source: CMIP6/RFMIP/piClim-histall/CM619-LR-piClim-histall-1/COMP/lmdz.card @ 4984

Last change on this file since 4984 was 4984, checked in by asima, 4 years ago

Import of member 1 of "piClim-histall" (Tier 2, transitory)

File size: 16.1 KB
Line 
1[Compatibility]
2libIGCM=1.0
3
4[UserChoices]
5# Physics package to use :
6# LMDZ_Physics=AP for standard/old physics(defalut), can be used with LMDZ4_AR5 or LMDZ5/trunk sources
7# LMDZ_Physics=NPv3.2 for an early version of the new physics, to be used with LMDZ5/trunk revision 1554 or later
8# LMDZ_Physics=NPv5.70 for new physics to be used with LMDZ5/testing revision 2595 or later
9# LMDZ_Physics=NPv5.80bz0 for new physics to be used with LMDZ5/trunk revision 2699 or later
10# LMDZ_Physics=NPv6.0.7 for new physics to be used with LMDZ5/trunk revision 2720 or later
11# LMDZ_Physics=NPv6.0.8 for new physics to be used with LMDZ5/trunk revision 2739 or later
12# LMDZ_Physics=NPv6.0.15_T or NPv6.0.15_S to be used with LMDZ6/branches/IPSLCM6.0.15 rev 3224
13# LMDZ_Physics=NPv6.1 to be used with LMDZ6/branches/IPSLCM6.0.15 rev 3301
14LMDZ_Physics=NPv6.1.3
15
16# Set ConfType to choose parameters for aerosols, solar and green house gazes.
17# The parameter file PARAM/config.def_$ConfType will be used.
18# ConfType=preind/actuel/annuel
19ConfType=annuel
20
21# Manage radiative aerosol effect and ozone
22flag_aerosol=6
23ok_ade=y
24ok_aie=y
25aerosol_couple=n
26read_climoz=1
27ok_cdnc=y
28
29# Set tau_gl depending on the forcing file for the sea-ice (use 2. for amip and 1. for hadisst)
30tau_gl=2.
31
32# ByPass_hgardfou_teta=y : modify teta_ parameters for following CumulPeriod only
33ByPass_hgardfou_teta=n
34
35# ByPass_hgardfou_mats=y : set parameter purmats=y for following CumulPeriod only
36ByPass_hgardfou_mats=n
37
38# Set OutLevel to choose the level of output for LMDZ
39# OutLevel=low/medium/high
40OutLevel=low
41
42# Set COSP activation and output frequency (monthly, daily, HF) = y/n
43LMDZ_COSP_OK=y
44LMDZ_COSP_monthly=n
45LMDZ_COSP_daily=n
46LMDZ_COSP_hf=n
47
48# Set NMC output frequency (monthly, daily, HF) = y/n
49LMDZ_NMC_monthly=n
50LMDZ_NMC_daily=n
51LMDZ_NMC_hf=n
52
53# Nugding : ok_guide=y/n
54# If ok_guide=y, add nudging files(u.nc, v.nc, hur.nc,...) in BoundaryFiles section below.
55ok_guide=n
56
57[InitialStateFiles]
58List=   (${R_IN}/ATM/START/eORCA1.2xLMD${RESOL_ATM_XY}/start_eORCA1.2xLMD${RESOL_ATM_3D}_o2a_v3.nc, start.nc),\
59        (${R_IN}/ATM/START/eORCA1.2xLMD${RESOL_ATM_XY}/startphy_eORCA1.2xLMD${RESOL_ATM_3D}_o2a_v3.nc, startphy.nc)
60
61[BoundaryFiles]
62List= (${R_IN}/CMIP6/${config_UserChoices_LongName}/${config_UserChoices_ModelName}/${config_UserChoices_ExperimentName}/${config_UserChoices_Member}/${year}/dr2xml_LMDZ.xml, dr2xml_lmdz.xml),\
63    (${R_IN}/ATM/LIMIT/CMIP6/CM61-LR-pi-03/interpol/ELC-144x142x79_clim_limit.nc, limit.nc)
64
65# With CMIP6 aerosols version 1
66# # With 3D ozone
67# Note: the SOLARANDVOLCANOES.txt is only used for LMDZ_Physics=AP and NPv3.2 (if ok_suntime_rrtm=n); add file :
68#             (${R_IN}/ATM/IPCC_AR5/RCPs/SolarConstant/SOLAR_1765_2500.txt, SOLARANDVOLCANOES.txt),\
69ListNonDel= (${R_IN}/ATM/AEROSOLS/CMIP6/v1/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/aerosols1850_from_inca.nc,   aerosols.nat.nc),\
70            (${R_IN}/ATM/SITES/cfsites_grid_CMIP6.nc, cfsites_grid.nc)
71
72# Copy one set of input files for the first 165 years, historical period, and another set to continue with scenario 4.5.
73# ssp=ssp245 must be added in config.card, UserChoices section
74#
75# For leap years, copy ELC-144x142x79-leap_clim_limit.nc over ELC-144x142x79_clim_limit.nc file
76# NB : There is a leap year every year whose number is perfectly divisible by four - except for years which are both divisible by 100 and not divisible by 400.
77# The second part of the rule effects century years : 1600 and 2000 are leap years, but the years 1700, 1800, and 1900, 2100 are not.
78# So, the "noleap"  limit file must be copied again over the "leap" one for years 1900, 2100.
79# As all smooth files are also copied at each job (re)submission, the "noleap" file must be re-copied over the "leap" one if the 
80#   (re)submitted job starts with noleap years - which is the case for exemple for the beginning of the historical period (1850,1851).
81#   To run smoothly, the first job submission must have PeriodNb=2+multiple of 4 (ex: 18), and the following must have PeriodNb=multiple of 4 (ex: 16)
82[SmoothFiles]
83List=   (${R_IN}/ATM/LIMIT/CMIP6/CM61-LR-pi-03/interpol/ELC-144x142x79-leap_clim_limit.nc, limit.nc, 3:4:),\
84        (${R_IN}/ATM/LIMIT/CMIP6/CM61-LR-pi-03/interpol/ELC-144x142x79_clim_limit.nc, limit.nc,  1:1:2),\
85        (${R_IN}/ATM/LIMIT/CMIP6/CM61-LR-pi-03/interpol/ELC-144x142x79_clim_limit.nc, limit.nc,  51:1:51),\
86        (${R_IN}/ATM/LIMIT/CMIP6/CM61-LR-pi-03/interpol/ELC-144x142x79_clim_limit.nc, limit.nc,  251:1:251),\
87        (${R_IN}/ATM/AEROSOLS/CMIP6/v1/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/aerosols${year}_from_inca.nc,         aerosols${year}.nc, 1:1:165),\
88        (${R_IN}/ATM/OZONE/UReading/historical.v20160711.v2/interpol/${RESOL_ATM_XY}/climoz_LMDZ_${year}.nc, climoz_LMDZ.nc,     1:1:165),\
89        (${R_IN}/ATM/SOLAR/CMIP6/v3.1corr/Historical/solarforcing_v3.1_daily_6bands_${year}.nc,              solarforcing.nc,    1:1:165),\
90        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/taulwstrat.2D.${year}.nc,            taulwstrat.2D.nc,   1:1:165),\
91        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/tauswstrat.2D.${year}.nc,            tauswstrat.2D.nc,   1:1:165),\
92        (${R_IN}/ATM/GHG/CMIP6/historical/CO2_CMIP6_0000_2014.txt,                                           CO2.txt,   1:1:165),\
93        (${R_IN}/ATM/GHG/CMIP6/historical/CH4_CMIP6_0000_2014.txt,                                           CH4.txt,   1:1:165),\
94        (${R_IN}/ATM/GHG/CMIP6/historical/N2O_CMIP6_0000_2014.txt,                                           N2O.txt,   1:1:165),\
95        (${R_IN}/ATM/GHG/CMIP6/historical/CFC11eq_CMIP6_0000_2014.txt,                                       CFC11.txt, 1:1:165),\
96        (${R_IN}/ATM/GHG/CMIP6/historical/CFC12eq_CMIP6_0000_2014.txt,                                       CFC12.txt, 1:1:165),\
97        (${R_IN}/ATM/AEROSOLS/CMIP6/Scenarios/${config_UserChoices_ssp}/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/aerosols${year}_from_inca.nc,   aerosols${year}.nc, 166:1:),\
98        (${R_IN}/ATM/OZONE/UReading/Scenarios/CCMI-${config_UserChoices_ssp}.v20181101/interpol/${RESOL_ATM_XY}/climoz_LMDZ_${year}.nc, climoz_LMDZ.nc,     166:1:),\
99        (${R_IN}/ATM/SOLAR/CMIP6/v3.1corr/Future/solarforcing_v3.1_daily_6bands_${year}.nc,                                             solarforcing.nc,    166:1:),\
100        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/taulwstrat.2D.${year}.nc, taulwstrat.2D.nc, 166:1:174),\
101        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/taulwstrat.2D.ave.nc,     taulwstrat.2D.nc, 175:1:),\
102        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/tauswstrat.2D.${year}.nc, tauswstrat.2D.nc, 166:1:174),\
103        (${R_IN}/ATM/STRATAERO/CMIP6/v3/${RESOL_ATM_XY}/L${RESOL_ATM_Z}/tauswstrat.2D.ave.nc,     tauswstrat.2D.nc, 175:1:),\
104        (${R_IN}/ATM/GHG/CMIP6/ssp/${config_UserChoices_ssp}/CO2_CMIP6_2015_2500.txt, CO2.txt, 166:1:),\
105        (${R_IN}/ATM/GHG/CMIP6/ssp/${config_UserChoices_ssp}/CH4_CMIP6_2015_2500.txt, CH4.txt, 166:1:),\
106        (${R_IN}/ATM/GHG/CMIP6/ssp/${config_UserChoices_ssp}/N2O_CMIP6_2015_2500.txt, N2O.txt, 166:1:),\
107        (${R_IN}/ATM/GHG/CMIP6/ssp/${config_UserChoices_ssp}/CFC11eq_CMIP6_2015_2500.txt, CFC11.txt, 166:1:),\
108        (${R_IN}/ATM/GHG/CMIP6/ssp/${config_UserChoices_ssp}/CFC12eq_CMIP6_2015_2500.txt, CFC12.txt, 166:1:)
109
110[ParametersFiles]
111List=   (${SUBMIT_DIR}/PARAM/physiq.def_${LMDZ_Physics}, physiq.def),       \
112        (${SUBMIT_DIR}/PARAM/gcm.def_${RESOL_ATM_XY}_${LMDZ_Physics}, gcm.def),\
113        (${SUBMIT_DIR}/PARAM/vert.def_L${RESOL_ATM_Z},   vert.def),         \
114        (${MODIPSL}/modeles/LMDZ/DefLists/cosp_input_nl.txt, .),            \
115        (${MODIPSL}/modeles/LMDZ/DefLists/cosp_output_nl.txt, .),           \
116        (${SUBMIT_DIR}/PARAM/config.def_${ConfType},  config.def),          \
117        (${SUBMIT_DIR}/PARAM/guide.def, .),                                 \
118        (${SUBMIT_DIR}/PARAM/run.def, .),                                   \
119        (${SUBMIT_DIR}/PARAM/traceur.def, .),                               \
120        (${SUBMIT_DIR}/PARAM/iodef.xml, . ),                                \
121        (${SUBMIT_DIR}/PARAM/ping_LMDZ.xml, ping_lmdz.xml ),                \
122        (${SUBMIT_DIR}/PARAM/context_lmdz.xml_2RadCall, context_lmdz.xml ),            \
123        (${SUBMIT_DIR}/PARAM/field_def_lmdz.xml_2RadCall, field_def_lmdz.xml ),          \
124        (${SUBMIT_DIR}/PARAM/file_def_histmth_lmdz.xml_2RadCall, file_def_histmth_lmdz.xml ),   \
125        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histmthCOSP_lmdz.xml, .),\
126        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histmthNMC_lmdz.xml, . ),\
127        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histday_lmdz.xml, . ),   \
128        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histdayCOSP_lmdz.xml, .),\
129        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histdayNMC_lmdz.xml, . ),\
130        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histhf_lmdz.xml, . ),    \
131        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histhfCOSP_lmdz.xml, .), \
132        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histhfNMC_lmdz.xml, . ), \
133        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histstn_lmdz.xml, . ),   \
134        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histins_lmdz.xml, . ),   \
135        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histstrataer_lmdz.xml, . ),\
136        (${MODIPSL}/modeles/LMDZ/DefLists/file_def_histLES_lmdz.xml, . )
137
138[RestartFiles]
139List=   (restart.nc, restart.nc, start.nc), \
140        (restartphy.nc, restartphy.nc,  startphy.nc)
141
142[OutputText]
143List=   (physiq.def, gcm.def, run.def, traceur.def, guide.def, config.def, vert.def, used_run.def, iodef.xml, context_lmdz.xml, field_def_lmdz.xml, file_def_*lmdz.xml, debug.01, lmdz.prt, out_lmdz.x.err, out_lmdz.x.out, ping_lmdz.xml, dr2xml_lmdz.xml)
144
145[OutputFiles]
146List=   (histmth.nc,       ${R_OUT_ATM_O_M}/${PREFIX}_1M_histmth.nc,       Post_1M_histmth),       \
147        (histmthCOSP.nc,   ${R_OUT_ATM_O_M}/${PREFIX}_1M_histmthCOSP.nc,   NONE),                  \
148        (histmthNMC.nc,    ${R_OUT_ATM_O_M}/${PREFIX}_1M_histmthNMC.nc,    NONE),                  \
149        (histday.nc,       ${R_OUT_ATM_O_D}/${PREFIX}_1D_histday.nc,       NONE),                  \
150        (histdayCOSP.nc,   ${R_OUT_ATM_O_D}/${PREFIX}_1D_histdayCOSP.nc,   NONE),                  \
151        (histdayNMC.nc,    ${R_OUT_ATM_O_D}/${PREFIX}_1D_histdayNMC.nc,    NONE),                  \
152        (histhf.nc,        ${R_OUT_ATM_O_H}/${PREFIX}_HF_histhf.nc,        NONE),                  \
153        (histhfCOSP.nc,    ${R_OUT_ATM_O_H}/${PREFIX}_HF_histhfCOSP.nc,    NONE),                  \
154        (histhfNMC.nc,     ${R_OUT_ATM_O_H}/${PREFIX}_HF_histhfNMC.nc,     NONE),                  \
155        (histhf3h.nc,      ${R_OUT_ATM_O_H}/${PREFIX}_3H_histhf3h.nc,      NONE),                  \
156        (histhf3hm.nc,     ${R_OUT_ATM_O_H}/${PREFIX}_3H_histhf3hm.nc,     NONE)
157
158[Post_1M_histmth]
159Patches= ()
160GatherWithInternal = (lon, lat, presnivs, time_counter, time_centered, time_centered_bounds, aire)
161TimeSeriesVars2D = (bils, cldh, cldl, cldm, cldq, cldt, evap, flat, ftime_con, iwp, lwp, LWdnSFC, LWdnSFCclr, LWupSFC, LWupSFCclr, precip, prw, pluc, psol, q2m, rh2m, sens, sicf, slp, snow, soll0, soll, sols0, sols, SWdnSFC, SWupSFC, SWdnTOA, SWupTOA, SWdnSFCclr, SWupSFCclr, SWupTOAclr, t2m, ave_t2m_daily_max, ave_t2m_daily_min, taux, taux_ter, taux_sic, taux_lic, taux_oce, tauy, tauy_ter, tauy_sic, tauy_lic, tauy_oce, lat_ter, lat_sic, lat_lic, lat_oce, nettop, pbase, ptop, topl0, topl, tops0, tops, tsol, tsol_ter, tsol_lic, tsol_oce, tsol_sic , u10m, v10m, pourc_ter, pourc_oce, pourc_sic, pourc_lic, wind10m, od550aer, od550lt1aer, od550_STRAT, sconcoa, sconcbc, sconcso4, R_ecc, R_peri, R_incl, solaire, rsun1, co2_ppm, CH4_ppb, N2O_ppb, CFC11_ppt, CFC12_ppt, colO3_strat, colO3_trop)
162#,  topswad,toplwad,topswai,toplwai,topswad0,toplwad0,solswad,sollwad,solswai,sollwai,solswad0,sollwad0,    irfstar,irfstcsar,irfstac,irflutar,irflutcsar,irflutac,irfssar,irfsscsar,irfssac,irflsar,irflscsar,irflsac,   rlutghg,rlutcsghg,rsutghg,rsutcsghg,  rsusghg,rsuscsghg,rsdsghg,rsdscsghg,rlusghg,rluscsghg,rldsghg,rldscsghg,   rlut4co2,rlutcs4co2,rsut4co2,rsutcs4co2,  rsus4co2,rsuscs4co2,rsds4co2,rsdscs4co2,rlus4co2,rluscs4co2,rlds4co2,rldscs4co2,   p_tropopause,t_tropopause,z_tropopause)
163ChunckJob2D = NONE
164TimeSeriesVars3D = (temp, theta, ovap, geop, vitu, vitv, vitw, pres, rneb, rhum, paprs, ec550aer, concoa, concbc, concso4, concss, concdust)
165#,    rsu,rsucs,rsd,rsdcs,rlu,rlucs,rld,rldcs,    rsughg,rsucsghg,rsdghg,rsdcsghg,rlughg,rlucsghg,rldghg,rldcsghg,   rsu4co2,rsucs4co2,rsd4co2,rsdcs4co2,rlu4co2,rlucs4co2,rld4co2,rldcs4co2)
166ChunckJob3D = 100Y
167Seasonal=ON
168
169[Post_1M_histmthCOSP]
170Patches = ()
171GatherWithInternal = (lon, lat, pressure2, height, sza, time_counter, time_centered, time_centered_bounds, aire)
172TimeSeriesVars2D = (cllcalipso, clmcalipso, clhcalipso, cltcalipso, tclisccp, albisccp, ctpisccp)
173ChunckJob2D = OFF
174TimeSeriesVars3D = (clcalipso, clisccp2_c01, clisccp2_c02, clisccp2_c03, clisccp2_c04, clisccp2_c05, clisccp2_c06, clisccp2_c07, parasol_refl)
175ChunckJob3D = OFF
176Seasonal=OFF
177
178[Post_1M_histmthNMC]
179Patches = ()
180GatherWithInternal = (lon, lat, plev, time_counter, time_centered, time_centered_bounds)
181TimeSeriesVars2D = ()
182ChunckJob2D = NONE
183TimeSeriesVars3D = (ta, tro3, zg, hus, hur, ua, va, wap)
184ChunckJob3D = NONE
185Seasonal=ON
186
187[Post_1D_histday]
188Patches= ()
189GatherWithInternal = (lon, lat, presnivs, time_counter, time_centered, time_centered_bounds)
190TimeSeriesVars2D = (bils, cldh, cldl, cldm, cldq, cldt, evap, flat, precip, pluc, plul, prw, psol, q2m, sens, sicf, slp, soll, sols, snow, SWdnSFC, t2m, t2m_max, t2m_min, topl, tops, tsol, u10m, v10m, wind10m, wind10max)
191ChunckJob2D = 50Y
192TimeSeriesVars3D = (lwcon, iwcon, mc, rhum, rneb, temp, theta, ovap, geop, vitu, vitv, vitw, pres, paprs)
193ChunckJob3D = OFF
194Seasonal=OFF
195
196[Post_1D_histdayCOSP]
197Patches = ()
198GatherWithInternal = (lon, lat, pressure2, height, sza, time_counter, time_centered, time_centered_bounds)
199TimeSeriesVars2D = (cllcalipso, clmcalipso, clhcalipso, cltcalipso, tclisccp, albisccp, ctpisccp)
200ChunckJob2D = OFF
201TimeSeriesVars3D = (clcalipso, clisccp2_c01, clisccp2_c02, clisccp2_c03, clisccp2_c04, clisccp2_c05, clisccp2_c06, clisccp2_c07, parasol_refl)
202ChunckJob3D = OFF
203Seasonal=OFF
204
205[Post_1D_histdayNMC]
206Patches = ()
207GatherWithInternal = (lon, lat, plev, time_counter, time_centered, time_centered_bounds)
208TimeSeriesVars2D = ()
209ChunckJob2D = NONE
210TimeSeriesVars3D = (ta, zg, hus, hur, ua, va, wap)
211ChunckJob3D = 10Y
212Seasonal=OFF
213
214[Post_HF_histhf]
215Patches= ()
216GatherWithInternal = (lon, lat, presnivs, time_counter, time_centered, time_centered_bounds)
217TimeSeriesVars2D = (cldt, psol, q2m, slp, precip, pluc, plul, t2m, tsol, u10m, v10m)
218ChunckJob2D = 50Y
219TimeSeriesVars3D = (temp, theta, ovap, vitu, vitv)
220ChunckJob3D = OFF
221Seasonal=OFF
222
223[Post_HF_histhfCOSP]
224Patches = ()
225GatherWithInternal = (lon, lat, height, sza, time_counter, time_centered, time_centered_bounds)
226TimeSeriesVars2D = (cllcalipso, clmcalipso, clhcalipso, cltcalipso)
227ChunckJob2D = OFF
228TimeSeriesVars3D = (clcalipso, parasol_refl, cfad_lidarsr532_c01, cfad_lidarsr532_c02, cfad_lidarsr532_c03, cfad_lidarsr532_c04, cfad_lidarsr532_c05, cfad_lidarsr532_c06, cfad_lidarsr532_c07, cfad_lidarsr532_c08, cfad_lidarsr532_c09, cfad_lidarsr532_c10, cfad_lidarsr532_c11, cfad_lidarsr532_c12, cfad_lidarsr532_c13, cfad_lidarsr532_c14, cfad_lidarsr532_c15)
229ChunckJob3D = OFF
230Seasonal=OFF
231
232[Post_HF_histhfNMC]
233Patches = ()
234GatherWithInternal = (lon, lat, plev, time_counter, time_centered, time_centered_bounds)
235TimeSeriesVars2D = ()
236ChunckJob2D = NONE
237TimeSeriesVars3D = (ta, zg, hus, hur, ua, va, wap)
238ChunckJob3D = 10Y
239Seasonal=OFF
240
241[Post_3H_histhf3hm]
242Patches= ()
243GatherWithInternal = (lon, lat, presnivs, time_counter, time_centered, time_centered_bounds)
244TimeSeriesVars2D = (flat, precip, pluc, snow, topl, topl0, SWupTOA, SWupTOAclr, SWdnTOA, SWupSFC, SWupSFCclr, SWdnSFC, SWdnSFCclr, LWupSFC, LWupSFCclr, LWdnSFC, LWdnSFCclr, bils, bils_tke, bils_diss, bils_ec, bils_kinetic, bils_enthalp, bils_latent, sens, cldt, zmax_th)
245ChunckJob2D = OFF
246TimeSeriesVars3D = ()
247ChunckJob3D = OFF
248Seasonal=OFF
249
250[Post_3H_histhf3h]
251Patches= ()
252GatherWithInternal = (lon, lat, presnivs, time_counter, time_centered, time_centered_bounds)
253TimeSeriesVars2D = (phis, tsol, t2m, q2m, ustar, u10m, v10m, psol)
254ChunckJob2D = OFF
255TimeSeriesVars3D = ()
256ChunckJob3D = OFF
257Seasonal=OFF
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