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WRF Physics Options

Date post: 08-Feb-2016
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WRF Physics Options. Jimy Dudhia. diff_opt=1. 2 nd order diffusion on model levels Constant coefficients (khdif and kvdif) km_opt ignored. diff_opt=2. 2 nd order horizontal diffusion Allows for terrain-following coordinate Uses km_opt 1: constant (khdif and kvdif used) - PowerPoint PPT Presentation
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WRF Physics Options Jimy Dudhia
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Page 1: WRF Physics Options

WRF Physics OptionsJimy Dudhia

Page 2: WRF Physics Options

diff_opt=12nd order diffusion on model levelsConstant coefficients (khdif and kvdif)km_opt ignored

Page 3: WRF Physics Options

diff_opt=22nd order horizontal diffusionAllows for terrain-following coordinateUses km_opt 1: constant (khdif and kvdif used) 2: 1.5-order TKE prediction 3: Smagorinsky (deformation/stability

based K)

Page 4: WRF Physics Options

damp_opt=1Upper level damping layerEnhanced horizontal and vertical diffusion at topCosine function of heightUses additional parameters zdamp: depth of damping layer dampcoef: nondimensional maximum

magnitude of damping

Page 5: WRF Physics Options

mp_physics=1Kessler schemeWarm rain – no iceIdealized microphysics

Page 6: WRF Physics Options

mp_physics=2Purdue Lin et al. scheme5-class microphysics including graupel1.2 includes ice sedimentation

Page 7: WRF Physics Options

mp_physics=3NCEP 3-class schemeFrom RSM scheme (Hong)3-class microphysics with iceIce processes below 0 deg C1.2 includes ice sedimentation

Page 8: WRF Physics Options

mp_physics=4NCEP 5-class schemeAlso from RSM scheme (Hong)5-class microphysics with iceSupercooled water and snow melt1.2 includes ice sedimentation

Page 9: WRF Physics Options

mp_physics=5Ferrier (new Eta) schemeOne prognostic total condensate variableDiagnostic ice and water species and liquid fractions

Page 10: WRF Physics Options

mp_physics=99Zhao-Carr (old Eta) schemeCloud/ice predictionDiagnostic precipitation evaporation

Page 11: WRF Physics Options

ra_lw_physics=1RRTM scheme from MM5Spectral schemeK-distributionLook-up table fit to accurate calculationsInteracts with cloudsOzone from climatology

Page 12: WRF Physics Options

ra_lw_physics=99GFDL longwave scheme used in EtaSpectral scheme from global modelAlso uses tablesInteracts with cloudsOzone from climatology

Page 13: WRF Physics Options

ra_sw_physics=1MM5 shortwave (Dudhia)Simple downward calculationClear-sky scatteringWater vapor absorptionCloud albedo and absorption

Page 14: WRF Physics Options

ra_sw_physics=2Goddard shortwaveSpectral methodInteracts with cloudsOzone effects

Page 15: WRF Physics Options

ra_sw_physics=99GFDL shortwaveUsed in Eta modelOzone effectsInteracts with clouds

Page 16: WRF Physics Options

bl_sfclay_physics=1Monin-Obukhov similarity theoryTaken from standard relations used in MM5 MRF PBLProvides exchange coefficients to surface (land) schemeShould be used with bl_pbl_physics=1

Page 17: WRF Physics Options

bl_sfclay_physics=2Monin-Obukhov similarity theoryModifications due to JanjicTaken from standard relations used in Eta model, including Zilitinkevich thermal roughness lengthShould be used with bl_pbl_physics=2

Page 18: WRF Physics Options

bl_surface_physics=15-layer thermal diffusion model from MM5Predict ground temp and soil tempsThermal properties depend on land useNo effect for waterProvides heat and moisture fluxes for PBL

Page 19: WRF Physics Options

bl_surface_physics=2OSU/MM5 Land Surface ModelVegetation effects includedPredicts soil temperature and soil moisture in four layersPredicts snow cover and canopy moistureDiagnoses skin tempProvides heat and moisture fluxes for PBL

Page 20: WRF Physics Options

bl_pbl_physics=1MRF PBL scheme from MM5Non-local mixing in dry convective boundary layerDepth of PBL determined from critical bulk RiVertical diffusion depends on Ri in free atmosphere

Page 21: WRF Physics Options

bl_pbl_physics=2Mellor-Yamada-Janjic (Eta) PBL1.5-order, level 2.5, TKE predictionLocal vertical mixing in boundary layer and free atmosphere

Page 22: WRF Physics Options

cu_physics=1New Kain-Fritsch As in MM5 and Eta test versionIncludes shallow convectionCAPE removal time scaleMass flux type with updrafts and downdrafts, entrainment and detrainmentIncludes cloud detrainment

Page 23: WRF Physics Options

cu_physics=2Betts-Miller-JanjicAs in Eta modelAdjustment type schemeNo explicit updraft or downdraft

Page 24: WRF Physics Options

cu_physics=99Kain-Fritsch As in MM5CAPE removal time scaleMass flux type with updrafts and downdrafts, entrainment and detrainmentIncludes cloud detrainment

Page 25: WRF Physics Options

(1) Level 2.5 TKE(2) Level 2 3d Smagorinsky(3) Constant diffusion

Subgrid Turbulence

IN WORKING ON PLANNED

2d Smagorinsky(mesoscale)

Page 26: WRF Physics Options

Microphysics

(1) Kessler(2) Lin et al. [Purdue] (3) Cloud3 [NCEP](4) Cloud5 [NCEP](5) Eta (Ferrier)(6) Zhao-Carr(old eta)

GoddardNew Cloud3/5

Lin et al. 2Reisner 2

IN WORKING ON PLANNED

Page 27: WRF Physics Options

Radiation

(1) RRTM(2) Eta (GFDL)

IN WORKING ON PLANNED

Goddard

Lon

gSh

ort (1) Dudhia [MM5]

(2) Goddard (3) Eta (GFDL)

Page 28: WRF Physics Options

Boundary Layer

(1) MRF(2) Mellor-Yamada-

Janjic

(1) MRF Similarity(2) Eta Similarity

Bou

ndar

yla

yer

Surf

ace

laye

rL

and

surf

ace (1) 5-layer soil temp

(2) OSU/MM5 LSM

IN WORKING ON PLANNED

TGS LSM (RUC)Unified NOAH LSM

New MRF

CLM

Page 29: WRF Physics Options

(1) New Kain-Fritsch

(2) Betts-Miller-Janjic [ETA](3) Old KF

New Grell

Cumulus

IN WORKING ON PLANNED


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