/[MITgcm]/MITgcm/pkg/aim_v23/aim_readparms.F
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Revision 1.2 - (hide annotations) (download)
Tue Dec 10 02:35:27 2002 UTC (21 years, 5 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint47e_post, checkpoint47d_pre, checkpoint47d_post, branch-exfmods-tag, checkpoint47f_post
Branch point for: branch-exfmods-curt
Changes since 1.1: +44 -1 lines
allow to use AIM physics with SPEEDY input files (from Franco Molteni):
 surface Boundary-Conditions are computed in (new) S/R aim_surf_bc.F.
can still use monthly mean (NCEP) surface forcing (with surface
 Temperature or surface Pot.Temp)

1 jmc 1.2 C $Header: /u/gcmpack/MITgcm/pkg/aim_v23/aim_readparms.F,v 1.1 2002/11/22 17:17:03 jmc Exp $
2 jmc 1.1 C $Name: $
3    
4     #include "AIM_OPTIONS.h"
5    
6     CBOP
7     C !ROUTINE: AIM_READPARMS
8     C !INTERFACE:
9     SUBROUTINE AIM_READPARMS( myThid )
10    
11     C !DESCRIPTION: \bv
12     C *==========================================================*
13     C | S/R AIM_READPARMS
14     C | o Read AIM physics package parameters
15     C *==========================================================*
16     C | Initialized parameter in common blocks:
17     C | FORCON, SFLCON, CNVCON, LSCCON, RADCON, VDICON
18     C *==========================================================*
19     C \ev
20    
21     C !USES:
22     IMPLICIT NONE
23    
24     C == Global variables ===
25     #include "AIM_SIZE.h"
26     #include "EEPARAMS.h"
27     c #include "PARAMS.h"
28 jmc 1.2 #include "AIM_PARAMS.h"
29 jmc 1.1
30     C- Physical constants + functions of sigma and latitude
31     c #include "com_physcon.h"
32     C- Constants for sub-grid-scale physics
33     #include "com_forcon.h"
34     #include "com_sflcon.h"
35     #include "com_cnvcon.h"
36     #include "com_lsccon.h"
37     #include "com_radcon.h"
38     #include "com_vdicon.h"
39    
40     C !INPUT/OUTPUT PARAMETERS:
41     C == Routine Arguments ==
42     C myThid - Number of this instance
43     INTEGER myThid
44     CEOP
45    
46     #ifdef ALLOW_AIM
47    
48     C == Local Variables ==
49     C msgBuf - Informational/error meesage buffer
50     C iUnit - Work variable for IO unit number
51     CHARACTER*(MAX_LEN_MBUF) msgBuf
52     INTEGER iUnit
53    
54     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
55    
56 jmc 1.2 C-- AIM interface parameter (common AIM_PARM_?):
57     C aim_useFMsurfBC :: select surface B.C. from Franco Molteni
58     C aim_useMMsurfFc :: select Monthly Mean surface forcing (e.g., NCEP)
59     C aim_surfPotTemp :: surf.Temp input file is in Pot.Temp (aim_useMMsurfFc)
60     C aim_MMsufx :: sufix for all Monthly Mean surface forcing files
61     C aim_MMsufxLength :: Length of sufix (Monthly Mean surf. forc. files)
62     C aim_LandFile :: file name for Land fraction (F.M. surfBC)
63     C aim_albFile :: file name for Albedo input file (F.M. surfBC)
64     C aim_vegFile :: file name for vegetation fraction (F.M. surfBC)
65     C aim_sstFile :: file name for Sea.Surf.Temp (F.M. surfBC)
66     C aim_lstFile :: file name for Land.Surf.Temp (F.M. surfBC)
67     C aim_oiceFile :: file name for Sea Ice fraction (F.M. surfBC)
68     C aim_snowFile :: file name for Snow depth (F.M. surfBC)
69     C aim_swcFile :: file name for Soil Water content (F.M. surfBC)
70     C aim_diagFreq :: Frequency^-1 for diagnostic output (s)
71     C aim_tendFreq :: Frequency^-1 for tendencies output (s)
72     NAMELIST /AIM_PARAMS/
73     & aim_useFMsurfBC, aim_useMMsurfFc, aim_surfPotTemp,
74     & aim_MMsufx, aim_MMsufxLength,
75     & aim_LandFile, aim_albFile, aim_vegFile,
76     & aim_sstFile, aim_lstFile, aim_oiceFile, aim_snowFile,
77     & aim_swcFile,
78     & aim_diagFreq, aim_tendFreq
79    
80 jmc 1.1 C-- Physical constants (common PHYCON) :
81     C P0 = reference pressure
82     C GG = gravity accel.
83     C RD = gas constant for dry air
84     C CP = specific heat at constant pressure
85     C ALHC = latent heat of condensation
86     C SBC = Stefan-Boltzmann constant
87    
88     C-- Constants for forcing fields (common FORCON) :
89     C SOLC = Solar constant (area averaged) in W/m^2
90     C ALBSEA = Albedo over sea
91     C ALBICE = Albedo over sea ice (for ice fraction = 1)
92     C ALBSN = Albedo over snow (for snow depth > SDALB)
93     C SDALB = Snow depth (mm water) corresponding to maximum albedo
94     C SWCAP = Soil wetness at field capacity (volume fraction)
95     C SWWIL = Soil wetness at wilting point (volume fraction)
96     NAMELIST /AIM_PAR_FOR/
97     & SOLC, ALBSEA, ALBICE, ALBSN,
98     & SDALB, SWCAP, SWWIL
99    
100     C-- Constants for surface fluxes (common SFLCON) :
101     C FWIND0 = ratio of near-sfc wind to lowest-level wind
102     C FTEMP0 = weight for near-sfc temperature extrapolation (0-1) :
103     C 1 : linear extrapolation from two lowest levels
104     C 0 : constant potential temperature ( = lowest level)
105     C FHUM0 = weight for near-sfc specific humidity extrapolation (0-1) :
106     C 1 : extrap. with constant relative hum. ( = lowest level)
107     C 0 : constant specific hum. ( = lowest level)
108     C CDL = drag coefficient for momentum over land
109     C CDS = drag coefficient for momentum over sea
110     C CHL = heat exchange coefficient over land
111     C CHS = heat exchange coefficient over sea
112     C VGUST = wind speed for sub-grid-scale gusts
113     C CTDAY = daily-cycle correction (dTskin/dSSRad)
114     C DTHETA = Potential temp. gradient for stability correction
115     C FSTAB = Amplitude of stability correction (fraction)
116     C HDRAG = Height scale for orographic correction
117     C FHDRAG = Amplitude of orographic correction (fraction)
118     NAMELIST /AIM_PAR_SFL/
119     & FWIND0, FTEMP0, FHUM0,
120     & CDL, CDS, CHL, CHS, VGUST, CTDAY,
121     & DTHETA, FSTAB, HDRAG, FHDRAG
122    
123     C-- Convection constants (common CNVCON) :
124     C PSMIN = minimum (norm.) sfc. pressure for the occurrence of convection
125     C TRCNV = time of relaxation (in hours) towards reference state
126     C QBL = specific hum. threshold in the boundary layer
127     C RHBL = relative hum. threshold in the boundary layer
128     C RHIL = rel. hum. threshold in intermed. layers for secondary mass flux
129     C ENTMAX = max. entrainment as a fraction of cloud-base mass flux
130     C SMF = ratio between secondary and primary mass flux at cloud-base
131     NAMELIST /AIM_PAR_CNV/
132     & PSMIN, TRCNV, QBL, RHBL, RHIL, ENTMAX, SMF
133    
134    
135     C-- Constants for large-scale condendation (common LSCCON) :
136     C TRLSC = Relaxation time (in hours) for specific humidity
137     C RHLSC = Maximum relative humidity threshold (at sigma=1)
138     C DRHLSC = Vertical range of relative humidity threshold
139     C QSMAX = used to define the maximum latent heat release
140     NAMELIST /AIM_PAR_LSC/
141     & TRLSC, RHLSC, DRHLSC, QSMAX
142    
143     C-- Radiation constants (common RADCON) :
144     C RHCL1 = relative hum. corresponding to cloud cover = 0
145     C RHCL2 = relative hum. corresponding to cloud cover = 1
146     C QACL1 = specific hum. threshold for cloud cover in the upper troposphere
147     C QACL2 = specific hum. threshold for cloud cover in the upper troposphere
148     C ALBCL = cloud albedo (for cloud cover = 1)
149     C EPSSW = fraction of incoming solar radiation absorbed by ozone
150     C EPSLW = fraction of surface LW radiation emitted directly to space
151     C EMISFC = longwave surface emissivity
152     C--: shortwave absorptivities (for dp = 10^5 Pa) :
153     C ABSDRY = abs. of dry air (visible band)
154     C ABSAER = abs. of aerosols (visible band)
155     C ABSWV1 = abs. of water vapour (visible band, for dq = 1 g/kg)
156     C ABSWV2 = abs. of water vapour (near IR band, for dq = 1 g/kg)
157     C ABSCL1 = abs. of clouds (visible band, constant term)
158     C ABSCL2 = abs. of clouds (visible band, for dw = 1 g/kg)
159     C--: longwave absorptivities (per dp = 10^5 Pa) :
160     C ABLWIN = abs. of air in "window" band
161     C ABLCO2 = abs. of air in CO2 band
162     C ABLWV1 = abs. of water vapour in H2O band 1 (weak), for dq = 1 g/kg
163     C ABLWV2 = abs. of water vapour in H2O band 2 (strong), for dq = 1 g/kg
164     C ABLCL1 = abs. of clouds in "window" band, constant term
165     C ABLCL2 = abs. of clouds in "window" band, for dw = 1 g/kg
166     NAMELIST /AIM_PAR_RAD/
167     & RHCL1, RHCL2, QACL1, QACL2, ALBCL,
168     & EPSSW, EPSLW, EMISFC,
169     & ABSDRY, ABSAER, ABSWV1, ABSWV2, ABSCL1, ABSCL2,
170     & ABLWIN, ABLCO2, ABLWV1, ABLWV2, ABLCL1, ABLCL2
171    
172     C-- Constants for vertical dif. and sh. conv. (common VDICON) :
173     C TRSHC = relaxation time (in hours) for shallow convection
174     C TRVDI = relaxation time (in hours) for moisture diffusion
175     C TRVDS = relaxation time (in hours) for super-adiab. conditions
176     C RHGRAD = maximum gradient of relative humidity (d_RH/d_sigma)
177     C SEGRAD = minimum gradient of dry static energy (d_DSE/d_phi)
178     NAMELIST /AIM_PAR_VDI/
179     & TRSHC, TRVDI, TRVDS, RHGRAD, SEGRAD
180    
181     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
182    
183     _BEGIN_MASTER(myThid)
184    
185     WRITE(msgBuf,'(A)') ' AIM_READ_PHYSPARMS: opening data.aimphys'
186     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
187    
188     CALL OPEN_COPY_DATA_FILE( 'data.aimphys', 'AIM_READ_PHYSPARMS',
189     O iUnit, myThid )
190    
191     C-- Read parameters from open data file:
192    
193 jmc 1.2 C- Parameters for AIM interface code:
194     READ(UNIT=iUnit,NML=AIM_PARAMS)
195    
196 jmc 1.1 C- Constants for boundary forcing
197     READ(UNIT=iUnit,NML=AIM_PAR_FOR)
198    
199     C- Constants for surface fluxes
200     READ(UNIT=iUnit,NML=AIM_PAR_SFL)
201    
202     C- Constants for convection
203     READ(UNIT=iUnit,NML=AIM_PAR_CNV)
204    
205     C- Constants for large-scale condensation
206     READ(UNIT=iUnit,NML=AIM_PAR_LSC)
207    
208     C- Constants for radiation
209     READ(UNIT=iUnit,NML=AIM_PAR_RAD)
210    
211     C- Constants for vertical diffusion and sh. conv.
212     READ(UNIT=iUnit,NML=AIM_PAR_VDI)
213    
214     WRITE(msgBuf,'(A)')
215     & ' AIM_READ_PHYSPARMS: finished reading data.aimphys'
216     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
217    
218     C-- Close the open data file
219     CLOSE(iUnit)
220    
221     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
222     C-- Print out parameter values :
223    
224     WRITE(msgBuf,'(A)') ' '
225     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
226     WRITE(msgBuf,'(A)') '// ==================================='
227     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
228     WRITE(msgBuf,'(A)') '// AIM physics parameters :'
229     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
230     WRITE(msgBuf,'(A)') '// ==================================='
231     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
232 jmc 1.2
233     C- namelist AIM_PARAMS:
234     CALL WRITE_0D_L( aim_useFMsurfBC, INDEX_NONE,
235     & 'aim_useFMsurfBC =',
236     &' /* F.Molteni surf. BC scheme on/off flag */')
237     CALL WRITE_0D_L( aim_useMMsurfFc, INDEX_NONE,
238     & 'aim_useMMsurfFc =',
239     &' /* Monthly Mean surf. Forcing on/off flag */')
240     CALL WRITE_0D_L( aim_surfPotTemp, INDEX_NONE,
241     & 'aim_surfPotTemp =',
242     &' /* Surf Temp file in Pot.Temp on/off flag */')
243     CALL WRITE_0D_R8( aim_diagFreq, INDEX_NONE,'aim_diagFreq =',
244     & ' /* Frequency^-1 for diagnostic output (s) */')
245     CALL WRITE_0D_R8( aim_tendFreq, INDEX_NONE,'aim_tendFreq =',
246     & ' /* Frequency^-1 for tendencies output (s) */')
247 jmc 1.1
248     C- namelist AIM_PAR_FOR:
249     CALL WRITE_0D_R8( SOLC, INDEX_NONE,'AIM_FOR: SOLC =',
250     & ' /* Solar constant (area averaged) in W/m2 */')
251     CALL WRITE_0D_R8( ALBSEA,INDEX_NONE,'AIM_FOR: ALBSEA =',
252     & ' /* Albedo over sea [0-1] */')
253     CALL WRITE_0D_R8( ALBICE,INDEX_NONE,'AIM_FOR: ALBICE =',
254     & ' /* Albedo over sea ice (for ice fraction =1) */')
255     CALL WRITE_0D_R8( ALBSN, INDEX_NONE,'AIM_FOR: ALBSN =',
256     & ' /* Albedo over snow (for snow depth > SDALB) */')
257     CALL WRITE_0D_R8( SDALB, INDEX_NONE,'AIM_FOR: SDALB =',
258     & ' /* Snow depth (mm H2O) corresp. maximum albedo */')
259     CALL WRITE_0D_R8( SWCAP, INDEX_NONE,'AIM_FOR: SWCAP =',
260     & ' /* Soil wetness at field capacity (Vol.fract.) */')
261     CALL WRITE_0D_R8( SWWIL, INDEX_NONE,'AIM_FOR: SWWIL =',
262     & ' /* Soil wetness at wilting point (Vol.fract.) */')
263    
264     C- namelist AIM_PAR_SFL:
265     CALL WRITE_0D_R8( FWIND0,INDEX_NONE,'AIM_SFL: FWIND0 =',
266     & ' /* ratio of near-sfc wind to lowest-level wind */')
267     CALL WRITE_0D_R8( FTEMP0,INDEX_NONE,'AIM_SFL: FTEMP0 =',
268     & ' /* weight for near-sfc temp. extrapolation (0-1)*/')
269     CALL WRITE_0D_R8( FHUM0, INDEX_NONE,'AIM_SFL: FHUM0 =',
270     & ' /* weight for near-sfc spec.humid. extrap. (0-1)*/')
271     CALL WRITE_0D_R8( CDL, INDEX_NONE,'AIM_SFL: CDL =',
272     & ' /* drag coefficient for momentum over land */')
273     CALL WRITE_0D_R8( CDS, INDEX_NONE,'AIM_SFL: CDS =',
274     & ' /* drag coefficient for momentum over sea */')
275     CALL WRITE_0D_R8( CHL, INDEX_NONE,'AIM_SFL: CHL =',
276     & ' /* heat exchange coefficient over land */')
277     CALL WRITE_0D_R8( CHS, INDEX_NONE,'AIM_SFL: CHS =',
278     & ' /* heat exchange coefficient over sea */')
279     CALL WRITE_0D_R8( VGUST, INDEX_NONE,'AIM_SFL: VGUST =',
280     & ' /* wind speed [m/s] for sub-grid-scale gusts */')
281     CALL WRITE_0D_R8( CTDAY, INDEX_NONE,'AIM_SFL: CTDAY =',
282     & ' /* daily-cycle correction (dTskin/dSSRad) */')
283     CALL WRITE_0D_R8( DTHETA,INDEX_NONE,'AIM_SFL: DTHETA =',
284     & ' /* Pot.Temp. gradient for stability correction */')
285     CALL WRITE_0D_R8( FSTAB, INDEX_NONE,'AIM_SFL: FSTAB =',
286     & ' /* Amplitude of stability correction (fract.) */')
287     CALL WRITE_0D_R8( HDRAG, INDEX_NONE,'AIM_SFL: HDRAG =',
288     & ' /* Height scale for orographic correction */')
289     CALL WRITE_0D_R8( FHDRAG,INDEX_NONE,'AIM_SFL: FHDRAG =',
290     & ' /* Amplitude of orographic correction (fract.)*/')
291    
292     C- namelist AIM_PAR_CNV:
293     CALL WRITE_0D_R8( PSMIN, INDEX_NONE,'AIM_CNV: PSMIN =',
294     & ' /* min norm.sfc.P. for occurrence of convect. */')
295     CALL WRITE_0D_R8( TRCNV, INDEX_NONE,'AIM_CNV: TRCNV =',
296     & ' /* time of relaxation [h] towards ref state */')
297     CALL WRITE_0D_R8( QBL, INDEX_NONE,'AIM_CNV: QBL =',
298     & ' /* specific hum. threshold in the Bound.layer */')
299     CALL WRITE_0D_R8( RHBL, INDEX_NONE,'AIM_CNV: RHBL =',
300     & ' /* relative hum. threshold in the Bound.layer */')
301     CALL WRITE_0D_R8( RHIL, INDEX_NONE,'AIM_CNV: RHIL =',
302     & ' /* rel.hum. threshold (intern) for 2nd mass.Flx*/')
303     CALL WRITE_0D_R8( ENTMAX,INDEX_NONE,'AIM_CNV: ENTMAX =',
304     & ' /* time of relaxation [h] towards neutral eq. */')
305     CALL WRITE_0D_R8( SMF, INDEX_NONE,'AIM_CNV: SMF =',
306     & ' /* ratio 2ndary/primary mass.Flx at cloud-base*/')
307    
308     C- namelist AIM_PAR_LSC:
309     CALL WRITE_0D_R8( TRLSC, INDEX_NONE,'AIM_LSC: TRLSC =',
310     & ' /* relaxation time [h] for supersat. spec.hum. */')
311     CALL WRITE_0D_R8( RHLSC, INDEX_NONE,'AIM_LSC: RHLSC =',
312     & ' /* Max rel.humidity threshold (at sigma=1) */')
313     CALL WRITE_0D_R8( DRHLSC,INDEX_NONE,'AIM_LSC: DRHLSC =',
314     & ' /* Vertical range of rel.humidity threshold */')
315     CALL WRITE_0D_R8( QSMAX, INDEX_NONE,'AIM_LSC: QSMAX =',
316     & ' /* Define the maximum latent heat release */')
317    
318     C- namelist AIM_PAR_RAD:
319     CALL WRITE_0D_R8( RHCL1, INDEX_NONE,'AIM_RAD: RHCL1 =',
320     & ' /* rel.hum. corresponding to cloud cover = 0 */')
321     CALL WRITE_0D_R8( RHCL2, INDEX_NONE,'AIM_RAD: RHCL2 =',
322     & ' /* rel.hum. corresponding to cloud cover = 1 */')
323     CALL WRITE_0D_R8( QACL1, INDEX_NONE,'AIM_RAD: QACL1 =',
324     & ' /* spec.hum. threshold for cloud, upper trop. */')
325     CALL WRITE_0D_R8( QACL2, INDEX_NONE,'AIM_RAD: QACL2 =',
326     & ' /* spec.hum. threshold for cloud, upper trop. */')
327     CALL WRITE_0D_R8( ALBCL, INDEX_NONE,'AIM_RAD: ALBCL =',
328     & ' /* cloud albedo (for cloud cover = 1) */')
329     CALL WRITE_0D_R8( EPSSW, INDEX_NONE,'AIM_RAD: EPSSW =',
330     & ' /* fract. of inc.solar rad. absorbed by ozone */')
331     CALL WRITE_0D_R8( EPSLW, INDEX_NONE,'AIM_RAD: EPSLW =',
332     & ' /* fract. of sfc LW emitted directly to space */')
333     CALL WRITE_0D_R8( EMISFC,INDEX_NONE,'AIM_RAD: EMISFC =',
334     & ' /* longwave surface emissivity */')
335    
336     WRITE(msgBuf,'(A)')
337     & ' AIM_RAD : ShortWave absorptivities (for dp = 10^5 Pa) :'
338     CALL PRINT_MESSAGE(msgBuf,standardMessageUnit,SQUEEZE_RIGHT,1)
339     CALL WRITE_0D_R8( ABSDRY,INDEX_NONE,'AIM_RAD: ABSDRY =',
340     & ' /* abs. of dry air (visible band) */')
341     CALL WRITE_0D_R8( ABSAER,INDEX_NONE,'AIM_RAD: ABSAER =',
342     & ' /* abs. of aerosols (visible band) */')
343     CALL WRITE_0D_R8( ABSWV1,INDEX_NONE,'AIM_RAD: ABSWV1 =',
344     & ' /* abs. of water vap. (vis. band)(/dq, 1g/kg) */')
345     CALL WRITE_0D_R8( ABSWV1,INDEX_NONE,'AIM_RAD: ABSWV1 =',
346     & ' /* abs. of water vap. (vis. band)(/dq, 1g/kg) */')
347     CALL WRITE_0D_R8( ABSWV2,INDEX_NONE,'AIM_RAD: ABSWV2 =',
348     & ' /* abs. of water vap.(near IR bd)(/dq, 1g/kg) */')
349     CALL WRITE_0D_R8( ABSCL1,INDEX_NONE,'AIM_RAD: ABSCL1 =',
350     & ' /* abs. of clouds (vis.band)(constant term) */')
351     CALL WRITE_0D_R8( ABSCL2,INDEX_NONE,'AIM_RAD: ABSCL2 =',
352     & ' /* abs. of clouds (vis.band) (/dw, 1g/kg) */')
353    
354     WRITE(msgBuf,'(A)')
355     & ' AIM_RAD : LongWave absorptivities (per dp = 10^5 Pa) :'
356     CALL WRITE_0D_R8( ABLWIN,INDEX_NONE,'AIM_RAD: ABLWIN =',
357     & ' /* abs. of air in "window" band */')
358     CALL WRITE_0D_R8( ABLCO2,INDEX_NONE,'AIM_RAD: ABLCO2 =',
359     & ' /* abs. of air in CO2 band */')
360     CALL WRITE_0D_R8( ABLWV1,INDEX_NONE,'AIM_RAD: ABLWV1 =',
361     & ' /* abs. of Water vap. H2O bd-1(weak)(/dq,1g/kg)*/')
362     CALL WRITE_0D_R8( ABLWV2,INDEX_NONE,'AIM_RAD: ABLWV2 =',
363     & ' /* abs. of W. vap., H2O bd-2(strong)(/dq,1g/kg)*/')
364     CALL WRITE_0D_R8( ABLCL1,INDEX_NONE,'AIM_RAD: ABLCL1 =',
365     & ' /* abs. of clouds in window band (const term) */')
366     CALL WRITE_0D_R8( ABLCL2,INDEX_NONE,'AIM_RAD: ABLCL2 =',
367     & ' /* abs. of clouds in window band (/dw, 1g/kg) */')
368    
369     C- namelist AIM_PAR_VDI:
370     CALL WRITE_0D_R8( TRSHC, INDEX_NONE,'AIM_VDI: TRSHC =',
371     & ' /* relaxation time [h] for shallow convection */')
372     CALL WRITE_0D_R8( TRVDI, INDEX_NONE,'AIM_VDI: TRVDI =',
373     & ' /* relaxation time [h] for moisture diffusion */')
374     CALL WRITE_0D_R8( TRVDS, INDEX_NONE,'AIM_VDI: TRVDS =',
375     & ' /* relaxation time [h] for super-adiab. cond. */')
376     CALL WRITE_0D_R8( RHGRAD,INDEX_NONE,'AIM_VDI: RHGRAD =',
377     & ' /* max gradient of rel.humidity (d_RH/d_sigma)*/')
378     CALL WRITE_0D_R8( RHGRAD,INDEX_NONE,'AIM_VDI: RHGRAD =',
379     & ' /* max grad. of dry static Energy(d_DSE/d_phi)*/')
380    
381     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
382    
383     _END_MASTER(myThid)
384    
385     C-- Everyone else must wait for the parameters to be loaded
386     _BARRIER
387    
388     #endif /* ALLOW_AIM */
389    
390     RETURN
391     END

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