source: trunk/LMDZ.MARS/deftank/callphys.def.GCM6 @ 3447

Last change on this file since 3447 was 3447, checked in by emillour, 9 months ago

Mars PCM:
Small cleanup to the reference callphys*.def files in deftank,
Flag "tracer" is no longer used.
EM

File size: 7.6 KB
Line 
1##General options
2##~~~~~~~~~~~~~~~
3
4# Number of outputs per sol for diagfi.nc files
5outputs_per_sol=8
6
7#Run with or without tracer transport ?
8tracer=.true.
9
10#Diurnal cycle ?  if diurnal=False, diurnal averaged solar heating
11diurnal=.true.
12
13#Seasonal cycle ? if season=False, Ls stays constant, to value set in "start"
14season = .true.   
15
16#write some more output on the screen ?
17lwrite = .false.   
18
19#Save statistics in file "stats.nc" ?
20callstats =.true.
21
22#Save EOF profiles in file "profiles" for Climate Database?
23calleofdump = .false.
24
25# check input fields when entering physics?
26check_physics_inputs=.false.
27# check fields at the end of physics?
28check_physics_outputs=.false.
29
30## Dust scenario. Used to prescribe the dust
31## ~~~~~~~~~~~~~
32#  =1 Dust opt.deph read in startfi; =2 Viking scenario; =3 MGS scenario,
33#  =4 Mars Year 24 from TES assimilation (old version of MY24; dust_tes.nc file)
34#  =6 "cold" (low dust) scenario ; =7 "warm" (high dust) scenario
35#  =8 "climatology" (our best guess of a typical Mars year) scenario
36#  =24 Mars Year 24 from TES assimilation (ie: MCD reference case)
37#  =25 Mars Year 25 from TES assimilation (ie: a year with a global dust storm)
38#  =26 Mars Year 26 from TES assimilation
39#  ...
40#  =35 Mars Year 35 from observers assimilation
41iaervar = 8
42# Dust opacity at 610 Pa (when constant, i.e. for the iaervar=1 case)
43tauvis=0.2
44# Dust vertical distribution:
45# (=0: old distrib. (Pollack90), =1: top set by "topdustref",
46#  =2: Viking scenario; =3 MGS scenario)
47iddist  = 3
48# Dust top altitude (km). (Matters only if iddist=1)
49topdustref = 55.
50# Dust IR opacity ref. wavelength (for dso diagnostics only)
51# "tes" (9.3 microns) [default] or "mcs" (21.6 microns)
52dustiropacity = tes
53# Use an IR to VIS scenario conversion coefficient that is
54# dependent on the GCM dust effective radius,
55# instead of a fixed 2.6 coefficient ?
56#(only if dustiropacity = tes ; default = .false.)
57reff_driven_IRtoVIS_scenario = .true.
58
59## Physical Parameterizations :
60## ~~~~~~~~~~~~~~~~~~~~~~~~~~
61# call radiative transfer ?
62callrad   = .true.
63# call NLTE radiative schemes ?   matters only if callrad=T
64callnlte = .true.
65# NLTE 15um scheme to use.
66# 0-> Old scheme, static oxygen
67# 1-> Old scheme, dynamic oxygen
68# 2-> New scheme
69nltemodel = 0
70# call CO2 NIR absorption ?   matters only if callrad=T
71callnirco2 = .true.
72# NIR NLTE correction ? matters only if callnirco2=T
73nircorr=0
74# call turbulent vertical diffusion ?
75calldifv  = .true.
76# call convective adjustment ?
77calladj  = .true.
78# Thermals
79calltherm = .true.
80callrichsl = .true.
81# call CO2 condensation ?
82callcond =.true.
83# call thermal conduction in the soil ?
84callsoil = .true.
85
86##Gravity Waves
87# call Lott's gravity wave/subgrid topography scheme ?
88calllott  = .true.
89# call Lott's non-orographic gravity waves scheme?
90calllott_nonoro=.true.
91#Eliassen-Palm FLux(only if calllott_nonoro=.true.)
92nonoro_gwd_epflux_max=5.E-4
93# saturation parameter non-orographic gravity waves(only if calllott_nonoro=.true.)
94nonoro_gwd_sat=1.5
95# value of the dissaption coefficiet(only if calllott_nonoro=.true.)
96nonoro_gwd_rdiss=0.15
97# value of the max wave number
98nonoro_gwd_kmax=1.E-4
99# value of the min wave number
100nonoro_gwd_kmin=7.E-6
101# value to control the launch altitude
102nonoro_gwd_xlaunch=0.6
103
104# Impose polar cap surface albedos as observed by TES?
105TESicealbedo = .true.
106## Coefficient for Northern cap albedoes
107TESice_Ncoef=1.6
108## Coefficient for Southern cap albedoes
109TESice_Scoef=1.6
110
111
112## Radiative transfer options :
113## ~~~~~~~~~~~~~~~~~~~~~~~~~~
114# the rad.transfer is computed every "iradia" physical timestep
115iradia    = 1
116# Output of the exchange coefficient mattrix ? for diagnostic only
117callg2d  = .false.
118# Rayleigh scattering : (should be .false. for now)
119rayleigh  = .false.
120
121## Tracer (dust water, ice and/or chemical species) options (used if tracer=T):
122## ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
123# DUST: Transported dust ? (if >0, use 'dustbin' dust bins)
124dustbin    = 2
125# DUST: Radiatively active dust ? (matters if dustbin>0)
126active  = .true.
127# DUST: use mass and number mixing ratios to predict dust size ?
128doubleq   = .true.
129# DUST: use a small population of dust particules (submicron dust)?
130submicron = .false.
131# DUST: lifted by GCM surface winds ?
132lifting = .true.
133# DUST: lifted by dust devils ?
134callddevil = .false.
135# DUST: Scavenging by H2O snowfall ?
136scavenging = .true.
137
138# DUST: freedust ?
139freedust=.true.
140# DUST: dustscaling_mode?
141#     =0 --> freedust, tauscaling=1
142#     =1 --> GCM5.3-like, tauscaling
143#     =2 --> tauscaling=1,dust_rad_adjust
144dustscaling_mode=2
145# DUST: dust injection scheme (if >0, use 'dustinjection')
146dustinjection=1
147# DUST: dust injection scheme coefficient (default=0.25)
148coeff_injection=0.25
149# DUST: dust injection scheme initial local time (default=0.)
150ti_injection=0.
151# DUST: dust injection scheme final local time (default=24.)
152tf_injection=24.
153# DUST: Rocket Dust Storm scheme
154rdstorm=.true.
155# DUST: RDS detrainment coefficient (default=0.02)
156coeff_detrainment=0.02
157# DUST: Dust entrainment by subgrid-scale slope winds
158topflows=.true.
159
160# DUST/WATERICE: Scavenging by CO2 condensation?
161scavco2cond = .true.
162# DUST/WATERICE: Gravitationnal sedimentation ?
163sedimentation = .true.
164
165# WATERICE: Radiatively active transported atmospheric water ice ?
166activice   = .true.
167# WATER: Compute water cycle
168water = .true.
169# WATER: Microphysical scheme for water-ice clouds?
170microphys = .true.
171# WATER: Effective variance for sedimentation for the log-normal
172#        distribution of ice particles ?
173nuice_sed=0.1
174# WATER: contact parameter (only if temp_dependent_m = .false.)
175##mteta = 0.95
176# Temperature-dependent water contact parameter
177temp_dependent_m = .true.
178# WATER: current permanent caps at both poles. True IS RECOMMENDED
179#        (with .true., North cap is a source of water and South pole
180#         is a cold trap)
181caps  = .true.
182# WATER: Water ice albedos (old ice/fresh frost)?
183# Perennial ice albedo
184albedo_h2o_ice = 0.30
185# Account for fresh frost ice albedo if cst_cap_albedo = .false.
186cst_cap_albedo = .false.
187# Fresh frost albedo (only used if cst_cap_albedo = .false.)
188albedo_h2o_frost = 0.35
189# Frost thickness threshold for albedo
190frost_albedo_threshold = 0.005
191# Frost metamorphism into old ice
192refill_watercap = .false.
193frost_metam_threshold = 0.05
194# WATER: Water ice thermal inertia (old ice and fresh frost)
195inert_h2o_ice = 800
196# Sublimation latent heat (default = .true.)
197latentheat_surfwater = .true.
198#WATER: subgrid clouds
199CLFvarying=.false.
200#WATER: subgrid clouds
201CLFfixval=1
202
203# PHOTOCHEMISTRY: include chemical species
204photochem  = .false.
205
206# SCATTERERS: set number of scatterers. must be compliant with preceding options.
207naerkind = 4
208
209
210## Thermospheric options (relevant if tracer=T) :
211##~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
212# call thermosphere ?
213callthermos = .false.
214# WATER: included without cycle (only if water=.false.)
215thermoswater = .false.
216# call thermal conduction ? (only if callthermos=.true.)
217callconduct = .false.
218# call molecular viscosity ? (only if callthermos=.true.)
219callmolvis = .false.
220# call molecular diffusion ? (only if callthermos=.true.)
221callmoldiff = .false.
222# call thermospheric photochemistry ? (only if callthermos=.true.)
223thermochem = .false.
224# call EUV heating ? (only if callthermos=.true.)
225calleuv=.false.
226#Method to include solar variability?
227#0-> Fixed EUV input  1-> Variability with E10.7 as observed
228solvarmod=0
229# fixed E10.7 value (for solvarmod=0)
230# (min=80 , ave=140, max=320)
231fixed_euv_value=140
232#Solar variability as observed for MY? (must be between MY23 and MY32)
233# (only matters if solvarmod=1)
234solvaryear=24
235# value for the UV heating efficiency
236##(experimental values between 0.19 and 0.23, lower values may
237## be used to compensate for low 15 um cooling)
238euveff = 0.21       
239
240
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