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BIM을 활용한 컬러모듈 BIPV 건축 설계 최적화 방안 연구 - 서울 지역 실증 일사량 데이터 중심으로 -A Study on the Optimization of Color Module BIPV Architectural Design Using BIM - Based on the data of Seoul surveyed solar radiation -

Other Titles
A Study on the Optimization of Color Module BIPV Architectural Design Using BIM - Based on the data of Seoul surveyed solar radiation -
Authors
전현우윤혜경박서준
Issue Date
2019
Publisher
한국BIM학회
Keywords
건물 일체형 태양광; 컬러 태양광 모듈; 일사량 분석; 발전량 예측; 빌딩정보모델링; Building Integrated Photovoltaic; Color Module; Solar radiation analysis; Power generation; Building Information Modeling
Citation
KIBIM Magazine, v.9, no.3, pp.19 - 29
Journal Title
KIBIM Magazine
Volume
9
Number
3
Start Page
19
End Page
29
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/2320
ISSN
2288-1697
Abstract
Currently, BIPV (Building Integrated Photovoltaic) design technology lacks analysis function at the planning stage, and there is a lack of understanding and reliability of BIPV design method and system for building designers. To design and consider various building integrated solar design alternatives, the color of building integrated solar is often monotonous or does not match the design direction of the building. In this study, architectural designers can select various color modules in the planning and design process of the building and analyze the characteristics of color module solar cells and compare and analyze the actual solar radiation and predicted solar radiation in Republic of Korea Seoul to reduce the confusion of design methods. By building a BIM design integrated system that can prove the quality of the building and analyze the shading analysis and power generation performance architecturally, it can improve the reliability of color module solar cell applicability that can express aesthetics in buildings and the predicted solar power generation capacity of each region. In the initial design stage, based on the empirical data of the BIPV system, it is possible to analyze the power generation performance for each installation angle and installation direction by analyzing the surrounding environment and the installation area, and accurately determine the appropriateness of the design accordingly.
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