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철도인프라 BIM 성과관리를 위한 업무 및 성과기록 표준 템플릿 개발

Development of Business and Performance Record Standard Template for Rail Infrastructure BIM Performance Management

  • 신민호 (우송대학교 철도건설시스템학부) ;
  • 김환용 (한양대학교 ERICA 건축학부) ;
  • 최영우 (인천대학교 도시건축학부) ;
  • 한상천 (인천대학교 도시건축학부)
  • 투고 : 2020.12.01
  • 심사 : 2020.12.03
  • 발행 : 2020.12.31

초록

Recently, the government has actively promoted the introduction of BIM at the national level to improve the efficiency and productivity of the construction industry, and private interest in the application of BIM has also increased. However, despite the large amount of references and information, not much research has been done in quantitative ways to accurately measure the performance of BIM projects. The purpose of this study is to review performance measurement cases using ROI, investment effect analysis, and queue model analysis using domestic and overseas BIM guideline research and to present standard templates that can quantitatively measure BIM performance records according to domestic conditions based on this. Performance measurement trends and cases according to the application of BIM were analyzed, and nine quantification elements were derived from this, and based on this, a performance measurement data collection template at the BIM life cycle stage was prepared. Detailed items and contents were prepared for the nine quantification elements, and the final template consisted of a total of 43 questions, divided into the entire stage (15), the beginning (8), the middle (8), and the latter (12) areas. It is expected that by using the standard template of railway BIM performance records developed in this study, the BIM design stage will be diagnosed and the deficiencies will be supplemented, which will be the basic data for measuring actual quantitative performance in all life cycle performance of future BIM projects.

키워드

참고문헌

  1. An. J. W., Yun. S. H. (2019). A Basic Study on the Development of the BIM Service Level Assessment Process, Journal of the Korea Institute of Building Construction, 19(5), pp. 87-93.
  2. Cha. H. S., Kim. J. (2020). A Study on 3D/BIM-based on site performance measurement system for building construction, Journal of Asian Architecture and Building Engineering, 19(3), pp. 1-12. https://doi.org/10.1080/13467581.2019.1696206
  3. Dariusz W., Arkadiusz B. (2017). Analysis of the adoption rate of Building Information Modeling [BIM] and its Return on Investment [ROI], Journal of the Procedia Engineering, 172, pp. 1227-1234. https://doi.org/10.1016/j.proeng.2017.02.144
  4. Guo. J., Liu. J., Wang J., Deng X. (2019). Research on the Application of BIM Technology in Whole Process Cost Management, IOP Conference Series: Earth and Environment Science, 242, pp.1-5.
  5. Ham. N. H., Kim. J. J. (2015). A Case Study on BIM Operating and Performance Measurement in Construction Phase, Journal of the Building Information Modeling Institute of Korea, 5(2), pp. 1-5.
  6. Ham. N. H.. Yuh. O. K., Ji. K. H. (2018). Empirical Evaluation of BIM Coordinator Performance using Queuing Model in Construction Phase, Journal of the Building Information Modeling Institute of Korea, 8(3), pp. 31-42.
  7. Ilias. K., Eleni. P., Giorgio. L., Ornella. l. (2019). Towards a methodology for quantifying the benefits of BIM, European Conference on Computing in Construction, pp. 19-24.
  8. Kim. H. J., Yoo. M. Y., Kim. J. J., Choi. C. S. (2017). Performance Analysis of BIM Labor using Case Analysis, Journal of the Building Information Modeling Institute of Korea, 7(3), pp. 31-39.
  9. Korea Railroad Research Institute (2018). Development of BIM-based Standard Management Technology for Railway Infrastructure.
  10. Korea Railroad Research Institute (2018). Rail Infrastructure BIM Guidelines VER 1.0
  11. Lee. J. G., Lee. H. S., Park. M. S., Kim. S. Y. (2016). Selecting Quantifiable Indicators for Evaluating BIM-based Design Collaboration Performance, Journal of the Architecture Institute of Korea, 32(10) pp. 35-43.
  12. Lee. G. I., Park. J. J., Choi. H. L., Shin. M. H., (2018). A Study on the Development of BIM based Railway Infrastructure Information Management System for the Analysis of BIM Applications in Government and Public Agencies, Journal of the Building Information Modeling Institute of Korea, 8(1), pp. 1-14.
  13. Ministry of Land, Infrastructure and Transport (2018). Rail BIM 2030 Roadmap. http://big.yonsei.ac.kr/railbim/reports/RailBIM2030Roadmap_Full_Kr_Final.pdf (November. 5. 2020).
  14. Noor. A. A. I., Nur. H. I., Hazwani. R. S. (2018). Sustainable BIM-Based Cost Estimating for Quantity Surveyors, Article in Chemical Engineering Transactions, 63, pp. 235-240.
  15. Ruben. V., Alexander. K. (2018). Modelling and Simulating Time Use of Site Workers With 4D BIM, Conference of the International. Group for Lean Construction, pp. 155-165.
  16. Shin. J. H., Choi. J. S., Kim. I. H. (2016). Development of IT BSC-based Assessment System to Measure BIM Performance for Architectural Design Firms, Journal of the Architectural Institute of Korea, 32(1), pp. 3-12.
  17. Son. H. I., Ock. J. H. (2016). A Study on the BIM ROI Measurement Method in Architectureal design Firm, Journal of the Society for Computational Design and Engineering, 21(3), pp. 267-280.
  18. Song. S. H., Bang. J. D., Sohn. J. R. (2019). Identification of Major BIM-applicable Tasks with Contribution to Achieving Objectives and Expected Benefit in Construction Stage, Journal of the Building Information Modeling Institute of Korea, 9(3), pp. 41-53.