source: trunk/MESOSCALE/LMDZ.MARS.new/myGCM/MCD5_def/callphys.def.MCD5.nochem.nothermos @ 1101

Last change on this file since 1101 was 1101, checked in by aslmd, 11 years ago

MESOSCALE. update def files for bounding GCM.

File size: 5.2 KB
Line 
1##General options
2##~~~~~~~~~~~~~~~
3#Run with or without tracer transport ?
4tracer=.true.
5
6#Directory where external input files are:
7datadir=/planeto/emlmd/run_mcd5.v0_new/datadir
8datadir=/home/spiga/datadir
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## Dust scenario. Used if the dust is prescribed (i.e. if tracer=F or active=F)
26## ~~~~~~~~~~~~~
27#  =1 Dust opt.deph read in startfi; =2 Viking scenario; =3 MGS scenario,
28#  =4 Mars Year 24 from TES assimilation (old version of MY24; dust_tes.nc file)
29#  =6 "cold" (low dust) scenario ; =7 "warm" (high dust) scenario
30#  =24 Mars Year 24  ; =25 Mars Year 25 (year with a global dust storm) ; ...
31#  =30 Mars Year 30
32iaervar = 24
33# Dust opacity at 610 Pa (when constant, i.e. for the iaervar=1 case)
34tauvis=0.1
35# Dust vertical distribution:
36# (=0: old distrib. (Pollack90), =1: top set by "topdustref",
37#  =2: Viking scenario; =3 MGS scenario)
38iddist  = 3
39# Dust top altitude (km). (Matters only if iddist=1)
40topdustref = 55.
41
42## Physical Parameterizations :
43## ~~~~~~~~~~~~~~~~~~~~~~~~~~
44# call radiative transfer ?
45callrad   = .true.
46# call NLTE radiative schemes ?   matters only if callrad=T
47callnlte = .true.
48# NLTE 15um scheme to use.
49# 0-> Old scheme, static oxygen
50# 1-> Old scheme, dynamic oxygen
51# 2-> New scheme
52nltemodel = 2
53nltemodel = 0
54# call CO2 NIR absorption ?   matters only if callrad=T
55callnirco2 = .true.
56# NIR NLTE correction ? matters only if callnirco2=T
57nircorr=1
58nircorr=0
59# call turbulent vertical diffusion ?
60calldifv  = .true.
61# call convective adjustment ?
62calladj  = .true.
63# Thermals
64calltherm = .true.
65callrichsl = .true.
66# call CO2 condensation ?
67callcond =.true.
68# call thermal conduction in the soil ?
69callsoil = .true.
70# call Lott's gravity wave/subgrid topography scheme ?
71calllott  = .true.
72# Impose polar cap surface albedos as observed by TES?
73TESicealbedo = .true.
74## Coefficient for Northern cap albedoes
75TESice_Ncoef=1.6
76## Coefficient for Southern cap albedoes
77TESice_Scoef=1.6
78
79
80## Radiative transfer options :
81## ~~~~~~~~~~~~~~~~~~~~~~~~~~
82# the rad.transfer is computed every "iradia" physical timestep
83iradia    = 1
84# Output of the exchange coefficient mattrix ? for diagnostic only
85callg2d  = .false.
86# Rayleigh scattering : (should be .false. for now)
87rayleigh  = .false.
88
89## Tracer (dust water, ice and/or chemical species) options (used if tracer=T):
90## ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
91# DUST: Transported dust ? (if >0, use 'dustbin' dust bins)
92dustbin    = 2
93# DUST: Radiatively active dust ? (matters if dustbin>0)
94active  = .true.
95# DUST: use mass and number mixing ratios to predict dust size ?
96doubleq   = .true.
97# DUST: lifted by GCM surface winds ?
98lifting = .true.
99# DUST: lifted by dust devils ?
100callddevil = .false.
101# DUST: Scavenging by H2O/CO2 snowfall ?
102scavenging = .true.
103# DUST/WATERICE: Gravitationnal sedimentation ?
104sedimentation = .true.
105# WATERICE: Radiatively active transported atmospheric water ice ?
106activice   = .true.
107# WATER: Compute water cycle
108water = .true.
109# WATER: Microphysical scheme for water-ice clouds?
110microphys = .true.
111# WATER: parameter contact
112mteta = 0.95
113# WATER: Effective variance for sedimentation for the log-normal
114#        distribution of ice particles ?
115nuice_sed=0.1
116# WATER: current permanent caps at both poles. True IS RECOMMENDED
117#        (with .true., North cap is a source of water and South pole
118#         is a cold trap)
119caps  = .true.
120# WATER: Water ice albedo ?
121albedo_h2o_ice = 0.35
122# WATER: Water ice thermal inertia
123inert_h2o_ice = 800
124# WATER: Frost thickness threshold for albedo
125frost_albedo_threshold = 0.005
126# PHOTOCHEMISTRY: include chemical species
127photochem  = .true.
128photochem  = .false.
129
130## Thermospheric options (relevant if tracer=T) :
131##~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
132# call thermosphere ?
133callthermos = .true.
134callthermos = .false.
135# WATER: included without cycle (only if water=.false.)
136thermoswater = .false.
137# call thermal conduction ? (only if callthermos=.true.)
138callconduct = .true.
139callconduct = .false.
140# call molecular viscosity ? (only if callthermos=.true.)
141callmolvis = .true.
142callmolvis = .false.
143# call molecular diffusion ? (only if callthermos=.true.)
144callmoldiff = .true.
145callmoldiff = .false.
146# call thermospheric photochemistry ? (only if callthermos=.true.)
147thermochem = .true.
148thermochem = .false.
149# call EUV heating ? (only if callthermos=.true.)
150calleuv=.true.
151calleuv=.false.
152#Method to include solar variability?
153#0-> Old method (fixed EUV input)  1-> Variability with E10.7 as observed
154solvarmod=0
155# date for solar flux calculation: (1985 < date < 2002)
156## (Solar min=1996.4 ave=1993.4 max=1990.6) ; Only used if solvarmod=0
157solarcondate = 1993.4
158#Solar variability as observed for MY? (must bebetween MY23 and MY30)
159# (only matters if solvarmod=1)
160solvaryear=24
161# value for the UV heating efficiency
162##(experimental values between 0.19 and 0.23, lower values may
163## be used to compensate for low 15 um cooling)
164euveff = 0.21       
165
166
167
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