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Implementation of CLW RF Implementation of CLWRF for downscaling CCAM outputs and results Hanh NGUYEN-THI Hanoi University of Science, VNU 9 th - 15 th Dec, 2012 Melbourne -Australia nguyenhanh0707@gmail.com
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Content Overview of CLWRF Experiment design Results Remarks
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Overview of CLWRF New flag within configure.wrf (following line after - DNETCDF): CLWRFXTR: extreme values computation CLWRFGHG: green house gases computation CLWRFHVY heavy stuff: wind gust, sunshine, time moving/non-moving accumulations additional PBL time- series variables (in combination with CLWRFXTR flag) In Registry/folder, has to be substitute Registry.EM and registry.dimspec by: Registry.EM_CLWRF registry.dimspec.clwrf
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Overview of CLWRF Additional output: File with extreme values: T2MAX, T2MIN, T2STD, … File with accumulated precipitations (for a period of 24h, starting at desire): RAINCVMAX, RAINNCVMAX, RAINCVSTD, RAINNCVSTD,.. File with climatic 24 hour variables such as: sunshine, windgust,…
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Overview of CLWRF CLWRF requires a number of fields as input. 3D Data Temperature U and V components of Wind Geo-potential Height Relative Humidity 2D Data Surface Pressure Mean Sea Level Pressure Skin Temperature 2-meter Temperature 2-meter Relative or Specific Humidity 10-meter U and V components of wind Sea surface temperature
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Experiment design Data: CCAM output from 9/2012 to 3/2013, forced by SST which was provided in October by Dr. Peter. Hoffmann (CSIRO) Unstable version of CCAM (found some RH values which are 150% and over). Format: NETCDF. CLWRF input format: GRIB Rewrite Intermediate file format for 8 input variables: RH, TT, UU, VV, GHT, SST, PMSL, PSFC.
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Experiment design Intermediate files: PSFC: 2013-07-01_00 PMSL: 2013-07-01_00 UU: 2013-07-01_00 VV: 2013-07-01_00 GHT: 2013-07-01_00 SST: 2013-07-01_00 TT: 2013-07-01_00 RH: 2013-07-01_00 Typical information in these records is: A version number Information common to all types of gridded data Information specific to the particular grid type represented A 2-dimensional slab of data
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Experiment design Exam: FIELD = PSFC UNITS = Pa DESCRIPTION = Surface pressure DATE = 2012-09-06_12:00:00 FCST = 0.000000 SOURCE = CCSM3 LEVEL = 200100.000000 I,J DIMS = 36, 36 IPROJ = 0 PROJECTION = LAT LON REF_X, REF_Y = 1.000000, 1.000000 REF_LAT, REF_LON = 0.000000, 90.000000 DLAT, DLON = 1.000000, 1.000000 EARTH_RADIUS = 6367.470215 DATA(1,1)=100931.015625
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Experiment design FIELD = TT UNITS = K DESCRIPTION = T DATE = 2013-07-01_00:00:00 FCST = 0.000000 SOURCE = CCSM3 LEVEL = 2000.000000 I,J DIMS = 36, 36 IPROJ = 0 PROJECTION = LAT LON REF_X, REF_Y = 1.000000, 1.000000 REF_LAT, REF_LON = 0.000000, 90.000000 DLAT, DLON = 1.000000, 1.000000 EARTH_RADIUS = 6367.470215 DATA(1,1)=222.819916 ================================================ FIELD = TT UNITS = K DESCRIPTION = T DATE = 2013-07-01_00:00:00 FCST = 0.000000 SOURCE = CCSM3 LEVEL = 1000.000000 I,J DIMS = 36, 36 IPROJ = 0 PROJECTION = LAT LON REF_X, REF_Y = 1.000000, 1.000000 REF_LAT, REF_LON = 0.000000, 90.000000 DLAT, DLON = 1.000000, 1.000000 EARTH_RADIUS = 6367.470215 DATA(1,1)=224.065216 For TT field
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Experiment design Domain size: + 5N-28N; + 98E-120E Horizontal Resolution: 20km Domain center-point: 17.5N and 107E. - Not use Noah scheme. - A script was written to automatically run the model geogrid.exereal.exe metgrid.exe wrf. exe) (e.g.
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RESULTS Precipitation Nov,2012 mm Temperature at 2m 2012, Nov average oC Terrain Height m
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RESULTS Temperature at 2M (2012-2013) DJF Average Precipitation (2012-2013) DJF Average mm
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Remarks CLWRF are a set of modifications of the Weather Research and Forecasting model code. Ready to run the model for future period when the CCAM global data are available.
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Thank you for your attention! WORKSHOP Dec,2012 Melbourne-AU
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