BIM 기반 비정형 건축물 패널화 모델 생성 방법에 관한 연구BIM-Based Generation of Free-form Building Panelization Model
- Other Titles
- BIM-Based Generation of Free-form Building Panelization Model
- Authors
- 김양길; 이윤구; 함남혁; 김재준
- Issue Date
- Dec-2022
- Publisher
- 한국BIM학회
- Keywords
- Free-form Building; BIM; Panelization; 비정형 건축물; BIM; 패널화
- Citation
- KIBIM Magazine, v.12, no.4, pp.19 - 31
- Indexed
- KCI
- Journal Title
- KIBIM Magazine
- Volume
- 12
- Number
- 4
- Start Page
- 19
- End Page
- 31
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/185990
- DOI
- 10.13161/kibim.2022.12.4.019
- ISSN
- 2288-1697
- Abstract
- With the development of 3D-based CAD (Computer Aided Design), attempts at freeform building design have expanded to small and medium-sized buildings in Korea. However, a standardized system for continuous utilization of shape data and BIM conversion process implemented with 3D-based NURBS is still immature. Without accurate review and management throughout the Freeform building project, interference between members occurs and the cost of the project increases. This is very detrimental to the project. To solve this problem, we proposed a continuous utilization process of 3D shape information based on BIM parameters. Our process includes algorithms such as Auto Split, Panel Optimization, Excel extraction based on shape information, BIM modeling through Adaptive Component, and BIM model utilization method using ID Code. The optimal cutting reference point was calculated and the optimal material specification was derived using the Panel Optimization algorithm. With the Adaptive Component design methodology, a BIM model conforming to the standard cross-section details and specifications was uniformly established. The automatic BIM conversion algorithm of shape data through Excel extraction created a BIM model without omission of data based on the optimized panel cutting reference point and cutting line.
Finally, we analyzed how to use the BIM model built for automatic conversion. As a result of the analysis, in addition to the BIM utilization plan in the general construction stage such as visualization, interference review, quantity calculation, and construction simulation, an individual management plan for the unit panel was derived through ID data input. This study suggested an improvement process by linking the existing research on atypical panel optimization and the study of parameter-based BIM information management method. And it showed that it can solve the problems of existing Freeform building project.
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