The Impact of the Dam Construction on the Fog Characteristics of Its Surrounding Area

대형 댐 건설이 주변 지역의 안개 특성에 미친 영향 - 주암댐과 충주댐을 사례로 -

  • Received : 2003.04.10
  • Accepted : 2003.04.22
  • Published : 2003.05.31

Abstract

This paper examined the impacts of dam construction on fog characteristics over surrounding areas. Juamdam which only supplies the water for use and Chungjudam which generates electricity were selected. The number of foggy days, fog occurrence and dissipation time and the differences of each lake water temperature and air temperature at Sunchun and Chungju were analyzed. After the construction of dam, the relative humidity and water vapor pressure were decreased at Sunchun and Chungju. The number of foggy days did not increase at Sunchun while largely increased at Chungju. Just because Juamdam were contained water, the water vapor pressure at surrounding areas of the weather station were largely decreased. It delayed the time of fog occurrence by bringing out the decrease of steam fog. The foggy days increased over the Chungju area due to the difference between air and cold outlet water temperature. The increase of foggy days mainly resulted from evaporation during colder seasons and from the temperature inversion over the water surface during warmer seasons.

Keywords

References

  1. 남재철, 신만용. 윤진일, 1995, '매시기상자료에 의한 안동지역 인공호 주변 안개 발생판별', 한국기상학회지, 31(4). 393-398
  2. 양문석. 1993, '충주댐 건설전후 충주지방의 안개변화 특성', 공주대학교 교육대학원 석사학위청구논문
  3. 윤진일 외, 1997, '주암 다목적댐 건설에 따른 국지기후 변화가 농작물 생산성에 미치는 영향', 한국기상학회지, 33(3), 409-427
  4. 이승호, 1998, '충주호가 주변지역의 안개 특성에 미친 영향- 충주와제천을 중심으로-', 대한지리학회지, 33(2). 165-177
  5. 이종범, 1981, '춘천지방의 인공호에 의한 안개 및 운량의 변화', 한국기상학호지, 17(1). 18-26
  6. 이종범, 봉종헌, 조하만, 1990. '댐 건설에 따른 국지기후의 변화 실태', 기상연구논문집, 7(1), 75-81
  7. 허인혜, 1997. '한국의 지역별 안개 특성', 건국대학원 석사학위청구논문
  8. 홍성길, 1982. '안동댐 건설이후 안동지방의 안개증가', 한국기상학회지, 18(2). 26-32
  9. Alan, LW., 1974, Projected utilization of warm fog dispersal technology at major airports, The 6th Conference on Aerospace & Aeronautical Meteorology oft he Amer. Meteor. Soc., 245-250
  10. Bott, A., 1990, Radiation fog model with a detailed treatment of the interaction between radiatives transfer and fog microphysics, J. Atmos. Sci., 47, 2153-2166 https://doi.org/10.1175/1520-0469(1990)047<2153:ARFMWA>2.0.CO;2
  11. Perry, A.H. and L.J. Symons, , 1991, Highway Meteorology, E&FNSPON, 91-130
  12. Woodcock, A.H., 1982, Fog and tidal current connection at cape cod canal, Bull. Amer. Meteor. Soc., 63(2), 161-166 https://doi.org/10.1175/1520-0477(1982)063<0161:FATCCA>2.0.CO;2