DOI QR코드

DOI QR Code

Characteristics of Snow-cell Formation Processes over the Southern Part of Yellow Sea on 4 February 2004 using the KEOP Intensive Observation Data

KEOP 집중관측자료를 활용한 2004년 2월 4일 황해 남부해상의 강설세포 형성과정 특성 분석

  • Kim, Baek-Jo (Policy Research Lab., National Institute of Meteorological Research) ;
  • Cho, Chun-Ho (Policy Research Lab., National Institute of Meteorological Research) ;
  • Ryu, Chan-Su (Department of Atmospheric Sciences, Graduate School Chosun University) ;
  • Chung, Hyo-Sang (Department of Atmospheric Sciences, Graduate School Chosun University)
  • Published : 2007.12.31

Abstract

The formation mechanism of the snow cells of the Yellow Sea associated with snowfall over the southwestern part of Korea on 4 February, 2004 has been investigated using special upper-air sounding and radar data obtained for the KEOP(Korea Enhanced Observing Period) Intensive Observing Period(IOP). Results show that the types of snow cells for the selected period are classified into L(Longitudinal)-mode, Low-level convergence, and T(Transverse)-mode with their evolution from L-mode to T-mode. In particular, the existence of low-level warm and humid layer associated with temporally southwesterly inflow for about 4 hours provides a favorable condition in forming the T-mode snow cells. The vertical depth of the T-mode snow cells is deeper than that of L-mode ones due to the southeastward penetration of cold and dry air into relatively warm and humid air. In addition, it is found that wind shear vector between 1000 hPa and 600 hPa is one of the factors which control the orientation of snow cells in formation embedded into the snowbands for the both modes.

Keywords

References

  1. 전종갑, 이동규, 이현아, 1994, 우리나라에서 발생한 대설에 관한 연구, 한국기상학회지, 30(1), 97-117
  2. 정관영, 정영선, 황병준, 1999, 주성분 분석을 이용한 한반도 강설 지역 구분, 한국기상학회지, 35(3), 466-473
  3. 서명석, 1986, 한국 중부지방에 강설을 초래한 한대 저기압에 관한 사례 연구, 서울대학교 대학원 석사논문, 41pp
  4. 문길태, 김홍진, 1982, 1981년 1월 14일 - 16일 사이의 저기압에 동반된 대설의 특성 연구, 한국기상학회지, 18(1), 22-32
  5. 민경덕, 1974, 동계 황해상의 열 및 수증기 수지 해석과 이들이 시베리아 기단의 변질에 미치는 영향, 한국기상학회지, 10(1), 1-10
  6. 백종진, 1986, 한파 내습에 따른 황해상에서의 수증기 증발에 관하여, 서울대학교 대학원 석사논문, 34pp
  7. 박순웅, 정창희, 1984, 동계 한파내습시 황해상에서의 공기 변질에 관하여, 한국기상학회지, 20(2), 35-50
  8. Murakami M., Matsuno T., Mizuno H., Yamada Y., 1994, Mesoscale and microscale structures of snow clouds over the Sea of Japan Part I : Evolution of microphysical structures in short-lived convective snow cloud, J. Metero. Soc. Japan, 72(5), 671-694 https://doi.org/10.2151/jmsj1965.72.5_671
  9. Japan Meteorological Agency, 1987, On the mesoscale structure of the cloud band system over Japan Sea in winter monsoon period-A mesoscale observation on board R/V Keifu-Maru, Tenki, 35(4), 237-248
  10. Yagi S., 1984, Large scale snow clouds with roll axes roughly perpendicular to the direction of winter monsoon burst : Observation studies of convective cloud roll axes and some theoretical consideration, Tenki, 32, 175-187
  11. Fujiyoshi Y., Yoshimoto N., Takeda T., 1998, A Dual-Doppler radar study of longitudinal-mode snowbands. Part I : Three-dimensional kinematic structure of $meso-\;{\gamma}\;-scale$ convective cloud systems within a longitudinal-mode snowband, Mon. Wea. Rev., 126, 72-91 https://doi.org/10.1175/1520-0493(1998)126<0072:ADDRSO>2.0.CO;2
  12. Shimizu K., 2004, The Formation Process of Transverse-mode Snowbands over the Sea of Japan in Winter, Master Thesis, Nagoya University, 85pp
  13. Yi Zhang, Kenneth R., Sperber, James S. Boyle. 1997, Climatology and Interannual Variation of the East Asian Winter Monsoon: Results from the 1979 - 95 NCEP/NCAR Reanalysis. Mon. Wea. Rev., 125(10), 2605-2619 https://doi.org/10.1175/1520-0493(1997)125<2605:CAIVOT>2.0.CO;2
  14. Asai T., 1972, Thermal Instability of a Shear Flow Turning the Direction with Height, J. Metero. Soc. Japan, 50(6), 525-532 https://doi.org/10.2151/jmsj1965.50.6_525