source: branches/ORCHIDEE_2_2/ORCHIDEE/orchidee.default @ 7200

Last change on this file since 7200 was 7200, checked in by agnes.ducharne, 3 years ago

Adding new keywords required for r6954, with updated names, cleaning of comments, and small bug correction (dim of njsc). Checked with 5d simulations on jean-zay: no change.

File size: 73.0 KB
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1#
2#
3#  WARNING !!!
4#  DO NOT MODIFY THIS FILE.
5#  THIS FILE IS ONLY PROVIDING INFORMATION ABOUT DEFAULT PARAMETER SETTINGS IN ORCHIDEE.
6#
7#*******************************************************************************************
8#                    Namelist for ORCHIDEE
9#*******************************************************************************************
10#
11#  For more details, see : http://forge.ipsl.jussieu.fr/orchidee/wiki/Documentation/OrchideeParameters
12#
13#  Note : [m] : meters; [K] : Kelvin degrees; [C] : Celsius degrees
14#
15
16#*******************************************************************************************
17#          ORCHIDEE driver parameters (read in Off-line mode only)
18#*******************************************************************************************
19
20# LWDOWN_CONS ([FLAG]) :  Conserve longwave downwelling radiation in the forcing        {}
21LWDOWN_CONS =  n
22
23# SWDOWN_CONS ([FLAG]) :  Conserve shortwave downwelling radiation in the forcing       {}
24SWDOWN_CONS =  LWDOWN_CONS
25
26# FORCING_FILE ([FILE] ) :  Name of file containing the forcing data    {[-]}
27FORCING_FILE =  forcing_file.nc
28
29# DT_SECHIBA ([seconds]) :  Time-step of the SECHIBA component  {NOT(WEATHERGEN)}
30DT_SECHIBA =  1800.
31
32# RESTART_FILEIN ([FILE]) :  Name of restart to READ for initial conditions     {[-]}
33RESTART_FILEIN =  NONE
34
35# RESTART_FILEOUT ([FILE]) :  Name of restart files to be created by the driver         {[-]}
36RESTART_FILEOUT =  driver_rest_out.nc
37
38# DRIVER_reset_time ([FLAG]) :  Overwrite time values from the driver restart file      {[-]}
39DRIVER_reset_time =  n
40
41# TIME_SKIP ([seconds, days, months, years]) :  Time in the forcing file at which the model is started.         {[-]}
42TIME_SKIP =  0
43
44# TIME_LENGTH ([seconds, days, months, years]) :  Length of the integration in time.    {[-]}
45TIME_LENGTH =  Full length of the forcing file 
46
47# RELAXATION ([FLAG]) :  method of forcing      {[-]}
48RELAXATION =  n
49
50# RELAX_A ([days?]) :  Time constant of the relaxation layer    {RELAXATION}
51RELAX_A =  1.0
52
53# SPRED_PREC ([-]) :  Spread the precipitation.         {[-]}
54SPRED_PREC =  Half of the forcing time step or uniform, depending on dt_force and dt_sechiba
55
56# ATM_CO2 ([ppm]) :  Value to precribe atmosoheric CO2  {[FORCE_CO2_VEG=y or Offline mode]}
57ATM_CO2 =  350.
58
59# ALLOW_WEATHERGEN ([FLAG]) :  Allow weather generator to create data   {[-]}
60ALLOW_WEATHERGEN =  n
61
62# DT_WEATHGEN ([seconds]) :  Calling frequency of weather generator     {ALLOW_WEATHERGEN}
63DT_WEATHGEN =  1800.
64
65# LIMIT_WEST ([Degrees] ) :  Western limit of region    {[-]}
66LIMIT_WEST =  -180.
67
68# LIMIT_EAST ([Degrees] ) :  Eastern limit of region    {[-]}
69LIMIT_EAST =  180.
70
71# LIMIT_NORTH ([Degrees]) :  Northern limit of region   {[-]}
72LIMIT_NORTH =  90.
73
74# LIMIT_SOUTH ([Degrees]) :  Southern limit of region   {[-]}
75LIMIT_SOUTH =  -90.
76
77# MERID_RES ([Degrees]) :  North-South Resolution       {ALLOW_WEATHERGEN}
78MERID_RES =  2.
79
80# ZONAL_RES ([Degrees] ) :  East-West Resolution        {ALLOW_WEATHERGEN}
81ZONAL_RES =  2.
82
83# HEIGHT_LEV1 ([m]) :  Height at which T and Q are given        {offline mode}
84HEIGHT_LEV1 =  2.0
85
86# HEIGHT_LEVW ([m]) :  Height at which the wind is given        {offline mode}
87HEIGHT_LEVW =  10.0
88
89# NBUFF (-) :  Number of time steps of data to buffer between each reading of the forcing file  {OFF_LINE}
90NBUFF =  1
91
92# IPPREC ([-] ) :  Use prescribed values        {ALLOW_WEATHERGEN}
93IPPREC =  0
94
95# WEATHGEN_PRECIP_EXACT ([FLAG]) :  Exact monthly precipitation         {ALLOW_WEATHERGEN}
96WEATHGEN_PRECIP_EXACT =  n
97
98# DUMP_WEATHER ([FLAG]) :  Write weather from generator into a forcing file     {ALLOW_WEATHERGEN  }
99DUMP_WEATHER =  n
100
101# DUMP_WEATHER_FILE ([FILE]) :  Name of the file that contains the weather from generator       {DUMP_WEATHER}
102DUMP_WEATHER_FILE =  weather_dump.nc
103
104# DUMP_WEATHER_GATHERED ([FLAG]) :  Dump weather data on gathered grid  {DUMP_WEATHER}
105DUMP_WEATHER_GATHERED =  y
106
107# HEIGHT_LEV1_DUMP ([m]) :      {DUMP_WEATHER}
108HEIGHT_LEV1_DUMP =  10.
109
110#*******************************************************************************************
111#          ORCHIDEE parameters 
112#*******************************************************************************************
113
114# SOILTYPE_CLASSIF ([-]) :  Type of soil texture classification (for hydraulic and thermic properties)          {!IMPOSE_VEG}
115SOILTYPE_CLASSIF =  zobler
116
117# SPMIPEXP ([-]) : For alternative ways to prescribe hydraulic soil parameters (thermic params still defined from soil texture)
118#   maps to read maps of soil parameter as in the SP-MIP project
119#   unif to impose uniforme texture over the globe (4 texture options, see UNIF_CASE, with parameter values imposed by SP-MIP)
120#   texture for default behavior in which all soil parameters stem from soil texture
121SPMIPEXP = texture
122
123# UNIF_CASE ([-]) to define one of 4 uniform textures: 'a' for loamy sand, 'b' for loam, 'c' for silt, 'd' for clay {SPMIPEXP}
124UNIF_CASE = b
125
126# KFACT_ROOT_TYPE ([-]): var or cons, to make kfact_root=1 throughout the soil (no impact of roots on ks profile)
127KFACT_ROOT_TYPE = var
128
129# RIVER_ROUTING ([FLAG]) :  Decides if we route the water or not        {OK_SECHIBA}
130RIVER_ROUTING =  y
131
132# DO_IRRIGATION ([FLAG]) :  Should we compute an irrigation flux        {RIVER_ROUTING }
133DO_IRRIGATION =  n
134
135# DO_FLOODPLAINS ([FLAG]  ) :  Should we include floodplains    {RIVER_ROUTING }
136DO_FLOODPLAINS =  n
137
138# STOMATE_OK_STOMATE ([FLAG]) :  Activate STOMATE?      {OK_SECHIBA}
139STOMATE_OK_STOMATE =  y
140
141# DO_WOOD_HARVEST ([FLAG]) :  Activate Wood Harvest ?   {OK_STOMATE}
142DO_WOOD_HARVEST =  y
143
144# STOMATE_OK_DGVM ([FLAG]) :  Activate DGVM?    {OK_STOMATE}
145STOMATE_OK_DGVM =  n
146
147# CHEMISTRY_BVOC ([FLAG]) :  Activate calculations for BVOC     {OK_SECHIBA}
148CHEMISTRY_BVOC =  n
149
150# CHEMISTRY_LEAFAGE ([FLAG]) :  Activate LEAFAGE?       {CHEMISTRY_BVOC}
151CHEMISTRY_LEAFAGE =  n
152
153# CANOPY_EXTINCTION  ([FLAG]) :  Use canopy radiative transfer model?   {CHEMISTRY_BVOC }
154CANOPY_EXTINCTION  =  n
155
156# CANOPY_MULTILAYER ([FLAG]) :  Use canopy radiative transfer model with multi-layers   {CANOPY_EXTINCTION }
157CANOPY_MULTILAYER =  n
158
159# NOx_RAIN_PULSE ([FLAG]) :  Calculate NOx emissions with pulse?        {CHEMISTRY_BVOC }
160NOx_RAIN_PULSE =  n
161
162# NOx_BBG_FERTIL ([FLAG]) :  Calculate NOx emissions with bbg fertilizing effect?       {CHEMISTRY_BVOC }
163NOx_BBG_FERTIL =  n
164
165# NOx_FERTILIZERS_USE ([FLAG] ) :  Calculate NOx emissions with fertilizers use?        {CHEMISTRY_BVOC }
166NOx_FERTILIZERS_USE =  n
167
168# NVM ([-]) :  number of PFTs           {OK_SECHIBA or OK_STOMATE}
169NVM =  13
170
171# IMPOSE_PARAM ([FLAG]) :  Do you impose the values of the parameters?  {OK_SECHIBA or OK_STOMATE}
172IMPOSE_PARAM =  y
173
174# DEPTH_MAX_T (m) :  Maximum depth of the soil thermodynamics   {}
175DEPTH_MAX_T =  90.0
176
177# DEPTH_MAX_H (m) :  Maximum depth of soil moisture     {}
178DEPTH_MAX_H =  2.0
179
180# DEPTH_TOPTHICK (m) :  Thickness of upper most Layer   {}
181DEPTH_TOPTHICK =  9.77517107e-04
182
183# DEPTH_CSTTHICK (m) :  Depth at which constant layer thickness start   {}
184DEPTH_CSTTHICK =  DEPTH_MAX_H 
185
186# REFINEBOTTOM (-) :  Depth at which the hydrology layers will be refined towards the bottom.   {}
187REFINEBOTTOM =  .FALSE.
188
189# DEPTH_GEOM (m) :  Depth at which we resume geometrical increases for temperature      {}
190DEPTH_GEOM =  DEPTH_MAX_H 
191
192# RATIO_GEOM_BELOW (-) :  Ratio of the geometrical series defining the thickness below DEPTH_GEOM       {}
193RATIO_GEOM_BELOW =  2
194
195# ALMA_OUTPUT ([FLAG]) :  Should the output follow the ALMA convention  {OK_SECHIBA}
196ALMA_OUTPUT =  n
197
198# OUTPUT_FILE ([FILE]) :  Name of file in which the output is going to be written       {OK_SECHIBA}
199OUTPUT_FILE =  sechiba_history.nc
200
201# WRITE_STEP ([seconds]) :  Frequency in seconds for sechiba_history.nc file with IOIPSL        {OK_SECHIBA, NOT XIOS_ORCHIDEE_OK}
202WRITE_STEP =  86400.
203
204# SECHIBA_HISTLEVEL ([-]) :  SECHIBA history output level (0..10)       {OK_SECHIBA and HF}
205SECHIBA_HISTLEVEL =  5
206
207# SECHIBA_HISTFILE2 ([FLAG]) :  Flag to switch on histfile 2 for SECHIBA (hi-frequency ?)       {OK_SECHIBA}
208SECHIBA_HISTFILE2 =  n
209
210# WRITE_STEP2 ([seconds]) :  Frequency in seconds at which to WRITE output      {SECHIBA_HISTFILE2}
211WRITE_STEP2 =  1800.0
212
213# SECHIBA_OUTPUT_FILE2 ([FILE]) :  Name of file in which the output number 2 is going to be written     {SECHIBA_HISTFILE2}
214SECHIBA_OUTPUT_FILE2 =  sechiba_out_2.nc
215
216# SECHIBA_HISTLEVEL2 ([-] ) :  SECHIBA history 2 output level (0..10)   {SECHIBA_HISTFILE2}
217SECHIBA_HISTLEVEL2 =  1
218
219# STOMATE_OUTPUT_FILE ([FILE]) :  Name of file in which STOMATE's output is going to be written         {OK_STOMATE}
220STOMATE_OUTPUT_FILE =  stomate_history.nc
221
222# STOMATE_HIST_DT ([days]) :  STOMATE history time step         {OK_STOMATE}
223STOMATE_HIST_DT =  10.
224
225# STOMATE_IPCC_OUTPUT_FILE ([FILE]) :  Name of file in which STOMATE's output is going to be written    {OK_STOMATE}
226STOMATE_IPCC_OUTPUT_FILE =  stomate_ipcc_history.nc
227
228# STOMATE_IPCC_HIST_DT ([days]) :  STOMATE IPCC history time step       {OK_STOMATE}
229STOMATE_IPCC_HIST_DT =  0.
230
231# OK_HISTSYNC ([FLAG]) :  Syncronize and write IOIPSL output files at each time step    {}
232OK_HISTSYNC =  FALSE
233
234# STOMATE_HISTLEVEL ([-]) :  STOMATE history output level (0..10)       {OK_STOMATE}
235STOMATE_HISTLEVEL =  10
236
237# SECHIBA_restart_in ([FILE]) :  Name of restart to READ for initial conditions         {OK_SECHIBA }
238SECHIBA_restart_in =  NONE
239
240# SECHIBA_rest_out ([FILE]) :  Name of restart files to be created by SECHIBA   {OK_SECHIBA}
241SECHIBA_rest_out =  sechiba_rest_out.nc
242
243# STOMATE_RESTART_FILEIN ([FILE]) :  Name of restart to READ for initial conditions of STOMATE  {STOMATE_OK_STOMATE}
244STOMATE_RESTART_FILEIN =  NONE
245
246# STOMATE_RESTART_FILEOUT ([FILE]) :  Name of restart files to be created by STOMATE    {STOMATE_OK_STOMATE}
247STOMATE_RESTART_FILEOUT =  stomate_rest_out.nc
248
249# FORCE_CO2_VEG ([FLAG]) :  Flag to force the value of atmospheric CO2 for vegetation.  {Only in coupled mode}
250FORCE_CO2_VEG =  FALSE
251
252# TAU_OUTFLOW ([days]) :  Number of days over which the coastal- and riverflow will be distributed      {Only in coupled mode}
253TAU_OUTFLOW =  0
254
255# ECCENTRICITY ([-]) :  Use prescribed values   {ALLOW_WEATHERGEN}
256ECCENTRICITY =  0.016724
257
258# PERIHELIE ([-]) :  Use prescribed values      {ALLOW_WEATHERGEN}
259PERIHELIE =  102.04
260
261# OBLIQUITY ([Degrees]) :  Use prescribed values        {ALLOW_WEATHERGEN}
262OBLIQUITY =  23.446
263
264# PFT_TO_MTC ([-]) :  correspondance array linking a PFT to MTC         {OK_SECHIBA or OK_STOMATE}
265PFT_TO_MTC =  1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13
266
267# PFT_NAME ([-]) :  Name of a PFT       {OK_SECHIBA or OK_STOMATE}
268PFT_NAME =  bare ground, tropical broad-leaved evergreen, tropical broad-leaved raingreen, temperate needleleaf evergreen, temperate broad-leaved evergreen, temperate broad-leaved summergreen,  boreal needleleaf evergreen, boreal broad-leaved summergreen, boreal needleleaf summergreen,  C3 grass, C4 grass, C3 agriculture, C4 agriculture 
269
270# LEAF_TAB ([-] ) :  leaf type : 1      {OK_STOMATE}
271LEAF_TAB =  4, 1, 1, 2, 1, 1, 2, 1, 2, 3, 3, 3, 3 
272
273# PHENO_MODEL ([-] ) :  which phenology model is used? (tabulated)      {OK_STOMATE}
274PHENO_MODEL =  none, none, moi, none, none, ncdgdd, none, ncdgdd, ngd, moigdd, moigdd, moigdd, moigdd
275
276# SECHIBA_LAI ([m^2/m^2]) :  laimax for maximum lai(see also type of lai interpolation)         {OK_SECHIBA or IMPOSE_VEG}
277SECHIBA_LAI =  0., 8., 8., 4., 4.5, 4.5, 4., 4.5, 4., 2., 2., 2., 2.
278
279# LLAIMIN ([m^2/m^2]) :  laimin for minimum lai(see also type of lai interpolation)     {OK_SECHIBA or IMPOSE_VEG}
280LLAIMIN =  0., 8., 0., 4., 4.5, 0., 4., 0., 0., 0., 0., 0., 0.
281
282# SLOWPROC_HEIGHT ([m] ) :  prescribed height of vegetation     {OK_SECHIBA}
283SLOWPROC_HEIGHT =  0., 30., 30., 20., 20., 20., 15., 15., 15., .5, .6, 1., 1.
284
285# Z0_OVER_HEIGHT ([-] ) :  factor to calculate roughness height from height of canopy   {OK_SECHIBA}
286Z0_OVER_HEIGHT =  0., 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625, 0.0625
287
288# RATIO_Z0M_Z0H ([-]) :  Ratio between z0m and z0h      {OK_SECHIBA}
289RATIO_Z0M_Z0H =  1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0 
290
291# TYPE_OF_LAI ([-]) :  Type of behaviour of the LAI evolution algorithm         {OK_SECHIBA}
292TYPE_OF_LAI =  inter, inter, inter, inter, inter, inter, inter, inter, inter, inter, inter, inter, inter
293
294# NATURAL ([BOOLEAN]) :  natural?       {OK_SECHIBA, OK_STOMATE}
295NATURAL =  y, y, y, y, y, y, y, y, y, y, y, n, n 
296
297# IS_C4 ([BOOLEAN]) :  flag for C4 vegetation types     {OK_SECHIBA or OK_STOMATE}
298IS_C4 =  n, n, n, n, n, n, n, n, n, n, n, y, n, y
299
300# VCMAX_FIX ([micromol/m^2/s] ) :  values used for vcmax when STOMATE is not activated  {OK_SECHIBA and NOT(OK_STOMATE)}
301VCMAX_FIX =  0., 40., 50., 30., 35., 40.,30., 40., 35., 60., 60., 70., 70.
302
303# DOWNREG_CO2 ([-]) :  coefficient for CO2 downregulation (unitless)    {OK_CO2 and DOWNREGULATION_CO2}
304DOWNREG_CO2 =  0., 0.38, 0.38, 0.28, 0.28, 0.28, 0.22, 0.22, 0.22, 0.26, 0.26, 0.26, 0.26
305
306# DOWNREG_CO2_NEW ([-]) :  coefficient for CO2 downregulation (unitless)        {OK_CO2 and DOWNREGULATION_CO2_NEW}
307DOWNREG_CO2_NEW =  0., 0.35, 0.35, 0.26, 0.26, 0.26, 0.20, 0.20, 0.20, 0.24, 0.03, 0.24, 0.03
308
309# E_KmC ([J mol-1]) :  Energy of activation for KmC     {}
310E_KmC =  -9999.,  79430., 79430., 79430., 79430., 79430., 79430., 79430., 79430., 79430., 79430., 79430., 79430.
311
312# E_KmO ([J mol-1]) :  Energy of activation for KmO     {}
313E_KmO =  -9999., 36380.,  36380.,  36380.,  36380.,  36380., 36380., 36380., 36380., 36380., 36380., 36380., 36380.
314
315# E_Sco ([J mol-1]) :  Energy of activation for Sco     {}
316E_Sco =  -9999., -24460., -24460., -24460., -24460., -24460., -24460., -24460., -24460., -24460., -24460., -24460., -24460.
317
318# E_gamma_star ([J mol-1]) :  Energy of activation for gamma_star       {}
319E_gamma_star =  -9999., 37830.,  37830.,  37830.,  37830.,  37830., 37830., 37830., 37830., 37830., 37830., 37830., 37830.
320
321# E_Vcmax ([J mol-1]) :  Energy of activation for Vcmax         {}
322E_Vcmax =  -9999., 71513., 71513., 71513., 71513., 71513., 71513., 71513., 71513., 71513., 67300., 71513., 67300.
323
324# E_Jmax ([J mol-1]) :  Energy of activation for Jmax   {}
325E_Jmax =  -9999., 49884., 49884., 49884., 49884., 49884., 49884., 49884., 49884., 49884., 77900., 49884., 77900. 
326
327# aSV ([J K-1 mol-1]) :  a coefficient of the linear regression (a+bT) defining the Entropy term for Vcmax      {}
328aSV =  -9999., 668.39, 668.39, 668.39, 668.39, 668.39, 668.39, 668.39, 668.39, 668.39, 641.64, 668.39, 641.64 
329
330# bSV ([J K-1 mol-1 °C-1]) :  b coefficient of the linear regression (a+bT) defining the Entropy term for Vcmax        {}
331bSV =  -9999., -1.07, -1.07, -1.07, -1.07, -1.07, -1.07, -1.07, -1.07, -1.07, 0., -1.07, 0. 
332
333# TPHOTO_MIN ([-]) :  minimum photosynthesis temperature (deg C)        {OK_STOMATE}
334TPHOTO_MIN =  -9999.,  -4., -4., -4., -4.,-4.,-4., -4., -4., -4., -4., -4., -4.
335
336# TPHOTO_MAX ([-]) :  maximum photosynthesis temperature (deg C)        {OK_STOMATE}
337TPHOTO_MAX =  -9999., 55., 55., 55., 55., 55., 55., 55., 55., 55., 55., 55., 55.
338
339# aSJ ([J K-1 mol-1]) :  a coefficient of the linear regression (a+bT) defining the Entropy term for Jmax       {}
340aSJ =  -9999., 659.70, 659.70, 659.70, 659.70, 659.70, 659.70, 659.70, 659.70, 659.70, 630., 659.70, 630. 
341
342# bSJ ([J K-1 mol-1 °C-1]) :  b coefficient of the linear regression (a+bT) defining the Entropy term for Jmax         {}
343bSJ =  -9999., -0.75, -0.75, -0.75, -0.75, -0.75, -0.75, -0.75, -0.75, -0.75, 0., -0.75, 0. 
344
345# D_Vcmax ([J mol-1]) :  Energy of deactivation for Vcmax       {}
346D_Vcmax =  -9999., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 192000., 200000., 192000.
347
348# D_Jmax ([J mol-1]) :  Energy of deactivation for Jmax         {}
349D_Jmax =  -9999., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 200000., 192000., 200000., 192000.
350
351# E_gm  ([J mol-1] ) :  Energy of activation for gm     { }
352E_gm  =  -9999., 49600., 49600., 49600., 49600., 49600., 49600., 49600., 49600., 49600., -9999., 49600., -9999. 
353
354# S_gm  ([J K-1 mol-1] ) :  Entropy term for gm         { }
355S_gm  =  -9999., 1400., 1400., 1400., 1400., 1400., 1400., 1400., 1400., 1400., -9999., 1400., -9999. 
356
357# D_gm  ([J mol-1] ) :  Energy of deactivation for gm   { }
358D_gm  =  -9999., 437400., 437400., 437400., 437400., 437400., 437400., 437400., 437400., 437400., -9999., 437400., -9999. 
359
360# E_Rd ([J mol-1]) :  Energy of activation for Rd       {}
361E_Rd =  -9999., 46390., 46390., 46390., 46390., 46390., 46390., 46390., 46390., 46390., 46390., 46390., 46390.
362
363# VCMAX25 ([micromol/m^2/s]) :  Maximum rate of Rubisco activity-limited carboxylation at 25°C         {OK_STOMATE}
364VCMAX25 =  -9999., 45.0, 45.0, 35.0, 40.0, 50.0, 45.0, 35.0, 35.0, 50.0, 50.0, 60.0, 60.0
365
366# ARJV ([mu mol e- (mu mol CO2)-1]) :  a coefficient of the linear regression (a+bT) defining the Jmax25/Vcmax25 ratio          {OK_STOMATE}
367ARJV =  -9999., 2.59, 2.59, 2.59, 2.59, 2.59, 2.59, 2.59, 2.59, 2.59, 1.715, 2.59, 1.715
368
369# BRJV ([(mu mol e- (mu mol CO2)-1) (°C)-1]) :  b coefficient of the linear regression (a+bT) defining the Jmax25/Vcmax25 ratio        {OK_STOMATE}
370BRJV =  -9999., -0.035, -0.035, -0.035, -0.035, -0.035, -0.035, -0.035, -0.035, -0.035, 0., -0.035, 0.
371
372# KmC25 ([ubar]) :  Michaelis–Menten constant of Rubisco for CO2 at 25°C     {}
373KmC25 =  -9999., 404.9, 404.9, 404.9, 404.9, 404.9, 404.9, 404.9, 404.9, 404.9, 650., 404.9, 650.
374
375# KmO25 ([ubar]) :  Michaelis–Menten constant of Rubisco for O2 at 25°C      {}
376KmO25 =  -9999., 278400., 278400., 278400., 278400., 278400., 278400., 278400., 278400., 278400., 450000., 278400., 450000.
377
378# Sco25 ([bar bar-1]) :  Relative CO2 /O2 specificity factor for Rubisco at 25°C     {}
379Sco25 =  -9999., 2800., 2800., 2800., 2800., 2800., 2800., 2800., 2800., 2800., 2590., 2800., 2590.
380
381# gm25  ([mol m-2 s-1 bar-1] ) :  Mesophyll diffusion conductance at 25°C        { }
382gm25  =  -9999., 0.4, 0.4, 0.4, 0.4, 0.4, 0.4, 0.4, 0.4, 0.4, -9999., 0.4, -9999. 
383
384# gamma_star25 ([ubar]) :  Ci-based CO2 compensation point in the absence of Rd at 25°C (ubar)         {}
385gamma_star25 =  -9999., 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75, 42.75
386
387# a1 ([-]) :  Empirical factor involved in the calculation of fvpd      {}
388a1 =  -9999., 0.85, 0.85, 0.85, 0.85, 0.85, 0.85, 0.85, 0.85, 0.85, 0.72, 0.85, 0.72
389
390# b1 ([-]) :  Empirical factor involved in the calculation of fvpd      {}
391b1 =  -9999., 0.14, 0.14, 0.14, 0.14, 0.14, 0.14, 0.14, 0.14, 0.14, 0.20, 0.14, 0.20
392
393# g0 ([mol m−2 s−1 bar−1]) :  Residual stomatal conductance when irradiance approaches zero       {}
394g0 =  -9999., 0.00625, 0.00625, 0.00625, 0.00625, 0.00625, 0.00625, 0.00625, 0.00625, 0.00625, 0.01875, 0.00625, 0.01875 
395
396# h_protons ([mol mol-1]) :  Number of protons required to produce one ATP      {}
397h_protons =  -9999., 4., 4., 4., 4., 4., 4., 4., 4., 4., 4., 4., 4. 
398
399# fpsir ([-]) :  Fraction of PSII e− transport rate partitioned to the C4 cycle       {}
400fpsir =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.4, -9999., 0.4 
401
402# fQ ([-]) :  Fraction of electrons at reduced plastoquinone that follow the Q-cycle    {}
403fQ =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 1., -9999., 1.
404
405# fpseudo ([-]) :  Fraction of electrons at PSI that follow pseudocyclic transport      {}
406fpseudo =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.1, -9999., 0.1
407
408# kp ([mol m−2 s−1 bar−1]) :  Initial carboxylation efficiency of the PEP carboxylase     {}
409kp =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.7, -9999., 0.7
410
411# alpha ([-]) :  Fraction of PSII activity in the bundle sheath         {}
412alpha =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.1, -9999., 0.1
413
414# gbs ([mol m−2 s−1 bar−1]) :  Bundle-sheath conductance  {}
415gbs =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.003, -9999., 0.003
416
417# theta ([−]) :  Convexity factor for response of J to irradiance     {}
418theta =  -9999., 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7, 0.7
419
420# alpha_LL ([mol e− (mol photon)−1]) :  Conversion efficiency of absorbed light into J at strictly limiting light   {}
421alpha_LL =  -9999., 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372, 0.372
422
423# STRESS_VCMAX ([-]) :  Stress on vcmax         {OK_SECHIBA or OK_STOMATE}
424STRESS_VCMAX =  1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1.
425
426# STRESS_GS ([-]) :  Stress on gs       {OK_SECHIBA or OK_STOMATE}
427STRESS_GS =  1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1.
428
429# STRESS_GM ([-]) :  Stress on gm       {OK_SECHIBA or OK_STOMATE}
430STRESS_GM =  1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1.
431
432# EXT_COEFF ([-]) :  extinction coefficient of the Monsi&Seaki relationship (1953)      {OK_SECHIBA or OK_STOMATE}
433EXT_COEFF =  .5, .5, .5, .5, .5, .5, .5, .5, .5, .5, .5, .5, .5
434
435# EXT_COEFF_VEGETFRAC ([-]) :  extinction coefficient used for the calculation of the bare soil fraction        {OK_SECHIBA or OK_STOMATE}
436EXT_COEFF_VEGETFRAC =  1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1.
437
438# HYDROL_HUMCSTE ([m]) :  Root profile  {OK_SECHIBA}
439HYDROL_HUMCSTE =  humcste_ref2m or humcste_ref4m depending on zmaxh
440
441# PREF_SOIL_VEG ([-]        ) :  The soil tile number for each vegetation       {OK_SECHIBA or OK_STOMATE}
442PREF_SOIL_VEG =  1, 2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3
443
444# RSTRUCT_CONST ([s/m]) :  Structural resistance        {OK_SECHIBA}
445RSTRUCT_CONST =  0.0, 25.0, 25.0, 25.0, 25.0, 25.0, 25.0, 25.0, 25.0,  2.5,  2.0,  2.0,  2.0
446
447# KZERO ([kg/m^2/s]) :  A vegetation dependent constant used in the calculation of the surface resistance.      {OK_SECHIBA}
448KZERO =  0.0, 12.E-5, 12.E-5, 12.e-5, 12.e-5, 25.e-5, 12.e-5,25.e-5, 25.e-5, 30.e-5, 30.e-5, 30.e-5, 30.e-5 
449
450# RVEG_PFT ([-]) :  Artificial parameter to increase or decrease canopy resistance.     {OK_SECHIBA}
451RVEG_PFT =  1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1., 1.
452
453# WMAX_VEG ([kg/m^3]) :  Maximum field capacity for each of the vegetations (Temporary): max quantity of water  {OK_SECHIBA}
454WMAX_VEG =  150., 150., 150., 150., 150., 150., 150.,150., 150., 150., 150., 150., 150.
455
456# PERCENT_THROUGHFALL_PFT ([%]) :  Percent by PFT of precip that is not intercepted by the canopy. Default value depend on run mode.    {OK_SECHIBA}
457PERCENT_THROUGHFALL_PFT =  Case offline [0. 0. 0....] else [30. 30. 30.....]
458
459# SNOWA_AGED_VIS ([-]) :  Minimum snow albedo value for each vegetation type after aging (dirty old snow), visible albedo       {OK_SECHIBA}
460SNOWA_AGED_VIS =  0.74, 0.0, 0.0, 0.08, 0.24, 0.07, 0.18, 0.18, 0.33, 0.57, 0.57, 0.57, 0.57
461
462# SNOWA_AGED_NIR ([-]) :  Minimum snow albedo value for each vegetation type after aging (dirty old snow), near infrared albedo         {OK_SECHIBA}
463SNOWA_AGED_NIR =  0.50, 0.0, 0.0, 0.10, 0.37, 0.08, 0.16, 0.17, 0.27, 0.44, 0.44, 0.44, 0.44   
464
465# SNOWA_DEC_VIS ([-]) :  Decay rate of snow albedo value for each vegetation type as it will be used in condveg_snow, visible albedo    {OK_SECHIBA}
466SNOWA_DEC_VIS =  0.21, 0.0, 0.0, 0.14, 0.08, 0.17, 0.05, 0.06, 0.09, 0.15, 0.15, 0.15, 0.15 
467
468# SNOWA_DEC_NIR ([-]) :  Decay rate of snow albedo value for each vegetation type as it will be used in condveg_snow, near infrared albedo      {OK_SECHIBA}
469SNOWA_DEC_NIR =  0.13, 0.0, 0.0, 0.10, 0.10, 0.16, 0.04, 0.07, 0.08, 0.12, 0.12, 0.12, 0.12
470
471# ALB_LEAF_VIS ([-]) :  leaf albedo of vegetation type, visible albedo  {OK_SECHIBA}
472ALB_LEAF_VIS =  0.00, 0.04, 0.04, 0.04, 0.04, 0.03, 0.03, 0.03, 0.03, 0.06, 0.06, 0.06, 0.06
473
474# ALB_LEAF_NIR ([-]) :  leaf albedo of vegetation type, near infrared albedo    {OK_SECHIBA}
475ALB_LEAF_NIR =  0.00, 0.23, 0.18, 0.18, 0.20, 0.24, 0.15, 0.26, 0.20, 0.24, 0.27, 0.28, 0.26
476
477# ISO_ACTIVITY ([-]) :  Biogenic activity for each age class : isoprene         {CHEMISTRY_BVOC}
478ISO_ACTIVITY =  0.5, 1.5, 1.5, 0.5
479
480# METHANOL_ACTIVITY ([-]) :  Isoprene emission factor for each age class : methanol     {CHEMISTRY_BVOC}
481METHANOL_ACTIVITY =  1., 1., 0.5, 0.5
482
483# EM_FACTOR_ISOPRENE ([ugC/g/h] ) :  Isoprene emission factor   {CHEMISTRY_BVOC}
484EM_FACTOR_ISOPRENE =  0., 24., 24., 8., 16., 45., 8., 18., 0.5, 12., 18., 5., 5.
485
486# EM_FACTOR_MONOTERPENE ([ugC/g/h] ) :  Monoterpene emission factor     {CHEMISTRY_BVOC }
487EM_FACTOR_MONOTERPENE =  0., 2.0, 2.0, 1.8, 1.4, 1.6, 1.8, 1.4, 1.8, 0.8, 0.8,  0.22, 0.22
488
489# C_LDF_MONO  ([]) :  Monoterpenes fraction dependancy to light         {CHEMISTRY_BVOC}
490C_LDF_MONO  =  0.6
491
492# C_LDF_SESQ  ([]) :  Sesquiterpenes fraction dependancy to light       {CHEMISTRY_BVOC}
493C_LDF_SESQ  =  0.5
494
495# C_LDF_METH  ([]) :  Methanol fraction dependancy to light     {CHEMISTRY_BVOC}
496C_LDF_METH  =  0.8
497
498# C_LDF_ACET  ([]) :  Acetone fraction dependancy to light      {CHEMISTRY_BVOC}
499C_LDF_ACET  =  0.2
500
501# EM_FACTOR_APINENE  ([ugC/g/h] ) :  Alfa pinene  emission factor       {CHEMISTRY_BVOC }
502EM_FACTOR_APINENE  =  0., 1.35, 1.35, 0.85, 0.95, 0.75, 0.85, 0.60, 1.98, 0.30, 0.30, 0.09, 0.09
503
504# EM_FACTOR_BPINENE ([ugC/g/h] ) :  Beta pinene  emission factor        {CHEMISTRY_BVOC }
505EM_FACTOR_BPINENE =  0., 0.30, 0.30, 0.35, 0.25, 0.20, 0.35, 0.12, 0.45, 0.16, 0.12, 0.05, 0.05
506
507# EM_FACTOR_LIMONENE ([ugC/g/h] ) :  Limonene  emission factor  {CHEMISTRY_BVOC}
508EM_FACTOR_LIMONENE =  0., 0.25, 0.25, 0.20, 0.25, 0.14, 0.20, 0.135, 0.11, 0.19, 0.42, 0.03, 0.03
509
510# EM_FACTOR_MYRCENE ([ugC/g/h] ) :  Myrcene  emission factor    {CHEMISTRY_BVOC}
511EM_FACTOR_MYRCENE =  0., 0.20, 0.20, 0.12, 0.11, 0.065, 0.12, 0.036, 0.075, 0.08,  0.085, 0.015, 0.015
512
513# EM_FACTOR_SABINENE ([ugC/g/h] ) :  Sabinene  emission factor  {CHEMISTRY_BVOC}
514EM_FACTOR_SABINENE =  0., 0.20, 0.20, 0.12, 0.17, 0.70, 0.12, 0.50, 0.09, 0.085, 0.075, 0.02, 0.02
515
516# EM_FACTOR_CAMPHENE  ([ugC/g/h] ) :  Camphene  emission factor         {CHEMISTRY_BVOC}
517EM_FACTOR_CAMPHENE  =  0., 0.15, 0.15, 0.10, 0.10, 0.01, 0.10, 0.01, 0.07, 0.07, 0.08, 0.01, 0.01
518
519# EM_FACTOR_3CARENE  ([ugC/g/h] ) :  3-Carene  emission factor  {CHEMISTRY_BVOC}
520EM_FACTOR_3CARENE  =  0., 0.13, 0.13, 0.42, 0.02, 0.055, 0.42,0.025, 0.125, 0.085, 0.085, 0.065, 0.065
521
522# EM_FACTOR_TBOCIMENE ([ugC/g/h] ) :  T-beta-ocimene  emission factor   {CHEMISTRY_BVOC}
523EM_FACTOR_TBOCIMENE =  0., 0.25, 0.25, 0.13, 0.09, 0.26, 0.13, 0.20, 0.085, 0.18, 0.18, 0.01, 0.01
524
525# EM_FACTOR_OTHERMONOT ([ugC/g/h] ) :  Other monoterpenes  emission factor      {CHEMISTRY_BVOC}
526EM_FACTOR_OTHERMONOT =  0., 0.17, 0.17, 0.11, 0.11, 0.125, 0.11, 0.274, 0.01, 0.15, 0.155, 0.035, 0.035
527
528# EM_FACTOR_SESQUITERP  ([ugC/g/h] ) :  Sesquiterpenes  emission factor         {CHEMISTRY_BVOC}
529EM_FACTOR_SESQUITERP  =  0., 0.45, 0.45, 0.13, 0.3, 0.36, 0.15, 0.3, 0.25, 0.6, 0.6, 0.08, 0.08
530
531# C_BETA_MONO  ([]) :  Monoterpenes temperature dependency coefficient  {CHEMISTRY_BVOC}
532C_BETA_MONO  =  0.1
533
534# C_BETA_SESQ  ([]) :  Sesquiterpenes temperature dependency coefficient        {CHEMISTRY_BVOC}
535C_BETA_SESQ  =  0.17
536
537# C_BETA_METH  ([]) :  Methanol temperature dependency coefficient      {CHEMISTRY_BVOC}
538C_BETA_METH  =  0.08
539
540# C_BETA_ACET  ([]) :  Acetone temperature dependency coefficient       {CHEMISTRY_BVOC}
541C_BETA_ACET  =  0.1
542
543# C_BETA_OXYVOC  ([]) :  Other oxygenated BVOC temperature dependency coefficient       {CHEMISTRY_BVOC}
544C_BETA_OXYVOC  =  0.13
545
546# EM_FACTOR_ORVOC ([ugC/g/h]  ) :  ORVOC emissions factor       {CHEMISTRY_BVOC }
547EM_FACTOR_ORVOC =  0., 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5
548
549# EM_FACTOR_OVOC ([ugC/g/h]        ) :  OVOC emissions factor   {CHEMISTRY_BVOC}
550EM_FACTOR_OVOC =  0., 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5, 1.5
551
552# EM_FACTOR_MBO ([ugC/g/h]  ) :  MBO emissions factor   {CHEMISTRY_BVOC }
553EM_FACTOR_MBO =  0., 2.e-5, 2.e-5, 1.4, 2.e-5, 2.e-5, 0.14, 2.e-5, 2.e-5, 2.e-5, 2.e-5, 2.e-5, 2.e-5
554
555# EM_FACTOR_METHANOL ([ugC/g/h]  ) :  Methanol emissions factor         {CHEMISTRY_BVOC }
556EM_FACTOR_METHANOL =  0., 0.8, 0.8, 1.8, 0.9, 1.9, 1.8, 1.8, 1.8, 0.7, 0.9, 2., 2.
557
558# EM_FACTOR_ACETONE ([ugC/g/h]     ) :  Acetone emissions factor        {CHEMISTRY_BVOC }
559EM_FACTOR_ACETONE =  0., 0.25, 0.25, 0.3, 0.2, 0.33, 0.3, 0.25, 0.25, 0.2, 0.2, 0.08, 0.08
560
561# EM_FACTOR_ACETAL ([ugC/g/h]  ) :  Acetaldehyde emissions factor       {CHEMISTRY_BVOC}
562EM_FACTOR_ACETAL =  0., 0.2, 0.2, 0.2, 0.2, 0.25, 0.25, 0.16, 0.16, 0.12, 0.12, 0.035, 0.02
563
564# EM_FACTOR_FORMAL ([ugC/g/h]  ) :  Formaldehyde emissions factor       {CHEMISTRY_BVOC }
565EM_FACTOR_FORMAL =  0., 0.04, 0.04, 0.08, 0.04, 0.04, 0.04, 0.04, 0.04, 0.025, 0.025, 0.013, 0.013
566
567# EM_FACTOR_ACETIC ([ugC/g/h]  ) :  Acetic Acid emissions factor        {CHEMISTRY_BVOC }
568EM_FACTOR_ACETIC =  0., 0.025, 0.025,0.025,0.022,0.08,0.025,0.022,0.013,0.012,0.012,0.008,0.008
569
570# EM_FACTOR_FORMIC ([ugC/g/h]  ) :  Formic Acid emissions factor        {CHEMISTRY_BVOC}
571EM_FACTOR_FORMIC =  0., 0.015, 0.015, 0.02, 0.02, 0.025, 0.025, 0.015, 0.015,0.010,0.010,0.008,0.008
572
573# EM_FACTOR_NO_WET ([ngN/m^2/s]) :  NOx emissions factor wet soil emissions and exponential dependancy factor   {CHEMISTRY_BVOC}
574EM_FACTOR_NO_WET =  0., 2.6, 0.06, 0.03, 0.03, 0.03, 0.03, 0.03, 0.03, 0.36, 0.36, 0.36, 0.36
575
576# EM_FACTOR_NO_DRY ([ngN/m^2/s] ) :  NOx emissions factor dry soil emissions and exponential dependancy factor          {CHEMISTRY_BVOC}
577EM_FACTOR_NO_DRY =  0., 8.60, 0.40, 0.22, 0.22, 0.22, 0.22, 0.22, 0.22, 2.65, 2.65, 2.65, 2.65
578
579# LARCH ([-]  ) :  Larcher 1991 SAI/LAI ratio   {CHEMISTRY_BVOC }
580LARCH =  0., 0.015, 0.015, 0.003, 0.005, 0.005, 0.003, 0.005, 0.003, 0.005, 0.005, 0.008, 0.008
581
582# SLA ([m^2/gC]) :  specif leaf area    {OK_STOMATE}
583SLA =  1.5E-2, 1.53E-2, 2.6E-2, 9.26E-3, 2E-2, 2.6E-2, 9.26E-3, 2.6E-2, 1.9E-2, 2.6E-2, 2.6E-2, 2.6E-2, 2.6E-2
584
585# AVAILABILITY_FACT  ([-]   ) :  Calculate dynamic mortality in lpj_gap, pft dependent parameter        {OK_STOMATE }
586AVAILABILITY_FACT  =  -9999., 0.14, 0.14, 0.10, 0.10, 0.10, 0.05, 0.05, 0.05, -9999., -9999., -9999., -9999. 
587
588# R0  ([-]    ) :  Standard root allocation     {OK_STOMATE }
589R0  =  -9999., .30, .30, .30, .30, .30, .30, .30, .30, .30, .30, .30, .30
590
591# S0  ([-]    ) :  Standard sapwood allocation          {OK_STOMATE }
592S0  =  -9999., .25, .25, .30, .30, .30, .30, .30, .30, .30, .30, .30, .30
593
594# FRAC_GROWTHRESP ([-]) :  fraction of GPP which is lost as growth respiration  {OK_STOMATE}
595FRAC_GROWTHRESP =  -9999., 0.35, 0.35, 0.28, 0.28, 0.28, 0.35, 0.35, 0.35, 0.28, 0.28, 0.28, 0.28
596
597# MAINT_RESP_SLOPE_C ([-]) :  slope of maintenance respiration coefficient (1/K), constant c of aT^2+bT+c , tabulated   {OK_STOMATE}
598MAINT_RESP_SLOPE_C =  -9999., 0.12, 0.12, 0.16, 0.16, 0.16, 0.25, 0.25, 0.25, 0.16, 0.12, 0.16, 0.12
599
600# MAINT_RESP_SLOPE_B ([-]) :  slope of maintenance respiration coefficient (1/K), constant b of aT^2+bT+c , tabulated   {OK_STOMATE}
601MAINT_RESP_SLOPE_B =  -9999., .0, .0, .0, .0, .0, .0, .0, .0, -.00133, .0, -.00133, .0 
602
603# MAINT_RESP_SLOPE_A ([-]) :  slope of maintenance respiration coefficient (1/K), constant a of aT^2+bT+c , tabulated   {OK_STOMATE}
604MAINT_RESP_SLOPE_A =  -9999., .0, .0, .0, .0, .0, .0, .0, .0, .0, .0, .0, .0     
605
606# CM_ZERO_LEAF ([g/g/day]) :  maintenance respiration coefficient at 0 deg C, for leaves, tabulated     {OK_STOMATE}
607CM_ZERO_LEAF =  -9999., 2.35E-3, 2.62E-3, 1.01E-3, 2.35E-3, 2.62E-3, 1.01E-3,2.62E-3, 2.05E-3, 2.62E-3, 2.62E-3, 2.62E-3, 2.62E-3
608
609# CM_ZERO_SAPABOVE ([g/g/day]) :  maintenance respiration coefficient at 0 deg C,for sapwood above, tabulated   {OK_STOMATE}
610CM_ZERO_SAPABOVE =  -9999., 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4
611
612# CM_ZERO_SAPBELOW ([g/g/day]) :  maintenance respiration coefficient at 0 deg C, for sapwood below, tabulated  {OK_STOMATE}
613CM_ZERO_SAPBELOW =  -9999., 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4 
614
615# CM_ZERO_HEARTABOVE ([g/g/day]) :  maintenance respiration coefficient at 0 deg C, for heartwood above, tabulated      {OK_STOMATE }
616CM_ZERO_HEARTABOVE =  -9999., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0. 
617
618# CM_ZERO_HEARTBELOW ([g/g/day] ) :  maintenance respiration coefficient at 0 deg C,for heartwood below, tabulated      {OK_STOMATE }
619CM_ZERO_HEARTBELOW =  -9999., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0., 0. 
620
621# CM_ZERO_ROOT ([g/g/day] ) :  maintenance respiration coefficient at 0 deg C, for roots, tabulated     {OK_STOMATE}
622CM_ZERO_ROOT =  -9999.,1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3,1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3, 1.67E-3
623
624# CM_ZERO_FRUIT ([g/g/day] ) :  maintenance respiration coefficient at 0 deg C, for fruits, tabulated   {OK_STOMATE}
625CM_ZERO_FRUIT =  -9999., 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4,1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4     
626
627# CM_ZERO_CARBRES ([g/g/day] ) :  maintenance respiration coefficient at 0 deg C, for carbohydrate reserve, tabulated   {OK_STOMATE}
628CM_ZERO_CARBRES =  -9999., 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4,1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4, 1.19E-4
629
630# FLAM ([-]) :  flamability: critical fraction of water holding capacity        {OK_STOMATE}
631FLAM =  -9999., .15, .25, .25, .25, .25, .25, .25, .25, .25, .25, .35, .35
632
633# RESIST ([-]) :  fire resistance       {OK_STOMATE}
634RESIST =  -9999., .95, .90, .12, .50, .12, .12, .12, .12, .0, .0, .0, .0 
635
636# COEFF_LCCHANGE_1 ([-]) :  Coeff of biomass export for the year        {OK_STOMATE}
637COEFF_LCCHANGE_1 =  -9999., 0.897, 0.897, 0.597, 0.597, 0.597, 0.597, 0.597, 0.597, 0.597, 0.597, 0.597, 0.597 
638
639# COEFF_LCCHANGE_10 ([-]) :  Coeff of biomass export for the decade     {OK_STOMATE}
640COEFF_LCCHANGE_10 =  -9999., 0.103, 0.103, 0.299, 0.299, 0.299, 0.299, 0.299, 0.299, 0.299, 0.403, 0.299, 0.403
641
642# COEFF_LCCHANGE_100 ([-]) :  Coeff of biomass export for the century   {OK_STOMATE}
643COEFF_LCCHANGE_100 =  -9999., 0., 0., 0.104, 0.104, 0.104, 0.104, 0.104, 0.104, 0.104, 0., 0.104, 0.
644
645# LAI_MAX_TO_HAPPY ([-]) :  threshold of LAI below which plant uses carbohydrate reserves       {OK_STOMATE}
646LAI_MAX_TO_HAPPY =  -9999., .5, .5, .5, .5, .5, .5, .5, .5, .5, .5, .5, .5 
647
648# LAI_MAX ([m^2/m^2]) :  maximum LAI, PFT-specific      {OK_STOMATE}
649LAI_MAX =  -9999., 7.0, 5.0, 5.0, 4.0, 5.0, 3.5, 4.0, 3.0, 2.5, 2.0, 5.0, 5.0
650
651# PHENO_TYPE ([-]) :  type of phenology, 0      {OK_STOMATE}
652PHENO_TYPE =  0, 1, 3, 1, 1, 2, 1, 2, 2, 4, 4, 2, 3
653
654# PHENO_GDD_CRIT_C ([-]) :  critical gdd, tabulated (C), constant c of aT^2+bT+c        {OK_STOMATE}
655PHENO_GDD_CRIT_C =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 270., 400., 125., 400.
656
657# PHENO_GDD_CRIT_B ([-]) :  critical gdd, tabulated (C), constant b of aT^2+bT+c        {OK_STOMATE}
658PHENO_GDD_CRIT_B =  -9999., -9999., -9999., -9999., -9999., -9999., -9999.,-9999., -9999., 6.25, 0., 0., 0.
659
660# PHENO_GDD_CRIT_A ([-]) :  critical gdd, tabulated (C), constant a of aT^2+bT+c        {OK_STOMATE}
661PHENO_GDD_CRIT_A =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0.03125,  0., 0., 0.
662
663# PHENO_MOIGDD_T_CRIT ([C]) :  Average temperature threashold for C4 grass used in pheno_moigdd         {OK_STOMATE}
664PHENO_MOIGDD_T_CRIT =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 22.0, -9999., -9999.
665
666# NGD_CRIT ([days]) :  critical ngd, tabulated. Threshold -5 degrees    {OK_STOMATE}
667NGD_CRIT =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., 0., -9999., -9999., -9999., -9999., -9999.
668
669# NCDGDD_TEMP ([C] ) :  critical temperature for the ncd vs. gdd function in phenology  {OK_STOMATE}
670NCDGDD_TEMP =  -9999., -9999., -9999., -9999., -9999., 5., -9999., 0., -9999., -9999., -9999., -9999., -9999.
671
672# HUM_FRAC ([%]) :  critical humidity (relative to min/max) for phenology       {OK_STOMATE}
673HUM_FRAC =  -9999., -9999., .5, -9999., -9999., -9999., -9999., -9999.,  -9999., .5, .5, .5,.5     
674
675# HUM_MIN_TIME ([days]) :  minimum time elapsed since moisture minimum  {OK_STOMATE}
676HUM_MIN_TIME =  -9999., -9999., 50., -9999., -9999., -9999., -9999., -9999., -9999., 35., 35., 75., 75.
677
678# TAU_SAP ([days]) :  sapwood -> heartwood conversion time      {OK_STOMATE}
679TAU_SAP =  -9999., 730., 730., 730., 730., 730., 730., 730., 730., -9999., -9999., -9999., -9999.
680
681# TAU_LEAFINIT ([days]) :  time to attain the initial foliage using the carbohydrate reserve    {OK_STOMATE}
682TAU_LEAFINIT =  -9999., 10., 10., 10., 10., 10., 10., 10., 10., 10., 10., 10., 10.
683
684# TAU_FRUIT ([days]) :  fruit lifetime  {OK_STOMATE}
685TAU_FRUIT =  -9999., 90., 90., 90., 90., 90., 90., 90., 90., -9999., -9999., -9999., -9999.
686
687# ECUREUIL ([-]) :  fraction of primary leaf and root allocation put into reserve       {OK_STOMATE}
688ECUREUIL =  -9999., .0, 1., .0, .0, 1., .0, 1., 1., 1., 1., 1., 1.
689
690# ALLOC_MIN ([-]) :  minimum allocation above/below     {OK_STOMATE}
691ALLOC_MIN =  -9999., 0.2, 0.2, 0.2, 0.2, 0.2, 0.2, 0.2, 0.2, -9999., -9999., -9999., -9999. 
692
693# ALLOC_MAX ([-]) :  maximum allocation above/below     {OK_STOMATE}
694ALLOC_MAX =  -9999., 0.8, 0.8, 0.8, 0.8, 0.8, 0.8, 0.8, 0.8, -9999., -9999., -9999., -9999.
695
696# DEMI_ALLOC  ([-]) :  mean allocation above/below      {OK_STOMATE}
697DEMI_ALLOC  =  -9999., 5., 5., 5., 5., 5., 5., 5., 5., -9999., -9999., -9999., -9999.
698
699# LEAFLIFE_TAB ([years]) :  leaf longevity      {OK_STOMATE}
700LEAFLIFE_TAB =  -9999., .5, 2., .33, 1., 2., .33, 2., 2., 2., 2., 2., 2. 
701
702# LEAFFALL ([days]) :  length of death of leaves, tabulated     {OK_STOMATE}
703LEAFFALL =  -9999., -9999., 10., -9999., -9999., 10., -9999., 10., 10., 10., 10., 10., 10. 
704
705# LEAFAGECRIT ([days]) :  critical leaf age, tabulated  {OK_STOMATE}
706LEAFAGECRIT =  -9999., 730., 180., 910., 730., 180., 910., 180., 180., 120., 120., 90., 90.   
707
708# SENESCENCE_TYPE ([-]) :  type of senescence, tabulated        {OK_STOMATE}
709SENESCENCE_TYPE =  none, none, dry, none, none, cold, none, cold, cold, mixed, mixed, mixed, mixed 
710
711# SENESCENCE_HUM ([-] ) :  critical relative moisture availability for senescence       {OK_STOMATE}
712SENESCENCE_HUM =  -9999., -9999., .3, -9999., -9999., -9999., -9999., -9999., -9999., .2, .2, .3, .2 
713
714# NOSENESCENCE_HUM ([-]) :  relative moisture availability above which there is no humidity-related senescence  {OK_STOMATE}
715NOSENESCENCE_HUM =  -9999., -9999., .8, -9999., -9999., -9999., -9999., -9999., -9999., .3, .3, .3, .3 
716
717# MAX_TURNOVER_TIME ([days]) :  maximum turnover time for grasse        {OK_STOMATE}
718MAX_TURNOVER_TIME =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999.,  80.,  80., 80., 80. 
719
720# MIN_TURNOVER_TIME ([days]) :  minimum turnover time for grasse        {OK_STOMATE}
721MIN_TURNOVER_TIME =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 10., 10., 10., 10. 
722
723# MIN_LEAF_AGE_FOR_SENESCENCE ([days] ) :  minimum leaf age to allow senescence g       {OK_STOMATE}
724MIN_LEAF_AGE_FOR_SENESCENCE =  -9999., -9999., 90., -9999., -9999., 90., -9999., 60., 60., 30., 30., 30., 30.
725
726# SENESCENCE_TEMP_C ([-]) :  critical temperature for senescence (C), constant c of aT^2+bT+c, tabulated        {OK_STOMATE}
727SENESCENCE_TEMP_C =  -9999., -9999., -9999., -9999., -9999., 12., -9999., 7., 2., -1.375, 5., 5., 10.
728
729# SENESCENCE_TEMP_B ([-]) :  critical temperature for senescence (C), constant b of aT^2+bT+c ,tabulated        {OK_STOMATE }
730SENESCENCE_TEMP_B =  -9999., -9999., -9999., -9999., -9999., 0., -9999., 0., 0., .1, 0., 0., 0.
731
732# SENESCENCE_TEMP_A ([-] ) :  critical temperature for senescence (C), constant a of aT^2+bT+c , tabulated      {OK_STOMATE}
733SENESCENCE_TEMP_A =  -9999., -9999., -9999., -9999., -9999., 0., -9999., 0., 0.,.00375, 0., 0., 0. 
734
735# GDD_SENESCENCE ([days] ) :  minimum gdd to allow senescence of crops          {OK_STOMATE}
736GDD_SENESCENCE =  -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., -9999., 950., 4000.
737
738# ALWAYS_INIT ([BOOLEAN]) :  Take carbon from atmosphere if carbohydrate reserve too small      {OK_STOMATE}
739ALWAYS_INIT =  y, y, y, y, y, y, y, y, y, y, n, y, y
740
741# RESIDENCE_TIME ([years]) :  residence time of trees   {OK_DGVM and NOT(LPJ_GAP_CONST_MORT)}
742RESIDENCE_TIME =  -9999., 30.0, 30.0, 40.0, 40.0, 40.0, 80.0, 80.0, 80.0, 0.0, 0.0, 0.0, 0.0 
743
744# TMIN_CRIT ([C]) :  critical tmin, tabulated   {OK_STOMATE}
745TMIN_CRIT =  -9999.,  0.0, 0.0, -30.0, -14.0, -30.0, -45.0, -45.0, -9999., -9999., -9999., -9999., -9999.
746
747# TCM_CRIT ([C]) :  critical tcm, tabulated     {OK_STOMATE}
748TCM_CRIT =  -9999., -9999., -9999., 5.0, 15.5, 15.5, -8.0, -8.0, -8.0, -9999., -9999., -9999., -9999.
749
750# HERBIVORES ([FLAG]) :  herbivores allowed?    {OK_STOMATE }
751HERBIVORES =  n
752
753# TREAT_EXPANSION ([FLAG]) :  treat expansion of PFTs across a grid cell?       {OK_STOMATE }
754TREAT_EXPANSION =  n
755
756# LPJ_GAP_CONST_MORT ([FLAG]) :  Constant mortality     {OK_STOMATE AND NOT OK_DGVM}
757LPJ_GAP_CONST_MORT =  y/n depending on OK_DGVM
758
759# HARVEST_AGRI ([FLAG]) :  Harvest model for agricultural PFTs.         {OK_STOMATE }
760HARVEST_AGRI =  y
761
762# FIRE_DISABLE ([FLAG]) :  no fire allowed      {OK_STOMATE }
763FIRE_DISABLE =  y
764
765# SPINUP_ANALYTIC (BOOLEAN    ) :  Activation of the analytic resolution of the spinup.         {OK_STOMATE}
766SPINUP_ANALYTIC =  n
767
768# AGRICULTURE ([FLAG]) :  agriculture allowed?  {OK_SECHIBA or OK_STOMATE}
769AGRICULTURE =  y
770
771# IMPOSE_VEG ([FLAG]) :  Should the vegetation be prescribed ?  {OK_SECHIBA or OK_STOMATE}
772IMPOSE_VEG =  n
773
774# IMPOSE_SOILT ([FLAG]) :  Should the soil type be prescribed ?         {IMPOSE_VEG}
775IMPOSE_SOILT =  n
776
777# LAI_MAP ([FLAG]) :  Read the LAI map  {OK_SECHIBA or OK_STOMATE}
778LAI_MAP =  n
779
780# VEGET_REINIT ([FLAG] ) :  Reset veget_year counter (obsolet)  {VEGET_UPDATE > 0Y}
781VEGET_REINIT =  y
782
783# VEGETMAP_RESET ([FLAG] ) :  Flag to change vegetation map without activating LAND USE change for carbon fluxes and reset carbon related variables to zero     {}
784VEGETMAP_RESET =  n
785
786# VEGET_YEAR ([FLAG] ) :  Year of the vegetation map to be read         {}
787VEGET_YEAR =  1
788
789# MAXMASS_SNOW ([kg/m^2]  ) :  The maximum mass of a snow       {OK_SECHIBA}
790MAXMASS_SNOW =  3000.
791
792# SNOWCRI ([kg/m^2]  ) :  Sets the amount above which only sublimation occures          {OK_SECHIBA}
793SNOWCRI =  1.5
794
795# MIN_WIND ([m/s]) :  Minimum wind speed        {OK_SECHIBA}
796MIN_WIND =  0.1
797
798# MAX_SNOW_AGE ([days?]) :  Maximum period of snow aging        {OK_SECHIBA}
799MAX_SNOW_AGE =  50.
800
801# SNOW_TRANS ([m]   ) :  Transformation time constant for snow  {OK_SECHIBA}
802SNOW_TRANS =  0.2
803
804# OK_NUDGE_MC ([FLAG]) :  Activate nudging of soil moisture     {}
805OK_NUDGE_MC =  n
806
807# NUDGE_TAU_MC ([-]) :  Relaxation time for nudging of soil moisture expressed in fraction of the day   {OK_NUDGE_MC}
808NUDGE_TAU_MC =  1
809
810# OK_NUDGE_SNOW ([FLAG]) :  Activate nudging of snow variables  {}
811OK_NUDGE_SNOW =  n
812
813# NUDGE_TAU_SNOW ([-]) :  Relaxation time for nudging of snow variables         {OK_NUDGE_SNOW}
814NUDGE_TAU_SNOW =  1
815
816# NUDGE_INTERPOL_WITH_XIOS ([FLAG]) :  Activate reading and interpolation with XIOS for nudging fields  {OK_NUDGE_MC or OK_NUDGE_SNOW}
817NUDGE_INTERPOL_WITH_XIOS =  n
818
819# HEIGHT_DISPLACEMENT ([m]  ) :  Magic number which relates the height to the displacement height.      {OK_SECHIBA }
820HEIGHT_DISPLACEMENT =  0.75
821
822# Z0_BARE ([m]   ) :  bare soil roughness length        {OK_SECHIBA }
823Z0_BARE =  0.01 
824
825# Z0_ICE ([m]   ) :  ice roughness length       {OK_SECHIBA }
826Z0_ICE =  0.001
827
828# TCST_SNOWA ([days]) :  Time constant of the albedo decay of snow      {OK_SECHIBA }
829TCST_SNOWA =  10.0 
830
831# SNOWCRI_ALB ([cm]  ) :  Critical value for computation of snow albedo         {OK_SECHIBA}
832SNOWCRI_ALB =  10. 
833
834# VIS_DRY ([-]  ) :  The correspondance table for the soil color numbers and their albedo       {OK_SECHIBA }
835VIS_DRY =  0.24, 0.22, 0.20, 0.18, 0.16, 0.14, 0.12, 0.10, 0.27
836
837# NIR_DRY ([-]   ) :  The correspondance table for the soil color numbers and their albedo      {OK_SECHIBA }
838NIR_DRY =  0.48, 0.44, 0.40, 0.36, 0.32, 0.28, 0.24, 0.20, 0.55
839
840# VIS_WET  ([-]   ) :  The correspondance table for the soil color numbers and their albedo     {OK_SECHIBA  }
841VIS_WET  =  0.12, 0.11, 0.10, 0.09, 0.08, 0.07, 0.06, 0.05, 0.15
842
843# NIR_WET ([-]    ) :  The correspondance table for the soil color numbers and their albedo     {OK_SECHIBA }
844NIR_WET =  0.24, 0.22, 0.20, 0.18, 0.16, 0.14, 0.12, 0.10, 0.31
845
846# ALBSOIL_VIS ([-]  ) :         {OK_SECHIBA }
847ALBSOIL_VIS =  0.18, 0.16, 0.16, 0.15, 0.12, 0.105, 0.09, 0.075, 0.25
848
849# ALBSOIL_NIR  ([-]  ) :        {OK_SECHIBA }
850ALBSOIL_NIR  =  0.36, 0.34, 0.34, 0.33, 0.30, 0.25, 0.20, 0.15, 0.45
851
852# ALB_DEADLEAF  ([-]     ) :  albedo of dead leaves, VIS+NIR    {OK_SECHIBA }
853ALB_DEADLEAF  =  0.12, 0.35
854
855# ALB_ICE ([-]  ) :  albedo of ice, VIS+NIR     {OK_SECHIBA}
856ALB_ICE =  0.60, 0.20
857
858# CONDVEG_SNOWA ([-]) :  The snow albedo used by SECHIBA        {OK_SECHIBA}
859CONDVEG_SNOWA =  1.E+20
860
861# ALB_BARE_MODEL ([FLAG]) :  Switch bare soil albedo dependent (if TRUE) on soil wetness        {OK_SECHIBA}
862ALB_BARE_MODEL =  n
863
864# ALB_BG_MODIS ([FLAG]) :  Read bare soil albedo from file with background MODIS data   {OK_SECHIBA}
865ALB_BG_MODIS =  y
866
867# IMPOSE_AZE ([FLAG]) :  Should the surface parameters be prescribed    {OK_SECHIBA}
868IMPOSE_AZE =  n
869
870# CONDVEG_Z0 ([m]) :  Surface roughness         {IMPOSE_AZE}
871CONDVEG_Z0 =  0.15
872
873# ROUGHHEIGHT ([m] ) :  Height to be added to the height of the first level     {IMPOSE_AZE}
874ROUGHHEIGHT =  0.0
875
876# CONDVEG_ALBVIS ([-]) :  SW visible albedo for the surface     {IMPOSE_AZE}
877CONDVEG_ALBVIS =  0.25
878
879# CONDVEG_ALBNIR ([-]  ) :  SW near infrared albedo for the surface     {IMPOSE_AZE}
880CONDVEG_ALBNIR =  0.25
881
882# CONDVEG_EMIS ([-] ) :  Emissivity of the surface for LW radiation     {IMPOSE_AZE}
883CONDVEG_EMIS =  1.0
884
885# ROUGH_DYN ([FLAG]) :  Account for a dynamic roughness height  {OK_SECHIBA}
886ROUGH_DYN =  y
887
888# C1 ([-] ) :  Constant used in the formulation of the ratio of         {ROUGH_DYN}
889C1 =  0.32
890
891# C2 ([-] ) :  Constant used in the formulation of the ratio of         {ROUGH_DYN}
892C2 =  0.264
893
894# C3 ([-] ) :  Constant used in the formulation of the ratio of         {ROUGH_DYN}
895C3 =  15.1
896
897# Cdrag_foliage ([-] ) :  Drag coefficient of the foliage       {ROUGH_DYN}
898Cdrag_foliage =  0.2
899
900# Ct ([-] ) :  Heat transfer coefficient of the leaf    {ROUGH_DYN}
901Ct =  0.01
902
903# Prandtl ([-] ) :  Prandtl number used in the calculation of Ct*       {ROUGH_DYN}
904Prandtl =  0.71
905
906# xansmax  ([-] ) :  maximum snow albedo        {OK_SECHIBA}
907xansmax  =  0.85
908
909# xansmin  ([-] ) :  minimum snow albedo        {OK_SECHIBA}
910xansmin  =  0.50
911
912# xans_todry  ([S-1] ) :  albedo decay rate for the dry snow    {OK_SECHIBA}
913xans_todry  =  0.008
914
915# xans_t  ([S-1] ) :  albedo decay rate for the wet snow        {OK_SECHIBA}
916xans_t  =  0.24
917
918# xrhosmax  ([-] ) :  maximum snow density      {OK_SECHIBA}
919xrhosmax  =  750
920
921# xwsnowholdmax1 ([-] ) :  snow holding capacity 1      {OK_SECHIBA}
922xwsnowholdmax1 =  0.03
923
924# xwsnowholdmax2 ([-] ) :  snow holding capacity 2      {OK_SECHIBA}
925xwsnowholdmax2 =  0.10
926
927# xsnowrhohold  ([kg/m3] ) :  snow density      {OK_SECHIBA}
928xsnowrhohold  =  200.0
929
930# ZSNOWTHRMCOND1 ([W/m/K] ) :  Thermal conductivity Coef 1      {OK_SECHIBA}
931ZSNOWTHRMCOND1 =  0.02 
932
933# ZSNOWTHRMCOND2 ([W m5/(kg2 K)] ) :  Thermal conductivity Coef 2       {OK_SECHIBA}
934ZSNOWTHRMCOND2 =  2.5E-6
935
936# ZSNOWTHRMCOND_AVAP ([W/m/K] ) :  Thermal conductivity Coef 1 water vapor      {OK_SECHIBA}
937ZSNOWTHRMCOND_AVAP =  -0.06023
938
939# ZSNOWTHRMCOND_BVAP ([W/m] ) :  Thermal conductivity Coef 2 water vapor        {OK_SECHIBA}
940ZSNOWTHRMCOND_BVAP =  -2.5425
941
942# ZSNOWTHRMCOND_CVAP ([K] ) :  Thermal conductivity Coef 3 water vapor  {OK_SECHIBA}
943ZSNOWTHRMCOND_CVAP =  -289.99
944
945# ZSNOWCMPCT_RHOD ([kg/m3]) :  Snow compaction coefficent       {OK_SECHIBA}
946ZSNOWCMPCT_RHOD =  150.0
947
948# ZSNOWCMPCT_ACM ([1/s]) :  Coefficent for the thermal conductivity     {OK_SECHIBA}
949ZSNOWCMPCT_ACM =  2.8e-6
950
951# ZSNOWCMPCT_BCM ([1/K]) :  Coefficent for the thermal conductivity     {OK_SECHIBA}
952ZSNOWCMPCT_BCM =  0.04
953
954# ZSNOWCMPCT_CCM ([m3/kg] ) :  Coefficent for the thermal conductivity  {OK_SECHIBA}
955ZSNOWCMPCT_CCM =  460.
956
957# ZSNOWCMPCT_V0 ([Pa/s]) :  Vapor coefficent for the thermal conductivity       {OK_SECHIBA}
958ZSNOWCMPCT_V0 =  3.7e7
959
960# ZSNOWCMPCT_VT ([1/K]) :  Vapor coefficent for the thermal conductivity        {OK_SECHIBA}
961ZSNOWCMPCT_VT =  0.081
962
963# ZSNOWCMPCT_VR ([m3/kg]) :  Vapor coefficent for the thermal conductivity      {OK_SECHIBA}
964ZSNOWCMPCT_VR =  0.018
965
966# CB ([-] ) :  Constant of the Louis scheme     {OK_SECHIBA}
967CB =  5.0
968
969# CC ([-] ) :  Constant of the Louis scheme     {OK_SECHIBA}
970CC =  5.0
971
972# CD ([-] ) :  Constant of the Louis scheme     {OK_SECHIBA}
973CD =  5.0
974
975# RAYT_CSTE ([W.m^{-2}] ) :  Constant in the computation of surface resistance          {OK_SECHIBA}
976RAYT_CSTE =  125
977
978# DEFC_PLUS ([K.W^{-1}] ) :  Constant in the computation of surface resistance          {OK_SECHIBA}
979DEFC_PLUS =  23.E-3
980
981# DEFC_MULT ([K.W^{-1}] ) :  Constant in the computation of surface resistance          {OK_SECHIBA}
982DEFC_MULT =  1.5
983
984# NLAI ([-]  ) :  Number of LAI levels  {OK_SECHIBA}
985NLAI =  20
986
987# LAIMAX ([m^2/m^2]   ) :  Maximum LAI  {OK_SECHIBA}
988LAIMAX =   
989
990# DEW_VEG_POLY_COEFF ([-]   ) :  coefficients of the polynome of degree 5 for the dew   {OK_SECHIBA}
991DEW_VEG_POLY_COEFF =  0.887773, 0.205673, 0.110112, 0.014843, 0.000824, 0.000017 
992
993# DOWNREGULATION_CO2 ([FLAG]   ) :  Activation of CO2 downregulation (used for CMIP6 version 6.1.0-6.1.10)      {OK_SECHIBA}
994DOWNREGULATION_CO2 =  y
995
996# DOWNREGULATION_CO2_NEW ([FLAG]   ) :  Activation of CO2 downregulation (used for CMIP6 version 6.1.11 and later)      {OK_SECHIBA}
997DOWNREGULATION_CO2_NEW =  n
998
999# DOWNREGULATION_CO2_BASELEVEL ([ppm]   ) :  CO2 base level     {DOWNREGULATION_CO2 or DOWNREGULATION_CO2_NEW}
1000DOWNREGULATION_CO2_BASELEVEL =  380.
1001
1002# DOWNREGULATION_CO2_MINIMUM ([ppm]   ) :  CO2 value above which downregulation is taken into account   {DOWNREGULATION_CO2_NEW}
1003DOWNREGULATION_CO2_MINIMUM =  280.
1004
1005# GB_REF ([s m-1]   ) :  Leaf bulk boundary layer resistance    {}
1006GB_REF =  1./25.
1007
1008# CLAYFRACTION_DEFAULT ([-]   ) :  default fraction of clay     {OK_SECHIBA }
1009CLAYFRACTION_DEFAULT =  0.2 
1010
1011# SANDFRACTION_DEFAULT ([-]   ) :  default fraction of sand     {OK_SECHIBA }
1012SANDFRACTION_DEFAULT =  0.4 
1013
1014# SILTFRACTION_DEFAULT ([-]   ) :  default fraction of silt     {OK_SECHIBA }
1015SILTFRACTION_DEFAULT =  0.4 
1016
1017# MIN_VEGFRAC  ([-]  ) :  Minimal fraction of mesh a vegetation type can occupy         {OK_SECHIBA }
1018MIN_VEGFRAC  =  0.001 
1019
1020# STEMPDIAG_BID  ([K]) :  only needed for an initial LAI if there is no restart file    {OK_SECHIBA }
1021STEMPDIAG_BID  =  280.
1022
1023# LAI_LEVEL_DEPTH ([-]  ) :     {}
1024LAI_LEVEL_DEPTH =  0.15
1025
1026# Oi ([ubar]  ) :  Intercellular oxygen partial pressure        {}
1027Oi =  210000.
1028
1029# TOO_LONG  ([days]   ) :  longest sustainable time without regeneration (vernalization)        {OK_STOMATE}
1030TOO_LONG  =  5.
1031
1032# TAU_FIRE  ([days]    ) :  Time scale for memory of the fire index (days). Validated for one year in the DGVM.         {OK_STOMATE }
1033TAU_FIRE  =  30.
1034
1035# LITTER_CRIT ([gC/m^2]  ) :  Critical litter quantity for fire         {OK_STOMATE }
1036LITTER_CRIT =  200.
1037
1038# FIRE_RESIST_STRUCT ([-]  ) :          {OK_STOMATE }
1039FIRE_RESIST_STRUCT =  0.5
1040
1041# CO2FRAC ([-]  ) :  What fraction of a burned plant compartment goes into the atmosphere       {OK_STOMATE }
1042CO2FRAC =  0.95, 0.95, 0., 0.3, 0., 0., 0.95, 0.95
1043
1044# BCFRAC_COEFF ([-]  ) :        {OK_STOMATE }
1045BCFRAC_COEFF =  0.3, 1.3, 88.2 
1046
1047# FIREFRAC_COEFF  ([-]   ) :    {OK_STOMATE }
1048FIREFRAC_COEFF  =  0.45, 0.8, 0.6, 0.13
1049
1050# REF_GREFF ([1/year]  ) :  Asymptotic maximum mortality rate   {OK_STOMATE }
1051REF_GREFF =  0.035
1052
1053# OK_MINRES ([FLAG]) :  Do we try to reach a minimum reservoir even if we are severely stressed?        {OK_STOMATE }
1054OK_MINRES =  y
1055
1056# RESERVE_TIME_TREE  ([days]    ) :  maximum time during which reserve is used (trees)          {OK_STOMATE }
1057RESERVE_TIME_TREE  =  30.
1058
1059# RESERVE_TIME_GRASS  ([days]   ) :  maximum time during which reserve is used (grasses)        {OK_STOMATE }
1060RESERVE_TIME_GRASS  =  20. 
1061
1062# F_FRUIT ([-]    ) :  Standard fruit allocation        {OK_STOMATE }
1063F_FRUIT =  0.1 
1064
1065# ALLOC_SAP_ABOVE_GRASS  ([-]   ) :  fraction of sapwood allocation above ground        {OK_STOMATE }
1066ALLOC_SAP_ABOVE_GRASS  =  1.0 
1067
1068# MIN_LTOLSR  ([-]   ) :  extrema of leaf allocation fraction   {OK_STOMATE }
1069MIN_LTOLSR  =  0.2
1070
1071# MAX_LTOLSR ([-]   ) :  extrema of leaf allocation fraction    {OK_STOMATE }
1072MAX_LTOLSR =  0.5
1073
1074# Z_NITROGEN ([m]  ) :  scaling depth for nitrogen limitation   {OK_STOMATE}
1075Z_NITROGEN =  0.2 
1076
1077# NLIM_TREF  ([C]  ) :          {OK_STOMATE }
1078NLIM_TREF  =  25. 
1079
1080# PIPE_TUNE1 ([-]    ) :  crown area    {OK_STOMATE }
1081PIPE_TUNE1 =  100.0
1082
1083# PIPE_TUNE2  ([-]      ) :  height     {OK_STOMATE }
1084PIPE_TUNE2  =  40.0 
1085
1086# PIPE_TUNE3 ([-]    ) :  height        {OK_STOMATE }
1087PIPE_TUNE3 =  0.5 
1088
1089# PIPE_TUNE4 ([-]  ) :  needed for stem diameter        {OK_STOMATE }
1090PIPE_TUNE4 =  0.3 
1091
1092# PIPE_DENSITY  ([-]  ) :  Density      {OK_STOMATE }
1093PIPE_DENSITY  =  2.e5 
1094
1095# PIPE_K1  ([-]   ) :           {OK_STOMATE }
1096PIPE_K1  =  8.e3 
1097
1098# PIPE_TUNE_EXP_COEFF  ([-]   ) :  pipe tune exponential coeff          {OK_STOMATE }
1099PIPE_TUNE_EXP_COEFF  =  1.6 
1100
1101# PRECIP_CRIT  ([mm/year]  ) :  minimum precip  {OK_STOMATE }
1102PRECIP_CRIT  =  100.
1103
1104# GDD_CRIT_ESTAB ([-]  ) :  minimum gdd for establishment of saplings   {OK_STOMATE }
1105GDD_CRIT_ESTAB =  150. 
1106
1107# FPC_CRIT ([-]  ) :  critical fpc, needed for light competition and establishment      {OK_STOMATE }
1108FPC_CRIT =  0.95
1109
1110# ALPHA_GRASS ([-]   ) :  sapling characteristics : alpha's     {OK_STOMATE }
1111ALPHA_GRASS =  0.5
1112
1113# ALPHA_TREE ([-]   ) :  sapling characteristics : alpha's      {OK_STOMATE }
1114ALPHA_TREE =  1.
1115
1116# MASS_RATIO_HEART_SAP ([-]   ) :  mass ratio (heartwood+sapwood)/sapwood       {OK_STOMATE }
1117MASS_RATIO_HEART_SAP =  3.
1118
1119# TAU_HUM_MONTH ([days]  ) :  time scales for phenology and other processes     {OK_STOMATE }
1120TAU_HUM_MONTH =  20. 
1121
1122# TAU_HUM_WEEK ([days]   ) :  time scales for phenology and other processes     {OK_STOMATE }
1123TAU_HUM_WEEK =  7.
1124
1125# TAU_T2M_MONTH ([days]     ) :  time scales for phenology and other processes  {OK_STOMATE }
1126TAU_T2M_MONTH =  20.
1127
1128# TAU_T2M_WEEK ([days]   ) :  time scales for phenology and other processes     {OK_STOMATE }
1129TAU_T2M_WEEK =  7.
1130
1131# TAU_TSOIL_MONTH  ([days]     ) :  time scales for phenology and other processes       {OK_STOMATE }
1132TAU_TSOIL_MONTH  =  20. 
1133
1134# TAU_SOILHUM_MONTH ([days]   ) :  time scales for phenology and other processes        {OK_STOMATE }
1135TAU_SOILHUM_MONTH =  20. 
1136
1137# TAU_GPP_WEEK  ([days]   ) :  time scales for phenology and other processes    {OK_STOMATE }
1138TAU_GPP_WEEK  =  7. 
1139
1140# TAU_GDD ([days]   ) :  time scales for phenology and other processes  {OK_STOMATE }
1141TAU_GDD =  40. 
1142
1143# TAU_NGD ([days]   ) :  time scales for phenology and other processes  {OK_STOMATE }
1144TAU_NGD =  50.
1145
1146# COEFF_TAU_LONGTERM ([days]   ) :  time scales for phenology and other processes       {OK_STOMATE }
1147COEFF_TAU_LONGTERM =  3. 
1148
1149# BM_SAPL_CARBRES  ([-]   ) :           {OK_STOMATE }
1150BM_SAPL_CARBRES  =  5. 
1151
1152# BM_SAPL_SAPABOVE ([-]    ) :          {OK_STOMATE}
1153BM_SAPL_SAPABOVE =  0.5 
1154
1155# BM_SAPL_HEARTABOVE  ([-]    ) :       {OK_STOMATE }
1156BM_SAPL_HEARTABOVE  =  2.
1157
1158# BM_SAPL_HEARTBELOW  ([-]    ) :       {OK_STOMATE }
1159BM_SAPL_HEARTBELOW  =  2. 
1160
1161# INIT_SAPL_MASS_LEAF_NAT ([-]    ) :           {OK_STOMATE }
1162INIT_SAPL_MASS_LEAF_NAT =  0.1 
1163
1164# INIT_SAPL_MASS_LEAF_AGRI ([-]    ) :          {OK_STOMATE }
1165INIT_SAPL_MASS_LEAF_AGRI =  1. 
1166
1167# INIT_SAPL_MASS_CARBRES ([-]    ) :    {OK_STOMATE }
1168INIT_SAPL_MASS_CARBRES =  5. 
1169
1170# INIT_SAPL_MASS_ROOT ([-]   ) :        {OK_STOMATE }
1171INIT_SAPL_MASS_ROOT =  0.1 
1172
1173# INIT_SAPL_MASS_FRUIT ([-]    ) :      {OK_STOMATE }
1174INIT_SAPL_MASS_FRUIT =  0.3 
1175
1176# CN_SAPL_INIT  ([-]   ) :      {OK_STOMATE }
1177CN_SAPL_INIT  =  0.5 
1178
1179# MIGRATE_TREE  ([m/year]   ) :         {OK_STOMATE }
1180MIGRATE_TREE  =  10000.
1181
1182# MIGRATE_GRASS ([m/year]   ) :         {OK_STOMATE }
1183MIGRATE_GRASS =  10000.
1184
1185# LAI_INITMIN_TREE ([m^2/m^2]  ) :      {OK_STOMATE }
1186LAI_INITMIN_TREE =  0.3
1187
1188# LAI_INITMIN_GRASS  ([m^2/m^2]    ) :          {OK_STOMATE }
1189LAI_INITMIN_GRASS  =  0.1
1190
1191# DIA_COEFF ([-]   ) :          {OK_STOMATE }
1192DIA_COEFF =  4., 0.5
1193
1194# MAXDIA_COEFF ([-]   ) :       {OK_STOMATE }
1195MAXDIA_COEFF =  100., 0.01 
1196
1197# BM_SAPL_LEAF ([-]  ) :        {OK_STOMATE }
1198BM_SAPL_LEAF =  4., 4., 0.8, 5. 
1199
1200# METABOLIC_REF_FRAC ([-]) :    {OK_STOMATE }
1201METABOLIC_REF_FRAC =  0.85   
1202
1203# Z_DECOMP ([m]   ) :  scaling depth for soil activity  {OK_STOMATE }
1204Z_DECOMP =  0.2
1205
1206# CN ([-]  ) :  C/N ratio       {OK_STOMATE }
1207CN =  40., 40., 40., 40., 40., 40., 40., 40.
1208
1209# LC  ([-]   ) :  Lignine/C ratio of the different plant parts  {OK_STOMATE }
1210LC  =  0.22, 0.35, 0.35, 0.35, 0.35, 0.22, 0.22, 0.22
1211
1212# FRAC_SOIL_STRUCT_AA ([-]) :  frac_soil(istructural,iactive,iabove)    {OK_STOMATE }
1213FRAC_SOIL_STRUCT_AA =  0.55
1214
1215# FRAC_SOIL_STRUCT_A  ([-]) :  frac_soil(istructural,iactive,ibelow)    {OK_STOMATE }
1216FRAC_SOIL_STRUCT_A  =  0.45
1217
1218# FRAC_SOIL_STRUCT_SA ([-]   ) :  frac_soil(istructural,islow,iabove)   {OK_STOMATE}
1219FRAC_SOIL_STRUCT_SA =  0.7   
1220
1221# FRAC_SOIL_STRUCT_SB ([-]   ) :  frac_soil(istructural,islow,ibelow)   {OK_STOMATE }
1222FRAC_SOIL_STRUCT_SB =  0.7   
1223
1224# FRAC_SOIL_METAB_AA  ([-]   ) :  frac_soil(imetabolic,iactive,iabove)          {OK_STOMATE }
1225FRAC_SOIL_METAB_AA  =  0.45 
1226
1227# FRAC_SOIL_METAB_AB  ([-]   ) :  frac_soil(imetabolic,iactive,ibelow)  {OK_STOMATE }
1228FRAC_SOIL_METAB_AB  =  0.45   
1229
1230# METABOLIC_LN_RATIO ([-]   ) :         {OK_STOMATE }
1231METABOLIC_LN_RATIO =  0.018   
1232
1233# TAU_METABOLIC ([days] ) :     {OK_STOMATE }
1234TAU_METABOLIC =  0.066
1235
1236# TAU_STRUCT  ([days]) :        {OK_STOMATE }
1237TAU_STRUCT  =  0.245 
1238
1239# SOIL_Q10 ([-]) :      {OK_STOMATE }
1240SOIL_Q10 =  0.69 (
1241
1242# TSOIL_REF ([C]   ) :          {OK_STOMATE }
1243TSOIL_REF =  30. 
1244
1245# LITTER_STRUCT_COEF  ([-]   ) :        {OK_STOMATE }
1246LITTER_STRUCT_COEF  =  3. 
1247
1248# MOIST_COEFF ([-]   ) :        {OK_STOMATE }
1249MOIST_COEFF =  1.1, 2.4, 0.29
1250
1251# MOISTCONT_MIN ([-]) :  minimum soil wetness to limit the heterotrophic respiration    {OK_STOMATE }
1252MOISTCONT_MIN =  0.25
1253
1254# FRAC_TURNOVER_DAILY  ([-]) :          {OK_STOMATE }
1255FRAC_TURNOVER_DAILY  =  0.55
1256
1257# TAX_MAX ([-]   ) :  maximum fraction of allocatable biomass used for maintenance respiration  {OK_STOMATE }
1258TAX_MAX =  0.8
1259
1260# MIN_GROWTHINIT_TIME  ([days]  ) :  minimum time since last beginning of a growing season      {OK_STOMATE }
1261MIN_GROWTHINIT_TIME  =  300. 
1262
1263# MOIAVAIL_ALWAYS_TREE ([-]   ) :  moisture availability above which moisture tendency doesn't matter   {OK_STOMATE }
1264MOIAVAIL_ALWAYS_TREE =  1.0 
1265
1266# MOIAVAIL_ALWAYS_GRASS  ([-]   ) :  moisture availability above which moisture tendency doesn't matter         {OK_STOMATE }
1267MOIAVAIL_ALWAYS_GRASS  =  0.6 
1268
1269# T_ALWAYS_ADD ([C]    ) :  monthly temp. above which temp. tendency doesn't matter     {OK_STOMATE }
1270T_ALWAYS_ADD =  10.
1271
1272# GDDNCD_REF  ([-]   ) :        {OK_STOMATE }
1273GDDNCD_REF  =  603. 
1274
1275# GDDNCD_CURVE ([-]  ) :        {OK_STOMATE }
1276GDDNCD_CURVE =  0.0091 
1277
1278# GDDNCD_OFFSET ([-]  ) :       {OK_STOMATE }
1279GDDNCD_OFFSET =  64. 
1280
1281# BM_SAPL_RESCALE  ([-]  ) :    {OK_STOMATE }
1282BM_SAPL_RESCALE  =  40. 
1283
1284# MAINT_RESP_MIN_VMAX ([-]  ) :         {OK_STOMATE }
1285MAINT_RESP_MIN_VMAX =  0.3
1286
1287# MAINT_RESP_COEFF  ([-] ) :    {OK_STOMATE }
1288MAINT_RESP_COEFF  =  1.4 
1289
1290# FRAC_CARB_AP ([-]) :  frac carb coefficients from active pool: depends on clay content        {OK_STOMATE }
1291FRAC_CARB_AP =  0.004
1292
1293# FRAC_CARB_SA ([-]) :  frac_carb_coefficients from slow pool   {OK_STOMATE }
1294FRAC_CARB_SA =  0.42
1295
1296# FRAC_CARB_SP ([-] ) :  frac_carb_coefficients from slow pool  {OK_STOMATE }
1297FRAC_CARB_SP =  0.03
1298
1299# FRAC_CARB_PA ([-]) :  frac_carb_coefficients from passive pool        {OK_STOMATE }
1300FRAC_CARB_PA =  0.45
1301
1302# FRAC_CARB_PS ([-]) :  frac_carb_coefficients from passive pool        {OK_STOMATE }
1303FRAC_CARB_PS =  0.0
1304
1305# ACTIVE_TO_PASS_CLAY_FRAC ([-] ) :     {OK_STOMATE }
1306ACTIVE_TO_PASS_CLAY_FRAC =  0.68   
1307
1308# CARBON_TAU_IACTIVE ( [days] ) :  residence times in carbon pools      {OK_STOMATE }
1309CARBON_TAU_IACTIVE =  0.149
1310
1311# CARBON_TAU_ISLOW ([days]) :  residence times in carbon pools  {OK_STOMATE }
1312CARBON_TAU_ISLOW =  7.0
1313
1314# CARBON_TAU_IPASSIVE ([days] ) :  residence times in carbon pools      {OK_STOMATE }
1315CARBON_TAU_IPASSIVE =  300.
1316
1317# FLUX_TOT_COEFF ([days] ) :    {OK_STOMATE }
1318FLUX_TOT_COEFF =  1.2, 1.4,.75
1319
1320# NEW_TURNOVER_TIME_REF ([days]  ) :    {OK_STOMATE }
1321NEW_TURNOVER_TIME_REF =  20. 
1322
1323# LEAF_AGE_CRIT_TREF ([days]  ) :       {OK_STOMATE }
1324LEAF_AGE_CRIT_TREF =  20. 
1325
1326# LEAF_AGE_CRIT_COEFF  ([-] ) :         {OK_STOMATE }
1327LEAF_AGE_CRIT_COEFF  =  1.5, 0.75, 10. 
1328
1329# VMAX_OFFSET  ([-]  ) :  offset (minimum relative vcmax)       {OK_STOMATE }
1330VMAX_OFFSET  =  0.3
1331
1332# LEAFAGE_FIRSTMAX ([-] ) :  leaf age at which vmax attains vcmax_opt (in fraction of critical leaf age)        {OK_STOMATE }
1333LEAFAGE_FIRSTMAX =  0.03 
1334
1335# LEAFAGE_LASTMAX  ([-]  ) :  leaf age at which vmax falls below vcmax_opt (in fraction of critical leaf age)   {OK_STOMATE }
1336LEAFAGE_LASTMAX  =  0.5 
1337
1338# LEAFAGE_OLD  ([-]  ) :  leaf age at which vmax attains its minimum (in fraction of critical leaf age)         {OK_STOMATE }
1339LEAFAGE_OLD  =  1.
1340
1341# GPPFRAC_DORMANCE  ([-]) :  rapport maximal GPP/GGP_max pour dormance  {OK_STOMATE }
1342GPPFRAC_DORMANCE  =  0.2 
1343
1344# TAU_CLIMATOLOGY ([days]) :  tau for "climatologic variables   {OK_STOMATE }
1345TAU_CLIMATOLOGY =  20
1346
1347# HVC1  ([-]  ) :  parameters for herbivore activity    {OK_STOMATE }
1348HVC1  =  0.019
1349
1350# HVC2  ([-]  ) :  parameters for herbivore activity    {OK_STOMATE }
1351HVC2  =  1.38
1352
1353# LEAF_FRAC_HVC ([-] ) :  parameters for herbivore activity     {OK_STOMATE }
1354LEAF_FRAC_HVC =  0.33
1355
1356# TLONG_REF_MAX ([K]  ) :  maximum reference long term temperature      {OK_STOMATE }
1357TLONG_REF_MAX =  303.1
1358
1359# TLONG_REF_MIN  ([K]  ) :  minimum reference long term temperature     {OK_STOMATE }
1360TLONG_REF_MIN  =  253.1
1361
1362# NCD_MAX_YEAR ([days]) :       {OK_STOMATE }
1363NCD_MAX_YEAR =  3. 
1364
1365# GDD_THRESHOLD  ([days] ) :    {OK_STOMATE }
1366GDD_THRESHOLD  =  5. 
1367
1368# GREEN_AGE_EVER  ([-]  ) :     {OK_STOMATE }
1369GREEN_AGE_EVER  =  2. 
1370
1371# GREEN_AGE_DEC ([-] ) :        {OK_STOMATE }
1372GREEN_AGE_DEC =  0.5 
1373
1374# ESTAB_MAX_TREE ([-]   ) :  Maximum tree establishment rate    {OK_DGVM}
1375ESTAB_MAX_TREE =  0.12 
1376
1377# ESTAB_MAX_GRASS ([-]  ) :  Maximum grass establishment rate   {OK_DGVM}
1378ESTAB_MAX_GRASS =  0.12 
1379
1380# ESTABLISH_SCAL_FACT ([-] ) :          {OK_DGVM }
1381ESTABLISH_SCAL_FACT =  5.
1382
1383# MAX_TREE_COVERAGE  ([-] ) :           {OK_DGVM }
1384MAX_TREE_COVERAGE  =  0.98
1385
1386# IND_0_ESTAB ([-]  ) :         {OK_DGVM }
1387IND_0_ESTAB =  0.2
1388
1389# ANNUAL_INCREASE ([FLAG]) :  for diagnosis of fpc increase, compare today's fpc to last year's maximum (T) or to fpc of last time step (F)?    {OK_DGVM}
1390ANNUAL_INCREASE =  y
1391
1392# MIN_COVER  ([-]  ) :  For trees, minimum fraction of crown area occupied      {OK_DGVM}
1393MIN_COVER  =  0.05 
1394
1395# IND_0  ([-]  ) :  initial density of individuals      {OK_DGVM}
1396IND_0  =  0.02 
1397
1398# MIN_AVAIL ([-]  ) :  minimum availability     {OK_DGVM}
1399MIN_AVAIL =  0.01
1400
1401# RIP_TIME_MIN ([year]  ) :     {OK_DGVM}
1402RIP_TIME_MIN =  1.25 
1403
1404# NPP_LONGTERM_INIT ([gC/m^2/year]) :           {OK_DGVM}
1405NPP_LONGTERM_INIT =  10.
1406
1407# EVERYWHERE_INIT ([-] ) :      {OK_DGVM}
1408EVERYWHERE_INIT =  0.05 
1409
1410# PRINTLEV ([0, 1, 2, 3, 4]) :  Print level for text output     {}
1411PRINTLEV =  2
1412
1413# PRINTLEV_modname ([0, 1, 2, 3, 4]) :  Specific print level of text output for the module "modname". Default as PRINTLEV.      {}
1414PRINTLEV_modname =  PRINTLEV
1415
1416# DRY_SOIL_HEAT_CAPACITY ([J.m^{-3}.K^{-1}] ) :  Dry soil Heat capacity of soils        {OK_SECHIBA }
1417DRY_SOIL_HEAT_CAPACITY =  1.80e+6
1418
1419# DRY_SOIL_HEAT_COND ([W.m^{-2}.K^{-1}] ) :  Dry soil Thermal Conductivity of soils     {OK_SECHIBA}
1420DRY_SOIL_HEAT_COND =  0.40
1421
1422# SNOW_HEAT_COND ([W.m^{-2}.K^{-1}]) :  Thermal Conductivity of snow    {OK_SECHIBA  }
1423SNOW_HEAT_COND =  0.3
1424
1425# SNOW_DENSITY ([-] ) :  Snow density for the soil thermodynamics       {OK_SECHIBA }
1426SNOW_DENSITY =  330.0
1427
1428# NOBIO_WATER_CAPAC_VOLUMETRI ([s/m^2]) :       {}
1429NOBIO_WATER_CAPAC_VOLUMETRI =  150.
1430
1431# SECHIBA_QSINT  ([m]) :  Interception reservoir coefficient    {OK_SECHIBA }
1432SECHIBA_QSINT  =  0.02
1433
1434# OK_FREEZE ([FLAG]) :  Activate the complet soil freezing scheme       {OK_SECHIBA }
1435OK_FREEZE =  TRUE
1436
1437# READ_REFTEMP ([FLAG]) :  Initialize soil temperature using climatological temperature         {}
1438READ_REFTEMP =  True/False depening on OK_FREEZE
1439
1440# OK_FREEZE_THERMIX ([FLAG]) :  Activate thermal part of the soil freezing scheme       {}
1441OK_FREEZE_THERMIX =  True if OK_FREEZE else false
1442
1443# OK_ECORR ([FLAG]) :  Energy correction for freezing   {OK_FREEZE_THERMIX}
1444OK_ECORR =  True if OK_FREEZE else false
1445
1446# OK_FREEZE_THAW_LATENT_HEAT ([FLAG]) :  Activate latent heat part of the soil freezing scheme  {}
1447OK_FREEZE_THAW_LATENT_HEAT =  FALSE 
1448
1449# fr_dT ([K] ) :  Freezing window       {OK_SECHIBA}
1450fr_dT =  2.0
1451
1452# OK_FREEZE_CWRR ([FLAG]) :  CWRR freezing scheme by I. Gouttevin       {}
1453OK_FREEZE_CWRR =  True if OK_FREEZE else false
1454
1455# OK_THERMODYNAMICAL_FREEZING ([FLAG]) :  Calculate frozen fraction thermodynamically   {OK_FREEZE_CWRR}
1456OK_THERMODYNAMICAL_FREEZING =  True
1457
1458# CHECK_CWRR ([FLAG]) :  Calculate diagnostics to check CWRR water balance      {}
1459CHECK_CWRR =  n
1460
1461# VEGET_UPDATE ([years]) :  Update vegetation frequency: 0Y or 1Y       {}
1462VEGET_UPDATE =  0Y
1463
1464# SECHIBA_ZCANOP ([m]) :  Soil level used for canopy development (if STOMATE disactivated)      {OK_SECHIBA and .NOT. OK_STOMATE  }
1465SECHIBA_ZCANOP =  0.5
1466
1467# SECHIBA_QSINT  ([m]) :  Interception reservoir coefficient    {OK_SECHIBA }
1468SECHIBA_QSINT  =  0.1
1469
1470# SECHIBA_VEGMAX ([-]) :  Maximum vegetation distribution within the mesh (0-dim mode)  {IMPOSE_VEG}
1471SECHIBA_VEGMAX =  0.2, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.8, 0.0, 0.0, 0.0
1472
1473# SECHIBA_FRAC_NOBIO ([-]) :  Fraction of other surface types within the mesh (0-dim mode)      {IMPOSE_VEG}
1474SECHIBA_FRAC_NOBIO =  0.0
1475
1476# SECHIBA_LAI ([-]) :  LAI for all vegetation types (0-dim mode)        {IMPOSE_VEG}
1477SECHIBA_LAI =  0., 8., 8., 4., 4.5, 4.5, 4., 4.5, 4., 2., 2., 2., 2.
1478
1479# SOIL_FRACTIONS ([-]) :  Fraction of the 3 soil types (0-dim mode)     {IMPOSE_VEG and IMPOSE_SOILT}
1480SOIL_FRACTIONS =  -9999._sechiba
1481
1482# CLAY_FRACTION ([-] ) :  Fraction of the clay fraction (0-dim mode)    {IMPOSE_VEG and IMPOSE_SOIL}
1483CLAY_FRACTION =  0.2
1484
1485# SAND_FRACTION ([-] ) :  Fraction of the clay fraction (0-dim mode)    {IMPOSE_VEG and IMPOSE_SOIL}
1486SAND_FRACTION =  0.4
1487
1488# REINF_SLOPE ([-]) :  Slope coef for reinfiltration    {IMPOSE_VEG}
1489REINF_SLOPE =  0.1
1490
1491# SLOWPROC_HEIGHT ([m]) :  Height for all vegetation types      {OK_SECHIBA}
1492SLOWPROC_HEIGHT =  0., 30., 30., 20., 20., 20., 15., 15., 15., .5, .6, 1.0, 1.0
1493
1494# GET_SLOPE ([FLAG]) :  Read slopes from file and do the interpolation  {}
1495GET_SLOPE =  n
1496
1497# LAI_FILE ([FILE]) :  Name of file from which the vegetation map is to be read         {LAI_MAP}
1498LAI_FILE =  lai2D.nc
1499
1500# RENORM_LAI ([FLAG]) :  flag to force LAI renormelization      {LAI_MAP}
1501RENORM_LAI =  n
1502
1503# VEGETATION_FILE ([FILE]) :  Name of file from which the vegetation map is to be read  {}
1504VEGETATION_FILE =  PFTmap.nc
1505
1506# SOILCLASS_FILE ([FILE]) :  Name of file from which soil types are read        {NOT(IMPOSE_VEG)}
1507SOILCLASS_FILE =  soils_param.nc
1508
1509# SLOPE_NOREINF ([-]) :  See slope_noreinf above        {}
1510SLOPE_NOREINF =  0.5
1511
1512# TOPOGRAPHY_FILE ([FILE]) :  Name of file from which the topography map is to be read  {}
1513TOPOGRAPHY_FILE =  cartepente2d_15min.nc
1514
1515# WOODHARVEST_FILE ([FILE]) :  Name of file from which the wood harvest will be read    {DO_WOOD_HARVEST}
1516WOODHARVEST_FILE =  woodharvest.nc
1517
1518# SOILALB_FILE ([FILE]) :  Name of file from which the bare soil albedo         {NOT(IMPOSE_AZE)}
1519SOILALB_FILE =  soils_param.nc
1520
1521# ALB_BG_FILE ([FILE]) :  Name of file from which the background albedo is read         {ALB_BG_MODIS}
1522ALB_BG_FILE =  alb_bg.nc
1523
1524# CDRAG_FROM_GCM ([FLAG]) :  Keep cdrag coefficient from gcm.   {OK_SECHIBA}
1525CDRAG_FROM_GCM =  y
1526
1527# N_FERTIL_FILE (- ) :  File name       {CHEMISTRY_BVOC and NOx_FERTILIZERS_USE}
1528N_FERTIL_FILE =  orchidee_fertilizer_1995.nc
1529
1530# N_FERTIL_FILE (-) :  File name        {CHEMISTRY_BVOC and NOx_FERTILIZERS_USE}
1531N_FERTIL_FILE =  orchidee_fertilizer_1995.nc
1532
1533# ENERBIL_TSURF (Kelvin [K]) :  Initial temperature if not found in restart     {OK_SECHIBA}
1534ENERBIL_TSURF =  280.
1535
1536# ENERBIL_EVAPOT () :  Initial Soil Potential Evaporation       {OK_SECHIBA       }
1537ENERBIL_EVAPOT =  0.0
1538
1539# BEDROCK_FLAG ([FLAG]) :  Flag to consider bedrock at deeper layers.   {}
1540BEDROCK_FLAG =  0
1541
1542# THERMOSOIL_TPRO (Kelvin [K]) :  Initial soil temperature profile if not found in restart      {OK_SECHIBA}
1543THERMOSOIL_TPRO =  280.
1544
1545# SOIL_REFTEMP_FILE ([FILE]) :  File with climatological soil temperature       {READ_REFTEMP}
1546SOIL_REFTEMP_FILE =  reftemp.nc
1547
1548# DO_PONDS ([FLAG]) :  Should we include ponds          {}
1549DO_PONDS =  n
1550
1551# FROZ_FRAC_CORR  ([-]) :  Coefficient for the frozen fraction correction       {OK_FREEZE}
1552FROZ_FRAC_CORR  =  1.0
1553
1554# MAX_FROZ_HYDRO ([-]) :  Coefficient for the frozen fraction correction        {OK_FREEZE}
1555MAX_FROZ_HYDRO =  1.0
1556
1557# SMTOT_CORR ([-]) :  Coefficient for the frozen fraction correction    {OK_FREEZE}
1558SMTOT_CORR =  2.0
1559
1560# DO_RSOIL ([FLAG]) :  Should we reduce soil evaporation with a soil resistance         {}
1561DO_RSOIL =  n
1562
1563# OK_DYNROOT ([FLAG]) :  Calculate dynamic root profile to optimize soil moisture usage         {}
1564OK_DYNROOT =  n
1565
1566# CWRR_N_VANGENUCHTEN ([-]) :  Van genuchten coefficient n      {}
1567CWRR_N_VANGENUCHTEN =  1.89, 1.56, 1.31
1568
1569# CWRR_A_VANGENUCHTEN ([1/mm]  ) :  Van genuchten coefficient a         {}
1570CWRR_A_VANGENUCHTEN =  0.0075, 0.0036, 0.0019
1571
1572# VWC_RESIDUAL ([m3/m3]  ) :  Residual soil water content       {}
1573VWC_RESIDUAL =  0.065, 0.078, 0.095
1574
1575# VWC_SAT ([m3/m3]  ) :  Saturated soil water content   {}
1576VWC_SAT =  0.41, 0.43, 0.41
1577
1578# CWRR_KS  ([mm/d]   ) :  Hydraulic conductivity Saturation     {}
1579CWRR_KS  =  1060.8, 249.6, 62.4
1580
1581# WETNESS_TRANSPIR_MAX ([-]    ) :  Soil moisture above which transpir is max   {}
1582WETNESS_TRANSPIR_MAX =  0.5, 0.5, 0.5
1583
1584# VWC_FC  ([m3/m3]   ) :  Volumetric water content field capacity       {}
1585VWC_FC  =  0.32, 0.32, 0.32
1586
1587# VWC_WP ([m3/m3]   ) :  Volumetric water content Wilting pt    {}
1588VWC_WP =  0.10, 0.10, 0.10 
1589
1590# VWC_MIN_FOR_WET_ALB ([m3/m3]  ) :  Vol. wat. cont. above which albedo is cst  {}
1591VWC_MIN_FOR_WET_ALB =  0.25, 0.25, 0.25
1592
1593# VWC_MAX_FOR_DRY_ALB ([m3/m3]   ) :  Vol. wat. cont. below which albedo is cst         {}
1594VWC_MAX_FOR_DRY_ALB =  0.1, 0.1, 0.1
1595
1596# HYDROL_MOISTURE_CONTENT ([m3/m3]) :  Soil moisture on each soil tile and levels       {}
1597HYDROL_MOISTURE_CONTENT =  0.3
1598
1599# US_INIT ([-]) :  US_NVM_NSTM_NSLM     {}
1600US_INIT =  0.0
1601
1602# ZWT_FORCE ([m]) :  Prescribed water depth, dimension nstm     {}
1603ZWT_FORCE =  -9999. -9999. -9999.
1604
1605# FREE_DRAIN_COEF ([-]) :  Coefficient for free drainage at bottom, dimension nstm      {}
1606FREE_DRAIN_COEF =  1.0 1.0 1.0
1607
1608# WATER_TO_INFILT ([mm]) :  Water to be infiltrated on top of the soil  {}
1609WATER_TO_INFILT =  0.0
1610
1611# EVAPNU_SOIL ([mm]) :  Bare soil evap on each soil if not found in restart     {}
1612EVAPNU_SOIL =  0.0
1613
1614# HYDROL_SNOW () :  Initial snow mass if not found in restart   {OK_SECHIBA}
1615HYDROL_SNOW =  0.0
1616
1617# HYDROL_SNOWAGE (***) :  Initial snow age if not found in restart      {OK_SECHIBA}
1618HYDROL_SNOWAGE =  0.0
1619
1620# HYDROL_SNOW_NOBIO ([mm]) :  Initial snow amount on ice, lakes, etc. if not found in restart   {OK_SECHIBA}
1621HYDROL_SNOW_NOBIO =  0.0
1622
1623# HYDROL_SNOW_NOBIO_AGE (***) :  Initial snow age on ice, lakes, etc. if not found in restart   {OK_SECHIBA}
1624HYDROL_SNOW_NOBIO_AGE =  0.0
1625
1626# HYDROL_QSV ([mm]) :  Initial water on canopy if not found in restart  {OK_SECHIBA}
1627HYDROL_QSV =  0.0
1628
1629# CWRR_NKS_N0  ([-]) :  fitted value for relation log((n-n0)/(n_ref-n0))        {}
1630CWRR_NKS_N0  =  0.0
1631
1632# CWRR_NKS_POWER ([-]) :  fitted value for relation log((n-n0)/(n_ref-n0))      {}
1633CWRR_NKS_POWER =  0.0
1634
1635# CWRR_AKS_A0  ([1/mm]) :  fitted value for relation log((a-a0)/(a_ref-a0))     {}
1636CWRR_AKS_A0  =  0.0
1637
1638# CWRR_AKS_POWER ([-]) :  fitted value for relation log((a-a0)/(a_ref-a0))      {}
1639CWRR_AKS_POWER =  0.0
1640
1641# KFACT_DECAY_RATE ([1/m]) :  Factor for Ks decay with depth    {}
1642KFACT_DECAY_RATE =  2.0
1643
1644# KFACT_STARTING_DEPTH ([m]) :  Depth for compacted value of Ks         {}
1645KFACT_STARTING_DEPTH =  0.3
1646
1647# KFACT_MAX ([-]) :  Maximum Factor for Ks increase due to vegetation   {}
1648KFACT_MAX =  10.0
1649
1650# DT_ROUTING  ([seconds]) :  Time step of the routing scheme    {RIVER_ROUTING}
1651DT_ROUTING  =  86400.
1652
1653# ROUTING_RIVERS ([-]) :  Number of rivers      {RIVER_ROUTING}
1654ROUTING_RIVERS =  50
1655
1656# DO_FLOODINFILT ([FLAG]) :  Should floodplains reinfiltrate into the soil      {RIVER_ROUTING}
1657DO_FLOODINFILT =  n
1658
1659# DO_SWAMPS ([FLAG]) :  Should we include swamp parameterization        {RIVER_ROUTING}
1660DO_SWAMPS =  n
1661
1662# DO_PONDS ([FLAG]) :  Should we include ponds          {RIVER_ROUTING}
1663DO_PONDS =  n
1664
1665# SLOW_TCST ([days]) :  Time constant for the slow reservoir    {RIVER_ROUTING }
1666SLOW_TCST =  25.0 
1667
1668# FAST_TCST ([days]) :  Time constant for the fast reservoir    {RIVER_ROUTING }
1669FAST_TCST =  3.0 
1670
1671# STREAM_TCST ([days]) :  Time constant for the stream reservoir        {RIVER_ROUTING}
1672STREAM_TCST =  0.24
1673
1674# FLOOD_TCST ([days]) :  Time constant for the flood reservoir          {RIVER_ROUTING}
1675FLOOD_TCST =  4.0
1676
1677# SWAMP_CST ([-]) :  Fraction of the river that flows back to swamps    {RIVER_ROUTING}
1678SWAMP_CST =  0.2
1679
1680# FLOOD_BETA ([-] ) :  Parameter to fix the shape of the floodplain     {RIVER_ROUTING}
1681FLOOD_BETA =  2.0
1682
1683# POND_BETAP ([-] ) :  Ratio of the basin surface intercepted by ponds and the maximum surface of ponds         {RIVER_ROUTING}
1684POND_BETAP =  0.5
1685
1686# FLOOD_CRI ([mm] ) :  Potential height for which all the basin is flooded      {DO_FLOODPLAINS or DO_PONDS}
1687FLOOD_CRI =  2000.
1688
1689# POND_CRI ([mm] ) :  Potential height for which all the basin is a pond        {DO_FLOODPLAINS or DO_PONDS}
1690POND_CRI =  2000.
1691
1692# MAX_LAKE_RESERVOIR ([kg/m2(routing area)] ) :  Maximum limit of water in lake_reservoir       {RIVER_ROUTING}
1693MAX_LAKE_RESERVOIR =  7000
1694
1695# RIVER_DESC ([FLAG]) :  Writes out a description of the rivers         {RIVER_ROUTING}
1696RIVER_DESC =  n
1697
1698# RIVER_DESC_FILE ([FILE]) :  Filename in which we write the description of the rivers. If suffix is ".nc" a netCDF file is created     {RIVER_DESC}
1699RIVER_DESC_FILE =  river_desc.nc
1700
1701# ROUTING_FILE ([FILE]) :  Name of file which contains the routing information  {RIVER_ROUTING}
1702ROUTING_FILE =  routing.nc
1703
1704# IRRIGATION_FILE ([FILE]) :  Name of file which contains the map of irrigated areas    {DO_IRRIGATION OR DO_FLOODPLAINS}
1705IRRIGATION_FILE =  floodplains.nc
1706
1707# ROUTING_METHOD (character string) :  Choice of routing module to be used      {RIVER_ROUTING=T}
1708ROUTING_METHOD =  standard
1709
1710# EPS_CARBON ([%]   ) :  Allowed error on carbon stock  {SPINUP_ANALYTIC}
1711EPS_CARBON =  0.01
1712
1713# SPINUP_PERIOD ([years]   ) :  Period to calulcate equilibrium during spinup analytic  {SPINUP_ANALYTIC}
1714SPINUP_PERIOD =  -1
1715
1716# STOMATE_FORCING_NAME ([FILE]) :  Name of STOMATE's forcing file       {OK_STOMATE}
1717STOMATE_FORCING_NAME =  NONE
1718
1719# STOMATE_FORCING_MEMSIZE ([MegaBytes]) :  Size of STOMATE forcing data in memory       {OK_STOMATE}
1720STOMATE_FORCING_MEMSIZE =  50
1721
1722# STOMATE_CFORCING_NAME ([FILE]) :  Name of STOMATE's carbon forcing file       {OK_STOMATE}
1723STOMATE_CFORCING_NAME =  NONE
1724
1725# FORCESOIL_STEP_PER_YEAR ([days, months, year]) :  Number of time steps per year for carbon spinup.    {OK_STOMATE}
1726FORCESOIL_STEP_PER_YEAR =  365
1727
1728# FORCESOIL_NB_YEAR ([years]) :  Number of years saved for carbon spinup.       {OK_STOMATE}
1729FORCESOIL_NB_YEAR =  1
1730
1731# XIOS_ORCHIDEE_OK ([FLAG]) :  Use XIOS for writing diagnostics file    {}
1732XIOS_ORCHIDEE_OK =  y 
1733
1734# XIOS_INTERPOLATION ([FLAG]) :  Actiave reading and intrepolation using XIOS   {XIOS_ORCHIDEE_OK}
1735XIOS_INTERPOLATION =  n
1736
1737# XIOS_REMAP_OUTPUT ([FLAG]) :  Actiave remaping of diagnostic output files to regular grid     {XIOS_ORCHIDEE_OK .AND. grid_type=unstructured}
1738XIOS_REMAP_OUTPUT =  True
1739
1740# DT_STOMATE ([seconds]) :  Time step of STOMATE and other slow processes       {OK_STOMATE}
1741DT_STOMATE =  86400.
1742
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