/[MITgcm]/MITgcm_contrib/dfer/cpl_aim+ocn_fast/input_atm/data.aimphys
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Revision 1.1 - (hide annotations) (download)
Thu Jul 6 18:49:37 2006 UTC (19 years, 1 month ago) by dfer
Branch: MAIN
CVS Tags: HEAD
Initial check-in of the Super hyper fast version of the coupled model

1 dfer 1.1 # AIM physics package parameters:
2    
3     C-- AIM interface parameter (namelist AIM_PARAMS):
4     # aim_useFMsurfBC :: select surface B.C. from Franco Molteni
5     # aim_useMMsurfFc :: select Monthly Mean surface forcing (e.g., NCEP)
6     # aim_surfPotTemp :: surf.Temp input file is in Pot.Temp (aim_useMMsurfFc)
7     # aim_energPrecip :: account for energy of precipitation (snow & rain temp)
8     # aim_splitSIOsFx :: compute separately Sea-Ice & Ocean surf. Flux
9     # aim_LandFile :: file name for Land fraction [0-1]
10     # aim_MMsufx :: sufix for all Monthly Mean surface forcing files
11     # aim_MMsufxLength :: Length of sufix (Monthly Mean surf. forc. files)
12     # aim_albFile :: file name for Albedo input file (F.M. surfBC)
13     # aim_vegFile :: file name for vegetation fraction (F.M. surfBC)
14     # aim_sstFile :: file name for Sea.Surf.Temp (F.M. surfBC)
15     # aim_lstFile :: file name for Land.Surf.Temp (F.M. surfBC)
16     # aim_oiceFile :: file name for Sea Ice fraction (F.M. surfBC)
17     # aim_snowFile :: file name for Snow depth (F.M. surfBC)
18     # aim_swcFile :: file name for Soil Water content (F.M. surfBC)
19     # aim_dragStrato :: stratospheric-drag damping time scale (s)
20     # aim_clrSkyDiag :: compute clear-sky radiation for diagnostics
21     # aim_taveFreq :: Frequency^-1 for time-average output (s)
22     # aim_diagFreq :: Frequency^-1 for diagnostic output (s)
23     # aim_tendFreq :: Frequency^-1 for tendencies output (s)
24     &AIM_PARAMS
25     # aim_useFMsurfBC=.FALSE.,
26     # aim_useMMsurfFc=.TRUE.,
27     # aim_surfPotTemp=.TRUE.,
28     aim_energPrecip=.TRUE.,
29     aim_splitSIOsFx=.TRUE.,
30     aim_LandFile= 'Aqua.c24.L.LandFrc.bin',
31     # aim_albFile = 'Ridge.c32.L.Albedo_25pc.bin',
32     # aim_vegFile = 'Ridge.c32.L.VegFrc_75pc.bin',
33     # aim_lstFile = 'lndSurfT.cpl_FM.bin',
34     # aim_swcFile = 'soilMoist.cpl_FM.bin',
35     # aim_sstFile = 'seaSurfT.cpl_FM.bin',
36     # aim_oiceFile= 'seaIce.cpl3FM.bin',
37     # aim_snowFile= 'snowDepth.cpl_FM.bin',
38     aim_dragStrato= 2592000.,
39     # aim_clrSkyDiag=.TRUE.,
40     # aim_diagFreq=3600.,
41     &
42    
43     #-- Physical constants
44     # P0 = reference pressure [Pa=N/m2]
45     # GG = gravity accel. [m/s2]
46     # RD = gas constant for dry air [J/kg/K]
47     # CP = specific heat at constant pressure [J/kg/K]
48     # ALHC = latent heat of condensation [J/g]
49     # ALHF = latent heat of freezing [J/g]
50     # SBC = Stefan-Boltzmann constant
51     # rainCP = heat capacity of liquid water [J/g/K]
52     # tFreeze = freezing temperature of pure water [K]
53    
54     #-- Constants for forcing fields (namelist AIM_PAR_FOR):
55     # SOLC = Solar constant (area averaged) in W/m^2
56     # ALBSEA = Albedo over sea
57     # ALBICE = Albedo over sea ice (for ice fraction = 1)
58     # ALBSN = Albedo over snow (for snow depth > SDALB)
59     # SDALB = Snow depth (mm water) corresponding to maximum albedo
60     # SWCAP = Soil wetness at field capacity (volume fraction)
61     # SWWIL = Soil wetness at wilting point (volume fraction)
62     # hSnowWetness :: snow depth (m) corresponding to maximum wetness
63     &AIM_PAR_FOR
64     SOLC = 341.5,
65     SWCAP = 0.29,
66     &
67    
68     #-- Constants for surface fluxes (namelist AIM_PAR_SFL):
69     # FWIND0 = ratio of near-sfc wind to lowest-level wind
70     # FTEMP0 = weight for near-sfc temperature extrapolation (0-1) :
71     # 1 : linear extrapolation from two lowest levels
72     # 0 : constant potential temperature ( = lowest level)
73     # FHUM0 = weight for near-sfc specific humidity extrapolation (0-1) :
74     # 1 : extrap. with constant relative hum. ( = lowest level)
75     # 0 : constant specific hum. ( = lowest level)
76     # CDL = drag coefficient for momentum over land
77     # CDS = drag coefficient for momentum over sea
78     # CHL = heat exchange coefficient over land
79     # CHS = heat exchange coefficient over sea
80     # VGUST = wind speed for sub-grid-scale gusts
81     # CTDAY = daily-cycle correction (dTskin/dSSRad)
82     # DTHETA = Potential temp. gradient for stability correction
83     # dTstab = potential temp. increment for stability function derivative
84     # FSTAB = Amplitude of stability correction (fraction)
85     # HDRAG = Height scale for orographic correction
86     # FHDRAG = Amplitude of orographic correction (fraction)
87     &AIM_PAR_SFL
88     # FTEMP0 = 0.,
89     # FHUM0 = 0.,
90     # dTstab = 0.,
91     &
92    
93     #-- Convection constants (namelist AIM_PAR_CNV):
94     # PSMIN = minimum (norm.) sfc. pressure for the occurrence of convection
95     # TRCNV = time of relaxation (in hours) towards reference state
96     # QBL = specific hum. threshold in the boundary layer
97     # RHBL = relative hum. threshold in the boundary layer
98     # RHIL = rel. hum. threshold in intermed. layers for secondary mass flux
99     # ENTMAX = max. entrainment as a fraction of cloud-base mass flux
100     # SMF = ratio between secondary and primary mass flux at cloud-base
101     &AIM_PAR_CNV
102     &
103    
104     #-- Constants for large-scale condensation (namelist AIM_PAR_LSC):
105     # TRLSC = Relaxation time (in hours) for specific humidity
106     # RHLSC = Maximum relative humidity threshold (at sigma=1)
107     # DRHLSC = Vertical range of relative humidity threshold
108     # QSMAX = used to define the maximum latent heat release
109     &AIM_PAR_LSC
110     &
111    
112     #-- Radiation constants (namelist AIM_PAR_RAD):
113     # RHCL1 = relative hum. corresponding to cloud cover = 0
114     # RHCL2 = relative hum. corresponding to cloud cover = 1
115     # QACL1 = specific hum. threshold for cloud cover in the upper troposphere
116     # QACL2 = specific hum. threshold for cloud cover in the upper troposphere
117     # ALBCL = cloud albedo (for cloud cover = 1)
118     # EPSSW = fraction of incoming solar radiation absorbed by ozone
119     # EPSLW = fraction of surface LW radiation emitted directly to space
120     # EMISFC = longwave surface emissivity
121     #--: shortwave absorptivities (for dp = 10^5 Pa) :
122     # ABSDRY = abs. of dry air (visible band)
123     # ABSAER = abs. of aerosols (visible band)
124     # ABSWV1 = abs. of water vapour (visible band, for dq = 1 g/kg)
125     # ABSWV2 = abs. of water vapour (near IR band, for dq = 1 g/kg)
126     # ABSCL1 = abs. of clouds (visible band, constant term)
127     # ABSCL2 = abs. of clouds (visible band, for dw = 1 g/kg)
128     #--: longwave absorptivities (per dp = 10^5 Pa) :
129     # ABLWIN = abs. of air in "window" band
130     # ABLCO2 = abs. of air in CO2 band
131     # ABLWV1 = abs. of water vapour in H2O band 1 (weak), for dq = 1 g/kg
132     # ABLWV2 = abs. of water vapour in H2O band 2 (strong), for dq = 1 g/kg
133     # ABLCL1 = abs. of clouds in "window" band, constant term
134     # ABLCL2 = abs. of clouds in "window" band, for dw = 1 g/kg
135     &AIM_PAR_RAD
136     # EPSLW=0.005
137     &
138    
139     #-- Constants for vertical dif. and sh. conv. (namelist AIM_PAR_VDI):
140     # TRSHC = relaxation time (in hours) for shallow convection
141     # TRVDI = relaxation time (in hours) for moisture diffusion
142     # TRVDS = relaxation time (in hours) for super-adiab. conditions
143     # RHGRAD = maximum gradient of relative humidity (d_RH/d_sigma)
144     # SEGRAD = minimum gradient of dry static energy (d_DSE/d_phi)
145     &AIM_PAR_VDI
146     &

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