- Timestamp:
- 2020-06-17T13:01:47+02:00 (4 years ago)
- Location:
- NEMO/branches/2020/dev_r12953_ENHANCE-10_acc_fix_traqsr/cfgs/SHARED
- Files:
-
- 2 edited
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NEMO/branches/2020/dev_r12953_ENHANCE-10_acc_fix_traqsr/cfgs/SHARED/field_def_nemo-oce.xml
r12377 r13121 369 369 <field id="taum_oce" long_name="wind stress module over open ocean" standard_name="magnitude_of_surface_downward_stress" unit="N/m2" /> 370 370 371 <field id="Cd_oce" long_name="Drag coefficient over open ocean" standard_name="drag_coefficient_water" unit="" /> 372 <field id="Ce_oce" long_name="Evaporaion coefficient over open ocean" standard_name="evap_coefficient_water" unit="" /> 373 <field id="Ch_oce" long_name="Sensible heat coefficient over open ocean" standard_name="sensible_heat_coefficient_water" unit="" /> 374 375 <field id="Cd_ice" long_name="Drag coefficient over ice" standard_name="drag_coefficient_ice" unit="" /> 376 <field id="Ce_ice" long_name="Evaporaion coefficient over ice" standard_name="evap_coefficient_ice" unit="" /> 377 <field id="Ch_ice" long_name="Sensible heat coefficient over ice" standard_name="sensible_heat_coefficient_ice" unit="" /> 378 371 379 <!-- available key_oasis3 --> 372 380 <field id="snow_ao_cea" long_name="Snow over ice-free ocean (cell average)" standard_name="snowfall_flux" unit="kg/m2/s" /> -
NEMO/branches/2020/dev_r12953_ENHANCE-10_acc_fix_traqsr/cfgs/SHARED/namelist_ref
r12933 r13121 1134 1134 ! ! = 3 as =2 with distinct dissipative an mixing length scale 1135 1135 ln_mxl0 = .true. ! surface mixing length scale = F(wind stress) (T) or not (F) 1136 nn_mxlice = 0 ! type of scaling under sea-ice 1137 ! = 0 no scaling under sea-ice 1138 ! = 1 scaling with constant sea-ice thickness 1139 ! = 2 scaling with mean sea-ice thickness ( only with SI3 sea-ice model ) 1140 ! = 3 scaling with maximum sea-ice thickness 1141 rn_mxlice = 10. ! max constant ice thickness value when scaling under sea-ice ( nn_mxlice=1) 1136 1142 rn_mxl0 = 0.04 ! surface buoyancy lenght scale minimum value 1137 1143 ln_drg = .false. ! top/bottom friction added as boundary condition of TKE
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