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논문 기본 정보

자료유형
전문잡지
저자정보
김성아 (성균관대) 김도영 (성균관대)
저널정보
대한건축학회 건축 建築 第58卷 第5號
발행연도
2014.4
수록면
32 - 35 (4page)

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초록· 키워드

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Modular buildings are mass-produced mainly by assembling prefabricated building components, which are standardized and reusable, Accordingly, modular housings are supposed to be eco-friendly and command good environmental performance. Modular buildings, however, have also carried a negative image as ‘monotonous and cheap-looking architecture’. In order to address negative images associated with ‘modular building’, reconfigurable design types need to be more developed.
A design process involves a series of design development associated with creative design development, design validation. While using Building Information Modeling (BIM), we could utilize building information efficiently compared to 2D CAD model. It is originated from the interoperability of BIM in terms of building life-cycle.
In order to apply ‘BIM-technology’ in developing design variations of prefabricated modular buildings, a parametric model of basic system was defined and its offspring alternatives were generated. An information structure was designed first facilitate the interoperation between design or analysis software. Secondly, the performance-oriented design process was divided into four design steps such as generation of alternatives (1st), alternatives analysis(1st), generation of alternatives(2nd), alternatives analysis and optimization(2nd). It is based on ‘after-the-fact’ compared to ‘before-the-fact’ approach.
Finally, a data exchange process was implemented to enhance the BIM usability since we need to change enormous BIM data to simplified one for modeling’s use purpose.
This research is related with performance-oriented design process using BIM. It will contribute to create more variation types of prefabricated modular housings and improve integrated quality of this system by using collaborative software.

목차

모듈러 주택: 디자인 유형개발의 필요성
BIM 기반의 디자인 프로세스
파라메트릭, 성능지향적 설계
BIM기반의 디자인 프로세스
BIM을 활용한 대안생성 및 분석, 최적화
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UCI(KEPA) : I410-ECN-0101-2015-500-001320821