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BIM기반 가설공사 업무지원시스템 개발에 관한 연구

A Study on Development of BIM-based Engineering Management System for Temporary Work

  • Choi, Changhoon (Department of Architectural Engineering, Kyung Hee University) ;
  • Han, Choonghee (Department of Architectural Engineering, Kyung Hee University) ;
  • Lee, Junbok (Department of Architectural Engineering, Kyung Hee University)
  • 투고 : 2018.10.30
  • 심사 : 2019.12.30
  • 발행 : 2020.01.31

초록

건설 프로젝트d의 대형화, 복잡화, 다양화로 인해 건설공사에서 발생되는 정보의 양이 기하급수적으로 증가하고 있다. 이에 설계 및 시공 검토가 현장 성공 여부에 치명적인 영향을 미치고 있다는 사실을 인지하고, 이를 위한 다양한 노력들이 학계와 산업에서 활발하게 이뤄져 왔다. 설계, 계획 및 유지관리 등 건설 전 단계에서 BIM의 활용은 늘어나고 있는 추세이고, 현재 건설 산업에서 사용되는 표준 중의 하나로 받아들여지고 있다. 하지만 가시설물을 위한 전문화된 소프트웨어가 없을 뿐만 아니라 전문적인 기술자가 절대적으로 부족하여 BIM기반 가설공사 설계는 2D 설계를 완료한 후 3D로 형상화하여 보조수단으로 활용된다. 이에 본 연구에서는 BIM기반 가시설물 설계 및 물량산출, 현장점검 업무의 인간적인 실수(Human error)를 최소화하고 업무시간을 단축할 수 있도록 하여 업무 효율을 높일 수 있는 BIM기반 업무지원시스템을 개발하고자 한다.

As the amount of information generated in the construction project increases exponentially, design and construction review have a serious impact on the success of the site. For this reason, academic and business circles have been expanding the use of BIM at the whole life, and BIM is now accepted as one of the standards used in the construction industry. However, the BIM-based design for the temporary work is used as an aid to the 2D design because there is no specialized software and there is absolutely lack of a professional engineer. The objective of this research is to develop BIM-based temporary work support system. This system minimizes human errors in BIM-based design, quantity takeoff and inspection and shortens working hours.

키워드

참고문헌

  1. 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 Environment." PhD dissertation, Kyung Hee Univ., Yongin.
  2. Choi, S.J., Choi, D.H., and Shin, W.C. (2013). "Survey on work platforms of the Mobile Scaffolding." Journal of the Korea Safety Management and Science, KSMS, 15(2), pp. 76-84.
  3. Hong, S.W. (2013). "A Study on the Development and Application of BIM Based Standard Library for LCCO2 Assessment and the Green Building Certification." MS thesis, Hanyang Univ., Seoul.
  4. Jeong, S.C., and Lee, H.K. (2016). "A Study on the Survey and Improvement of Safety Certifications in Temporary Equipment and Material." Journal of the Regional Association of Architectural Institute of Korea, RAAIK, 18(2), pp. 171-180.
  5. Kim, J.H., Fischer, M., Kunz, J., and Levitt, R. (2015). "Semiautomated Scaffolding Planning: Development of the Feature Lexicon for Computer Application." Journal of Computing in Civil Engineering, ASCE, 29(5), 04014079. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000399
  6. Kim, K.K., and Teizer, J. (2014). "Automatic design and planning of scaffolding systems using building information modeling." Advanced Engineering Informatics, Elsevier, 28(1), pp. 66-80. https://doi.org/10.1016/j.aei.2013.12.002
  7. Kim, K.K., Cho, Y.C., and Zhang, S. (2016). "Integrating work sequences and temporary structures into safety planning: Automated scaffolding-related safety hazard identification and prevention in BIM." Journal of Automation in Construction, Elsevier, 70, pp. 128-142. https://doi.org/10.1016/j.autcon.2016.06.012
  8. Kim, K.R., and Yu, J.H. (2017). "Automated Priority Management for BIM-based Maintenance Work using Semantic Web." Journal of the Architectural Institute of Korea Planning & Design, AIK, 33(1), pp. 53-61. https://doi.org/10.5659/JAIK_PD.2017.33.1.53
  9. Kim, M.J. (2012). "Development of Breakdown Structure of Temporary Work in Housing Project." MS thesis, Chungbuk Univ., Chungbuk.
  10. Kim, T.H., Lee, D.H., Bea, S.I., Hong, Y.K., and Park, Z.S. (2013). "Proposal of field applied safety control process using BIM." Journal of the Regional Association of Architectural Institute of Korea, RAAIK, 15(5), pp. 43-250.
  11. Koo, B.S., and Shin, B.J. (2017). "Applying Novelty Detection for Checking the Integrity of BIM Entity to IFC Class Associations." Korean Journal of Construction Engineering and Management, KICEM, 18(6), pp. 78-88. https://doi.org/10.6106/KJCEM.2017.18.6.078
  12. Lee, B.H., and Ku, M.Y. (2011). "Development of BIM Library for Temporary Earth Retaining Structure." KIBIM Magazine, pp. 61-65.
  13. Park, J.M., and Kim, O.K. (2014). "Development on Breakdown Structure of Construction Site centered Construction Temporary Technology Index." Korean journal of Construction Engineering and Management, KICEM, 14(4), pp. 77-85. https://doi.org/10.6106/KJCEM.2014.15.4.077
  14. Park, S.W. (2008). "Classification of Temporary Equipments for Building Construction in Safety Certification." MS thesis, Chungbuk Univ., Chungbuk.
  15. Rogier, J., Kim, J.H., Fischer, M., Mourgues, C., and Olofsson, T. (2008). "Quantitative analysis of workflow, temporary structure usage, and productivity using 4D models." Journal of Automation in Construction, Elsevier, 17(6), pp. 780-791. https://doi.org/10.1016/j.autcon.2008.02.006
  16. Yoon, S.W., Park, G.H., Choi, C.H., and Chin, S.Y. (2009). "A BIM Case Study in Construction Phase : D3 city Project." Architecture, AIK, 53(8), pp. 52-55.
  17. Eastman, C., Teicholz, P., Sacks, R., and Liston, K. (2011). "BIM handbook: A guide to building information modeling for owners, managers, designers, engineers and contractors." John Wiley & Sons.