DOI QR코드

DOI QR Code

설계모델과 문서정보의 효율적 연계를 위한 BIM기반 데이터베이스 체계 구축방안

Development of BIM-based Construction Document Information Database Structure through the Link to the BIM Model and Construction Document Information

  • Lee, Donggun (Department of Architectural Engineering, Ajou University) ;
  • Cha, Heesung (Department of Architectural Engineering, Ajou University) ;
  • Kim, Kyungrai (Department of Architectural Engineering, Ajou University) ;
  • Shin, Dongwoo (Department of Architectural Engineering, Ajou University)
  • 투고 : 2015.05.06
  • 심사 : 2015.08.19
  • 발행 : 2015.09.30

초록

건설산업은 다양한 참여자가 상호협동을 통하여 진행되며, 각 건설 단계별로 다양한 정보가 발생되고 관리되는 정보의 집합체라고 할 수 있다. 건설 프로젝트의 대부분의 정보는 문서의 형대로 발생됨으로 인하여 현장의 문서관리는 프로젝트의 성공적인 수행에 매우 중요하다고 할 수 있다. 이에 건설현장에서는 다양한 IT기술의 적용을 통하여 정보를 효율적으로 관리하고자한 다양한 노력을 하고 있다. 그러나 건설현장의 대부분의 정보가 비구조화된 문서의 형태로 정보가 관리되고 정보관리 체계의 미비로 인하여 효율적인 정보의 축적과 관리가 어려운 실정이다. 이에 본 연구에서는 BIM기술을 통하여 건설현장의 정보를 관리하기 위한 정보의 분류체계 및 정보 연계를 위한 건설정보 데이터베이스 체계를 제안함으로써 건설현장의 정보 축적 및 효율성을 제고하고자 하였다. 이를 위해 문서관리와 정보연계 관련 선행연구 검토를 통하여 건설현장의 정보를 구조화하기 위한 공간분류체계와 정보분류체계를 제안하였고 정보 축적을 위한 데이터베이스를 설계하였다. 그리고 BIM기반 건설정보 데이터베이스를 시나리오를 통해 적용해 봄으로써 건설정보 데이터베이스의 구현 가능성을 검토할 수 있었다.

Construction industry has the form of industry progressed through mutual cooperation among participants in various fields. Accordingly, it may be referred to as an aggregate of information where various pieces of information are generated and managed according to each construction phase. Most of the information on the construction project is issued in the form of a document. And document management of the site is critical to successful execution of the project. Therefore, in the construction site to use IT technology for efficient information management. But, most of the information on the construction site is managed by the non-structured document. and Information management in the construction site is difficult to lack of information management systems. In this study, proposed construction information database structure and breakdown structure to the information management of the construction site through the BIM technology. Therefore, previous studies were reviewed about the document management and information link management. and Space breakdown structure and information breakdown structure was proposed to structure the information of the construction site and Database for information storage is designed. And, BIM-based construction information database was examined through the application scenario.

키워드

참고문헌

  1. An, S. J., Son, B. S., Lee, H. S. (2003). "Data Model for Document Exchange of Construction Projects", Proceedings of KICEM Annual Conference 2003, KICEM, pp. 569-572.
  2. Caldas, C. H., Soibelman, L. (2003). "Automating hierarchical document classification for construction management information system", Automation in Construction, 12, pp. 395-406 https://doi.org/10.1016/S0926-5805(03)00004-9
  3. Caldas, C. H., Soibelman, L., Gasser, L. (2005). "Methodology for the Integration of Project Documents in Model-Based Information Systems", Journal of Computing in Civil Engineering, 19(1), pp. 25-33. https://doi.org/10.1061/(ASCE)0887-3801(2005)19:1(25)
  4. Chan, K. W., Anson, M., Zhang, J. P. (2005). "4D Dynamic Construction Management and Visualization Software: 1. Development", Automation in Construction, 14(4), pp. 512-524. https://doi.org/10.1016/j.autcon.2004.11.002
  5. Chen, Y., Kamara, J. M. (2011). "A framework for using mobile computing for information management on construction sites", Automation in Construction, 20, pp. 776-778. https://doi.org/10.1016/j.autcon.2011.01.002
  6. Cho, H. C. (2002). "A Study on the Relationship of Construction Information in Documents Control for Automatic generation of Construction Documents", M.S. thesis, Dept. of Architectural Engineering, Ajou University.
  7. Choi, J. S. (2011). "A Study on the Development and Application of Quality Control Requirements for Improving the Quality of Architectural Design in Open BIM Environments", PhD thesis, Dept. of Architectural Engineering, Kyung Hee University.
  8. Dawood, N., Sriprasert, E., Mallasi, Z., and Hobbs, B. (2002). "Development of an integrated information resource base for 4D/VR construction processes simulation", Automation in Construction, 12(2), pp. 123-131. https://doi.org/10.1016/S0926-5805(02)00045-6
  9. Ding, L. Y., Zhou, Y., Luo, H. B., Wu, X. G. (2012). "Using nD Technology to Develop an Integrated Construction Management System for City Rail Transit Construction", Automation in Construction, 21(1), pp. 64-73. https://doi.org/10.1016/j.autcon.2011.05.013
  10. Eastman, C., Jeong, Y., Sacks, R., and Kaner, I. (2010). "Exchange Model and Exchange Object Concepts for Implementation of National BIM Standards", Journal of Computing in Civil Engineering, 24(1), pp.25-34 https://doi.org/10.1061/(ASCE)0887-3801(2010)24:1(25)
  11. Hajjar, D., AbouRizk, S. M. (2000). "Integrating document management with project and company data", Journal of Computing in Civil Engineering, 14(1), pp. 70-77. https://doi.org/10.1061/(ASCE)0887-3801(2000)14:1(70)
  12. Ioannou, P. G., Liu, L. Y. (1993). "Advanced construction technology system-ACTS", Journal of Construction Engineering and Management, 119(2), pp. 288-306. https://doi.org/10.1061/(ASCE)0733-9364(1993)119:2(288)
  13. Jung, Y. S., Kim, Y. S., Kim, M., Ju, T. H. (2013). "Concept and Structure of Parametric Object Breakdown Structure(OBS) for Practical BIM", Korea Journal of Construction Engineering and management, KICEM, 14(3), pp. 88-96. https://doi.org/10.6106/kJCEM.2013.14.3.088
  14. Kang, M. Y. (2008). "A Study on the Minimum Prevention of Construction Claim by Risk Analysis Model", MS. thesis, Dept. of Architectural Engineering, Namseoul University, Korea.
  15. Kosovac, B., Froese, T., Vanier, D. (2000). "Integrating heterogeneous data representations in model-based AEC/FM systems", CIT 2000, pp. 556-566.
  16. Kwon, Y. S. (2001). "A Conceptual Model of Construction Information to be Used According to Construction Process", M.S. thesis, Dept. of Architectural Engineering, Hanyang University, Korea.
  17. Lee, H. M. (2008). "A study on the development of construction information integrated system to build BIM", PhD thesis, Dept. of Architectural Engineering, Chonnam national University.
  18. Lee, S. G. (2009). "Metadata-Library based Document Management Prototype System for Urban Renewal Promotion Plan", M.S. thesis, Dept. of Architectural Engineering, University of Seoul.
  19. Lin, Y. C. (2014). "Construction 3D BIM-based knowledge management system", Journal of Civil Engineering and Management, 20(2), pp. 186-200. https://doi.org/10.3846/13923730.2013.801887
  20. Liu, R., and Issa, R. R. A. (2012). "Automatically Updating Maintenance Information from a BIM Database", Computing in Civil Engineering 2012
  21. Ma, Z., Wei, Z., and Zhang, X. (2013). "Semi-automatic and specification-compliant cost estimation for tendering of building projects based on IFC data of design model", Automation in Construction, 30, pp. 126-135. https://doi.org/10.1016/j.autcon.2012.11.020
  22. Noh, G. T. (2011). "Document Management Prototype based on Construction Knowledge Map", M.S. thesis, Dept. of Architectural Engineering, University of Seoul.
  23. Park, H. J. (2009). "Tag-Manager based Document Management Prototype System of Building Material Information", M.S. thesis, Dept. of Architectural Engineering, University of Seoul.
  24. Park, M. S., Lee, K. W., Lee, H. S. (2009). "Ontology Framework for Construction Knowledge Retrieval", Journal of the Architectural Institute of Korea Structure & Construction, 25(12), pp. 175-184.
  25. Park, K. H. (2011). "A Study on the Effect of Pre-Detecting Errors Using BIM in the Pre-Construction Phase", PhD thesis, Dept. of Architectural Engineering, Yonsei University.
  26. Seo, J. H. (2011). "A Study for Analysis on the Level of Claim management System of Construction Firm for Coping with Claim", Ms. thesis, Dept. of Architectural Engineering, Sungkyunkwan University, Korea.
  27. Simoff, S. J., Maher, M. L. (1998). "Ontology-based multimedia data mining for design information retrieval", Congress Computing in Civil Engineering, pp. 212-223.