DOI QR코드

DOI QR Code

A Study on Air Temperature Difference between Windward and Leeward Side at High-rise Buildings

고층건물 풍상면과 풍하면의 기온차

  • Jin, Ri (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Cui, Hua (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Yu, Jin-Hang (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Ku, Hee-Yeong (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Zheng, Hai-Yan (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Jin, Wen-Cheng (Department of Landscape Architecture, Sungkyunkwan University) ;
  • Lee, Kyoo-Seock (Department of Landscape Architecture, Sungkyunkwan University)
  • 김일 (성균관대학교 조경학과) ;
  • 최화 (성균관대학교 조경학과) ;
  • 어금항 (성균관대학교 조경학과) ;
  • 구희영 (성균관대학교 조경학과) ;
  • 정해연 (성균관대학교 조경학과) ;
  • 김문성 (성균관대학교 조경학과) ;
  • 이규석 (성균관대학교 조경학과)
  • Received : 2011.11.28
  • Accepted : 2012.02.24
  • Published : 2012.02.28

Abstract

To investigate the air temperature difference between windward and leeward side at high-rise building area, the air temperature and relative humidity data were observed for 10 minute interval from July 9, 2011 to November 30, 2011. The observed data were compared, analyzed and examined to illustrate air temperature between windward side (H Apartment) and Leeward side (W Apartment). The diurnal and seasonal variation of air temperature difference between windward and leeward site were also investigated. After the analysis, the overheat of windward side by $0.4^{\circ}C$ irrespective short distance of two observation positions. It was also lower than those of surrounding air temperature observing stations. It is mainly due to the air temperature decreasing effects of leeward side of high rise buildings.

Keywords

References

  1. 김재철․이규석. 2007. 초고층건물 탁월풍 방향의 바람 특성에 관한 연구. 환경영향평가 16(6) : 503-510.
  2. 김영덕. 1998. 빌딩바람에 의한 환경장해와 그 대책, 한국풍공학회지 2(1) : 23-27.
  3. 신지웅․이용준․김태연․이경희. 2005. 보행자 영역의 빌딩풍해 저감 방안에 관한 연구. 대한건축학회지 25(1) : 147-150.
  4. 정해연․김문성․이규석. 2009. 역사경관의 기온저감 효과에 관한 연구. 한국전통조경학회지 27(3) : 87-92.
  5. 정해연․김문성․오성남․이규석. 2010. 동절기 고층건물 풍하면의 기온역전에 관한 연구. 환경영향평가 19(6) : 1-10.
  6. Ahrens, D. C. 2008. Essentials of Meteorology. An Invitation to the Atmosphere 5th ed. Belmont. Thomson Learning Inc. p.56.
  7. Givoni, B. 1998. Climate Considerations in Building and Urban Design. John Wiley and Sons. New York.
  8. Jin, Wen-cheng and Lee, Kyoo-seock. 2012. Air temperature differences at high-rise building area. Journal of the Korean Institute of Landscape Architecture : in press.
  9. Jin, Wen-cheng and Lee, Kyoo-seock. 2009. Air temperature increasing effects by tall buildings near residential area. Proceedings of the Korean Meteorological Society Fall conference, 2009 : xxii
  10. Landsberg, H. E. 1981. Urban climate. Academic Press. p.83.
  11. Lee, S. H, Lee, K. S, Jin, W. C., and Song, H. K. 2009. Effect of an urban park on air temperature differences in a central business district area. Landscape and Ecological Engineering 5(2) : 183-191. https://doi.org/10.1007/s11355-009-0067-6
  12. Lowry, W. 1991. Atmospheric Ecology for Designers and Planners. Thomas Nelson Australia, South Melbourne, Australia.
  13. Oke, T. R. 1974. Technical Note No. 134-Review of Urban Climatology 1968-1973. World Meteorological Association. Geneva.
  14. Oke, T. R. 1987. Boundary Layer Climates, 2nd ed. Routledge. p.264 & pp.310-313.
  15. http://www.kma.go.kr/ 한국기상청.
  16. http://www.kasi.re.kr/ 한국천문연구원.