Analysis of Housing Cases with Passive Cooling Technologies - Based on LEED(Leadership in Energy and Environmental Design) housing cases in North America -

자연냉방기법 활용 주거 사례분석 연구 - 미국 LEED 인증 주택을 대상으로 -

  • Published : 2009.12.31

Abstract

The purpose of this study is to analyze the state-of-the-art housing cases with passive cooling technologies and to explore the feasibilities for their applications in domestic housing design. Nineteen Leadership in Energy and Environmental Design housing cases from 2002 to 2007 were selected and analyzed their used passive cooling technologies. Besides traditional passive cooling technologies such as site planning according to the sun direction, the use of thermal mass, insulation, shading, below-ground spaces and ventilation, the relatively new technology trends were detected as followings; the use of high performance envelope, operable windows, and geo-thermal energy as the cooling source of heat pumps, increased areas of photovoltaic cells, and the education of the owner and tenants about the adopted passive cooling technologies in a building. Especially, the education may have not been focused in the domestic design despite of its effectiveness on the appropriate operations of passive cooling technologies. The results of this study show their positive adaptations would be beneficial to domestic housing design to reduce energy costs and have cooler housing environments in summer.

Keywords

References

  1. 강수연.이언구, Zero Emission Building의 요소기술에 관한 연구, 대한건축학회 학술발표대회 논문집 27권 1호, 2007
  2. 이동윤.박진철, 패시브 하우스의 에너지 절약기술 분석, 대한 건축학회 제5회 우수졸업논문전 수상논문 개요집 5권 1호, 2009
  3. 이현우, 그린 빌딩의 실현과 현대 건축의 그린 빌딩 기술, 대한 건축학회지 53권 2호, 2009
  4. AIA Research Corporation, Solar Dwelling Design Concepts, the Superintendent of Documents, U.S. Government Printing Office, Washington, D.C., 1976
  5. American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc. (ASHRAE), Chapter 28. Residential Cooling and Heating Load Calculations. In: ASHRAE. Handbook Fundamentals SI Edition 2001
  6. Brown, G. Z., & DeKay, M., Sun, wind and light: architectural design strategies, 2nd ed., J. Wiley and Sons, New York, 2001
  7. Herzog, T., Kaiser, N., & Volz, M., Solar Energy in Architecture, 4th ed., Prestel, Munich, Germany, 1996
  8. 에너지관리공단, 2007. 1/4분기 에너지소비 동향 http://www.kem co.or.kr, accessed in 2009
  9. BuildingGreen.com, LEED Case Studies, http://www.buildinggreen.com, accessed in 2009
  10. U.S. Green Building Council, LEED for Homes, http://www. usgbc.org, accessed in 2009