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주택 지붕일체형 PV시스템 후면환기에 따른 발전성능 변화 실험연구
윤종호,한규복,안영섭 한국태양에너지학회 2007 한국태양에너지학회 논문집 Vol.27 No.3
Building integrated photovoltaic(BIPV) system operates as a multi-functional building construction material. They not only produce electricity, but also are building integral components such as facade, roof, window and shading device. As PV modules function like building envelope in BIPV, combined thermal and PV performance should be simultaneously evaluated. This study is to establish basic information for designing effective BIPV by discovering relations between temperature and generation capability through experiment when the PV module is used as roof material for houses. To do so, we established 3kW full scale mock-up model with real size house and attached an PV array by cutting in half. This is to assess temperature influence depending on whether there is a ventilation on the rear side of PV module or not.
주택용 3kW 지붕일체형 태양광발전 시스템의 온도와 발전성능에 관한 실험적 연구
윤종호(Yoon Jong-ho),한규복(Han Kyu-bok),안영섭(An Young-sub),진경일(Chin Kyoung-il) 한국태양에너지학회 2006 한국태양에너지학회 학술대회논문집 Vol.- No.-
Building integrated photovoltaic(BIPV) system operates as a multi-functional building construction material. They not only produce electricity, but also are building integral components such as facade, roof, window and shading device. On the other hands, lots of architectural considerations should be reflected such as installation position, shading, temperature effect and so on. As PV modules function like building envelope in BIPV, combined thermal and PV performance should be simultaneously evaluated. This study is to establish basic information for designing effective BIPV by discovering relations between temperature and generation capability through experiment when the PV module is used as roof material for houses. To do so, we established 3㎾ full scale mock-up model with real size house and attached an PV array by cutting in half. This is to assess temperature influence depending on whether there is a ventilation on the rear size of PV module or not.