source: CONFIG/UNIFORM/v6/IPSLCM6.3/GENERAL/PARAM/namcouple_ESMCO2DMS_ORCA1xLMD144142 @ 6628

Last change on this file since 6628 was 6584, checked in by acosce, 10 months ago

update configuration to add coupled experiment with inca(AER) + CO2 in lmdz and pisces + coupling of co2 and dms between oce ant atm

File size: 16.3 KB
Line 
1###############################################################################
2#
3#      Input file for OASIS3
4#
5#      This version is for use with IPSL_CM4_v1
6#
7#      The file will be edited at runtime to update it for
8#         - the initial date of the run
9#
10###############################################################################
11
12#      Input delimiters have to occupy position 1 to 9 !
13#      No blank lines allowed !
14#      Length of input lines <= 80 !
15#
16###############################################################################
17#
18# NFIELDS : total number of fields being exchanged.
19#
20 $NFIELDS
21            30
22 $END
23###############################################################################
24#
25# NBMODEL : number of models and their names (CHAR*6).
26#
27 $NBMODEL
28  2  LMDZ oceanx
29 $END
30###############################################################################
31#
32# RUNTIME: total simulated time for the actual run in seconds (<I8)
33#
34 $RUNTIME
35  <total_time>
36 $END
37###############################################################################
38#
39# NLOGPRT: printing level in debug file :
40#
41 $NLOGPRT
42   0 <lucia_ok>
43 $END
44#
45###############################################################################
46 $STRINGS
47###############################################################################
48#
49#                      OCEAN  --->>>  ATMOS
50#                      --------------------
51# Field 1 : Weighted sea surface temperature (o->a 1)
52#
53O_SSTSST  SISUTESW 1 <freq_coupling>  2  sstoc.nc  <output_mode>
54362 332 144 143 torc  tlmd  LAG=<lag_oce>
55P  2 P  0
56LOCTRANS MAPPING
57# LOCTRANS: AVERAGE to average value over coupling period
58 AVERAGE
59# CHECKIN: indicate computation of global, land and sea field integrals.
60# Mozaic: 1) mapping filename 2) connected unit 3) dataset rank 4) Maximum
61#         number of overlapped neighbors
62rmp_torc_to_tlmd_MOSAIC.nc src
63# CHECKOUT: indicate computation of global, land and sea field integrals.
64#
65############################################################################
66#
67# Field 2 : Sea ice extent  (o->a 2)
68#
69OIceFrc SIICECOV 44 <freq_coupling>  2  sstoc.nc <output_mode>
70362 332 144 143 torc  tlmd   LAG=<lag_oce>
71P  2 P  0
72#
73LOCTRANS MAPPING
74 AVERAGE
75# CHECKIN: indicate computation of global, land and sea field integrals.
76#
77rmp_torc_to_tlmd_MOSAIC.nc src
78# CHECKOUT: indicate computation of global, land and sea field integrals.
79#
80#
81############################################################################
82#
83# Field 3 : Weighted Sea Ice Temperature (o->a 3)
84#
85O_TepIce  SIICTEMW 34 <freq_coupling>  2  sstoc.nc  <output_mode>
86362 332 144 143 torc  tlmd   LAG=<lag_oce>
87P  2 P  0
88LOCTRANS MAPPING
89 AVERAGE
90# CHECKIN: indicate computation of global, land and sea field integrals.
91#
92rmp_torc_to_tlmd_MOSAIC.nc src
93# CHECKOUT: indicate computation of global, land and sea field integrals.
94#
95############################################################################
96#
97# Field 4 : Weighted Sea ice albedo (o->a 4)
98#
99O_AlbIce  SIICEALW 17 <freq_coupling>  2  sstoc.nc  <output_mode>
100362 332 144 143 torc  tlmd  LAG=<lag_oce> 
101P  2 P  0
102#
103LOCTRANS MAPPING
104 AVERAGE
105# CHECKIN: indicate computation of global, land and sea field integrals.
106#
107rmp_torc_to_tlmd_MOSAIC.nc src
108# CHECKOUT: indicate computation of global, land and sea field integrals.
109#
110#
111############################################################################
112#
113# Field 5 : Current surface (o->a 5)
114O_OCurx1 CURRENTX 321 <freq_coupling>  2  sstoc.nc  <output_mode>
115362 332 144 143 torc    tlmd  LAG=<lag_oce>
116P  2 P  0
117LOCTRANS MAPPING
118 AVERAGE
119# CHECKIN: indicate computation of global, land and sea field integrals.
120#
121rmp_torc_to_tlmd_MOSAIC.nc src
122# CHECKOUT: indicate computation of global, land and sea field integrals.
123#
124#
125############################################################################
126#
127# Field 6 : Current surface (o->a 6)
128O_OCury1 CURRENTY 321 <freq_coupling>  2  sstoc.nc  <output_mode>
129362 332 144 143 torc    tlmd  LAG=<lag_oce>
130P  2 P  0
131LOCTRANS MAPPING
132 AVERAGE
133# CHECKIN: indicate computation of global, land and sea field integrals.
134#
135rmp_torc_to_tlmd_MOSAIC.nc src
136# CHECKOUT: indicate computation of global, land and sea field integrals.
137
138############################################################################
139#
140# Field 7 : Current surface (o->a 7)
141O_OCurz1 CURRENTZ 321 <freq_coupling>  2  sstoc.nc  <output_mode>
142362 332 144 143 torc    tlmd  LAG=<lag_oce>
143P  2 P  0
144LOCTRANS MAPPING
145 AVERAGE
146# CHECKIN: indicate computation of global, land and sea field integrals.
147#
148rmp_torc_to_tlmd_MOSAIC.nc src
149# CHECKOUT: indicate computation of global, land and sea field integrals.
150#
151###########################################################################
152#
153# Field 8 : Ocean Carbon flux  (o->a 8)
154O_CO2FLX SICO2FLX 38  <freq_coupling>  2  sstoc.nc  <output_mode>
155362 332 144 143 torc  tlmd  LAG=<lag_oce>
156P  30 P  3
157LOCTRANS MAPPING
158 AVERAGE
159# CHECKIN: indicate computation of global, land and sea field
160#
161rmp_torc_to_tlmd_MOSAIC.nc src
162# CHECKOUT: indicate computation of global, land and sea fiel
163#
164#
165###########################################################################
166#
167#                     OCEAN   --->>>   INCA
168#                     ---------------------
169###########################################################################
170#
171# Field 9 : Ocean DMS flux  (o->a 9)
172O_DMSFLX SIDMSFLX 39  <freq_coupling>  2  sstoc.nc  <output_mode>
173362 332 144 143 torc  tlmd  LAG=<lag_oce>
174P  30 P  3
175LOCTRANS MAPPING
176 AVERAGE
177# CHECKIN: indicate computation of global, land and sea field
178#
179rmp_torc_to_tlmd_MOSAIC.nc src
180# CHECKOUT: indicate computation of global, land and sea field
181#
182#
183############################################################################
184#
185#                      ATMOSPHERE  --->>>  OCEAN
186#                      -------------------------
187############################################################################   
188#
189# Field 10 : wind stress along X axis (a->o 1)
190#
191COTAUXXU O_OTaux1 23 <freq_coupling>  1  flxat.nc   <output_mode>
192144 143 362 332 tlmd    uorc  LAG=<lag_atm>
193P  0 P  2
194MAPPING
195# CHECKIN: indicate computation of global, land and sea field integrals.
196# Interpolation method ou parametres mozaic
197rmp_tlmd_to_uorc_BILINEAR_Corrected.nc dst
198# CHECKOUT: indicate computation of global, land and sea field integrals.
199#
200###########################################################################
201#
202# Field 11 : stress along Y axis (a->o 2)
203#
204COTAUYYU O_OTauy1 23 <freq_coupling>  1  flxat.nc  <output_mode>
205144 143 362 332 tlmd    uorc  LAG=<lag_atm>
206P  0 P  2
207MAPPING
208# CHECKIN: indicate computation of global, land and sea field integrals.
209# Interpolation method ou parametres mozaic
210rmp_tlmd_to_uorc_BILINEAR_Corrected.nc dst
211# CHECKOUT: indicate computation of global, land and sea field integrals.
212#
213###########################################################################
214#
215# Field 12 :wind stress along Z axis (a->o 3)
216#
217COTAUZZU O_OTauz1 23 <freq_coupling>  1  flxat.nc  <output_mode>
218144 143 362 332 tlmd    uorc  LAG=<lag_atm>
219P  0 P  2
220MAPPING
221# CHECKIN: indicate computation of global, land and sea field integrals.
222# Interpolation method ou parametres mozaic
223rmp_tlmd_to_uorc_BILINEAR_Corrected.nc dst
224# CHECKOUT: indicate computation of global, land and sea field integrals.
225#
226##########################################################################
227#
228# Field 13 : wind stress along X axis 2 (a->o 4)
229#
230COTAUXXV O_OTaux2  24 <freq_coupling>  1    flxat.nc  <output_mode>
231144 143 362 332 tlmd    vorc  LAG=<lag_atm>
232P  0 P  2
233SCRIPR
234# CHECKIN: indicate computation of global, land and sea field integrals.
235BILINEAR LR SCALAR LATLON 10
236# CHECKOUT: indicate computation of global, land and sea field integrals.
237#
238##########################################################################
239#
240# Field 14 : wind stress along Y axis 2 (a->o 5)
241#
242COTAUYYV O_OTauy2  24 <freq_coupling>  1    flxat.nc  <output_mode>
243144 143 362 332 tlmd    vorc  LAG=<lag_atm>
244P  0 P  2
245SCRIPR
246# CHECKIN: indicate computation of global, land and sea field integrals.
247BILINEAR LR SCALAR LATLON 10
248# CHECKOUT: indicate computation of global, land and sea field integrals.
249#
250##########################################################################
251#
252# Field 15 :  wind stress along Z axis 2 (a->o 6)
253#
254COTAUZZV O_OTauz2  24 <freq_coupling>  1    flxat.nc  <output_mode>
255144 143 362 332 tlmd    vorc  LAG=<lag_atm>
256P  0 P  2
257SCRIPR
258# CHECKIN: indicate computation of global, land and sea field integrals.
259BILINEAR LR SCALAR LATLON 10
260# CHECKOUT: indicate computation of global, land and sea field integrals.
261#
262#########################################################################
263#
264# Field 16 :  wind speed 10m (a->o 7)
265#
266COWINDSP O_Wind10  56 <freq_coupling>  1    flxat.nc  <output_mode>
267144 143 362 332 tlmd    torc  LAG=<lag_atm>
268P  0 P  2
269MAPPING
270# CHECKIN: indicate computation of global, land and sea field integrals.
271# Interpolation method ou parametres mozaic
272rmp_tlmd_to_torc_BILINEAR_Corrected.nc dst
273# CHECKOUT: indicate computation of global, land and sea field integrals.
274#
275#########################################################################
276#
277# Field 17 : Total rain (a->o 8)
278#
279COTOTRAI OTotRain 26 <freq_coupling>  1   flxat.nc   <output_mode>
280144 143 362 332 tlmd    torc  LAG=<lag_atm>
281P  0 P  2
282MAPPING
283# CHECKIN: indicate computation of global, land and sea field integrals.
284# Interpolation method ou parametres mozaic
285rmp_tlmd_to_torc_MOSAIC.nc dst
286# CHECKOUT: indicate computation of global, land and sea field integrals.
287#
288##########################################################################
289#
290# Field 18 :  Total snow (a->o 9)
291#
292COTOTSNO  OTotSnow 28 <freq_coupling>  1   flxat.nc   <output_mode>
293144 143 362 332 tlmd    torc  LAG=<lag_atm>
294P  0 P  2
295MAPPING
296# CHECKIN: indicate computation of global, land and sea field integrals.
297# Interpolation method ou parametres mozaic
298rmp_tlmd_to_torc_MOSAIC.nc dst
299# CHECKOUT: indicate computation of global, land and sea field integrals.
300#
301#########################################################################
302#
303# Field 19 : Total evap (a->o 10)
304#
305COTOTEVA  OTotEvap 25 <freq_coupling>  1   flxat.nc   <output_mode>
306144 143 362 332 tlmd    torc  LAG=<lag_atm>
307P  0 P  2
308MAPPING
309# CHECKIN: indicate computation of global, land and sea field integrals.
310# Interpolation method ou parametres mozaic
311rmp_tlmd_to_torc_MOSAIC.nc dst
312# CHECKOUT: indicate computation of global, land and sea field integrals.
313#
314##########################################################################
315#
316# Field 20 : Evaporation Ice  (a->o 11)
317#
318COICEVAP OIceEvap 41 <freq_coupling>  1   flxat.nc   <output_mode>
319144 143 362 332 tlmd    torc  LAG=<lag_atm>
320P  0 P  2
321MAPPING
322# CHECKIN: indicate computation of global, land and sea field integrals.
323# Interpolation method ou parametres mozaic
324rmp_tlmd_to_torc_MOSAIC.nc dst
325# CHECKOUT: indicate computation of global, land and sea field integrals.
326#
327##########################################################################
328#
329# Field 21 : Total solar heat flux (a->o 12)
330#
331COQSRMIX O_QsrMix  7 <freq_coupling> 1   flxat.nc  <output_mode>
332144 143 362 332 tlmd    torc  LAG=<lag_atm>
333P  0 P  2
334MAPPING
335# CHECKIN: indicate computation of global, land and sea field integrals.
336# Interpolation method or mozaic parameters
337rmp_tlmd_to_torc_MOSAIC.nc dst
338# CHECKOUT: indicate computation of global, land and sea field integrals.
339#
340#########################################################################
341#
342# Field 22 : Total Non solar heat flux (a->o 13)
343#
344COQNSMIX O_QnsMix 6 <freq_coupling>  1   flxat.nc  <output_mode>
345144 143 362 332 tlmd    torc   LAG=<lag_atm>
346P  0 P  2
347MAPPING
348# CHECKIN: indicate computation of global, land and sea field integrals.
349# Interpolation method ou parametres mozaic
350rmp_tlmd_to_torc_MOSAIC.nc dst
351# CHECKOUT: indicate computation of global, land and sea field integrals.
352#
353###########################################################################
354#
355# Field 23 : solar heat flux on ice (a->o 14)
356#
357COSHFICE O_QsrIce  7 <freq_coupling> 1   flxat.nc  <output_mode>
358144 143 362 332 tlmd    torc  LAG=<lag_atm>
359P  0 P  2
360MAPPING
361# CHECKIN: indicate computation of global, land and sea field integrals.
362# Interpolation method or mozaic parameters
363rmp_tlmd_to_torc_MOSAIC.nc dst
364# CHECKOUT: indicate computation of global, land and sea field integrals.
365#
366############################################################################
367#
368# Field 24 : Non solar heat flux on ice (a->o 15)
369#
370CONSFICE O_QnsIce 6 <freq_coupling>  1  flxat.nc  <output_mode>
371144 143 362 332 tlmd    torc  LAG=<lag_atm>
372P  0 P  2
373MAPPING
374# CHECKIN: indicate computation of global, land and sea field integrals.
375# Interpolation method ou parametres mozaic
376rmp_tlmd_to_torc_MOSAIC.nc dst
377# CHECKOUT: indicate computation of global, land and sea field integrals.
378#
379############################################################################
380#
381# Field 25 : Non solar heat flux derivative (a->o 16)
382#
383CODFLXDT O_dQnsdT  35 <freq_coupling>  1   flxat.nc  <output_mode>
384144 143 362 332 tlmd    torc  LAG=<lag_atm>
385P  0 P  2
386MAPPING
387# CHECKIN: indicate computation of global, land and sea field integrals.
388# Interpolation method ou parametres mozaic
389rmp_tlmd_to_torc_MOSAIC.nc dst
390# CHECKOUT: indicate computation of global, land and sea field integrals.
391#
392#########################################################################
393#
394# Field 26 : iceberg calving north (a->o 17)
395#
396COCALVIN OCalving  36 <freq_coupling_roff_calv>  2  flxat.nc  <output_mode>
397144 143 362 332 tlmd    torc  LAG=<lag_atm_roff_calv>
398P  0 P  2
399LOCTRANS MAPPING
400AVERAGE
401# CHECKIN: indicate computation of global, land and sea field integrals.
402# Interpolation method ou parametres mozaic
403rmp_tlmd_to_torc_MOSAIC_calving_nosouth.nc dst
404# CHECKOUT: indicate computation of global, land and sea field integrals.
405#
406#########################################################################
407#
408# Field 27 : iceberg melting (a->o 17)
409#
410COCALVIN OIceberg  36 <freq_coupling_roff_calv>  3  icbrg.nc  <output_mode>
411144 143 362 332 tlmd    torc  LAG=<lag_atm_roff_calv>
412P  0 P  2
413LOCTRANS MAPPING BLASNEW
414AVERAGE
415# CHECKIN: indicate computation of global, land and sea field integrals.
416# Interpolation method ou parametres mozaic
417rmp_tlmd_to_torc_MOSAIC_calving_iceberg.nc dst
4180.5 0
419# CHECKOUT: indicate computation of global, land and sea field integrals.
420#########################################################################
421#
422# Field 28 : ice shelf melting (a->o 17)
423#
424COCALVIN OIcshelf  36 <freq_coupling_roff_calv>  3  icshf.nc  <output_mode>
425144 143 362 332 tlmd    torc  LAG=<lag_atm_roff_calv>
426P  0 P  2
427LOCTRANS MAPPING BLASNEW
428AVERAGE
429# CHECKIN: indicate computation of global, land and sea field integrals.
430# Interpolation method ou parametres mozaic
431rmp_tlmd_to_torc_MOSAIC_calving_iceshelf.nc dst
4320.5 0
433# CHECKOUT: indicate computation of global, land and sea field integrals.
434##########################################################################
435#
436# Field 29 : liquid run-off (river + direct)  (a->o 18)
437#
438COLIQRUN  O_Runoff 32 <freq_coupling_roff_calv>  4  flxat.nc   <output_mode>
439144 143 362 332 aone  torc  LAG=<lag_atm_roff_calv>
440P  0 P  2
441LOCTRANS MAPPING CONSERV BLASNEW
442AVERAGE
443# Interpolation method ou parametres mozaic
444# weights convert from kg/s to kg/m^2/s
445rmp_tlmd_to_torc_MOSAIC_rivflu.nc dst
446# CONSERV
447GLOBAL bfb
448# change units from m/s to kg/s
4491000.0 0
450# CHECKOUT: indicate computation of global, land and sea field integrals.
451#
452#########################################################################
453#
454# Field 30 : atmospheric CO2 concentration  (a->o 24)
455#
456COATMCO2 O_AtmCO2 37 <freq_coupling>  1   flxat.nc   <output_mode>
457144 143 362 332 tlmd    torc  LAG=<lag_atm>
458P  30 P  3
459MAPPING
460# CHECKIN: indicate computation of global, land and sea field integrals.
461# Interpolation method ou parametres mozaic
462rmp_tLMD144X142_to_teORCA1.2_1storder.nc dst
463# CHECKOUT: indicate computation of global, land and sea field integrals.
464#
465#########################################################################
466# Field 26 : wind stress module (a->o 19)
467#
468##COTAUMOD  O_TauMod 466 <freq_coupling>  6   flxat.nc   <output_mode>
469##tlmd    torc  LAG=<lag_atm>
470##P  0 P  2
471##INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT
472# Reverse
473##NORSUD WSTEST
474# CHECKIN: indicate computation of global, land and sea field integrals.
475## INT=1
476# Mask value
477##888888.
478# Extrapolation method
479##NINENN 2 1 1
480# Interpolation method
481##BICUBIPS  Z   SCALAR
482# CHECKOUT: indicate computation of global, land and sea field integrals.
483## INT=1
484#
485#########################################################################
486#
487 $END
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