산 경사면의 기울기 변화에 따른 바람장의 민감도에 관한 WRF 수치모의 연구

A Numerical Simulation Study on the Sensitivity of WRF Model in the Wind Field to the Steepness of Mountain Slopes

  • 한선호 (강릉대학교 대기환경과학과) ;
  • 이재규 (강릉대학교 대기환경과학과)
  • Han, Seon-Ho (Department of Atmospheric and Environmental Sciences, Kangnung National University) ;
  • Lee, Jae Gyoo (Department of Atmospheric and Environmental Sciences, Kangnung National University)
  • 투고 : 2007.09.09
  • 심사 : 2007.12.06
  • 발행 : 2007.12.31

초록

The main purpose of this study is to examine the sensitivity of the WRF (Weather Research and Forecasting) in the wind field to the steepness of mountains in the case with a strong downslope wind occurred in the Yeongdong province. We conducted WRF simulations for February 13 2006. The initial and boundary data are from the NCEP/NCAR $1^{\circ}{\times}1^{\circ}$ GDAS. Arbitrary terrains of the mountains with a symmetric orography and an asymmetric one with steeper leeward slope, were introduced to examine the sensitivity of the shape of the mountains. The simulation with an asymmetric terrain results in stronger maximum surface wind by about $10ms^{-1}$ than with a symmetric terrain, especially in the narrow region from the peak to ~ 4 km away in the downstream. However, the maximum surface wind speed is weaker by $20ms^{-1}$ than with a symmetric terrain away from the narrow peak region. This indicates that the steeper slope leads to the intensification of downslope wind in the narrower region leeward. In addition, for the simulation with an asymmetric terrain, the strength of wave breaking is greater and the Lee wave is more dominant than for that with a symmetric terrain.

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