source: CONFIG_DEVT/ORCHIDEE_OL_TP/OOL_SEC_STO_FG5/PARAM/orchidee.def @ 5570

Last change on this file since 5570 was 5570, checked in by aclsce, 3 years ago

Created ORCHIDEE_OL_TP configuration : temporary configuration to be used during prectical session.

File size: 9.0 KB
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1# $HeadURL$
2# $Date$
3# $Revision$
4
5#**************************************************************************
6#           Suggested parameter set up for ORCHIDEE trunk
7#
8# See all optional parameters in modipsl/modeles/ORCHIDEE/orchidee.default
9#
10# Note when running with libIGCM, variables set here to _AUTOBLOCKER_ can
11# not be changed in run.def otherwise the simulation will stop. Variables
12# set to _AUTO_ can be changed from the comp.card but they can also be
13# changed directly in the run.def. A value set in run.def can never be
14# changed again by libIGCM.
15#**************************************************************************
16
17
18# Parameters related to the restart file and the start date
19#**************************************************************************
20# Name of restart file for sechiba part of the model
21# (default NONE)
22SECHIBA_restart_in = _AUTOBLOCKER_
23
24# Name of restart file for stomate part of the model
25# (default NONE)
26STOMATE_RESTART_FILEIN = _AUTOBLOCKER_
27
28
29# Parameters related to the diagnostic output files
30#**************************************************************************
31# Use XIOS for writing diagnostics file
32# (defualt y)
33XIOS_ORCHIDEE_OK = _AUTOBLOCKER_
34
35# Flag to activate sechiba_out_2.nc history file when using IOIPSL for SECHIBA
36# (defualt n)
37SECHIBA_HISTFILE2 = _AUTO_
38
39# Write frequency in seconds in sechiba_history.nc when using IOIPSL If
40# WRITE_STEP=0 then all IOIPSL output are deactivated.
41# (default 86400) 
42WRITE_STEP = _AUTO_
43
44# Writefrequency in seconds sechiba_out_2.nc when using IOIPSL
45# (default 1800)
46WRITE_STEP2 = _AUTO_
47
48# Writefrequency in days in stomate_history.nc when using IOIPSL
49# (default 10)
50STOMATE_HIST_DT = _AUTO_
51
52# Writefrequency in days or -1 for monthly output in stomate_ipcc_history.nc
53# when using IOIPSL
54# (default 0)
55STOMATE_IPCC_HIST_DT = _AUTO_
56
57
58# Parameters related to debugging and error checking
59#**************************************************************************
60# Mass balance and surface area checks
61# 1 - is recommended when running global long-term simulations.
62# Under this option, mass and area conservation are checked for all
63# biogeochemical processes but only at the highest level thus stomate.f90
64# and stomate_lpj.f90. Although these checks are not very expensive in terms
65# of computer time, skipping the numerous lower level checks is expected to
66# save some time. Under this option the mass balance error is only written
67# to the history file. No information is provided in which subroutine the
68# problem occurred.
69# 2 - is recommended when developing and testing the model. Now the mass
70# balance is explicitly checked in stomate.f90, stomate_lpj.f90 and all
71# its subroutines. Under this option the mass balance error is written to
72# the history file and if the mass balance is not closed, the warning
73# message will indicate in which subroutine the problem likely
74# originated.
75# 3 - is recommended when having a problem with mass balance closure. The
76# mass balance is explicitly checked in stomate.f90, stomate_lpj.f90 and all
77# its subroutines. If a mass balance occurs, the model is stopped.
78# (default)
79ERR_ACT = 3
80
81# If the model crashes and it is not clear in which subroutine the crash
82# occurs one could increase the print level for text output in out_orchidee_*
83# PRINTLEV = 1 : some output in initialization phase
84# PRINTLEV = 2 : more output in initialization phase and printing of new date
85# PRINTLEV = 3, 4,.. : more output also at each timestep
86# (default 2)
87PRINTLEV=2
88
89# If the model crashes on an ipslerr there is a fair change that the pixel and
90# PFT where the crash occur will be printed in the out_orchidee_* file. Try to
91# re-run the model for a single pixel or a small region (for example,
92# 3 by 3). LIMIT_EAST, LIMIT_NORTH, LIMIT_SOUTH and LIMIT_WEST should
93# be set in the run.def
94
95# If it is known in which subroutine the model crashes, the local print level
96# of that subroutine could be increased. Additional write statements will then
97# be activated. These write statements print the values of specific variables.
98# (default 2)
99#PRINTLEV_sapiens_lcchange = 4
100
101# When a local print level is set, the grid and pft number for which the
102# values needs to written should be set. This setting reduces reduces
103# the size and enhances the readability of the out_orchidee_* files. 
104TEST_GRID = 1
105TEST_PFT = 2
106
107
108# Hydrology parameters
109#**************************************************************************
110# Activate river routing. The grid of this setup is too crude outside
111# of Europe to enable river routing.
112# (default y)
113RIVER_ROUTING = n
114
115# Activate creation of river_desc.nc file
116# RIVER_DESC will be activated only the first execution in the simulation
117RIVER_DESC = _AUTO_
118
119# SOILTYPE_CLASSIF :  Type of classification used for the map of soil types
120# (default zobler)
121SOILTYPE_CLASSIF = zobler
122
123
124# Parameters related to vegetation map
125#**************************************************************************
126# Update vegetation frequency
127# (default 0Y)
128VEGET_UPDATE = _AUTO_
129
130# Read lai map
131# (default n)
132LAI_MAP = n
133
134# Prescribed vegetation
135# (default n)
136IMPOSE_VEG = n
137
138
139# Parameters related to surface and thermal physical properties
140#************************************************************************
141# ROUGH_DYN : Account for a dynamic roughness height (activation of Su et
142# al. parametrization)
143# (default y)
144ROUGH_DYN = y
145
146# OK_FREEZE :  Activate the complet soil freezing scheme
147# (default y)
148OK_FREEZE = y
149
150# OK_EXPLICITSNOW :  Activate explict snow scheme
151# (default y)
152OK_EXPLICITSNOW = y
153
154# Controls several settings related to the energy budget and water stress.
155# 1 - DEFAULT uses the enerbil module in combination with the hydraulic
156# architecture (ok_hydrol_arch and ok_gs_feedback true, while   
157# ok_mleb and ok_impose_canopy_structure are set to false).
158# 2 - option to use enerbil module and original water stress
159# (not hydraulic architecture)
160# 3 - The energy budget is calculated using the multi-layer energy scheme
161# with a single layer: ok_hydrol_arch, ok_gs_feedback, ok_impose_canopy_structure
162# and and ok_mleb all TRUE, but the energy budget is calculated for a single
163# layer (jnlvls=1,jnlvls_under=0,jnlvls_canopy=1,jnlvls_over=0). No mleb output,
164# ok_mleb_history_file is set to  FALSE.
165# 4 - multi-layer energy budget: ok_hydrol_arch, ok_gs_feedback and ok_mleb all TRUE.
166# ok_impose_canopy_structure is False, and the energy budget is calculated for
167# multiple layers (jnlvls=29,jnlvls_under=10,jnlvls_canopy=10,jnlvls_over=9).
168# No mleb output, ok_mleb_history_file is set to  FALSE.
169# 5 - user specific: user specific settings for these controls and layers will need
170# to be defined in the run.def by the user.
171ENERGY_CONTROL=1
172
173# Carbon related parameters
174#**************************************************************************
175# Analytic spinup
176# (default n)
177SPINUP_ANALYTIC = _AUTO_
178SPINUP_PERIOD = _AUTO_
179
180# Activate Stomate component
181# (default y)
182STOMATE_OK_STOMATE = _AUTOBLOCKER_
183
184# As an alternative to DO_WOOD_HARVEST forest management can be accounted
185# for. All forest will be managed by the same strategy unless a map is read
186# FM = 1 is unmanaged, FM = 2 is a thin and fell strategy, FM = 3 is a
187# coppice strategy and FM = 4 is a short rotation coppice strategy.
188# (default 2)
189OK_READ_FM_MAP=y
190
191# When a forest dies or is harvested it will be replanted with the species
192# read from the species_change map. Also the management may change. Management
193# changes are prescribed in the desired_fm_map.
194OK_CHANGE_SPECIES=y
195OK_READ_SPECIES_CHANGE_MAP=y
196OK_READ_DESIRED_FM_MAP=y
197
198# Species and management changes have not yet been tested with litter raking.
199# Set to n.
200OK_LITTER_RAKING=n
201
202
203# Parameters related to nitrogen cycle
204#**************************************************************************
205# Update nitrogen input maps
206# (default 0Y)
207NINPUT_UPDATE = _AUTO_
208
209# Impose the CN ratio of leaves
210STOMATE_IMPOSE_CN = _AUTO_
211
212# Set STOMATE_READ_CN=y to read cnleaf_map.nc file if STOMATE_IMPOSE_CN=y
213STOMATE_READ_CN = n
214CNLEAF_VAR = CN_LEAF
215
216
217# File and variable name for nitrogen input files
218#**************************************************************************
219Nammonium_FILE = ndep_nhx.nc
220Nammonium_VAR = nhx
221
222Nnitrate_FILE = ndep_noy.nc
223Nnitrate_VAR = noy
224
225Nfert_FILE = NONE
226Nfert_VAR = nfer
227
228Nmanure_FILE = NONE
229Nmanure_VAR = Nmanure
230
231Nfert_cropland_FILE = nfert_cropland.nc
232Nfert_cropland_VAR = nfer
233
234Nmanure_cropland_FILE = nmanure_cropland.nc
235Nmanure_cropland_VAR = Nmanure
236
237Nfert_pasture_FILE = nfert_pasture.nc
238Nfert_pasture_VAR = Nfer
239
240Nmanure_pasture_FILE = nmanure_pasture.nc
241Nmanure_pasture_VAR = Nmanure
242
243Nbnf_FILE= bnf.nc
244Nbnf_VAR= BNF_MGN_PERM2_PERYR
245
246
247# Parameters describing the canopy structure
248#**************************************************************************
249# Number of diameter classes - enables to create complex canopies
250# (default = 1)
251NCIRC = 3
252
253# Parameters that should be removed once these issues are resolved
254#**************************************************************************
255# This patch should be accepted or rejected and the flag should then
256# be removed
257LNVGRASSPATCH=y
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