Sensitivity Evaluation of Wind Fields in Surface Layer by WRF-PBL and LSM Parameterizations

WRF 모델을 이용한 지표층 바람장의 대기경계층 모수화와 지면모델 민감도 평가

  • Seo, Beom-Keun (National Institute of Meteorological Research, Korea Meteorological Administration) ;
  • Byon, Jae-Young (National Institute of Meteorological Research, Korea Meteorological Administration) ;
  • Choi, Young-Jean (National Institute of Meteorological Research, Korea Meteorological Administration)
  • Received : 2010.06.03
  • Accepted : 2010.08.15
  • Published : 2010.09.30

Abstract

Sensitivity experiments of WRF model using different planetary boundary layer (PBL) and land surface model (LSM) parameterizations are evaluated for prediction of wind fields within the surface layer. The experiments were performed with three PBL schemes (YSU, Pleim, MYJ) in combination with three land surface models (Noah, RUC, Pleim). The WRF model was conducted on a nested grid from 27-km to 1-km horizontal resolution. The simulations validated wind speed and direction at 10 m and 80 m above ground level at a 1-km spatial resolution over the South Korea. Statistical verification results indicate that Pleim and YSU PBL schemes are in good agreement with observations at 10 m above ground level, while the MYJ scheme produced predictions similar to the observed wind speed at 80 m above ground level. LSM comparisons indicate that the RUC model performs best in predicting 10-m and 80-m wind speed. It is found that MYJ (PBL) - RUC (LSM) simulations yielded the best results for wind field in the surface layer. The choice of PBL and LSM parameterization will contribute to more accurate wind predictions for air quality studies and wind power using WRF.

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