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논문 기본 정보

자료유형
학술저널
저자정보
저널정보
대한건축학회 대한건축학회 논문집 - 계획계 대한건축학회논문집 - 계획계 제19권 제11호
발행연도
2003.11
수록면
271 - 278 (8page)

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초록· 키워드

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Korea has been introducing passive solar systems in order to save the heating energy of a building from the past. Among them, a Mass-wall system as a component of construction structure has been applied to various types since it had excellent application and function. However, because of characteristics of Korean climate, the Mass-wall system is excellent to the reducing effect of a heating energy in winter, and in summer, cooling energy consumption by over heating might be increased. The purpose of this paper is to analyse overheating of summer using the experiment model of a Mass-wall system with doble glass and Mass-wall system with TIM, and to research the effect and selection of a overheating protector. The process of this paper is as follows : 1) After establishing a experiment model which sets up doubled glass and TIM as collector respectively, it analysed overheating through a summer experiment. 2) Solar shading effect was analysed after putting blinds on all sides of collector in order to reduce overheating phenomenon of a Mass-wall system applying TIM. 3) After installing a natural ventilation device between blinds and air-gap, the overheating effect by solar shading and natural ventilation was analysed. As a result of the experiment, overheating phenomenon of a Mass-wall system applying doubled glass and TIM was almost same. In the case of a thermal mass wall set with only blinds for solar shading, although the increasement of temperature of a thermal mass wall and air-gap was stopped by solar shading, an indoor temperature was increased 32℃ which was about 2℃ higher than outdoor temperature. In the case of setting up blinds and a natural ventilation device at the same time, the blinds and natural ventilation device blocked overheating of air-gap, a thermal mass wall and indoor temperature by solar and outdoor temperature effectively, and they kept up indoor temperature as average 27℃.

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Abstract

1. 서론

2. 실험모델을 이용한 TI-wall의 하절기 과열실험

3. 실험결과 및 분석

4. 결론

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