DOI QR코드

DOI QR Code

Design of Flexible BIM System for Alignment-Based Facility

선형기반 시설물을 위한 Flexible BIM 시스템의 설계

  • 이승수 (한양대학교 건설환경공학과, 한국건설기술연구원 Geo-인프라연구실) ;
  • 이민주 (한양대학교 건설환경공학과) ;
  • 정종윤 (한양대학교 공학대학원 건설관리학과, (주)나우산업) ;
  • 서종원 (한양대학교 건설환경공학과)
  • Received : 2013.12.09
  • Accepted : 2014.02.17
  • Published : 2014.04.01

Abstract

Despite the significant benefits of BIM (Building Information Modeling), it is not being vitalized for the facilities that are designed based on the horizontal and vertical alignments because of the lack of flexibility in manipulating surface models generated based on alignments. Alignment-based design produces a surface model in one piece through the definition of the typical cross-section along the alignment. Therefore, linking these alignment-based 3D surface models, that are not modularized and difficult to partition, to the required attribute information is very difficult This paper presents design of a flexible BIM technology suitable for the alignment-based civil infrastructure by providing the partitioning functionality for surface models, the contents library for cross-sectional design components, and the attribute information along with the critical functionalities needed for the design, construction and maintenance of alignment-based civil infrastructure.

최근 건설 산업은 BIM (Building Information Modeling)의 도입으로 인하여 많은 혜택을 얻고 있다. 하지만 도로나 철도와 같은 선형기반 설계공종의 경우는 구간별 표준횡단면의 정의와 선형의 배치를 통한 서피스(surface)모델을 생성함으로써 3차원 설계가 이루어지나, 현재 설계 소프트웨어에서 제공되는 횡단면 설계요소가 제한적이거나 국내실정에 맞지 않은 점이 많고, 생성된 서피스모델은 선형구간의 시 종점에 대해 일체화 되어있어 공정, 물량, 단가 등의 BIM 소요정보와 세분화된 연계를 위해서는 모델 수정 등의 많은 후속작업이 필요하다. 본 논문에서는 이러한 문제점을 해결하기 위하여 3D 선형기반설계가 적용되는 사회기반시설물을 대상으로 3차원 모델의 분절 및 속성정보의 운용이 자유로운 '선형기반 인프라시설물을 위한 Flexible BIM 시스템'의 설계를 통하여 BIM의 활용성을 극대화 하는 것을 목표로 한다.

Keywords

References

  1. Alan, P. and Whitaker, R. (1999). "Partitioning 3D surface meshes using watershed segmentation." IEEE Transactions on Visualization and Computer Graphics, Institute of Electrical and Electronics Engineers, Vol. 5, No. 4, pp. 308-321. https://doi.org/10.1109/2945.817348
  2. Autodesk Corporation (2013). Available at : http://docs.autodesk.com/CIV3D/2013/KOR/index.html (Accessed: January 10, 2013).
  3. Choi, C. (2009). "BIM of future construction technology and phase strategy." Korea Institute of Construction Engineering and management, Development and Trend of Construction Management, pp. 198-213.
  4. Hao, J., Fang, L. and Dong, Z. (2010). "Research on generating similar-shaped assembly features for model partitioning." International Congerence on Mechanical and Electrical Technology, Institute of Electrical and Electronics Engineers, pp. 439-443.
  5. Kang, I. and Moon, H. (2009). "BIM utilizing trend and application on civil engineering work." Korea Institute of Construction Engineering and management, Vol. 10, No. 5, pp. 30-36.
  6. Kim, C. (2010). Octree-based adaptive meshing, Master.D. Deissertation, University of Gwangwoon.
  7. Kim, S. (2009). A study of BIM application for civil engineering project, Master.D. Dissertation, University of Kyungsang.
  8. Kim, S. and Oak, J. (2007). "A platform moving model for an intelligent excavator." Korean Society of Civil Engineers, Vol. 27, No. 6, pp. 767-774.
  9. Korea Expressway Corporation (2012). "Korea expressway corporation standardization of shop drawing." Korea Expressway Standard Shop Drawing, DWG File (in Korean).
  10. Lee, S., Kim, J., Kang, S. and Seo, J. (2008). "Development of task planning system for intelligent excavating system applying heuristics." Journal of the Korean Society of Civil Engineers, Vol. 28, No. 6, pp. 859-869 (in Korean).
  11. Mangan, P. and Whitaker, T. (1999). "Partitioning 3D surface meshes using watershed segmentation." IEEE Transactions on Visualization and Computer Graphics, IEEE, Vol. 5, No. 4, pp. 308-321. https://doi.org/10.1109/2945.817348
  12. Ministry of Land, Transport and Maritime Affairs (MLTMA) (2012). Standard road design, Korea Standard Road Design Theory (in Korean).
  13. Ministry of Land, Transport and Maritime Affairs (MLTMA) (2012). Road design manual, Korea Road Design Manual Book (in Korean).
  14. Ministry of Construction & Transportation (2006). Application standard of construction information classification system, Announcement, No. 2006-281.
  15. Telecommunications Technology Association (2007). Available at: http://www.tta.or.kr/search/search.jsp (Accessed: January 22, 2014).
  16. Yang, Z., Fernando, S., Moghani, E. and AbouRizk, S. (2010). "3D CAD modeling and visualization of the tunnel construction process in a distributed simmulation environment." Proceedings of the 2010 Winter Simulation Conference, Institute of Electrical and Electronics Engineers, pp. 3189-3200.

Cited by

  1. Development of a 4D Information based Integrated Management System for Geothermal Power Plant Drilling Project vol.24, pp.3, 2014, https://doi.org/10.7474/TUS.2014.24.3.234
  2. Virtual graphic representation of construction equipment for developing a 3D earthwork BIM vol.23, pp.8, 2017, https://doi.org/10.3846/13923730.2017.1348981