1 | SUBROUTINE check_parameters |
---|
2 | |
---|
3 | !------------------------------------------------------------------------------! |
---|
4 | ! Actual revisions: |
---|
5 | ! ----------------- |
---|
6 | ! "by_user" allowed as initializing action, -data_output_ts, |
---|
7 | ! leapfrog with non-flat topography not allowed any more, loop_optimization |
---|
8 | ! and pt_reference are checked |
---|
9 | ! |
---|
10 | ! Former revisions: |
---|
11 | ! ----------------- |
---|
12 | ! $Id: check_parameters.f90 63 2007-03-13 03:52:49Z raasch $ |
---|
13 | ! |
---|
14 | ! 20 2007-02-26 00:12:32Z raasch |
---|
15 | ! Temperature and humidity gradients at top are now calculated for nzt+1, |
---|
16 | ! top_heatflux and respective boundary condition bc_pt_t is checked |
---|
17 | ! |
---|
18 | ! RCS Log replace by Id keyword, revision history cleaned up |
---|
19 | ! |
---|
20 | ! Revision 1.61 2006/08/04 14:20:25 raasch |
---|
21 | ! do2d_unit and do3d_unit now defined as 2d-arrays, check of |
---|
22 | ! use_upstream_for_tke, default value for dt_dopts, |
---|
23 | ! generation of file header moved from routines palm and header to here |
---|
24 | ! |
---|
25 | ! Revision 1.1 1997/08/26 06:29:23 raasch |
---|
26 | ! Initial revision |
---|
27 | ! |
---|
28 | ! |
---|
29 | ! Description: |
---|
30 | ! ------------ |
---|
31 | ! Check control parameters and deduce further quantities. |
---|
32 | !------------------------------------------------------------------------------! |
---|
33 | |
---|
34 | USE arrays_3d |
---|
35 | USE constants |
---|
36 | USE control_parameters |
---|
37 | USE grid_variables |
---|
38 | USE indices |
---|
39 | USE model_1d |
---|
40 | USE netcdf_control |
---|
41 | USE particle_attributes |
---|
42 | USE pegrid |
---|
43 | USE profil_parameter |
---|
44 | USE statistics |
---|
45 | USE transpose_indices |
---|
46 | |
---|
47 | IMPLICIT NONE |
---|
48 | |
---|
49 | CHARACTER (LEN=1) :: sq |
---|
50 | CHARACTER (LEN=6) :: var |
---|
51 | CHARACTER (LEN=7) :: unit |
---|
52 | CHARACTER (LEN=8) :: date |
---|
53 | CHARACTER (LEN=10) :: time |
---|
54 | CHARACTER (LEN=100) :: action |
---|
55 | |
---|
56 | INTEGER :: i, ilen, intervals, iter, j, k, nnxh, nnyh, position, prec |
---|
57 | LOGICAL :: found, ldum |
---|
58 | REAL :: gradient, maxn, maxp |
---|
59 | |
---|
60 | |
---|
61 | ! |
---|
62 | !-- Warning, if host is not set |
---|
63 | IF ( host(1:1) == ' ' ) THEN |
---|
64 | IF ( myid == 0 ) THEN |
---|
65 | PRINT*, '+++ WARNING: check_parameters:' |
---|
66 | PRINT*, ' "host" is not set. Please check that environment', & |
---|
67 | ' variable "localhost"' |
---|
68 | PRINT*, ' is set before running PALM' |
---|
69 | ENDIF |
---|
70 | ENDIF |
---|
71 | |
---|
72 | ! |
---|
73 | !-- Generate the file header which is used as a header for most of PALM's |
---|
74 | !-- output files |
---|
75 | CALL DATE_AND_TIME( date, time ) |
---|
76 | run_date = date(7:8)//'-'//date(5:6)//'-'//date(3:4) |
---|
77 | run_time = time(1:2)//':'//time(3:4)//':'//time(5:6) |
---|
78 | |
---|
79 | WRITE ( run_description_header, '(A,2X,A,A,A,I2.2,2X,A,A,2X,A,1X,A)' ) & |
---|
80 | TRIM( version ),'run: ', TRIM( run_identifier ), '.', & |
---|
81 | runnr, 'host: ', TRIM( host ), run_date, run_time |
---|
82 | |
---|
83 | ! |
---|
84 | !-- Check the general loop optimization method |
---|
85 | IF ( loop_optimization == 'default' ) THEN |
---|
86 | IF ( host(1:3) == 'nec' ) THEN |
---|
87 | loop_optimization = 'vector' |
---|
88 | ELSE |
---|
89 | loop_optimization = 'cache' |
---|
90 | ENDIF |
---|
91 | ENDIF |
---|
92 | IF ( loop_optimization /= 'noopt' .AND. loop_optimization /= 'cache' & |
---|
93 | .AND. loop_optimization /= 'vector' ) THEN |
---|
94 | IF ( myid == 0 ) THEN |
---|
95 | PRINT*, '+++ check_parameters:' |
---|
96 | PRINT*, ' illegal value given for loop_optimization: ', & |
---|
97 | TRIM( loop_optimization ) |
---|
98 | ENDIF |
---|
99 | CALL local_stop |
---|
100 | ENDIF |
---|
101 | |
---|
102 | ! |
---|
103 | !-- Check topography setting (check for illegal parameter combinations) |
---|
104 | IF ( topography /= 'flat' ) THEN |
---|
105 | action = ' ' |
---|
106 | IF ( scalar_advec /= 'pw-scheme' ) THEN |
---|
107 | WRITE( action, '(A,A)' ) 'scalar_advec = ', scalar_advec |
---|
108 | ENDIF |
---|
109 | IF ( momentum_advec /= 'pw-scheme' ) THEN |
---|
110 | WRITE( action, '(A,A)' ) 'momentum_advec = ', momentum_advec |
---|
111 | ENDIF |
---|
112 | IF ( timestep_scheme(1:8) == 'leapfrog' ) THEN |
---|
113 | WRITE( action, '(A,A)' ) 'timestep_scheme = ', timestep_scheme |
---|
114 | ENDIF |
---|
115 | IF ( psolver == 'multigrid' .OR. psolver == 'sor' ) THEN |
---|
116 | WRITE( action, '(A,A)' ) 'psolver = ', psolver |
---|
117 | ENDIF |
---|
118 | IF ( sloping_surface ) THEN |
---|
119 | WRITE( action, '(A)' ) 'sloping surface = .TRUE.' |
---|
120 | ENDIF |
---|
121 | IF ( galilei_transformation ) THEN |
---|
122 | WRITE( action, '(A)' ) 'galilei_transformation = .TRUE.' |
---|
123 | ENDIF |
---|
124 | IF ( cloud_physics ) THEN |
---|
125 | WRITE( action, '(A)' ) 'cloud_physics = .TRUE.' |
---|
126 | ENDIF |
---|
127 | IF ( cloud_droplets ) THEN |
---|
128 | WRITE( action, '(A)' ) 'cloud_droplets = .TRUE.' |
---|
129 | ENDIF |
---|
130 | IF ( moisture ) THEN |
---|
131 | WRITE( action, '(A)' ) 'moisture = .TRUE.' |
---|
132 | ENDIF |
---|
133 | IF ( .NOT. prandtl_layer ) THEN |
---|
134 | WRITE( action, '(A)' ) 'prandtl_layer = .FALSE.' |
---|
135 | ENDIF |
---|
136 | IF ( action /= ' ' ) THEN |
---|
137 | IF ( myid == 0 ) THEN |
---|
138 | PRINT*, '+++ check_parameters:' |
---|
139 | PRINT*, ' a non-flat topography does not allow ', TRIM( action ) |
---|
140 | ENDIF |
---|
141 | CALL local_stop |
---|
142 | ENDIF |
---|
143 | ENDIF |
---|
144 | ! |
---|
145 | !-- Check whether there are any illegal values |
---|
146 | !-- Pressure solver: |
---|
147 | IF ( psolver /= 'poisfft' .AND. psolver /= 'poisfft_hybrid' .AND. & |
---|
148 | psolver /= 'sor' .AND. psolver /= 'multigrid' ) THEN |
---|
149 | IF ( myid == 0 ) THEN |
---|
150 | PRINT*, '+++ check_parameters:' |
---|
151 | PRINT*, ' unknown solver for perturbation pressure: psolver=', & |
---|
152 | psolver |
---|
153 | ENDIF |
---|
154 | CALL local_stop |
---|
155 | ENDIF |
---|
156 | |
---|
157 | #if defined( __parallel ) |
---|
158 | IF ( psolver == 'poisfft_hybrid' .AND. pdims(2) /= 1 ) THEN |
---|
159 | IF ( myid == 0 ) THEN |
---|
160 | PRINT*, '+++ check_parameters:' |
---|
161 | PRINT*, ' psolver="', TRIM( psolver ), '" only works for a ', & |
---|
162 | '1d domain-decomposition along x' |
---|
163 | PRINT*, ' please do not set npey/=1 in the parameter file' |
---|
164 | ENDIF |
---|
165 | CALL local_stop |
---|
166 | ENDIF |
---|
167 | IF ( ( psolver == 'poisfft_hybrid' .OR. psolver == 'multigrid' ) .AND. & |
---|
168 | ( nxra > nxr .OR. nyna > nyn .OR. nza > nz ) ) THEN |
---|
169 | IF ( myid == 0 ) THEN |
---|
170 | PRINT*, '+++ check_parameters:' |
---|
171 | PRINT*, ' psolver="', TRIM( psolver ), '" does not work for ', & |
---|
172 | 'subdomains with unequal size' |
---|
173 | PRINT*, ' please set grid_matching = ''strict'' in the parameter',& |
---|
174 | ' file' |
---|
175 | ENDIF |
---|
176 | CALL local_stop |
---|
177 | ENDIF |
---|
178 | #else |
---|
179 | IF ( psolver == 'poisfft_hybrid' ) THEN |
---|
180 | IF ( myid == 0 ) THEN |
---|
181 | PRINT*, '+++ check_parameters:' |
---|
182 | PRINT*, ' psolver="', TRIM( psolver ), '" only works for a ', & |
---|
183 | 'parallel environment' |
---|
184 | ENDIF |
---|
185 | CALL local_stop |
---|
186 | ENDIF |
---|
187 | #endif |
---|
188 | |
---|
189 | IF ( psolver == 'multigrid' ) THEN |
---|
190 | IF ( cycle_mg == 'w' ) THEN |
---|
191 | gamma_mg = 2 |
---|
192 | ELSEIF ( cycle_mg == 'v' ) THEN |
---|
193 | gamma_mg = 1 |
---|
194 | ELSE |
---|
195 | IF ( myid == 0 ) THEN |
---|
196 | PRINT*, '+++ check_parameters:' |
---|
197 | PRINT*, ' unknown multigrid cycle: cycle_mg=', cycle_mg |
---|
198 | ENDIF |
---|
199 | CALL local_stop |
---|
200 | ENDIF |
---|
201 | ENDIF |
---|
202 | |
---|
203 | IF ( fft_method /= 'singleton-algorithm' .AND. & |
---|
204 | fft_method /= 'temperton-algorithm' .AND. & |
---|
205 | fft_method /= 'system-specific' ) THEN |
---|
206 | IF ( myid == 0 ) THEN |
---|
207 | PRINT*, '+++ check_parameters:' |
---|
208 | PRINT*, ' unknown fft-algorithm: fft_method=', fft_method |
---|
209 | ENDIF |
---|
210 | CALL local_stop |
---|
211 | ENDIF |
---|
212 | |
---|
213 | ! |
---|
214 | !-- Advection schemes: |
---|
215 | IF ( momentum_advec /= 'pw-scheme' .AND. momentum_advec /= 'ups-scheme' ) & |
---|
216 | THEN |
---|
217 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: unknown advection ', & |
---|
218 | 'scheme: momentum_advec=', momentum_advec |
---|
219 | CALL local_stop |
---|
220 | ENDIF |
---|
221 | IF ( ( momentum_advec == 'ups-scheme' .OR. scalar_advec == 'ups-scheme' )& |
---|
222 | .AND. timestep_scheme /= 'euler' ) THEN |
---|
223 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: momentum_advec=', & |
---|
224 | momentum_advec, ' is not allowed with ', & |
---|
225 | 'timestep_scheme=', timestep_scheme |
---|
226 | CALL local_stop |
---|
227 | ENDIF |
---|
228 | |
---|
229 | IF ( scalar_advec /= 'pw-scheme' .AND. scalar_advec /= 'bc-scheme' .AND.& |
---|
230 | scalar_advec /= 'ups-scheme' ) THEN |
---|
231 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: unknown advection ', & |
---|
232 | 'scheme: scalar_advec=', scalar_advec |
---|
233 | CALL local_stop |
---|
234 | ENDIF |
---|
235 | |
---|
236 | IF ( use_sgs_for_particles .AND. .NOT. use_upstream_for_tke ) THEN |
---|
237 | use_upstream_for_tke = .TRUE. |
---|
238 | IF ( myid == 0 ) THEN |
---|
239 | PRINT*, '+++ WARNING: check_parameters: use_upstream_for_tke set ', & |
---|
240 | '.TRUE. because use_sgs_for_particles = .TRUE.' |
---|
241 | ENDIF |
---|
242 | ENDIF |
---|
243 | |
---|
244 | IF ( use_upstream_for_tke .AND. timestep_scheme(1:8) == 'leapfrog' ) THEN |
---|
245 | IF ( myid == 0 ) THEN |
---|
246 | PRINT*, '+++ check_parameters: use_upstream_for_tke = .TRUE. ', & |
---|
247 | 'not allowed with timestep_scheme=', timestep_scheme |
---|
248 | ENDIF |
---|
249 | CALL local_stop |
---|
250 | ENDIF |
---|
251 | |
---|
252 | ! |
---|
253 | !-- Timestep schemes: |
---|
254 | SELECT CASE ( TRIM( timestep_scheme ) ) |
---|
255 | |
---|
256 | CASE ( 'euler' ) |
---|
257 | intermediate_timestep_count_max = 1 |
---|
258 | asselin_filter_factor = 0.0 |
---|
259 | |
---|
260 | CASE ( 'leapfrog', 'leapfrog+euler' ) |
---|
261 | intermediate_timestep_count_max = 1 |
---|
262 | |
---|
263 | CASE ( 'runge-kutta-2' ) |
---|
264 | intermediate_timestep_count_max = 2 |
---|
265 | asselin_filter_factor = 0.0 |
---|
266 | |
---|
267 | CASE ( 'runge-kutta-3' ) |
---|
268 | intermediate_timestep_count_max = 3 |
---|
269 | asselin_filter_factor = 0.0 |
---|
270 | |
---|
271 | CASE DEFAULT |
---|
272 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: unknown timestep ',& |
---|
273 | 'scheme: timestep_scheme=', timestep_scheme |
---|
274 | CALL local_stop |
---|
275 | |
---|
276 | END SELECT |
---|
277 | |
---|
278 | IF ( scalar_advec == 'ups-scheme' .AND. timestep_scheme(1:5) == 'runge' )& |
---|
279 | THEN |
---|
280 | IF ( myid == 0 ) THEN |
---|
281 | PRINT*, '+++ check_parameters: scalar advection scheme "', & |
---|
282 | TRIM( scalar_advec ), '"' |
---|
283 | PRINT*, ' does not work with timestep_scheme "', & |
---|
284 | TRIM( timestep_scheme ), '"' |
---|
285 | ENDIF |
---|
286 | CALL local_stop |
---|
287 | ENDIF |
---|
288 | |
---|
289 | IF ( momentum_advec /= 'pw-scheme' .AND. timestep_scheme(1:5) == 'runge' ) & |
---|
290 | THEN |
---|
291 | IF ( myid == 0 ) THEN |
---|
292 | PRINT*, '+++ check_parameters: momentum advection scheme "', & |
---|
293 | TRIM( momentum_advec ), '"' |
---|
294 | PRINT*, ' does not work with timestep_scheme "', & |
---|
295 | TRIM( timestep_scheme ), '"' |
---|
296 | ENDIF |
---|
297 | CALL local_stop |
---|
298 | ENDIF |
---|
299 | |
---|
300 | |
---|
301 | IF ( initializing_actions == ' ' ) THEN |
---|
302 | IF ( myid == 0 ) THEN |
---|
303 | PRINT*, '+++ check parameters:' |
---|
304 | PRINT*, ' no value found for initializing_actions' |
---|
305 | ENDIF |
---|
306 | CALL local_stop |
---|
307 | ENDIF |
---|
308 | |
---|
309 | IF ( TRIM( initializing_actions ) /= 'read_restart_data' ) THEN |
---|
310 | ! |
---|
311 | !-- No model continuation run; several initialising actions are possible |
---|
312 | action = initializing_actions |
---|
313 | DO WHILE ( TRIM( action ) /= '' ) |
---|
314 | position = INDEX( action, ' ' ) |
---|
315 | SELECT CASE ( action(1:position-1) ) |
---|
316 | |
---|
317 | CASE ( 'set_constant_profiles', 'set_1d-model_profiles', & |
---|
318 | 'by_user', 'initialize_vortex', 'initialize_ptanom' ) |
---|
319 | action = action(position+1:) |
---|
320 | |
---|
321 | CASE DEFAULT |
---|
322 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: initializi', & |
---|
323 | 'ng_action unkown or not allowed: action = "', & |
---|
324 | TRIM(action), '"' |
---|
325 | CALL local_stop |
---|
326 | |
---|
327 | END SELECT |
---|
328 | ENDDO |
---|
329 | ENDIF |
---|
330 | IF ( INDEX( initializing_actions, 'set_constant_profiles' ) /= 0 .AND. & |
---|
331 | INDEX( initializing_actions, 'set_1d-model_profiles' ) /= 0 ) THEN |
---|
332 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: initializing_actions', & |
---|
333 | '"set_constant_profiles" and "set_1d-model_profiles" are not', & |
---|
334 | ' allowed simultaneously' |
---|
335 | CALL local_stop |
---|
336 | ENDIF |
---|
337 | IF ( INDEX( initializing_actions, 'set_constant_profiles' ) /= 0 .AND. & |
---|
338 | INDEX( initializing_actions, 'by_user' ) /= 0 ) THEN |
---|
339 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: initializing_actions', & |
---|
340 | '"set_constant_profiles" and "by_user" are not', & |
---|
341 | ' allowed simultaneously' |
---|
342 | CALL local_stop |
---|
343 | ENDIF |
---|
344 | IF ( INDEX( initializing_actions, 'by_user' ) /= 0 .AND. & |
---|
345 | INDEX( initializing_actions, 'set_1d-model_profiles' ) /= 0 ) THEN |
---|
346 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: initializing_actions', & |
---|
347 | '"by_user" and "set_1d-model_profiles" are not', & |
---|
348 | ' allowed simultaneously' |
---|
349 | CALL local_stop |
---|
350 | ENDIF |
---|
351 | |
---|
352 | IF ( cloud_physics .AND. .NOT. moisture ) THEN |
---|
353 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: moisture =', & |
---|
354 | moisture, ' is not allowed with ', & |
---|
355 | 'cloud_physics=', cloud_physics |
---|
356 | CALL local_stop |
---|
357 | ENDIF |
---|
358 | |
---|
359 | IF ( moisture .AND. sloping_surface ) THEN |
---|
360 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: moisture = TRUE', & |
---|
361 | 'and hang = TRUE are not', & |
---|
362 | ' allowed simultaneously' |
---|
363 | CALL local_stop |
---|
364 | ENDIF |
---|
365 | |
---|
366 | IF ( moisture .AND. scalar_advec == 'ups-scheme' ) THEN |
---|
367 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: UPS-scheme', & |
---|
368 | 'is not implemented for moisture' |
---|
369 | CALL local_stop |
---|
370 | ENDIF |
---|
371 | |
---|
372 | IF ( passive_scalar .AND. moisture ) THEN |
---|
373 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: moisture = TRUE and', & |
---|
374 | 'passive_scalar = TRUE is not allowed ', & |
---|
375 | 'simultaneously' |
---|
376 | CALL local_stop |
---|
377 | ENDIF |
---|
378 | |
---|
379 | IF ( passive_scalar .AND. scalar_advec == 'ups-scheme' ) THEN |
---|
380 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: UPS-scheme', & |
---|
381 | 'is not implemented for passive_scalar' |
---|
382 | CALL local_stop |
---|
383 | ENDIF |
---|
384 | |
---|
385 | IF ( grid_matching /= 'strict' .AND. grid_matching /= 'match' ) THEN |
---|
386 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: illegal value "', & |
---|
387 | TRIM( grid_matching ), & |
---|
388 | '" found for parameter grid_matching' |
---|
389 | CALL local_stop |
---|
390 | ENDIF |
---|
391 | |
---|
392 | ! |
---|
393 | !-- In case of no model continuation run, check initialising parameters and |
---|
394 | !-- deduce further quantities |
---|
395 | IF ( TRIM( initializing_actions ) /= 'read_restart_data' ) THEN |
---|
396 | |
---|
397 | ! |
---|
398 | !-- Initial profiles for 1D and 3D model, respectively |
---|
399 | u_init = ug_surface |
---|
400 | v_init = vg_surface |
---|
401 | pt_init = pt_surface |
---|
402 | IF ( moisture ) q_init = q_surface |
---|
403 | IF ( passive_scalar ) q_init = s_surface |
---|
404 | |
---|
405 | ! |
---|
406 | !-- |
---|
407 | !-- If required, compute initial profile of the geostrophic wind |
---|
408 | !-- (component ug) |
---|
409 | i = 1 |
---|
410 | gradient = 0.0 |
---|
411 | ug_vertical_gradient_level_ind(1) = 0 |
---|
412 | ug(0) = ug_surface |
---|
413 | DO k = 1, nzt+1 |
---|
414 | IF ( ug_vertical_gradient_level(i) < zu(k) .AND. & |
---|
415 | ug_vertical_gradient_level(i) >= 0.0 ) THEN |
---|
416 | gradient = ug_vertical_gradient(i) / 100.0 |
---|
417 | ug_vertical_gradient_level_ind(i) = k - 1 |
---|
418 | i = i + 1 |
---|
419 | IF ( i > 10 ) THEN |
---|
420 | IF ( myid == 0 ) THEN |
---|
421 | PRINT*, '+++ check_parameters: upper bound 10 of array', & |
---|
422 | ' "ug_vertical_gradient_level_ind" exceeded' |
---|
423 | ENDIF |
---|
424 | CALL local_stop |
---|
425 | ENDIF |
---|
426 | ENDIF |
---|
427 | IF ( gradient /= 0.0 ) THEN |
---|
428 | IF ( k /= 1 ) THEN |
---|
429 | ug(k) = ug(k-1) + dzu(k) * gradient |
---|
430 | ELSE |
---|
431 | ug(k) = ug_surface + 0.5 * dzu(k) * gradient |
---|
432 | ENDIF |
---|
433 | ELSE |
---|
434 | ug(k) = ug(k-1) |
---|
435 | ENDIF |
---|
436 | ENDDO |
---|
437 | |
---|
438 | u_init = ug |
---|
439 | |
---|
440 | ! |
---|
441 | !-- In case of no given gradients for ug, choose a vanishing gradient |
---|
442 | IF ( ug_vertical_gradient_level(1) == -1.0 ) THEN |
---|
443 | ug_vertical_gradient_level(1) = 0.0 |
---|
444 | ENDIF |
---|
445 | |
---|
446 | ! |
---|
447 | !-- |
---|
448 | !-- If required, compute initial profile of the geostrophic wind |
---|
449 | !-- (component vg) |
---|
450 | i = 1 |
---|
451 | gradient = 0.0 |
---|
452 | vg_vertical_gradient_level_ind(1) = 0 |
---|
453 | vg(0) = vg_surface |
---|
454 | DO k = 1, nzt+1 |
---|
455 | IF ( vg_vertical_gradient_level(i) < zu(k) .AND. & |
---|
456 | vg_vertical_gradient_level(i) >= 0.0 ) THEN |
---|
457 | gradient = vg_vertical_gradient(i) / 100.0 |
---|
458 | vg_vertical_gradient_level_ind(i) = k - 1 |
---|
459 | i = i + 1 |
---|
460 | IF ( i > 10 ) THEN |
---|
461 | IF ( myid == 0 ) THEN |
---|
462 | PRINT*, '+++ check_parameters: upper bound 10 of array', & |
---|
463 | ' "vg_vertical_gradient_level_ind" exceeded' |
---|
464 | ENDIF |
---|
465 | CALL local_stop |
---|
466 | ENDIF |
---|
467 | ENDIF |
---|
468 | IF ( gradient /= 0.0 ) THEN |
---|
469 | IF ( k /= 1 ) THEN |
---|
470 | vg(k) = vg(k-1) + dzu(k) * gradient |
---|
471 | ELSE |
---|
472 | vg(k) = vg_surface + 0.5 * dzu(k) * gradient |
---|
473 | ENDIF |
---|
474 | ELSE |
---|
475 | vg(k) = vg(k-1) |
---|
476 | ENDIF |
---|
477 | ENDDO |
---|
478 | |
---|
479 | v_init = vg |
---|
480 | |
---|
481 | ! |
---|
482 | !-- In case of no given gradients for vg, choose a vanishing gradient |
---|
483 | IF ( vg_vertical_gradient_level(1) == -1.0 ) THEN |
---|
484 | vg_vertical_gradient_level(1) = 0.0 |
---|
485 | ENDIF |
---|
486 | |
---|
487 | ! |
---|
488 | !-- If required, compute initial temperature profile using the given |
---|
489 | !-- temperature gradient |
---|
490 | i = 1 |
---|
491 | gradient = 0.0 |
---|
492 | pt_vertical_gradient_level_ind(1) = 0 |
---|
493 | DO k = 1, nzt+1 |
---|
494 | IF ( pt_vertical_gradient_level(i) < zu(k) .AND. & |
---|
495 | pt_vertical_gradient_level(i) >= 0.0 ) THEN |
---|
496 | gradient = pt_vertical_gradient(i) / 100.0 |
---|
497 | pt_vertical_gradient_level_ind(i) = k - 1 |
---|
498 | i = i + 1 |
---|
499 | IF ( i > 10 ) THEN |
---|
500 | IF ( myid == 0 ) THEN |
---|
501 | PRINT*, '+++ check_parameters: upper bound 10 of array', & |
---|
502 | ' "pt_vertical_gradient_level_ind" exceeded' |
---|
503 | ENDIF |
---|
504 | CALL local_stop |
---|
505 | ENDIF |
---|
506 | ENDIF |
---|
507 | IF ( gradient /= 0.0 ) THEN |
---|
508 | IF ( k /= 1 ) THEN |
---|
509 | pt_init(k) = pt_init(k-1) + dzu(k) * gradient |
---|
510 | ELSE |
---|
511 | pt_init(k) = pt_init(k-1) + 0.5 * dzu(k) * gradient |
---|
512 | ENDIF |
---|
513 | ELSE |
---|
514 | pt_init(k) = pt_init(k-1) |
---|
515 | ENDIF |
---|
516 | ENDDO |
---|
517 | |
---|
518 | ! |
---|
519 | !-- In case of no given temperature gradients, choose gradient of neutral |
---|
520 | !-- stratification |
---|
521 | IF ( pt_vertical_gradient_level(1) == -1.0 ) THEN |
---|
522 | pt_vertical_gradient_level(1) = 0.0 |
---|
523 | ENDIF |
---|
524 | |
---|
525 | ! |
---|
526 | !-- Store temperature gradient at the top boundary for possile Neumann |
---|
527 | !-- boundary condition |
---|
528 | bc_pt_t_val = ( pt_init(nzt+1) - pt_init(nzt) ) / dzu(nzt+1) |
---|
529 | |
---|
530 | ! |
---|
531 | !-- If required, compute initial humidity or scalar profile using the given |
---|
532 | !-- humidity/scalar gradient. In case of scalar transport, initially store |
---|
533 | !-- values of the scalar parameters on humidity parameters |
---|
534 | IF ( passive_scalar ) THEN |
---|
535 | bc_q_b = bc_s_b |
---|
536 | bc_q_t = bc_s_t |
---|
537 | q_surface = s_surface |
---|
538 | q_surface_initial_change = s_surface_initial_change |
---|
539 | q_vertical_gradient = s_vertical_gradient |
---|
540 | q_vertical_gradient_level = s_vertical_gradient_level |
---|
541 | surface_waterflux = surface_scalarflux |
---|
542 | ENDIF |
---|
543 | |
---|
544 | IF ( moisture .OR. passive_scalar ) THEN |
---|
545 | |
---|
546 | i = 1 |
---|
547 | gradient = 0.0 |
---|
548 | q_vertical_gradient_level_ind(1) = 0 |
---|
549 | DO k = 1, nzt+1 |
---|
550 | IF ( q_vertical_gradient_level(i) < zu(k) .AND. & |
---|
551 | q_vertical_gradient_level(i) >= 0.0 ) THEN |
---|
552 | gradient = q_vertical_gradient(i) / 100.0 |
---|
553 | q_vertical_gradient_level_ind(i) = k - 1 |
---|
554 | i = i + 1 |
---|
555 | IF ( i > 10 ) THEN |
---|
556 | IF ( myid == 0 ) THEN |
---|
557 | PRINT*, '+++ check_parameters: upper bound 10 of arr', & |
---|
558 | 'ay "q_vertical_gradient_level_ind" exceeded' |
---|
559 | ENDIF |
---|
560 | CALL local_stop |
---|
561 | ENDIF |
---|
562 | ENDIF |
---|
563 | IF ( gradient /= 0.0 ) THEN |
---|
564 | IF ( k /= 1 ) THEN |
---|
565 | q_init(k) = q_init(k-1) + dzu(k) * gradient |
---|
566 | ELSE |
---|
567 | q_init(k) = q_init(k-1) + 0.5 * dzu(k) * gradient |
---|
568 | ENDIF |
---|
569 | ELSE |
---|
570 | q_init(k) = q_init(k-1) |
---|
571 | ENDIF |
---|
572 | ENDDO |
---|
573 | |
---|
574 | ! |
---|
575 | !-- In case of no given humidity gradients, choose zero gradient |
---|
576 | !-- conditions |
---|
577 | IF ( q_vertical_gradient_level(1) == -1.0 ) THEN |
---|
578 | q_vertical_gradient_level(1) = 0.0 |
---|
579 | ENDIF |
---|
580 | |
---|
581 | ! |
---|
582 | !-- Store humidity gradient at the top boundary for possile Neumann |
---|
583 | !-- boundary condition |
---|
584 | bc_q_t_val = ( q_init(nzt+1) - q_init(nzt) ) / dzu(nzt+1) |
---|
585 | |
---|
586 | ENDIF |
---|
587 | |
---|
588 | ENDIF |
---|
589 | |
---|
590 | ! |
---|
591 | !-- Compute Coriolis parameter |
---|
592 | f = 2.0 * omega * SIN( phi / 180.0 * pi ) |
---|
593 | fs = 2.0 * omega * COS( phi / 180.0 * pi ) |
---|
594 | |
---|
595 | ! |
---|
596 | !-- Reference temperature to be used in buoyancy terms |
---|
597 | IF ( pt_reference /= 9999999.9 ) use_pt_reference = .TRUE. |
---|
598 | |
---|
599 | ! |
---|
600 | !-- In case of a given slope, compute the relevant quantities |
---|
601 | IF ( alpha_surface /= 0.0 ) THEN |
---|
602 | IF ( ABS( alpha_surface ) > 90.0 ) THEN |
---|
603 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: ABS( alpha_surface',& |
---|
604 | '=', alpha_surface, ' ) must be < 90.0' |
---|
605 | CALL local_stop |
---|
606 | ENDIF |
---|
607 | sloping_surface = .TRUE. |
---|
608 | cos_alpha_surface = COS( alpha_surface / 180.0 * pi ) |
---|
609 | sin_alpha_surface = SIN( alpha_surface / 180.0 * pi ) |
---|
610 | ENDIF |
---|
611 | |
---|
612 | ! |
---|
613 | !-- Check time step and cfl_factor |
---|
614 | IF ( dt /= -1.0 ) THEN |
---|
615 | IF ( dt <= 0.0 .AND. dt /= -1.0 ) THEN |
---|
616 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: dt=', dt, ' <= 0.0' |
---|
617 | CALL local_stop |
---|
618 | ENDIF |
---|
619 | dt_3d = dt |
---|
620 | dt_fixed = .TRUE. |
---|
621 | ENDIF |
---|
622 | |
---|
623 | IF ( cfl_factor <= 0.0 .OR. cfl_factor > 1.0 ) THEN |
---|
624 | IF ( cfl_factor == -1.0 ) THEN |
---|
625 | IF ( momentum_advec == 'ups-scheme' .OR. & |
---|
626 | scalar_advec == 'ups-scheme' ) THEN |
---|
627 | cfl_factor = 0.8 |
---|
628 | ELSE |
---|
629 | IF ( timestep_scheme == 'runge-kutta-2' ) THEN |
---|
630 | cfl_factor = 0.8 |
---|
631 | ELSEIF ( timestep_scheme == 'runge-kutta-3' ) THEN |
---|
632 | cfl_factor = 0.9 |
---|
633 | ELSE |
---|
634 | cfl_factor = 0.1 |
---|
635 | ENDIF |
---|
636 | ENDIF |
---|
637 | ELSE |
---|
638 | IF ( myid == 0 ) THEN |
---|
639 | PRINT*, '+++ check_parameters: cfl_factor=', cfl_factor, & |
---|
640 | ' out of range' |
---|
641 | PRINT*, '+++ 0.0 < cfl_factor <= 1.0 is required' |
---|
642 | ENDIF |
---|
643 | CALL local_stop |
---|
644 | ENDIF |
---|
645 | ENDIF |
---|
646 | |
---|
647 | ! |
---|
648 | !-- Store simulated time at begin |
---|
649 | simulated_time_at_begin = simulated_time |
---|
650 | |
---|
651 | ! |
---|
652 | !-- Set wind speed in the Galilei-transformed system |
---|
653 | IF ( galilei_transformation ) THEN |
---|
654 | IF ( use_ug_for_galilei_tr .AND. & |
---|
655 | ug_vertical_gradient_level(1) == 0.0 .AND. & |
---|
656 | vg_vertical_gradient_level(1) == 0.0 ) THEN |
---|
657 | u_gtrans = ug_surface |
---|
658 | v_gtrans = vg_surface |
---|
659 | ELSEIF ( use_ug_for_galilei_tr .AND. & |
---|
660 | ug_vertical_gradient_level(1) /= 0.0 ) THEN |
---|
661 | IF ( myid == 0 ) THEN |
---|
662 | PRINT*, '+++ check_parameters:' |
---|
663 | PRINT*, ' baroclinicity (ug) not allowed' |
---|
664 | PRINT*, ' simultaneously with galilei transformation' |
---|
665 | ENDIF |
---|
666 | CALL local_stop |
---|
667 | ELSEIF ( use_ug_for_galilei_tr .AND. & |
---|
668 | vg_vertical_gradient_level(1) /= 0.0 ) THEN |
---|
669 | IF ( myid == 0 ) THEN |
---|
670 | PRINT*, '+++ check_parameters:' |
---|
671 | PRINT*, ' baroclinicity (vg) not allowed' |
---|
672 | PRINT*, ' simultaneously with galilei transformation' |
---|
673 | ENDIF |
---|
674 | CALL local_stop |
---|
675 | ELSE |
---|
676 | IF ( myid == 0 ) THEN |
---|
677 | PRINT*, '+++ WARNING: check_parameters:' |
---|
678 | PRINT*, ' variable translation speed used for galilei-tran' // & |
---|
679 | 'sformation, which' |
---|
680 | PRINT*, ' may cause instabilities in stably stratified regions' |
---|
681 | ENDIF |
---|
682 | ENDIF |
---|
683 | ENDIF |
---|
684 | |
---|
685 | ! |
---|
686 | !-- In case of using a prandtl-layer, calculated (or prescribed) surface |
---|
687 | !-- fluxes have to be used in the diffusion-terms |
---|
688 | IF ( prandtl_layer ) use_surface_fluxes = .TRUE. |
---|
689 | |
---|
690 | ! |
---|
691 | !-- Check boundary conditions and set internal variables: |
---|
692 | !-- Lateral boundary conditions |
---|
693 | IF ( bc_lr /= 'cyclic' .AND. bc_lr /= 'dirichlet/neumann' .AND. & |
---|
694 | bc_lr /= 'neumann/dirichlet' ) THEN |
---|
695 | IF ( myid == 0 ) THEN |
---|
696 | PRINT*, '+++ check_parameters:' |
---|
697 | PRINT*, ' unknown boundary condition: bc_lr = ', bc_lr |
---|
698 | ENDIF |
---|
699 | CALL local_stop |
---|
700 | ENDIF |
---|
701 | IF ( bc_ns /= 'cyclic' .AND. bc_ns /= 'dirichlet/neumann' .AND. & |
---|
702 | bc_ns /= 'neumann/dirichlet' ) THEN |
---|
703 | IF ( myid == 0 ) THEN |
---|
704 | PRINT*, '+++ check_parameters:' |
---|
705 | PRINT*, ' unknown boundary condition: bc_ns = ', bc_ns |
---|
706 | ENDIF |
---|
707 | CALL local_stop |
---|
708 | ENDIF |
---|
709 | |
---|
710 | ! |
---|
711 | !-- Non-cyclic lateral boundaries require the multigrid method and Piascek- |
---|
712 | !-- Willimas advection scheme. Several schemes and tools do not work with |
---|
713 | !-- non-cyclic boundary conditions. |
---|
714 | IF ( bc_lr /= 'cyclic' .OR. bc_ns /= 'cyclic' ) THEN |
---|
715 | IF ( psolver /= 'multigrid' ) THEN |
---|
716 | IF ( myid == 0 ) THEN |
---|
717 | PRINT*, '+++ check_parameters:' |
---|
718 | PRINT*, ' non-cyclic lateral boundaries do not allow', & |
---|
719 | ' psolver = ', psolver |
---|
720 | ENDIF |
---|
721 | CALL local_stop |
---|
722 | ENDIF |
---|
723 | IF ( momentum_advec /= 'pw-scheme' ) THEN |
---|
724 | IF ( myid == 0 ) THEN |
---|
725 | PRINT*, '+++ check_parameters:' |
---|
726 | PRINT*, ' non-cyclic lateral boundaries do not allow', & |
---|
727 | ' momentum_advec = ', momentum_advec |
---|
728 | ENDIF |
---|
729 | CALL local_stop |
---|
730 | ENDIF |
---|
731 | IF ( scalar_advec /= 'pw-scheme' ) THEN |
---|
732 | IF ( myid == 0 ) THEN |
---|
733 | PRINT*, '+++ check_parameters:' |
---|
734 | PRINT*, ' non-cyclic lateral boundaries do not allow', & |
---|
735 | ' scalar_advec = ', scalar_advec |
---|
736 | ENDIF |
---|
737 | CALL local_stop |
---|
738 | ENDIF |
---|
739 | IF ( galilei_transformation ) THEN |
---|
740 | IF ( myid == 0 ) THEN |
---|
741 | PRINT*, '+++ check_parameters:' |
---|
742 | PRINT*, ' non-cyclic lateral boundaries do not allow', & |
---|
743 | ' galilei_transformation = .T.' |
---|
744 | ENDIF |
---|
745 | CALL local_stop |
---|
746 | ENDIF |
---|
747 | IF ( conserve_volume_flow ) THEN |
---|
748 | IF ( myid == 0 ) THEN |
---|
749 | PRINT*, '+++ check_parameters:' |
---|
750 | PRINT*, ' non-cyclic lateral boundaries do not allow', & |
---|
751 | ' conserve_volume_flow = .T.' |
---|
752 | ENDIF |
---|
753 | CALL local_stop |
---|
754 | ENDIF |
---|
755 | ENDIF |
---|
756 | |
---|
757 | ! |
---|
758 | !-- Bottom boundary condition for the turbulent Kinetic energy |
---|
759 | IF ( bc_e_b == 'neumann' ) THEN |
---|
760 | ibc_e_b = 1 |
---|
761 | IF ( adjust_mixing_length .AND. prandtl_layer ) THEN |
---|
762 | IF ( myid == 0 ) THEN |
---|
763 | PRINT*, '+++ WARNING: check_parameters:' |
---|
764 | PRINT*, ' adjust_mixing_length = TRUE and bc_e_b = ', bc_e_b |
---|
765 | ENDIF |
---|
766 | ENDIF |
---|
767 | ELSEIF ( bc_e_b == '(u*)**2+neumann' ) THEN |
---|
768 | ibc_e_b = 2 |
---|
769 | IF ( .NOT. adjust_mixing_length .AND. prandtl_layer ) THEN |
---|
770 | IF ( myid == 0 ) THEN |
---|
771 | PRINT*, '+++ WARNING: check_parameters:' |
---|
772 | PRINT*, ' adjust_mixing_length = FALSE and bc_e_b = ', bc_e_b |
---|
773 | ENDIF |
---|
774 | ENDIF |
---|
775 | IF ( .NOT. prandtl_layer ) THEN |
---|
776 | bc_e_b = 'neumann' |
---|
777 | ibc_e_b = 1 |
---|
778 | IF ( myid == 0 ) THEN |
---|
779 | PRINT*, '+++ WARNING: check_parameters:' |
---|
780 | PRINT*, ' boundary condition bc_e_b changed to "', bc_e_b, '"' |
---|
781 | ENDIF |
---|
782 | ENDIF |
---|
783 | ELSE |
---|
784 | IF ( myid == 0 ) THEN |
---|
785 | PRINT*, '+++ check_parameters:' |
---|
786 | PRINT*, ' unknown boundary condition: bc_e_b = ', bc_e_b |
---|
787 | ENDIF |
---|
788 | CALL local_stop |
---|
789 | ENDIF |
---|
790 | |
---|
791 | ! |
---|
792 | !-- Boundary conditions for perturbation pressure |
---|
793 | IF ( bc_p_b == 'dirichlet' ) THEN |
---|
794 | ibc_p_b = 0 |
---|
795 | ELSEIF ( bc_p_b == 'neumann' ) THEN |
---|
796 | ibc_p_b = 1 |
---|
797 | ELSEIF ( bc_p_b == 'neumann+inhomo' ) THEN |
---|
798 | ibc_p_b = 2 |
---|
799 | ELSE |
---|
800 | IF ( myid == 0 ) THEN |
---|
801 | PRINT*, '+++ check_parameters:' |
---|
802 | PRINT*, ' unknown boundary condition: bc_p_b = ', bc_p_b |
---|
803 | ENDIF |
---|
804 | CALL local_stop |
---|
805 | ENDIF |
---|
806 | IF ( ibc_p_b == 2 .AND. .NOT. prandtl_layer ) THEN |
---|
807 | IF ( myid == 0 ) THEN |
---|
808 | PRINT*, '+++ check_parameters:' |
---|
809 | PRINT*, ' boundary condition: bc_p_b = ', TRIM( bc_p_b ), & |
---|
810 | ' not allowed with' |
---|
811 | PRINT*, ' prandtl_layer = .FALSE.' |
---|
812 | ENDIF |
---|
813 | CALL local_stop |
---|
814 | ENDIF |
---|
815 | IF ( bc_p_t == 'dirichlet' ) THEN |
---|
816 | ibc_p_t = 0 |
---|
817 | ELSEIF ( bc_p_t == 'neumann' ) THEN |
---|
818 | ibc_p_t = 1 |
---|
819 | ELSE |
---|
820 | IF ( myid == 0 ) THEN |
---|
821 | PRINT*, '+++ check_parameters:' |
---|
822 | PRINT*, ' unknown boundary condition: bc_p_t = ', bc_p_t |
---|
823 | ENDIF |
---|
824 | CALL local_stop |
---|
825 | ENDIF |
---|
826 | |
---|
827 | ! |
---|
828 | !-- Boundary conditions for potential temperature |
---|
829 | IF ( bc_pt_b == 'dirichlet' ) THEN |
---|
830 | ibc_pt_b = 0 |
---|
831 | ELSEIF ( bc_pt_b == 'neumann' ) THEN |
---|
832 | ibc_pt_b = 1 |
---|
833 | ELSE |
---|
834 | IF ( myid == 0 ) THEN |
---|
835 | PRINT*, '+++ check_parameters:' |
---|
836 | PRINT*, ' unknown boundary condition: bc_pt_b = ', bc_pt_b |
---|
837 | ENDIF |
---|
838 | CALL local_stop |
---|
839 | ENDIF |
---|
840 | IF ( bc_pt_t == 'dirichlet' ) THEN |
---|
841 | ibc_pt_t = 0 |
---|
842 | ELSEIF ( bc_pt_t == 'neumann' ) THEN |
---|
843 | ibc_pt_t = 1 |
---|
844 | ELSEIF ( bc_pt_t == 'initial_gradient' ) THEN |
---|
845 | ibc_pt_t = 2 |
---|
846 | ELSE |
---|
847 | IF ( myid == 0 ) THEN |
---|
848 | PRINT*, '+++ check_parameters:' |
---|
849 | PRINT*, ' unknown boundary condition: bc_pt_t = ', bc_pt_t |
---|
850 | ENDIF |
---|
851 | CALL local_stop |
---|
852 | ENDIF |
---|
853 | |
---|
854 | IF ( surface_heatflux == 9999999.9 ) constant_heatflux = .FALSE. |
---|
855 | IF ( top_heatflux == 9999999.9 ) constant_top_heatflux = .FALSE. |
---|
856 | |
---|
857 | ! |
---|
858 | !-- A given surface temperature implies Dirichlet boundary condition for |
---|
859 | !-- temperature. In this case specification of a constant heat flux is |
---|
860 | !-- forbidden. |
---|
861 | IF ( ibc_pt_b == 0 .AND. constant_heatflux .AND. & |
---|
862 | surface_heatflux /= 0.0 ) THEN |
---|
863 | IF ( myid == 0 ) THEN |
---|
864 | PRINT*, '+++ check_parameters:' |
---|
865 | PRINT*, ' boundary_condition: bc_pt_b = ', bc_pt_b |
---|
866 | PRINT*, ' is not allowed with constant_heatflux = .TRUE.' |
---|
867 | ENDIF |
---|
868 | CALL local_stop |
---|
869 | ENDIF |
---|
870 | IF ( constant_heatflux .AND. pt_surface_initial_change /= 0.0 ) THEN |
---|
871 | IF ( myid == 0 ) THEN |
---|
872 | PRINT*, '+++ check_parameters: constant_heatflux = .TRUE. is not' |
---|
873 | PRINT*, ' allowed with pt_surface_initial_change (/=0) = ', & |
---|
874 | pt_surface_initial_change |
---|
875 | ENDIF |
---|
876 | CALL local_stop |
---|
877 | ENDIF |
---|
878 | |
---|
879 | ! |
---|
880 | !-- A given temperature at the top implies Dirichlet boundary condition for |
---|
881 | !-- temperature. In this case specification of a constant heat flux is |
---|
882 | !-- forbidden. |
---|
883 | IF ( ibc_pt_t == 0 .AND. constant_top_heatflux .AND. & |
---|
884 | top_heatflux /= 0.0 ) THEN |
---|
885 | IF ( myid == 0 ) THEN |
---|
886 | PRINT*, '+++ check_parameters:' |
---|
887 | PRINT*, ' boundary_condition: bc_pt_t = ', bc_pt_t |
---|
888 | PRINT*, ' is not allowed with constant_top_heatflux = .TRUE.' |
---|
889 | ENDIF |
---|
890 | CALL local_stop |
---|
891 | ENDIF |
---|
892 | |
---|
893 | ! |
---|
894 | !-- In case of moisture or passive scalar, set boundary conditions for total |
---|
895 | !-- water content / scalar |
---|
896 | IF ( moisture .OR. passive_scalar ) THEN |
---|
897 | IF ( moisture ) THEN |
---|
898 | sq = 'q' |
---|
899 | ELSE |
---|
900 | sq = 's' |
---|
901 | ENDIF |
---|
902 | IF ( bc_q_b == 'dirichlet' ) THEN |
---|
903 | ibc_q_b = 0 |
---|
904 | ELSEIF ( bc_q_b == 'neumann' ) THEN |
---|
905 | ibc_q_b = 1 |
---|
906 | ELSE |
---|
907 | IF ( myid == 0 ) THEN |
---|
908 | PRINT*, '+++ check_parameters:' |
---|
909 | PRINT*, ' unknown boundary condition: bc_', sq, '_b = ', bc_q_b |
---|
910 | ENDIF |
---|
911 | CALL local_stop |
---|
912 | ENDIF |
---|
913 | IF ( bc_q_t == 'dirichlet' ) THEN |
---|
914 | ibc_q_t = 0 |
---|
915 | ELSEIF ( bc_q_t == 'neumann' ) THEN |
---|
916 | ibc_q_t = 1 |
---|
917 | ELSE |
---|
918 | IF ( myid == 0 ) THEN |
---|
919 | PRINT*, '+++ check_parameters:' |
---|
920 | PRINT*, ' unknown boundary condition: bc_', sq, '_t = ', bc_q_t |
---|
921 | ENDIF |
---|
922 | CALL local_stop |
---|
923 | ENDIF |
---|
924 | |
---|
925 | IF ( surface_waterflux == 0.0 ) constant_waterflux = .FALSE. |
---|
926 | |
---|
927 | ! |
---|
928 | !-- A given surface humidity implies Dirichlet boundary condition for |
---|
929 | !-- moisture. In this case specification of a constant water flux is |
---|
930 | !-- forbidden. |
---|
931 | IF ( ibc_q_b == 0 .AND. constant_waterflux ) THEN |
---|
932 | IF ( myid == 0 ) THEN |
---|
933 | PRINT*, '+++ check_parameters:' |
---|
934 | PRINT*, ' boundary_condition: bc_', sq, '_b = ', bc_q_b |
---|
935 | PRINT*, ' is not allowed with prescribed surface flux' |
---|
936 | ENDIF |
---|
937 | CALL local_stop |
---|
938 | ENDIF |
---|
939 | IF ( constant_waterflux .AND. q_surface_initial_change /= 0.0 ) THEN |
---|
940 | IF ( myid == 0 ) THEN |
---|
941 | PRINT*, '+++ check_parameters: a prescribed surface flux is not' |
---|
942 | PRINT*, ' allowed with ', sq, '_surface_initial_change (/=0)', & |
---|
943 | ' = ', q_surface_initial_change |
---|
944 | ENDIF |
---|
945 | CALL local_stop |
---|
946 | ENDIF |
---|
947 | |
---|
948 | ENDIF |
---|
949 | |
---|
950 | ! |
---|
951 | !-- Boundary conditions for horizontal components of wind speed |
---|
952 | IF ( bc_uv_b == 'dirichlet' ) THEN |
---|
953 | ibc_uv_b = 0 |
---|
954 | ELSEIF ( bc_uv_b == 'neumann' ) THEN |
---|
955 | ibc_uv_b = 1 |
---|
956 | IF ( prandtl_layer ) THEN |
---|
957 | IF ( myid == 0 ) THEN |
---|
958 | PRINT*, '+++ check_parameters:' |
---|
959 | PRINT*, ' boundary condition: bc_uv_b = ', TRIM( bc_uv_b ), & |
---|
960 | ' is not allowed with' |
---|
961 | PRINT*, ' prandtl_layer = .TRUE.' |
---|
962 | ENDIF |
---|
963 | CALL local_stop |
---|
964 | ENDIF |
---|
965 | ELSE |
---|
966 | IF ( myid == 0 ) THEN |
---|
967 | PRINT*, '+++ check_parameters:' |
---|
968 | PRINT*, ' unknown boundary condition: bc_uv_b = ', bc_uv_b |
---|
969 | ENDIF |
---|
970 | CALL local_stop |
---|
971 | ENDIF |
---|
972 | IF ( bc_uv_t == 'dirichlet' ) THEN |
---|
973 | ibc_uv_t = 0 |
---|
974 | ELSEIF ( bc_uv_t == 'neumann' ) THEN |
---|
975 | ibc_uv_t = 1 |
---|
976 | ELSE |
---|
977 | IF ( myid == 0 ) THEN |
---|
978 | PRINT*, '+++ check_parameters:' |
---|
979 | PRINT*, ' unknown boundary condition: bc_uv_t = ', bc_uv_t |
---|
980 | ENDIF |
---|
981 | CALL local_stop |
---|
982 | ENDIF |
---|
983 | |
---|
984 | ! |
---|
985 | !-- Compute and check, respectively, the Rayleigh Damping parameter |
---|
986 | IF ( rayleigh_damping_factor == -1.0 ) THEN |
---|
987 | IF ( momentum_advec == 'ups-scheme' ) THEN |
---|
988 | rayleigh_damping_factor = 0.01 |
---|
989 | ELSE |
---|
990 | rayleigh_damping_factor = 0.0 |
---|
991 | ENDIF |
---|
992 | ELSE |
---|
993 | IF ( rayleigh_damping_factor < 0.0 .OR. rayleigh_damping_factor > 1.0 ) & |
---|
994 | THEN |
---|
995 | IF ( myid == 0 ) THEN |
---|
996 | PRINT*, '+++ check_parameters:' |
---|
997 | PRINT*, ' rayleigh_damping_factor = ', rayleigh_damping_factor,& |
---|
998 | ' out of range [0.0,1.0]' |
---|
999 | ENDIF |
---|
1000 | CALL local_stop |
---|
1001 | ENDIF |
---|
1002 | ENDIF |
---|
1003 | |
---|
1004 | IF ( rayleigh_damping_height == -1.0 ) THEN |
---|
1005 | rayleigh_damping_height = 0.66666666666 * zu(nzt) |
---|
1006 | ELSE |
---|
1007 | IF ( rayleigh_damping_height < 0.0 .OR. & |
---|
1008 | rayleigh_damping_height > zu(nzt) ) THEN |
---|
1009 | IF ( myid == 0 ) THEN |
---|
1010 | PRINT*, '+++ check_parameters:' |
---|
1011 | PRINT*, ' rayleigh_damping_height = ', rayleigh_damping_height,& |
---|
1012 | ' out of range [0.0,', zu(nzt), ']' |
---|
1013 | ENDIF |
---|
1014 | CALL local_stop |
---|
1015 | ENDIF |
---|
1016 | ENDIF |
---|
1017 | |
---|
1018 | ! |
---|
1019 | !-- Check limiters for Upstream-Spline scheme |
---|
1020 | IF ( overshoot_limit_u < 0.0 .OR. overshoot_limit_v < 0.0 .OR. & |
---|
1021 | overshoot_limit_w < 0.0 .OR. overshoot_limit_pt < 0.0 .OR. & |
---|
1022 | overshoot_limit_e < 0.0 ) THEN |
---|
1023 | IF ( myid == 0 ) THEN |
---|
1024 | PRINT*, '+++ check_parameters:' |
---|
1025 | PRINT*, ' overshoot_limit_... < 0.0 is not allowed' |
---|
1026 | ENDIF |
---|
1027 | CALL local_stop |
---|
1028 | ENDIF |
---|
1029 | IF ( ups_limit_u < 0.0 .OR. ups_limit_v < 0.0 .OR. ups_limit_w < 0.0 .OR. & |
---|
1030 | ups_limit_pt < 0.0 .OR. ups_limit_e < 0.0 ) THEN |
---|
1031 | IF ( myid == 0 ) THEN |
---|
1032 | PRINT*, '+++ check_parameters:' |
---|
1033 | PRINT*, ' ups_limit_... < 0.0 is not allowed' |
---|
1034 | ENDIF |
---|
1035 | CALL local_stop |
---|
1036 | ENDIF |
---|
1037 | |
---|
1038 | ! |
---|
1039 | !-- Check number of chosen statistic regions. More than 10 regions are not |
---|
1040 | !-- allowed, because so far no more than 10 corresponding output files can |
---|
1041 | !-- be opened (cf. check_open) |
---|
1042 | IF ( statistic_regions > 9 .OR. statistic_regions < 0 ) THEN |
---|
1043 | IF ( myid == 0 ) THEN |
---|
1044 | PRINT*, '+++ check_parameters: Number of statistic_regions = ', & |
---|
1045 | statistic_regions+1 |
---|
1046 | PRINT*, ' Only 10 regions are allowed' |
---|
1047 | ENDIF |
---|
1048 | CALL local_stop |
---|
1049 | ENDIF |
---|
1050 | IF ( normalizing_region > statistic_regions .OR. & |
---|
1051 | normalizing_region < 0) THEN |
---|
1052 | IF ( myid == 0 ) THEN |
---|
1053 | PRINT*, '+++ check_parameters: normalizing_region = ', & |
---|
1054 | normalizing_region, ' is unknown' |
---|
1055 | PRINT*, ' Must be <= ', statistic_regions |
---|
1056 | ENDIF |
---|
1057 | CALL local_stop |
---|
1058 | ENDIF |
---|
1059 | |
---|
1060 | ! |
---|
1061 | !-- Set the default intervals for data output, if necessary |
---|
1062 | !-- NOTE: dt_dosp has already been set in package_parin |
---|
1063 | IF ( dt_data_output /= 9999999.9 ) THEN |
---|
1064 | IF ( dt_dopr == 9999999.9 ) dt_dopr = dt_data_output |
---|
1065 | IF ( dt_dopts == 9999999.9 ) dt_dopts = dt_data_output |
---|
1066 | IF ( dt_do2d_xy == 9999999.9 ) dt_do2d_xy = dt_data_output |
---|
1067 | IF ( dt_do2d_xz == 9999999.9 ) dt_do2d_xz = dt_data_output |
---|
1068 | IF ( dt_do2d_yz == 9999999.9 ) dt_do2d_yz = dt_data_output |
---|
1069 | IF ( dt_do3d == 9999999.9 ) dt_do3d = dt_data_output |
---|
1070 | IF ( dt_data_output_av == 9999999.9 ) dt_data_output_av = dt_data_output |
---|
1071 | ENDIF |
---|
1072 | |
---|
1073 | ! |
---|
1074 | !-- Set the default skip time intervals for data output, if necessary |
---|
1075 | IF ( skip_time_dopr == 9999999.9 ) & |
---|
1076 | skip_time_dopr = skip_time_data_output |
---|
1077 | IF ( skip_time_dosp == 9999999.9 ) & |
---|
1078 | skip_time_dosp = skip_time_data_output |
---|
1079 | IF ( skip_time_do2d_xy == 9999999.9 ) & |
---|
1080 | skip_time_do2d_xy = skip_time_data_output |
---|
1081 | IF ( skip_time_do2d_xz == 9999999.9 ) & |
---|
1082 | skip_time_do2d_xz = skip_time_data_output |
---|
1083 | IF ( skip_time_do2d_yz == 9999999.9 ) & |
---|
1084 | skip_time_do2d_yz = skip_time_data_output |
---|
1085 | IF ( skip_time_do3d == 9999999.9 ) & |
---|
1086 | skip_time_do3d = skip_time_data_output |
---|
1087 | IF ( skip_time_data_output_av == 9999999.9 ) & |
---|
1088 | skip_time_data_output_av = skip_time_data_output |
---|
1089 | |
---|
1090 | ! |
---|
1091 | !-- Check the average intervals (first for 3d-data, then for profiles and |
---|
1092 | !-- spectra) |
---|
1093 | IF ( averaging_interval > dt_data_output_av ) THEN |
---|
1094 | IF ( myid == 0 ) THEN |
---|
1095 | PRINT*, '+++ check_parameters: average_interval=', & |
---|
1096 | averaging_interval, ' must be <= dt_data_output=', & |
---|
1097 | dt_data_output |
---|
1098 | ENDIF |
---|
1099 | CALL local_stop |
---|
1100 | ENDIF |
---|
1101 | |
---|
1102 | IF ( averaging_interval_pr == 9999999.9 ) THEN |
---|
1103 | averaging_interval_pr = averaging_interval |
---|
1104 | ENDIF |
---|
1105 | |
---|
1106 | IF ( averaging_interval_pr > dt_dopr ) THEN |
---|
1107 | IF ( myid == 0 ) THEN |
---|
1108 | PRINT*, '+++ check_parameters: averaging_interval_pr=', & |
---|
1109 | averaging_interval_pr, ' must be <= dt_dopr=', dt_dopr |
---|
1110 | ENDIF |
---|
1111 | CALL local_stop |
---|
1112 | ENDIF |
---|
1113 | |
---|
1114 | IF ( averaging_interval_sp == 9999999.9 ) THEN |
---|
1115 | averaging_interval_sp = averaging_interval |
---|
1116 | ENDIF |
---|
1117 | |
---|
1118 | IF ( averaging_interval_sp > dt_dosp ) THEN |
---|
1119 | IF ( myid == 0 ) THEN |
---|
1120 | PRINT*, '+++ check_parameters: averaging_interval_sp=', & |
---|
1121 | averaging_interval_sp, ' must be <= dt_dosp=', dt_dosp |
---|
1122 | ENDIF |
---|
1123 | CALL local_stop |
---|
1124 | ENDIF |
---|
1125 | |
---|
1126 | ! |
---|
1127 | !-- Set the default interval for profiles entering the temporal average |
---|
1128 | IF ( dt_averaging_input_pr == 9999999.9 ) THEN |
---|
1129 | dt_averaging_input_pr = dt_averaging_input |
---|
1130 | ENDIF |
---|
1131 | |
---|
1132 | ! |
---|
1133 | !-- Set the default interval for the output of timeseries to a reasonable |
---|
1134 | !-- value (tries to minimize the number of calls of flow_statistics) |
---|
1135 | IF ( dt_dots == 9999999.9 ) THEN |
---|
1136 | IF ( averaging_interval_pr == 0.0 ) THEN |
---|
1137 | dt_dots = MIN( dt_run_control, dt_dopr ) |
---|
1138 | ELSE |
---|
1139 | dt_dots = MIN( dt_run_control, dt_averaging_input_pr ) |
---|
1140 | ENDIF |
---|
1141 | ENDIF |
---|
1142 | |
---|
1143 | ! |
---|
1144 | !-- Check the sample rate for averaging (first for 3d-data, then for profiles) |
---|
1145 | IF ( dt_averaging_input > averaging_interval ) THEN |
---|
1146 | IF ( myid == 0 ) THEN |
---|
1147 | PRINT*, '+++ check_parameters: dt_averaging_input=', & |
---|
1148 | dt_averaging_input, ' must be <= averaging_interval=', & |
---|
1149 | averaging_interval |
---|
1150 | ENDIF |
---|
1151 | CALL local_stop |
---|
1152 | ENDIF |
---|
1153 | |
---|
1154 | IF ( dt_averaging_input_pr > averaging_interval_pr ) THEN |
---|
1155 | IF ( myid == 0 ) THEN |
---|
1156 | PRINT*, '+++ check_parameters: dt_averaging_input_pr=', & |
---|
1157 | dt_averaging_input_pr, & |
---|
1158 | ' must be <= averaging_interval_pr=', & |
---|
1159 | averaging_interval_pr |
---|
1160 | ENDIF |
---|
1161 | CALL local_stop |
---|
1162 | ENDIF |
---|
1163 | |
---|
1164 | ! |
---|
1165 | !-- Determine the number of output profiles and check whether they are |
---|
1166 | !-- permissible |
---|
1167 | DO WHILE ( data_output_pr(dopr_n+1) /= ' ' ) |
---|
1168 | |
---|
1169 | dopr_n = dopr_n + 1 |
---|
1170 | i = dopr_n |
---|
1171 | |
---|
1172 | ! |
---|
1173 | !-- Determine internal profile number (for hom, homs) |
---|
1174 | !-- and store height levels |
---|
1175 | SELECT CASE ( TRIM( data_output_pr(i) ) ) |
---|
1176 | |
---|
1177 | CASE ( 'u', '#u' ) |
---|
1178 | dopr_index(i) = 1 |
---|
1179 | hom(:,2,1,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1180 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1181 | dopr_initial_index(i) = 5 |
---|
1182 | hom(:,2,5,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1183 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1184 | ENDIF |
---|
1185 | |
---|
1186 | CASE ( 'v', '#v' ) |
---|
1187 | dopr_index(i) = 2 |
---|
1188 | hom(:,2,2,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1189 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1190 | dopr_initial_index(i) = 6 |
---|
1191 | hom(:,2,6,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1192 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1193 | ENDIF |
---|
1194 | |
---|
1195 | CASE ( 'w' ) |
---|
1196 | dopr_index(i) = 3 |
---|
1197 | hom(:,2,3,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1198 | |
---|
1199 | CASE ( 'pt', '#pt' ) |
---|
1200 | IF ( .NOT. cloud_physics ) THEN |
---|
1201 | dopr_index(i) = 4 |
---|
1202 | hom(:,2,4,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1203 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1204 | dopr_initial_index(i) = 7 |
---|
1205 | hom(:,2,7,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1206 | hom(nzb,2,7,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1207 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1208 | ENDIF |
---|
1209 | ELSE |
---|
1210 | dopr_index(i) = 43 |
---|
1211 | hom(:,2,43,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1212 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1213 | dopr_initial_index(i) = 28 |
---|
1214 | hom(:,2,28,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1215 | hom(nzb,2,28,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1216 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1217 | ENDIF |
---|
1218 | ENDIF |
---|
1219 | |
---|
1220 | CASE ( 'e' ) |
---|
1221 | dopr_index(i) = 8 |
---|
1222 | hom(:,2,8,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1223 | hom(nzb,2,8,:) = 0.0 |
---|
1224 | |
---|
1225 | CASE ( 'km', '#km' ) |
---|
1226 | dopr_index(i) = 9 |
---|
1227 | hom(:,2,9,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1228 | hom(nzb,2,9,:) = 0.0 |
---|
1229 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1230 | dopr_initial_index(i) = 23 |
---|
1231 | hom(:,2,23,:) = hom(:,2,9,:) |
---|
1232 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1233 | ENDIF |
---|
1234 | |
---|
1235 | CASE ( 'kh', '#kh' ) |
---|
1236 | dopr_index(i) = 10 |
---|
1237 | hom(:,2,10,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1238 | hom(nzb,2,10,:) = 0.0 |
---|
1239 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1240 | dopr_initial_index(i) = 24 |
---|
1241 | hom(:,2,24,:) = hom(:,2,10,:) |
---|
1242 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1243 | ENDIF |
---|
1244 | |
---|
1245 | CASE ( 'l', '#l' ) |
---|
1246 | dopr_index(i) = 11 |
---|
1247 | hom(:,2,11,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1248 | hom(nzb,2,11,:) = 0.0 |
---|
1249 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1250 | dopr_initial_index(i) = 25 |
---|
1251 | hom(:,2,25,:) = hom(:,2,11,:) |
---|
1252 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1253 | ENDIF |
---|
1254 | |
---|
1255 | CASE ( 'w"u"' ) |
---|
1256 | dopr_index(i) = 12 |
---|
1257 | hom(:,2,12,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1258 | IF ( prandtl_layer ) hom(nzb,2,12,:) = zu(1) |
---|
1259 | |
---|
1260 | CASE ( 'w*u*' ) |
---|
1261 | dopr_index(i) = 13 |
---|
1262 | hom(:,2,13,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1263 | |
---|
1264 | CASE ( 'w"v"' ) |
---|
1265 | dopr_index(i) = 14 |
---|
1266 | hom(:,2,14,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1267 | IF ( prandtl_layer ) hom(nzb,2,14,:) = zu(1) |
---|
1268 | |
---|
1269 | CASE ( 'w*v*' ) |
---|
1270 | dopr_index(i) = 15 |
---|
1271 | hom(:,2,15,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1272 | |
---|
1273 | CASE ( 'w"pt"' ) |
---|
1274 | dopr_index(i) = 16 |
---|
1275 | hom(:,2,16,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1276 | |
---|
1277 | CASE ( 'w*pt*' ) |
---|
1278 | dopr_index(i) = 17 |
---|
1279 | hom(:,2,17,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1280 | |
---|
1281 | CASE ( 'wpt' ) |
---|
1282 | dopr_index(i) = 18 |
---|
1283 | hom(:,2,18,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1284 | |
---|
1285 | CASE ( 'wu' ) |
---|
1286 | dopr_index(i) = 19 |
---|
1287 | hom(:,2,19,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1288 | IF ( prandtl_layer ) hom(nzb,2,19,:) = zu(1) |
---|
1289 | |
---|
1290 | CASE ( 'wv' ) |
---|
1291 | dopr_index(i) = 20 |
---|
1292 | hom(:,2,20,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1293 | IF ( prandtl_layer ) hom(nzb,2,20,:) = zu(1) |
---|
1294 | |
---|
1295 | CASE ( 'w*pt*BC' ) |
---|
1296 | dopr_index(i) = 21 |
---|
1297 | hom(:,2,21,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1298 | |
---|
1299 | CASE ( 'wptBC' ) |
---|
1300 | dopr_index(i) = 22 |
---|
1301 | hom(:,2,22,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1302 | |
---|
1303 | CASE ( 'u*2' ) |
---|
1304 | dopr_index(i) = 30 |
---|
1305 | hom(:,2,30,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1306 | |
---|
1307 | CASE ( 'v*2' ) |
---|
1308 | dopr_index(i) = 31 |
---|
1309 | hom(:,2,31,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1310 | |
---|
1311 | CASE ( 'w*2' ) |
---|
1312 | dopr_index(i) = 32 |
---|
1313 | hom(:,2,32,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1314 | |
---|
1315 | CASE ( 'pt*2' ) |
---|
1316 | dopr_index(i) = 33 |
---|
1317 | hom(:,2,33,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1318 | |
---|
1319 | CASE ( 'e*' ) |
---|
1320 | dopr_index(i) = 34 |
---|
1321 | hom(:,2,34,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1322 | |
---|
1323 | CASE ( 'w*2pt*' ) |
---|
1324 | dopr_index(i) = 35 |
---|
1325 | hom(:,2,35,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1326 | |
---|
1327 | CASE ( 'w*pt*2' ) |
---|
1328 | dopr_index(i) = 36 |
---|
1329 | hom(:,2,36,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1330 | |
---|
1331 | CASE ( 'w*e*' ) |
---|
1332 | dopr_index(i) = 37 |
---|
1333 | hom(:,2,37,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1334 | |
---|
1335 | CASE ( 'w*3' ) |
---|
1336 | dopr_index(i) = 38 |
---|
1337 | hom(:,2,38,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1338 | |
---|
1339 | CASE ( 'Sw' ) |
---|
1340 | dopr_index(i) = 39 |
---|
1341 | hom(:,2,39,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1342 | |
---|
1343 | CASE ( 'q', '#q' ) |
---|
1344 | IF ( .NOT. cloud_physics ) THEN |
---|
1345 | IF ( myid == 0 ) THEN |
---|
1346 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1347 | data_output_pr(i), & |
---|
1348 | ' is not implemented for cloud_physics = FALSE' |
---|
1349 | ENDIF |
---|
1350 | CALL local_stop |
---|
1351 | ELSE |
---|
1352 | dopr_index(i) = 41 |
---|
1353 | hom(:,2,41,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1354 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1355 | dopr_initial_index(i) = 26 |
---|
1356 | hom(:,2,26,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1357 | hom(nzb,2,26,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1358 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1359 | ENDIF |
---|
1360 | ENDIF |
---|
1361 | |
---|
1362 | CASE ( 's', '#s' ) |
---|
1363 | IF ( .NOT. passive_scalar ) THEN |
---|
1364 | IF ( myid == 0 ) THEN |
---|
1365 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1366 | data_output_pr(i), & |
---|
1367 | ' is not implemented for passive_scalar = FALSE' |
---|
1368 | ENDIF |
---|
1369 | CALL local_stop |
---|
1370 | ELSE |
---|
1371 | dopr_index(i) = 41 |
---|
1372 | hom(:,2,41,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1373 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1374 | dopr_initial_index(i) = 26 |
---|
1375 | hom(:,2,26,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1376 | hom(nzb,2,26,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1377 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1378 | ENDIF |
---|
1379 | ENDIF |
---|
1380 | |
---|
1381 | CASE ( 'qv', '#qv' ) |
---|
1382 | IF ( .NOT. cloud_physics ) THEN |
---|
1383 | dopr_index(i) = 41 |
---|
1384 | hom(:,2,41,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1385 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1386 | dopr_initial_index(i) = 26 |
---|
1387 | hom(:,2,26,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1388 | hom(nzb,2,26,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1389 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1390 | ENDIF |
---|
1391 | ELSE |
---|
1392 | dopr_index(i) = 42 |
---|
1393 | hom(:,2,42,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1394 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1395 | dopr_initial_index(i) = 27 |
---|
1396 | hom(:,2,27,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1397 | hom(nzb,2,27,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1398 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1399 | ENDIF |
---|
1400 | ENDIF |
---|
1401 | |
---|
1402 | CASE ( 'lpt', '#lpt' ) |
---|
1403 | IF ( .NOT. cloud_physics ) THEN |
---|
1404 | IF ( myid == 0 ) THEN |
---|
1405 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1406 | data_output_pr(i), & |
---|
1407 | ' is not implemented for cloud_physics = FALSE' |
---|
1408 | ENDIF |
---|
1409 | CALL local_stop |
---|
1410 | ELSE |
---|
1411 | dopr_index(i) = 4 |
---|
1412 | hom(:,2,4,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1413 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1414 | dopr_initial_index(i) = 7 |
---|
1415 | hom(:,2,7,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1416 | hom(nzb,2,7,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1417 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1418 | ENDIF |
---|
1419 | ENDIF |
---|
1420 | |
---|
1421 | CASE ( 'vpt', '#vpt' ) |
---|
1422 | dopr_index(i) = 44 |
---|
1423 | hom(:,2,44,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1424 | IF ( data_output_pr(i)(1:1) == '#' ) THEN |
---|
1425 | dopr_initial_index(i) = 29 |
---|
1426 | hom(:,2,29,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1427 | hom(nzb,2,29,:) = 0.0 ! weil zu(nzb) negativ ist |
---|
1428 | data_output_pr(i) = data_output_pr(i)(2:) |
---|
1429 | ENDIF |
---|
1430 | |
---|
1431 | CASE ( 'w"vpt"' ) |
---|
1432 | dopr_index(i) = 45 |
---|
1433 | hom(:,2,45,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1434 | |
---|
1435 | CASE ( 'w*vpt*' ) |
---|
1436 | dopr_index(i) = 46 |
---|
1437 | hom(:,2,46,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1438 | |
---|
1439 | CASE ( 'wvpt' ) |
---|
1440 | dopr_index(i) = 47 |
---|
1441 | hom(:,2,47,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1442 | |
---|
1443 | CASE ( 'w"q"' ) |
---|
1444 | IF ( .NOT. cloud_physics ) THEN |
---|
1445 | IF ( myid == 0 ) THEN |
---|
1446 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1447 | data_output_pr(i), & |
---|
1448 | ' is not implemented for cloud_physics = FALSE' |
---|
1449 | ENDIF |
---|
1450 | CALL local_stop |
---|
1451 | ELSE |
---|
1452 | dopr_index(i) = 48 |
---|
1453 | hom(:,2,48,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1454 | ENDIF |
---|
1455 | |
---|
1456 | CASE ( 'w*q*' ) |
---|
1457 | IF ( .NOT. cloud_physics ) THEN |
---|
1458 | IF ( myid == 0 ) THEN |
---|
1459 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1460 | data_output_pr(i), & |
---|
1461 | ' is not implemented for cloud_physics = FALSE' |
---|
1462 | ENDIF |
---|
1463 | CALL local_stop |
---|
1464 | ELSE |
---|
1465 | dopr_index(i) = 49 |
---|
1466 | hom(:,2,49,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1467 | ENDIF |
---|
1468 | |
---|
1469 | CASE ( 'wq' ) |
---|
1470 | IF ( .NOT. cloud_physics ) THEN |
---|
1471 | IF ( myid == 0 ) THEN |
---|
1472 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1473 | data_output_pr(i), & |
---|
1474 | ' is not implemented for cloud_physics = FALSE' |
---|
1475 | ENDIF |
---|
1476 | CALL local_stop |
---|
1477 | ELSE |
---|
1478 | dopr_index(i) = 50 |
---|
1479 | hom(:,2,50,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1480 | ENDIF |
---|
1481 | |
---|
1482 | CASE ( 'w"s"' ) |
---|
1483 | IF ( .NOT. passive_scalar ) THEN |
---|
1484 | IF ( myid == 0 ) THEN |
---|
1485 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1486 | data_output_pr(i), & |
---|
1487 | ' is not implemented for passive_scalar = FALSE' |
---|
1488 | ENDIF |
---|
1489 | CALL local_stop |
---|
1490 | ELSE |
---|
1491 | dopr_index(i) = 48 |
---|
1492 | hom(:,2,48,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1493 | ENDIF |
---|
1494 | |
---|
1495 | CASE ( 'w*s*' ) |
---|
1496 | IF ( .NOT. passive_scalar ) THEN |
---|
1497 | IF ( myid == 0 ) THEN |
---|
1498 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1499 | data_output_pr(i), & |
---|
1500 | ' is not implemented for passive_scalar = FALSE' |
---|
1501 | ENDIF |
---|
1502 | CALL local_stop |
---|
1503 | ELSE |
---|
1504 | dopr_index(i) = 49 |
---|
1505 | hom(:,2,49,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1506 | ENDIF |
---|
1507 | |
---|
1508 | CASE ( 'ws' ) |
---|
1509 | IF ( .NOT. passive_scalar ) THEN |
---|
1510 | IF ( myid == 0 ) THEN |
---|
1511 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1512 | data_output_pr(i), & |
---|
1513 | ' is not implemented for passive_scalar = FALSE' |
---|
1514 | ENDIF |
---|
1515 | CALL local_stop |
---|
1516 | ELSE |
---|
1517 | dopr_index(i) = 50 |
---|
1518 | hom(:,2,50,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1519 | ENDIF |
---|
1520 | |
---|
1521 | CASE ( 'w"qv"' ) |
---|
1522 | IF ( moisture .AND. .NOT. cloud_physics ) & |
---|
1523 | THEN |
---|
1524 | dopr_index(i) = 48 |
---|
1525 | hom(:,2,48,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1526 | ELSEIF( moisture .AND. cloud_physics ) THEN |
---|
1527 | dopr_index(i) = 51 |
---|
1528 | hom(:,2,51,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1529 | ELSE |
---|
1530 | IF ( myid == 0 ) THEN |
---|
1531 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1532 | data_output_pr(i), & |
---|
1533 | ' is not implemented for cloud_physics = FALSE', & |
---|
1534 | ' and moisture = FALSE' |
---|
1535 | ENDIF |
---|
1536 | CALL local_stop |
---|
1537 | ENDIF |
---|
1538 | |
---|
1539 | CASE ( 'w*qv*' ) |
---|
1540 | IF ( moisture .AND. .NOT. cloud_physics ) & |
---|
1541 | THEN |
---|
1542 | dopr_index(i) = 49 |
---|
1543 | hom(:,2,49,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1544 | ELSEIF( moisture .AND. cloud_physics ) THEN |
---|
1545 | dopr_index(i) = 52 |
---|
1546 | hom(:,2,52,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1547 | ELSE |
---|
1548 | IF ( myid == 0 ) THEN |
---|
1549 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1550 | data_output_pr(i), & |
---|
1551 | ' is not implemented for cloud_physics = FALSE', & |
---|
1552 | ' and moisture = FALSE' |
---|
1553 | ENDIF |
---|
1554 | CALL local_stop |
---|
1555 | ENDIF |
---|
1556 | |
---|
1557 | CASE ( 'wqv' ) |
---|
1558 | IF ( moisture .AND. .NOT. cloud_physics ) & |
---|
1559 | THEN |
---|
1560 | dopr_index(i) = 50 |
---|
1561 | hom(:,2,50,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1562 | ELSEIF( moisture .AND. cloud_physics ) THEN |
---|
1563 | dopr_index(i) = 53 |
---|
1564 | hom(:,2,53,:) = SPREAD( zw, 2, statistic_regions+1 ) |
---|
1565 | ELSE |
---|
1566 | IF ( myid == 0 ) THEN |
---|
1567 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1568 | data_output_pr(i), & |
---|
1569 | ' is not implemented for cloud_physics = FALSE', & |
---|
1570 | ' and moisture = FALSE' |
---|
1571 | ENDIF |
---|
1572 | CALL local_stop |
---|
1573 | ENDIF |
---|
1574 | |
---|
1575 | CASE ( 'ql' ) |
---|
1576 | IF ( .NOT. cloud_physics .AND. .NOT. cloud_droplets ) THEN |
---|
1577 | IF ( myid == 0 ) THEN |
---|
1578 | PRINT*, '+++ check_parameters: data_output_pr = ', & |
---|
1579 | data_output_pr(i), & |
---|
1580 | ' is not implemented for cloud_physics = FALSE' |
---|
1581 | ENDIF |
---|
1582 | CALL local_stop |
---|
1583 | ELSE |
---|
1584 | dopr_index(i) = 54 |
---|
1585 | hom(:,2,54,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1586 | ENDIF |
---|
1587 | |
---|
1588 | CASE ( 'w*u*u*/dz' ) |
---|
1589 | dopr_index(i) = 55 |
---|
1590 | hom(:,2,55,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1591 | |
---|
1592 | CASE ( 'w*p*/dz' ) |
---|
1593 | dopr_index(i) = 56 |
---|
1594 | hom(:,2,56,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1595 | |
---|
1596 | CASE ( 'w"e/dz' ) |
---|
1597 | dopr_index(i) = 57 |
---|
1598 | hom(:,2,57,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1599 | |
---|
1600 | CASE ( 'u"pt"' ) |
---|
1601 | dopr_index(i) = 58 |
---|
1602 | hom(:,2,58,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1603 | |
---|
1604 | CASE ( 'u*pt*' ) |
---|
1605 | dopr_index(i) = 59 |
---|
1606 | hom(:,2,59,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1607 | |
---|
1608 | CASE ( 'upt_t' ) |
---|
1609 | dopr_index(i) = 60 |
---|
1610 | hom(:,2,60,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1611 | |
---|
1612 | CASE ( 'v"pt"' ) |
---|
1613 | dopr_index(i) = 61 |
---|
1614 | hom(:,2,61,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1615 | |
---|
1616 | CASE ( 'v*pt*' ) |
---|
1617 | dopr_index(i) = 62 |
---|
1618 | hom(:,2,62,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1619 | |
---|
1620 | CASE ( 'vpt_t' ) |
---|
1621 | dopr_index(i) = 63 |
---|
1622 | hom(:,2,63,:) = SPREAD( zu, 2, statistic_regions+1 ) |
---|
1623 | |
---|
1624 | |
---|
1625 | CASE DEFAULT |
---|
1626 | IF ( myid == 0 ) THEN |
---|
1627 | PRINT*, '+++ check_parameters: unknown output profile: ', & |
---|
1628 | 'data_output_pr = ', data_output_pr(i) |
---|
1629 | ENDIF |
---|
1630 | CALL local_stop |
---|
1631 | |
---|
1632 | END SELECT |
---|
1633 | ! |
---|
1634 | !-- Check to which of the predefined coordinate systems the profile belongs |
---|
1635 | DO k = 1, crmax |
---|
1636 | IF ( INDEX( cross_profiles(k), ' '//TRIM( data_output_pr(i) )//' ' ) & |
---|
1637 | /=0 ) & |
---|
1638 | THEN |
---|
1639 | dopr_crossindex(i) = k |
---|
1640 | EXIT |
---|
1641 | ENDIF |
---|
1642 | ENDDO |
---|
1643 | ! |
---|
1644 | !-- Generate the text for the labels of the PROFIL output file. "-characters |
---|
1645 | !-- must be substituted, otherwise PROFIL would interpret them as TeX |
---|
1646 | !-- control characters |
---|
1647 | dopr_label(i) = data_output_pr(i) |
---|
1648 | position = INDEX( dopr_label(i) , '"' ) |
---|
1649 | DO WHILE ( position /= 0 ) |
---|
1650 | dopr_label(i)(position:position) = '''' |
---|
1651 | position = INDEX( dopr_label(i) , '"' ) |
---|
1652 | ENDDO |
---|
1653 | |
---|
1654 | ENDDO |
---|
1655 | |
---|
1656 | ! |
---|
1657 | !-- y-value range of the coordinate system (PROFIL). |
---|
1658 | !-- x-value range determined in plot_1d. |
---|
1659 | cross_uymin = 0.0 |
---|
1660 | IF ( z_max_do1d == -1.0 ) THEN |
---|
1661 | cross_uymax = zu(nzt+1) |
---|
1662 | ELSEIF ( z_max_do1d < zu(nzb+1) .OR. z_max_do1d > zu(nzt+1) ) THEN |
---|
1663 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: z_max_do1d=', & |
---|
1664 | z_max_do1d,' must be >= ', zu(nzb+1), & |
---|
1665 | ' or <= ', zu(nzt+1) |
---|
1666 | CALL local_stop |
---|
1667 | ELSE |
---|
1668 | cross_uymax = z_max_do1d |
---|
1669 | ENDIF |
---|
1670 | |
---|
1671 | ! |
---|
1672 | !-- Check whether the chosen normalizing factor for the coordinate systems is |
---|
1673 | !-- permissible |
---|
1674 | DO i = 1, crmax |
---|
1675 | SELECT CASE ( TRIM( cross_normalized_x(i) ) ) ! TRIM required on IBM |
---|
1676 | |
---|
1677 | CASE ( '', 'wpt0', 'ws2', 'tsw2', 'ws3', 'ws2tsw', 'wstsw2' ) |
---|
1678 | j = 0 |
---|
1679 | |
---|
1680 | CASE DEFAULT |
---|
1681 | IF ( myid == 0 ) THEN |
---|
1682 | PRINT*, '+++ check_parameters: unknown normalize method' |
---|
1683 | PRINT*, ' cross_normalized_x="',cross_normalized_x(i),'"' |
---|
1684 | ENDIF |
---|
1685 | CALL local_stop |
---|
1686 | |
---|
1687 | END SELECT |
---|
1688 | SELECT CASE ( TRIM( cross_normalized_y(i) ) ) ! TRIM required on IBM |
---|
1689 | |
---|
1690 | CASE ( '', 'z_i' ) |
---|
1691 | j = 0 |
---|
1692 | |
---|
1693 | CASE DEFAULT |
---|
1694 | IF ( myid == 0 ) THEN |
---|
1695 | PRINT*, '+++ check_parameters: unknown normalize method' |
---|
1696 | PRINT*, ' cross_normalized_y="',cross_normalized_y(i),'"' |
---|
1697 | ENDIF |
---|
1698 | CALL local_stop |
---|
1699 | |
---|
1700 | END SELECT |
---|
1701 | ENDDO |
---|
1702 | ! |
---|
1703 | !-- Check normalized y-value range of the coordinate system (PROFIL) |
---|
1704 | IF ( z_max_do1d_normalized /= -1.0 .AND. z_max_do1d_normalized <= 0.0 ) & |
---|
1705 | THEN |
---|
1706 | IF ( myid == 0 ) PRINT*,'+++ check_parameters: z_max_do1d_normalize', & |
---|
1707 | 'd=', z_max_do1d_normalized, ' must be >= 0.0' |
---|
1708 | CALL local_stop |
---|
1709 | ENDIF |
---|
1710 | |
---|
1711 | |
---|
1712 | ! |
---|
1713 | !-- Append user-defined data output variables to the standard data output |
---|
1714 | IF ( data_output_user(1) /= ' ' ) THEN |
---|
1715 | i = 1 |
---|
1716 | DO WHILE ( data_output(i) /= ' ' .AND. i <= 100 ) |
---|
1717 | i = i + 1 |
---|
1718 | ENDDO |
---|
1719 | j = 1 |
---|
1720 | DO WHILE ( data_output_user(j) /= ' ' .AND. j <= 100 ) |
---|
1721 | IF ( i > 100 ) THEN |
---|
1722 | IF ( myid == 0 ) THEN |
---|
1723 | PRINT*, '+++ check_parameters: number of output quantitities', & |
---|
1724 | ' given by data_output and data_output_user' |
---|
1725 | PRINT*, ' exceeds the limit of 100' |
---|
1726 | ENDIF |
---|
1727 | CALL local_stop |
---|
1728 | ENDIF |
---|
1729 | data_output(i) = data_output_user(j) |
---|
1730 | i = i + 1 |
---|
1731 | j = j + 1 |
---|
1732 | ENDDO |
---|
1733 | ENDIF |
---|
1734 | |
---|
1735 | ! |
---|
1736 | !-- Check and set steering parameters for 2d/3d data output and averaging |
---|
1737 | i = 1 |
---|
1738 | DO WHILE ( data_output(i) /= ' ' .AND. i <= 100 ) |
---|
1739 | ! |
---|
1740 | !-- Check for data averaging |
---|
1741 | ilen = LEN_TRIM( data_output(i) ) |
---|
1742 | j = 0 ! no data averaging |
---|
1743 | IF ( ilen > 3 ) THEN |
---|
1744 | IF ( data_output(i)(ilen-2:ilen) == '_av' ) THEN |
---|
1745 | j = 1 ! data averaging |
---|
1746 | data_output(i) = data_output(i)(1:ilen-3) |
---|
1747 | ENDIF |
---|
1748 | ENDIF |
---|
1749 | ! |
---|
1750 | !-- Check for cross section or volume data |
---|
1751 | ilen = LEN_TRIM( data_output(i) ) |
---|
1752 | k = 0 ! 3d data |
---|
1753 | var = data_output(i)(1:ilen) |
---|
1754 | IF ( ilen > 3 ) THEN |
---|
1755 | IF ( data_output(i)(ilen-2:ilen) == '_xy' .OR. & |
---|
1756 | data_output(i)(ilen-2:ilen) == '_xz' .OR. & |
---|
1757 | data_output(i)(ilen-2:ilen) == '_yz' ) THEN |
---|
1758 | k = 1 ! 2d data |
---|
1759 | var = data_output(i)(1:ilen-3) |
---|
1760 | ENDIF |
---|
1761 | ENDIF |
---|
1762 | ! |
---|
1763 | !-- Check for allowed value and set units |
---|
1764 | SELECT CASE ( TRIM( var ) ) |
---|
1765 | |
---|
1766 | CASE ( 'e' ) |
---|
1767 | IF ( constant_diffusion ) THEN |
---|
1768 | IF ( myid == 0 ) THEN |
---|
1769 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1770 | '" requires constant_diffusion = .FALSE.' |
---|
1771 | ENDIF |
---|
1772 | CALL local_stop |
---|
1773 | ENDIF |
---|
1774 | unit = 'm2/s2' |
---|
1775 | |
---|
1776 | CASE ( 'pc', 'pr' ) |
---|
1777 | IF ( .NOT. particle_advection ) THEN |
---|
1778 | IF ( myid == 0 ) THEN |
---|
1779 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1780 | '" requires particle package' |
---|
1781 | PRINT*, ' (mrun-option "-p particles")' |
---|
1782 | ENDIF |
---|
1783 | CALL local_stop |
---|
1784 | ENDIF |
---|
1785 | IF ( TRIM( var ) == 'pc' ) unit = 'number' |
---|
1786 | IF ( TRIM( var ) == 'pr' ) unit = 'm' |
---|
1787 | |
---|
1788 | CASE ( 'q', 'vpt' ) |
---|
1789 | IF ( .NOT. moisture ) THEN |
---|
1790 | IF ( myid == 0 ) THEN |
---|
1791 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1792 | '" requires moisture = .TRUE.' |
---|
1793 | ENDIF |
---|
1794 | CALL local_stop |
---|
1795 | ENDIF |
---|
1796 | IF ( TRIM( var ) == 'q' ) unit = 'kg/kg' |
---|
1797 | IF ( TRIM( var ) == 'vpt' ) unit = 'K' |
---|
1798 | |
---|
1799 | CASE ( 'ql' ) |
---|
1800 | IF ( .NOT. ( cloud_physics .OR. cloud_droplets ) ) THEN |
---|
1801 | IF ( myid == 0 ) THEN |
---|
1802 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1803 | '" requires cloud_physics = .TRUE.' |
---|
1804 | PRINT*, ' or cloud_droplets = .TRUE.' |
---|
1805 | ENDIF |
---|
1806 | CALL local_stop |
---|
1807 | ENDIF |
---|
1808 | unit = 'kg/kg' |
---|
1809 | |
---|
1810 | CASE ( 'ql_c', 'ql_v', 'ql_vp' ) |
---|
1811 | IF ( .NOT. cloud_droplets ) THEN |
---|
1812 | IF ( myid == 0 ) THEN |
---|
1813 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1814 | '" requires cloud_droplets = .TRUE.' |
---|
1815 | ENDIF |
---|
1816 | CALL local_stop |
---|
1817 | ENDIF |
---|
1818 | IF ( TRIM( var ) == 'ql_c' ) unit = 'kg/kg' |
---|
1819 | IF ( TRIM( var ) == 'ql_v' ) unit = 'm3' |
---|
1820 | IF ( TRIM( var ) == 'ql_vp' ) unit = 'none' |
---|
1821 | |
---|
1822 | CASE ( 'qv' ) |
---|
1823 | IF ( .NOT. cloud_physics ) THEN |
---|
1824 | IF ( myid == 0 ) THEN |
---|
1825 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1826 | '" requires cloud_physics = .TRUE.' |
---|
1827 | ENDIF |
---|
1828 | CALL local_stop |
---|
1829 | ENDIF |
---|
1830 | unit = 'kg/kg' |
---|
1831 | |
---|
1832 | CASE ( 's' ) |
---|
1833 | IF ( .NOT. passive_scalar ) THEN |
---|
1834 | IF ( myid == 0 ) THEN |
---|
1835 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1836 | '" requires passive_scalar = .TRUE.' |
---|
1837 | ENDIF |
---|
1838 | CALL local_stop |
---|
1839 | ENDIF |
---|
1840 | unit = 'conc' |
---|
1841 | |
---|
1842 | CASE ( 'u*', 't*', 'lwp*' ) |
---|
1843 | IF ( k == 0 .OR. data_output(i)(ilen-2:ilen) /= '_xy' ) THEN |
---|
1844 | IF ( myid == 0 ) THEN |
---|
1845 | PRINT*, '+++ check_parameters: illegal value for data_',& |
---|
1846 | 'output: "', TRIM( var ), '" is only allowed' |
---|
1847 | PRINT*, ' for horizontal cross section' |
---|
1848 | ENDIF |
---|
1849 | CALL local_stop |
---|
1850 | ENDIF |
---|
1851 | IF ( TRIM( var ) == 'lwp*' .AND. .NOT. cloud_physics ) THEN |
---|
1852 | IF ( myid == 0 ) THEN |
---|
1853 | PRINT*, '+++ check_parameters: output of "', TRIM( var ), & |
---|
1854 | '" requires cloud_physics = .TRUE.' |
---|
1855 | ENDIF |
---|
1856 | CALL local_stop |
---|
1857 | ENDIF |
---|
1858 | IF ( TRIM( var ) == 'u*' ) unit = 'm/s' |
---|
1859 | IF ( TRIM( var ) == 't*' ) unit = 'K' |
---|
1860 | IF ( TRIM( var ) == 'lwp*' ) unit = 'kg/kg*m' |
---|
1861 | |
---|
1862 | CASE ( 'p', 'pt', 'u', 'v', 'w' ) |
---|
1863 | IF ( TRIM( var ) == 'p' ) unit = 'Pa' |
---|
1864 | IF ( TRIM( var ) == 'pt' ) unit = 'K' |
---|
1865 | IF ( TRIM( var ) == 'u' ) unit = 'm/s' |
---|
1866 | IF ( TRIM( var ) == 'v' ) unit = 'm/s' |
---|
1867 | IF ( TRIM( var ) == 'w' ) unit = 'm/s' |
---|
1868 | CONTINUE |
---|
1869 | |
---|
1870 | CASE DEFAULT |
---|
1871 | CALL user_check_data_output( var, unit ) |
---|
1872 | |
---|
1873 | IF ( unit == 'illegal' ) THEN |
---|
1874 | IF ( myid == 0 ) THEN |
---|
1875 | IF ( data_output_user(1) /= ' ' ) THEN |
---|
1876 | PRINT*, '+++ check_parameters: illegal value for data_',& |
---|
1877 | 'output or data_output_user: "', & |
---|
1878 | TRIM( data_output(i) ), '"' |
---|
1879 | ELSE |
---|
1880 | PRINT*, '+++ check_parameters: illegal value for data_',& |
---|
1881 | 'output: "', TRIM( data_output(i) ), '"' |
---|
1882 | ENDIF |
---|
1883 | ENDIF |
---|
1884 | CALL local_stop |
---|
1885 | ENDIF |
---|
1886 | |
---|
1887 | END SELECT |
---|
1888 | ! |
---|
1889 | !-- Set the internal steering parameters appropriately |
---|
1890 | IF ( k == 0 ) THEN |
---|
1891 | do3d_no(j) = do3d_no(j) + 1 |
---|
1892 | do3d(j,do3d_no(j)) = data_output(i) |
---|
1893 | do3d_unit(j,do3d_no(j)) = unit |
---|
1894 | ELSE |
---|
1895 | do2d_no(j) = do2d_no(j) + 1 |
---|
1896 | do2d(j,do2d_no(j)) = data_output(i) |
---|
1897 | do2d_unit(j,do2d_no(j)) = unit |
---|
1898 | IF ( data_output(i)(ilen-2:ilen) == '_xy' ) THEN |
---|
1899 | data_output_xy(j) = .TRUE. |
---|
1900 | ENDIF |
---|
1901 | IF ( data_output(i)(ilen-2:ilen) == '_xz' ) THEN |
---|
1902 | data_output_xz(j) = .TRUE. |
---|
1903 | ENDIF |
---|
1904 | IF ( data_output(i)(ilen-2:ilen) == '_yz' ) THEN |
---|
1905 | data_output_yz(j) = .TRUE. |
---|
1906 | ENDIF |
---|
1907 | ENDIF |
---|
1908 | |
---|
1909 | IF ( j == 1 ) THEN |
---|
1910 | ! |
---|
1911 | !-- Check, if variable is already subject to averaging |
---|
1912 | found = .FALSE. |
---|
1913 | DO k = 1, doav_n |
---|
1914 | IF ( TRIM( doav(k) ) == TRIM( var ) ) found = .TRUE. |
---|
1915 | ENDDO |
---|
1916 | |
---|
1917 | IF ( .NOT. found ) THEN |
---|
1918 | doav_n = doav_n + 1 |
---|
1919 | doav(doav_n) = var |
---|
1920 | ENDIF |
---|
1921 | ENDIF |
---|
1922 | |
---|
1923 | i = i + 1 |
---|
1924 | ENDDO |
---|
1925 | |
---|
1926 | ! |
---|
1927 | !-- Store sectional planes in one shared array |
---|
1928 | section(:,1) = section_xy |
---|
1929 | section(:,2) = section_xz |
---|
1930 | section(:,3) = section_yz |
---|
1931 | |
---|
1932 | ! |
---|
1933 | !-- Upper plot limit (grid point value) for 1D profiles |
---|
1934 | IF ( z_max_do1d == -1.0 ) THEN |
---|
1935 | nz_do1d = nzt+1 |
---|
1936 | ELSE |
---|
1937 | DO k = nzb+1, nzt+1 |
---|
1938 | nz_do1d = k |
---|
1939 | IF ( zw(k) > z_max_do1d ) EXIT |
---|
1940 | ENDDO |
---|
1941 | ENDIF |
---|
1942 | |
---|
1943 | ! |
---|
1944 | !-- Upper plot limit for 2D vertical sections |
---|
1945 | IF ( z_max_do2d == -1.0 ) z_max_do2d = zu(nzt) |
---|
1946 | IF ( z_max_do2d < zu(nzb+1) .OR. z_max_do2d > zu(nzt) ) THEN |
---|
1947 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: z_max_do2d=', & |
---|
1948 | z_max_do2d, ' must be >= ', zu(nzb+1), & |
---|
1949 | '(zu(nzb+1)) and <= ', zu(nzt), ' (zu(nzt))' |
---|
1950 | CALL local_stop |
---|
1951 | ENDIF |
---|
1952 | |
---|
1953 | ! |
---|
1954 | !-- Upper plot limit for 3D arrays |
---|
1955 | IF ( nz_do3d == -9999 ) nz_do3d = nzt + 1 |
---|
1956 | |
---|
1957 | ! |
---|
1958 | !-- Determine and check accuracy for compressed 3D plot output |
---|
1959 | IF ( do3d_compress ) THEN |
---|
1960 | ! |
---|
1961 | !-- Compression only permissible on T3E machines |
---|
1962 | IF ( host(1:3) /= 't3e' ) THEN |
---|
1963 | IF ( myid == 0 ) THEN |
---|
1964 | PRINT*, '+++ check_parameters: do3d_compress = .TRUE. not allow', & |
---|
1965 | 'ed on host "', TRIM( host ), '"' |
---|
1966 | ENDIF |
---|
1967 | CALL local_stop |
---|
1968 | ENDIF |
---|
1969 | |
---|
1970 | i = 1 |
---|
1971 | DO WHILE ( do3d_comp_prec(i) /= ' ' ) |
---|
1972 | |
---|
1973 | ilen = LEN_TRIM( do3d_comp_prec(i) ) |
---|
1974 | IF ( LLT( do3d_comp_prec(i)(ilen:ilen), '0' ) .OR. & |
---|
1975 | LGT( do3d_comp_prec(i)(ilen:ilen), '9' ) ) THEN |
---|
1976 | IF ( myid == 0 ) THEN |
---|
1977 | PRINT*, '+++ check_parameters: illegal precision: ', & |
---|
1978 | 'do3d_comp_prec(', i, ')="', TRIM(do3d_comp_prec(i)),'"' |
---|
1979 | ENDIF |
---|
1980 | CALL local_stop |
---|
1981 | ENDIF |
---|
1982 | |
---|
1983 | prec = IACHAR( do3d_comp_prec(i)(ilen:ilen) ) - IACHAR( '0' ) |
---|
1984 | var = do3d_comp_prec(i)(1:ilen-1) |
---|
1985 | |
---|
1986 | SELECT CASE ( var ) |
---|
1987 | |
---|
1988 | CASE ( 'u' ) |
---|
1989 | j = 1 |
---|
1990 | CASE ( 'v' ) |
---|
1991 | j = 2 |
---|
1992 | CASE ( 'w' ) |
---|
1993 | j = 3 |
---|
1994 | CASE ( 'p' ) |
---|
1995 | j = 4 |
---|
1996 | CASE ( 'pt' ) |
---|
1997 | j = 5 |
---|
1998 | |
---|
1999 | CASE DEFAULT |
---|
2000 | IF ( myid == 0 ) THEN |
---|
2001 | PRINT*, '+++ check_parameters: unknown variable in ', & |
---|
2002 | 'assignment' |
---|
2003 | PRINT*, ' do3d_comp_prec(', i, ')="', & |
---|
2004 | TRIM( do3d_comp_prec(i) ),'"' |
---|
2005 | ENDIF |
---|
2006 | CALL local_stop |
---|
2007 | |
---|
2008 | END SELECT |
---|
2009 | |
---|
2010 | plot_3d_precision(j)%precision = prec |
---|
2011 | i = i + 1 |
---|
2012 | |
---|
2013 | ENDDO |
---|
2014 | ENDIF |
---|
2015 | |
---|
2016 | ! |
---|
2017 | !-- Check the data output format(s) |
---|
2018 | IF ( data_output_format(1) == ' ' ) THEN |
---|
2019 | ! |
---|
2020 | !-- Default value |
---|
2021 | netcdf_output = .TRUE. |
---|
2022 | ELSE |
---|
2023 | i = 1 |
---|
2024 | DO WHILE ( data_output_format(i) /= ' ' ) |
---|
2025 | |
---|
2026 | SELECT CASE ( data_output_format(i) ) |
---|
2027 | |
---|
2028 | CASE ( 'netcdf' ) |
---|
2029 | netcdf_output = .TRUE. |
---|
2030 | CASE ( 'iso2d' ) |
---|
2031 | iso2d_output = .TRUE. |
---|
2032 | CASE ( 'profil' ) |
---|
2033 | profil_output = .TRUE. |
---|
2034 | CASE ( 'avs' ) |
---|
2035 | avs_output = .TRUE. |
---|
2036 | |
---|
2037 | CASE DEFAULT |
---|
2038 | IF ( myid == 0 ) THEN |
---|
2039 | PRINT*, '+++ check_parameters:' |
---|
2040 | PRINT*, ' unknown value for data_output_format "', & |
---|
2041 | TRIM( data_output_format(i) ),'"' |
---|
2042 | ENDIF |
---|
2043 | CALL local_stop |
---|
2044 | |
---|
2045 | END SELECT |
---|
2046 | |
---|
2047 | i = i + 1 |
---|
2048 | IF ( i > 10 ) EXIT |
---|
2049 | |
---|
2050 | ENDDO |
---|
2051 | |
---|
2052 | ENDIF |
---|
2053 | |
---|
2054 | ! |
---|
2055 | !-- Check netcdf precison |
---|
2056 | ldum = .FALSE. |
---|
2057 | CALL define_netcdf_header( 'ch', ldum, 0 ) |
---|
2058 | |
---|
2059 | ! |
---|
2060 | !-- Check, whether a constant diffusion coefficient shall be used |
---|
2061 | IF ( km_constant /= -1.0 ) THEN |
---|
2062 | IF ( km_constant < 0.0 ) THEN |
---|
2063 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: km_constant=', & |
---|
2064 | km_constant, ' < 0.0' |
---|
2065 | CALL local_stop |
---|
2066 | ELSE |
---|
2067 | IF ( prandtl_number < 0.0 ) THEN |
---|
2068 | IF ( myid == 0 ) PRINT*,'+++ check_parameters: prandtl_number=',& |
---|
2069 | prandtl_number, ' < 0.0' |
---|
2070 | CALL local_stop |
---|
2071 | ENDIF |
---|
2072 | constant_diffusion = .TRUE. |
---|
2073 | |
---|
2074 | IF ( prandtl_layer ) THEN |
---|
2075 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: prandtl_layer ',& |
---|
2076 | 'is not allowed with fixed value of km' |
---|
2077 | CALL local_stop |
---|
2078 | ENDIF |
---|
2079 | ENDIF |
---|
2080 | ENDIF |
---|
2081 | |
---|
2082 | ! |
---|
2083 | !-- In case of non-cyclic lateral boundaries, set the default maximum value |
---|
2084 | !-- for the horizontal diffusivity used within the outflow damping layer, |
---|
2085 | !-- and check/set the width of the damping layer |
---|
2086 | IF ( bc_lr /= 'cyclic' ) THEN |
---|
2087 | IF ( km_damp_max == -1.0 ) THEN |
---|
2088 | km_damp_max = 0.5 * dx |
---|
2089 | ENDIF |
---|
2090 | IF ( outflow_damping_width == -1.0 ) THEN |
---|
2091 | outflow_damping_width = MIN( 20, nx/2 ) |
---|
2092 | ENDIF |
---|
2093 | IF ( outflow_damping_width <= 0 .OR. outflow_damping_width > nx ) THEN |
---|
2094 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: outflow_damping w',& |
---|
2095 | 'idth out of range' |
---|
2096 | CALL local_stop |
---|
2097 | ENDIF |
---|
2098 | ENDIF |
---|
2099 | |
---|
2100 | IF ( bc_ns /= 'cyclic' ) THEN |
---|
2101 | IF ( km_damp_max == -1.0 ) THEN |
---|
2102 | km_damp_max = 0.5 * dy |
---|
2103 | ENDIF |
---|
2104 | IF ( outflow_damping_width == -1.0 ) THEN |
---|
2105 | outflow_damping_width = MIN( 20, ny/2 ) |
---|
2106 | ENDIF |
---|
2107 | IF ( outflow_damping_width <= 0 .OR. outflow_damping_width > ny ) THEN |
---|
2108 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: outflow_damping w',& |
---|
2109 | 'idth out of range' |
---|
2110 | CALL local_stop |
---|
2111 | ENDIF |
---|
2112 | ENDIF |
---|
2113 | |
---|
2114 | ! |
---|
2115 | !-- Check value range for rif |
---|
2116 | IF ( rif_min >= rif_max ) THEN |
---|
2117 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: rif_min=', rif_min, & |
---|
2118 | ' must be less than rif_max=', rif_max |
---|
2119 | CALL local_stop |
---|
2120 | ENDIF |
---|
2121 | |
---|
2122 | ! |
---|
2123 | !-- Determine upper and lower hight level indices for random perturbations |
---|
2124 | IF ( disturbance_level_b == -1.0 ) THEN |
---|
2125 | disturbance_level_b = zu(nzb+3) |
---|
2126 | disturbance_level_ind_b = nzb + 3 |
---|
2127 | ELSEIF ( disturbance_level_b < zu(3) ) THEN |
---|
2128 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: disturbance_level_b=',& |
---|
2129 | disturbance_level_b, ' must be >= ',zu(3), & |
---|
2130 | '(zu(3))' |
---|
2131 | CALL local_stop |
---|
2132 | ELSEIF ( disturbance_level_b > zu(nzt-2) ) THEN |
---|
2133 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: disturbance_level_b=',& |
---|
2134 | disturbance_level_b, ' must be <= ',zu(nzt-2),& |
---|
2135 | '(zu(nzt-2))' |
---|
2136 | CALL local_stop |
---|
2137 | ELSE |
---|
2138 | DO k = 3, nzt-2 |
---|
2139 | IF ( disturbance_level_b <= zu(k) ) THEN |
---|
2140 | disturbance_level_ind_b = k |
---|
2141 | EXIT |
---|
2142 | ENDIF |
---|
2143 | ENDDO |
---|
2144 | ENDIF |
---|
2145 | |
---|
2146 | IF ( disturbance_level_t == -1.0 ) THEN |
---|
2147 | disturbance_level_t = zu(nzt/3) |
---|
2148 | disturbance_level_ind_t = nzt / 3 |
---|
2149 | ELSEIF ( disturbance_level_t > zu(nzt-2) ) THEN |
---|
2150 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: disturbance_level_t=',& |
---|
2151 | disturbance_level_t, ' must be <= ',zu(nzt-2),& |
---|
2152 | '(zu(nzt-2))' |
---|
2153 | CALL local_stop |
---|
2154 | ELSEIF ( disturbance_level_t < disturbance_level_b ) THEN |
---|
2155 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: disturbance_level_t=',& |
---|
2156 | disturbance_level_t, ' must be >= ', & |
---|
2157 | 'disturbance_level_b=', disturbance_level_b |
---|
2158 | CALL local_stop |
---|
2159 | ELSE |
---|
2160 | DO k = 3, nzt-2 |
---|
2161 | IF ( disturbance_level_t <= zu(k) ) THEN |
---|
2162 | disturbance_level_ind_t = k |
---|
2163 | EXIT |
---|
2164 | ENDIF |
---|
2165 | ENDDO |
---|
2166 | ENDIF |
---|
2167 | |
---|
2168 | ! |
---|
2169 | !-- Check again whether the levels determined this way are ok. |
---|
2170 | !-- Error may occur at automatic determination and too few grid points in |
---|
2171 | !-- z-direction. |
---|
2172 | IF ( disturbance_level_ind_t < disturbance_level_ind_b ) THEN |
---|
2173 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: ', & |
---|
2174 | 'disturbance_level_ind_t=', & |
---|
2175 | disturbance_level_ind_t, ' must be >= ', & |
---|
2176 | 'disturbance_level_ind_b=', & |
---|
2177 | disturbance_level_ind_b |
---|
2178 | CALL local_stop |
---|
2179 | ENDIF |
---|
2180 | |
---|
2181 | ! |
---|
2182 | !-- Determine the horizontal index range for random perturbations. |
---|
2183 | !-- In case of non-cyclic horizontal boundaries, no perturbations are imposed |
---|
2184 | !-- near the inflow and the perturbation area is further limited to ...(1) |
---|
2185 | !-- after the initial phase of the flow. |
---|
2186 | dist_nxl = 0; dist_nxr = nx |
---|
2187 | dist_nys = 0; dist_nyn = ny |
---|
2188 | IF ( bc_lr /= 'cyclic' ) THEN |
---|
2189 | IF ( inflow_disturbance_begin == -1 ) THEN |
---|
2190 | inflow_disturbance_begin = MIN( 10, nx/2 ) |
---|
2191 | ENDIF |
---|
2192 | IF ( inflow_disturbance_begin < 0 .OR. inflow_disturbance_begin > nx )& |
---|
2193 | THEN |
---|
2194 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: inflow_disturbance',& |
---|
2195 | '_begin out of range' |
---|
2196 | CALL local_stop |
---|
2197 | ENDIF |
---|
2198 | IF ( inflow_disturbance_end == -1 ) THEN |
---|
2199 | inflow_disturbance_end = MIN( 100, 3*nx/4 ) |
---|
2200 | ENDIF |
---|
2201 | IF ( inflow_disturbance_end < 0 .OR. inflow_disturbance_end > nx ) & |
---|
2202 | THEN |
---|
2203 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: inflow_disturbance',& |
---|
2204 | '_end out of range' |
---|
2205 | CALL local_stop |
---|
2206 | ENDIF |
---|
2207 | ELSEIF ( bc_ns /= 'cyclic' ) THEN |
---|
2208 | IF ( inflow_disturbance_begin == -1 ) THEN |
---|
2209 | inflow_disturbance_begin = MIN( 10, ny/2 ) |
---|
2210 | ENDIF |
---|
2211 | IF ( inflow_disturbance_begin < 0 .OR. inflow_disturbance_begin > ny )& |
---|
2212 | THEN |
---|
2213 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: inflow_disturbance',& |
---|
2214 | '_begin out of range' |
---|
2215 | CALL local_stop |
---|
2216 | ENDIF |
---|
2217 | IF ( inflow_disturbance_end == -1 ) THEN |
---|
2218 | inflow_disturbance_end = MIN( 100, 3*ny/4 ) |
---|
2219 | ENDIF |
---|
2220 | IF ( inflow_disturbance_end < 0 .OR. inflow_disturbance_end > ny ) & |
---|
2221 | THEN |
---|
2222 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: inflow_disturbance',& |
---|
2223 | '_end out of range' |
---|
2224 | CALL local_stop |
---|
2225 | ENDIF |
---|
2226 | ENDIF |
---|
2227 | |
---|
2228 | IF ( outflow_l ) THEN |
---|
2229 | dist_nxr = nx - inflow_disturbance_begin |
---|
2230 | dist_nxl(1) = nx - inflow_disturbance_end |
---|
2231 | ELSEIF ( outflow_r ) THEN |
---|
2232 | dist_nxl = inflow_disturbance_begin |
---|
2233 | dist_nxr(1) = inflow_disturbance_end |
---|
2234 | ELSEIF ( outflow_s ) THEN |
---|
2235 | dist_nyn = ny - inflow_disturbance_begin |
---|
2236 | dist_nys(1) = ny - inflow_disturbance_end |
---|
2237 | ELSEIF ( outflow_n ) THEN |
---|
2238 | dist_nys = inflow_disturbance_begin |
---|
2239 | dist_nyn(1) = inflow_disturbance_end |
---|
2240 | ENDIF |
---|
2241 | |
---|
2242 | ! |
---|
2243 | !-- Check random generator |
---|
2244 | IF ( random_generator /= 'system-specific' .AND. & |
---|
2245 | random_generator /= 'numerical-recipes' ) THEN |
---|
2246 | IF ( myid == 0 ) THEN |
---|
2247 | PRINT*, '+++ check_parameters:' |
---|
2248 | PRINT*, ' unknown random generator: random_generator=', & |
---|
2249 | random_generator |
---|
2250 | ENDIF |
---|
2251 | CALL local_stop |
---|
2252 | ENDIF |
---|
2253 | |
---|
2254 | ! |
---|
2255 | !-- Determine damping level index for 1D model |
---|
2256 | IF ( INDEX( initializing_actions, 'set_1d-model_profiles' ) /= 0 ) THEN |
---|
2257 | IF ( damp_level_1d == -1.0 ) THEN |
---|
2258 | damp_level_1d = zu(nzt+1) |
---|
2259 | damp_level_ind_1d = nzt + 1 |
---|
2260 | ELSEIF ( damp_level_1d < 0.0 .OR. damp_level_1d > zu(nzt+1) ) THEN |
---|
2261 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: damp_level_1d=', & |
---|
2262 | damp_level_1d, ' must be > 0.0 and < ', & |
---|
2263 | 'zu(nzt+1)', zu(nzt+1) |
---|
2264 | CALL local_stop |
---|
2265 | ELSE |
---|
2266 | DO k = 1, nzt+1 |
---|
2267 | IF ( damp_level_1d <= zu(k) ) THEN |
---|
2268 | damp_level_ind_1d = k |
---|
2269 | EXIT |
---|
2270 | ENDIF |
---|
2271 | ENDDO |
---|
2272 | ENDIF |
---|
2273 | ENDIF |
---|
2274 | ! |
---|
2275 | !-- Check some other 1d-model parameters |
---|
2276 | IF ( TRIM( mixing_length_1d ) /= 'as_in_3d_model' .AND. & |
---|
2277 | TRIM( mixing_length_1d ) /= 'blackadar' ) THEN |
---|
2278 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: mixing_length_1d = "', & |
---|
2279 | TRIM( mixing_length_1d ), '" is unknown' |
---|
2280 | CALL local_stop |
---|
2281 | ENDIF |
---|
2282 | IF ( TRIM( dissipation_1d ) /= 'as_in_3d_model' .AND. & |
---|
2283 | TRIM( dissipation_1d ) /= 'detering' ) THEN |
---|
2284 | IF ( myid == 0 ) PRINT*, '+++ check_parameters: dissipation_1d = "', & |
---|
2285 | TRIM( dissipation_1d ), '" is unknown' |
---|
2286 | CALL local_stop |
---|
2287 | ENDIF |
---|
2288 | |
---|
2289 | ! |
---|
2290 | !-- Set time for the next user defined restart (time_restart is the |
---|
2291 | !-- internal parameter for steering restart events) |
---|
2292 | IF ( restart_time /= 9999999.9 ) THEN |
---|
2293 | IF ( restart_time > simulated_time ) time_restart = restart_time |
---|
2294 | ELSE |
---|
2295 | ! |
---|
2296 | !-- In case of a restart run, set internal parameter to default (no restart) |
---|
2297 | !-- if the NAMELIST-parameter restart_time is omitted |
---|
2298 | time_restart = 9999999.9 |
---|
2299 | ENDIF |
---|
2300 | |
---|
2301 | ! |
---|
2302 | !-- Set default value of the time needed to terminate a model run |
---|
2303 | IF ( termination_time_needed == -1.0 ) THEN |
---|
2304 | IF ( host(1:3) == 'ibm' ) THEN |
---|
2305 | termination_time_needed = 300.0 |
---|
2306 | ELSE |
---|
2307 | termination_time_needed = 35.0 |
---|
2308 | ENDIF |
---|
2309 | ENDIF |
---|
2310 | |
---|
2311 | ! |
---|
2312 | !-- Check the time needed to terminate a model run |
---|
2313 | IF ( host(1:3) == 't3e' ) THEN |
---|
2314 | ! |
---|
2315 | !-- Time needed must be at least 30 seconds on all CRAY machines, because |
---|
2316 | !-- MPP_TREMAIN gives the remaining CPU time only in steps of 30 seconds |
---|
2317 | IF ( termination_time_needed <= 30.0 ) THEN |
---|
2318 | IF ( myid == 0 ) THEN |
---|
2319 | PRINT*, '+++ check_parameters: termination_time_needed', & |
---|
2320 | termination_time_needed |
---|
2321 | PRINT*, ' must be > 30.0 on host "', host, & |
---|
2322 | '"' |
---|
2323 | ENDIF |
---|
2324 | CALL local_stop |
---|
2325 | ENDIF |
---|
2326 | ELSEIF ( host(1:3) == 'ibm' ) THEN |
---|
2327 | ! |
---|
2328 | !-- On IBM-regatta machines the time should be at least 300 seconds, |
---|
2329 | !-- because the job time consumed before executing palm (for compiling, |
---|
2330 | !-- copying of files, etc.) has to be regarded |
---|
2331 | IF ( termination_time_needed < 300.0 ) THEN |
---|
2332 | IF ( myid == 0 ) THEN |
---|
2333 | PRINT*, '+++ WARNING: check_parameters: termination_time_', & |
---|
2334 | 'needed', termination_time_needed |
---|
2335 | PRINT*, ' should be >= 300.0', & |
---|
2336 | ' on host "', host, '"' |
---|
2337 | ENDIF |
---|
2338 | ENDIF |
---|
2339 | ENDIF |
---|
2340 | |
---|
2341 | |
---|
2342 | END SUBROUTINE check_parameters |
---|