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Analysis of Radiation Energy Budget Using WISE Observation Data on the Seoul Metropolitan Area

WISE 관측자료를 이용한 수도권지역의 복사에너지수지 분석

  • Jee, Joon-Bum (Weather Information Service Engine, Hankuk University of Foreign Studies) ;
  • Lee, Hankyung (Weather Information Service Engine, Hankuk University of Foreign Studies) ;
  • Min, Jae-Sik (Weather Information Service Engine, Hankuk University of Foreign Studies) ;
  • Chae, Jung-Hoon (Weather Information Service Engine, Hankuk University of Foreign Studies) ;
  • Kim, Sangil (Weather Information Service Engine, Hankuk University of Foreign Studies)
  • 지준범 (한국외국어대학교 차세대도시농림융합기상사업단) ;
  • 이한경 (한국외국어대학교 차세대도시농림융합기상사업단) ;
  • 민재식 (한국외국어대학교 차세대도시농림융합기상사업단) ;
  • 채정훈 (한국외국어대학교 차세대도시농림융합기상사업단) ;
  • 김상일 (한국외국어대학교 차세대도시농림융합기상사업단)
  • Received : 2017.11.06
  • Accepted : 2017.12.29
  • Published : 2017.12.30

Abstract

Radiation energy budget was analyzed using observation data from the Weather Information Service Engine (WISE) energy flux tower on the Seoul metropolitan area. Among observation data from the 13 energy flux towers, we used meteorological variables, radiation data (upward and downward short wave, upward and downward long wave, net short wave, net long wave and net radiation), albedo and emissivity for 15 months from July 2016 to September 2017. Although Gajwa (205) and Ttuksumm (216) sites located in urban, the albedo was relatively high due to the surround environment by glass wall buildings and the Han river around the sites. And Bucheon (209) site located in the suburb represented generally low emissivity. As a result, the albedo decreased and the emissivity increased in the city center. In the Seoul metropolitan area, the net radiation energy is $73.9W/m^2$ that the radiation budget of the surface is absorbed into the atmosphere. According to WISE observation data, it can be seen that observation at each sites are influenced by the surrounding environment.

Keywords

References

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