DOI QR코드

DOI QR Code

시공 현장의 BIM 정보 요청 사항을 통해 분석한 프로젝트 목표와 BIM 활용 간의 관계

Analysis of the Relationship Between Project Goal and Model Use Through BIM RFI Analysis at the Construction Site

  • 이승원 (한양대학교 건축공학과) ;
  • 엄익철 (한양대학교 건축공학과) ;
  • 함남혁 (한양사이버대학교 건축도시건설공학부) ;
  • 김재준 (한양대학교 건축공학부)
  • 투고 : 2023.12.21
  • 심사 : 2024.03.07
  • 발행 : 2024.03.31

초록

BIM is a practical and economical technology used in the construction process. Despite the fact that BIM is widely used in the design and another stage before construction, it is not largely applied during the construction stage itself. However, it is important to opt for BIM during construction stage because there may occur a number of risks such as construction delay and increased construction costs. Therefore, the present paper contains the analysis of the model use, which is mainly applied to respond to the BMI RFI that represents an information requirement of construction site workers, by analysing the BMI RFI application at the construction site. In addition, there is an analysis of the way the derived model use affects the project goal aimed at the project success.

키워드

참고문헌

  1. Aibinu, A. A., Carter, S., Francis, V., Vaz-Serra, P. (2020). Request for Information Frequency and Their Turnaround Time in Construction Projects: A Data-analytic Study, Built Environment Project and Asset Management, 10(1), pp. 1-15.
  2. Baghalzadeh Shishehgarkhaneh, M., Keivani, A., Moehler, R. C., Jelodari, N., Roshdi Laleh, S. (2022). Internet of Things (IoT), Building Information Modeling (BIM), and Digital Twin (DT) in Construction Industry: A Review, Bibliometric, and Network Analysis. Buildings, 12(10), 1503.
  3. Bryde, D., Broquetas, M., Volm, J. M. (2013). The Project Benefits of Building Information Modelling (BIM), International Journal of Project Management, 31(7), pp. 971-980. https://doi.org/10.1016/j.ijproman.2012.12.001
  4. Chen, L., Luo, H. (2014). A BIM-based Construction Quality Management Model and Its Applications, Automation in Construction, 46, pp. 64-73. https://doi.org/10.1016/j.autcon.2014.05.009
  5. Eadie, R., Browne, M., Odeyinka, H., McKeown, C., McNiff, S. (2013). BIM Implementation Throughout the UK Construction Project Lifecycle: An Analysis, Automation in Construction, 36, pp. 145-151. https://doi.org/10.1016/j.autcon.2013.09.001
  6. Ham, N. H., Yuh, O. K. (2023). Performance Analysis and Assessment of BIM-based Construction Support with Priority Queuing Policy, Buildings, 13(1), 153.
  7. Ham, N., Moon, S., Kim, J. H., Kim, J. J. (2020). Optimal BIM Staffing in Construction Projects Using a Queueing Model, Automation in Construction, 113, 103123.
  8. Higgins Jr, D., Fryer, S. (2013). Using the Forward Thinking Index to Measure Request for Information Submission Effectiveness. 49th ASC Annual International Conference Proceedings, San Luis Obispo, CA., pp. 10-13.
  9. Huh, S. H., Ham, N., Kim, J. H., Kim, J. J. (2023). Quantitative Impact Analysis of Priority Policy Applied to BIM-based Design Validation, Automation in Construction, 154, 105031.
  10. Kim, D. S., Choi, H. M., Kim, J. H. (2014). A Proposal of BIM Work Process to Support Construct-ability Analysis from Practitioners Viewpoint, Journal of the Korea Institute of Building Construction, 14(6), pp. 561-569. https://doi.org/10.5345/JKIBC.2014.14.6.561
  11. Kim, H. J., Yoo, M. Y., Kim J. J., Choi, C. S. (2017). Performance Analysis of BIM Labor Using Case Analysis, Journal of the Korea Institute of Building Construction, 7(3), pp. 31-39.
  12. Kim, H. S. (2010). Revealing Issues and Prospects of Domestic Construction by Analysis of BIM Case Studies, Construction, 54(1), pp. 65-69.
  13. Kim, M. K, Kang, C., Koh, I, L. (2022). A Basic Study on Establishing Information System of Each Stage to Adopt the Current Architecture Process Based BIM -Focusing on the Drawing and Form Composition Information-, Journal of the Korea Academia-Industrial Cooperation Society, 23(4), pp. 531-540. https://doi.org/10.5762/KAIS.2022.23.4.531
  14. Kim, W. J., Park, J. H., Cha, Y, O., Hyun, C, T., Han, S, W. (2016). Development of Checklist for BIM Model Requirements in Construction Phase, Korean Journal of Construction Engineering and Management, 20(1), pp. 22-31.
  15. Lau, S. E. N., Zakaria, R., Aminudin, E., Saar, C. C., Yusof, A., Wahid, C. M. F. H. C. (2018). A Review of Application Building Information Modeling (BIM) During Preconstruction Stage: Retrospective and Future Directions, IOP Conference Series: Earth and Environmental Science, 143(1), 012050. https://doi.org/10.1088/1755-1315/143/1/012050
  16. Lee, G., Park, H. K., Won, J. (2012). D3 City Project- Economic Impact of BIM-assisted Design Validation, Automation in Construction, 22, pp. 577-586. https://doi.org/10.1016/j.autcon.2011.12.003
  17. Li, X., Xu, J., Zhang, Q. (2017). Research on Construction Schedule Management Based on BIM Technology, Procedia Engineering, 174, pp. 657-667.
  18. Liu, Z., Osmani, M., Demian, P., Baldwin, A. (2015). A BIMaided Construction Waste Minimisation Framework, Automation in Construction, 59, pp. 1-23. https://doi.org/10.1016/j.autcon.2015.07.020
  19. Messner, J. (2023). BIM Project Execution Planning Guide, Vesion 3.0. Penn State Computer Integrated Construction Research Program. https://psu.pb.unizin.org/bimprojectexecutionplanning/.
  20. Morales, F., Herrera, R. F., Rivera, F. M. L., Atencio, E., Nunez, M. (2022). Potential Application of BIM in RFI in Building Projects, Buildings, 12(2), 145.
  21. Parsamehr, M., Perera, U. S., Dodanwala, T. C., Perera, P., Ruparathna, R. (2023). A Review of Construction Management Challenges and BIM-based Solutions: Perspectives from the Schedule, Cost, Quality, and Safety Management, Asian Journal of Civil Engineering, 24(1), pp. 353-389. https://doi.org/10.1007/s42107-022-00501-4
  22. Sompolgrunk, A., Banihashemi, S., Mohandes, S. R. (2023). Building Information Modelling (BIM) and the Return on Investment: A Systematic Analysis, Construction Innovation, 23(1), pp. 129-154. https://doi.org/10.1108/CI-06-2021-0119
  23. Sulankivi, K., Kahkönen, K., Makela, T., Kiviniemi, M. (2010). 4D-BIM for Construction Safety Planning, Proceedings of W099-special Track 18th CIB World Building Congress, 2010, pp. 117-128.
  24. Toyin, J. O., Mewomo, M. C. (2022). Overview of BIM Contributions in the Construction Phase: Review and Bibliometric Analysis, Journal of Information Technology in Construction, 28, pp. 500-514. https://doi.org/10.36680/j.itcon.2023.025
  25. Walasek, D., Barszcz, A. (2017). Analysis of the Adoption Rate of Building Information Modeling [BIM] and its Return on Investment [ROI], Procedia Engineering, 172, pp. 1227-1234. https://doi.org/10.1016/j.proeng.2017.02.144
  26. Wanberg, J., Harper, C., Hallowell, M. R., Rajendran, S. (2013). Relationship between Construction Safety and Quality Performance, Journal of Construction Engineering and Management, 139(10), 04013003.
  27. Whitlock, K., Abanda, F. H., Manjia, M. B., Pettang, C., Nkeng, G. E. (2018). BIM for Construction Site Logistics Management, Journal of Engineering, Project, and Production Management, 8(1), 47.
  28. Won, J., Lee, G. (2016). How to Tell if a BIM Project is Successful: A Goal-driven Approach, Automation in Construction, 69, pp. 34-43. https://doi.org/10.1016/j.autcon.2016.05.022
  29. Yoon, S, W., Kim, S, A., Choi, J, M., Kem, D, Y. (2015). A Proposal for Using BIM Model Created in Design to Construction Phase - Case Study on Preconstruction Adopting BIM -, Journal of Korean Institute of BIM, 5(4), pp. 1-10.