVATE( i, j, k, tn ) |
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| 387 | !$ tn = omp_get_thread_num() |
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| 388 | sums_l(:,pr,tn) = 0.0 |
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| 389 | !$OMP DO |
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| 390 | DO i = nxl, nxr |
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| 391 | DO j = nys, nyn |
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[132] | 392 | DO k = nzb_s_inner(j,i), nzt+1 |
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[96] | 393 | sums_l(k,pr,tn) = sums_l(k,pr,tn) + var(k,j,i) |
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[1] | 394 | ENDDO |
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| 395 | ENDDO |
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| 396 | ENDDO |
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| 397 | !$OMP END PARALLEL |
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| 398 | |
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| 399 | DO i = 1, threads_per_task-1 |
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| 400 | sums_l(:,pr,0) = sums_l(:,pr,0) + sums_l(:,pr,i) |
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| 401 | ENDDO |
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| 402 | |
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| 403 | #if defined( __parallel ) |
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| 404 | |
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[622] | 405 | IF ( collective_wait ) CALL MPI_BARRIER( comm2d, ierr ) |
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[1] | 406 | CALL MPI_ALLREDUCE( sums_l(nzb,pr,0), sums(nzb,pr), nzt+2-nzb, & |
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| 407 | MPI_REAL, MPI_SUM, comm2d, ierr ) |
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| 408 | |
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| 409 | #else |
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| 410 | |
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| 411 | sums(:,pr) = sums_l(:,pr,0) |
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| 412 | |
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| 413 | #endif |
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| 414 | |
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[132] | 415 | hom(:,1,pr,0) = sums(:,pr) / ngp_2dh_s_inner(:,0) |
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[1] | 416 | |
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| 417 | ENDIF |
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| 418 | |
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[1239] | 419 | SELECT CASE ( loc ) |
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[1179] | 420 | |
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[1239] | 421 | CASE ( 'time_int' ) |
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| 422 | |
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| 423 | ref_state(:) = hom(:,1,pr,0) ! this is used in the buoyancy term |
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| 424 | |
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| 425 | |
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| 426 | CASE ( 'nudging' ) |
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| 427 | !nothing to be done |
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| 428 | |
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| 429 | |
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| 430 | CASE DEFAULT |
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| 431 | message_string = 'unknown location "' // loc // '"' |
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| 432 | CALL message( 'calc_mean_profile', 'PA0379', 1, 2, 0, 6, 0 ) |
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| 433 | |
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| 434 | END SELECT |
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| 435 | |
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| 436 | |
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| 437 | |
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[96] | 438 | END SUBROUTINE calc_mean_profile |
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[1] | 439 | |
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| 440 | END MODULE buoyancy_mod |
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