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On the Characteristics of Globe Temperature Variation Observed at Downtown in Summer Season

하계에 도심지에서 관측된 흑구온도의 특성 분석

  • Park, Jong-Kil (School of Environmental Sciences Engineering, Atmospheric Environment Information Research Center, Inje University) ;
  • Jung, Woo-Sik (Department of Atmospheric Environment Information Engineering, Graduate School, Atmospheric Environment Information Research Center, Inje University) ;
  • Kim, Seok-Cheol (Department of Atmospheric Environment Information Engineering, Graduate School, Atmospheric Environment Information Research Center, Inje University) ;
  • Park, Gil-Un (Department of Atmospheric Environment Information Engineering, Graduate School, Atmospheric Environment Information Research Center, Inje University)
  • 박종길 (인제대학교 대기환경정보공학과/대기환경정보연구센터) ;
  • 정우식 (인제대학교 환경공학부/대기환경정보연구센터) ;
  • 김석철 (인제대학교 환경공학부/대기환경정보연구센터) ;
  • 박길운 (인제대학교 환경공학부/대기환경정보연구센터)
  • Published : 2008.08.30

Abstract

In order to monitor the impact of high temperature which is seen frequently with climate change, we investigated the monthly change in globe temperature, air temperature, mean radiant temperature and effective radiant heat flow, because the four well reflect thermal radiation from bio-meteorological aspect. Both globe temperature and air temperature showed an increasing trend every month. Compared to air temperature, globe temperature had a wider range of temperature change and was more influenced by meteorological element such as precipitation. Diurnal trends of air temperature, globe temperature and the difference between their temperature had the lowest value before the sunrise and the highest around $1300{\sim}1500$ LST, showing the typical diurnal trends. Globe temperature and the difference between their temperature had a sharp increase around $1000{\sim}1100$ LST, maintained high value until 1700 LST and then reclined, though varied by month. The difference between globe temperature and air temperature was highly dependent on the amount of precipitation and clouds. The duration in which globe temperature was higher than air temperature was the lowest in July. Therefore the amount of precipitation was the most affecting, followed by the amount of clouds and wind. In order to find out the diurnal trends of temperature in city center and city outskirts, we assumed the roof of a concrete build ing as a city center, and the grass-covered observatory of the Gimhae International Airport as city outskirts. The diurnal trends of temperature in the two sites showed a strong correlation. The highest and lowest temperature also had the same trend.

Keywords

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