A Numerical Simulation Study Using WRF of a Heavy Snowfall Event in the Yeongdong Coastal Area in Relation to the Northeasterly

북동 기류와 관련된 영동해안 지역의 대설 사례에 대한 WRF수치모의 연구

  • Lee, Jae Gyoo (Department of Atmospheric and Environmental Sciences, Kangnung National University) ;
  • Kim, Yu Jin (Department of Atmospheric and Environmental Sciences, Kangnung National University)
  • 이재규 (강릉대학교 대기환경과학과) ;
  • 김유진 (강릉대학교 대기환경과학과)
  • Received : 2008.09.16
  • Accepted : 2008.11.12
  • Published : 2008.12.31

Abstract

A numerical simulation of a heavy snowfall event that occurred 13 January 2008 along the Yeongdong coastal area, was performed using WRF (Weather Research and Forecasting) in order to reveal mesoscale structures and to construct a conceptual model showing the meteorological background that caused the large difference in snowfall amounts between the Yeongdong mountain area and the Yeongdong coastal area. The simulation results matched well with various observations such as corresponding 12h-accumulated observed precipitation, surface wind obscrvation, radar echoes, and satellite infrared images. The simulation and the observations showed that the scale of the event was of meso - $\beta$ and meso - $\gamma$ scale. The simulation represented well the mesoscale process causing the large difference in snowfall amounts in the two areas. First, wind flow was kept, to a certain extent, from crossing the mountains due to the blocking effect of the low Froude number (~1). The northeast flow over the adjaccnt sea tumcd northwest as it approachcd the mountains, where it was trapped, allowing so-called cold air damming. Second, a strong convergence area formed where the cold northwest flow along the Yeongdong coastal area and the relatively warm and moist northeast flow advecting toward the coast met, supporting the fonllation of a coastal front. Thus, the vertical motion was strongest over the front located near the coast, leading to the heavy snowfall there rather than in the remote mountain area.

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Acknowledgement

Supported by : 기상청