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Development of Framework for Integrated Work-Risk Breakdown Structurebased on Fatal Incident Cases in Construction Industry

중대재해 사례에 기반한 건설업의 작업 및 위험분류체계 통합 프레임워크 개발

  • Jeong, Jaemin (Department of Safety Engineering, Seoul National University of Science and Technology) ;
  • Jeong, Jaewook (Department of Safety Engineering, Seoul National University of Science and Technology)
  • 정재민 (서울과학기술대학교 안전공학과) ;
  • 정재욱 (서울과학기술대학교 안전공학과)
  • Received : 2020.01.22
  • Accepted : 2020.03.16
  • Published : 2020.05.31

Abstract

Since an accident in construction industry has been higher than others for decades, the accident in construction industry should be decreased. To prevention this problem, the work breakdown structure (WBS) and risk breakdown structure (RBS) are presented. the WBS and RBS, are hierarchy structure which can find fatal incident considering type of building and type of work easily and quickly. So, this study aims to develop framework for the integrated WBS-RBS to prevent fatal incident on construction industry. The research process is conducted by following 3 steps: (I) collection of data; (II) classification of data; and (III) development of the integrated WBS-RBS. The result of this study can propose the most dangerous fatal incident aspect of type of building, type of work, and type of accident. Through the result, the decision maker can reduce or eliminate fatal incident considering type of building, type of work and type of accident in construction industry.

건설업에서의 재해는 수십 년 동안 다른 산업보다 많이 발생하였기 때문에, 건설업에서의 재해는 반드시 줄여야 한다. 이러한 문제를 해결하기 위해서 작업분류체계(WBS) 및 위험분류체계(RBS)를 제시하였다. WBS와 RBS는 계층적 구조로 작업 및 위험 단위를 쉽고, 빠르게 찾을 수 있다. 그래서 본 연구에서는 건설업에서의 재해를 예방하기 위해 통합 WBS-RBS 프레임워크를 개발하고자 한다. 연구의 순서 다음과 같은 3단계로 진행되었다. ① 데이터 수집 ② 데이터 분류 ③ 통합 WBS-RBS 프레임워크 개발 순으로 진행되었다. 연구의 결과 가장 사고가 많이 발생한 건물용도, 건설공종 및 재해요인을 제시할 수 있었다. 연구 결과를 통해 의사결정자는 건물용도, 건설공종, 및 재해요인의 위험 수준을 고려할 수 있다.

Keywords

References

  1. Alruqi, W.M., Hallowell, M.R., and Techera, U. (2018). "Safety climate dimensions and their relationship to construction safety performance: A meta-analytic review." Safety science, 109, pp. 165-173. https://doi.org/10.1016/j.ssci.2018.05.019
  2. Amini, R.A., and Latief, Y. (2018). "Development of Risk-Based Standardized WBS (Work Breakdown Structure) for Quality Planning of Road Construction Project." In 8th International Conference on Industrial Engineering and Operations Management, Bandung, Indonesia.
  3. BUILDING ACT (2019). (Feb. 24, 2020).
  4. Cho, Y.R., Shin, Y.S., and Shin, J.K. (2017). "Checklist Development for Prevention of Safety Accidents in Form Work in Small and Medium Sized Construction Sites." Journal of the Korea Institute of Building Construction, 17(6), pp. 587-594. https://doi.org/10.5345/JKIBC.2017.17.6.587
  5. ENFORCEMENT DECREE OF THE BUILDING ACT (2020). (Feb. 24, 2020).
  6. Guo, B.H., Yiu, T.W., and González, V.A. (2016). "Predicting safety behavior in the construction industry: Development and test of an integrative model." Safety science, 84, pp. 1-11. https://doi.org/10.1016/j.ssci.2015.11.020
  7. Kim, B., Lee, J.S., and Ahn, Y.H. (2018). "Development of Risk Breakdown Structure of Nuclear Power Plant Decommissioning Project: Focusing on Structural Damage/Work Process Risks." Journal of the Korea institute for structural maintenance and inspection, 22(3), pp. 38-45. https://doi.org/10.11112/JKSMI.2018.22.3.038
  8. Kim, J.S., and Kim, B.S. (2019). "Characteristics Analysis of Seasonal Construction Site Fall Accident using Text Mining." Korean Journal of Construction Engineering and Management, 20(3), pp. 113-121. https://doi.org/10.6106/KJCEM.2019.20.3.113
  9. Kim, J.M., Lee, J.B., and Chang, S.R. (2017). "Risk Level Analysis of Architectural Work using AHP." Journal of the Korean Society of Safety, 32(5), pp. 96-102. https://doi.org/10.14346/JKOSOS.2017.32.5.96
  10. Kim, K.J., Choi, B.S., and Chun, J.Y. (2016). "Safety Management Factor Analysis of Expert Perceptions Based on 4M Method for Plant Construction Phase." Korean Journal of Construction Engineering and Management, KICEM, 17(1), pp. 18-27. https://doi.org/10.6106/KJCEM.2016.17.1.018
  11. Korea Construction Standards Center (KSCS) (2020). (Feb. 24, 2020).
  12. Korea Institute of Civil engineering and building Technology (KICT) (2019). "Estimating Standards 2019." (Dec. 15, 2019).
  13. Korea Occupational Safety and Health Agency (KOSHA) (2018). "Fatal accident and Prevention measure in construction." (Feb. 24, 2020).
  14. Lee, J.B., Ro, M.R., and Go, S.S. (2004). "The Property of Building Construction Accident According to the Analysis of Building Accident Cases." Journal of the Korean Society of Safety, 19(3), pp. 101-107.
  15. Li, Q.F., Zhang, P., and Fu, Y.C. (2013). "Risk identification for the construction phases of the large bridge based on WBS-RBS." Research Journal of Applied Sciences, Engineering and Technology, 6(9), pp. 1523-1530. https://doi.org/10.19026/rjaset.6.3863
  16. Lopez, M.A.C., Ritzel, D.O., Fontaneda, I., and Alcantara, O.J.G. (2008). "Construction industry accidents in Spain." Journal of safety research, 39(5), pp. 497-507. https://doi.org/10.1016/j.jsr.2008.07.006
  17. Ministry of Employment and Labor (2019). A report on industrial accidents in 2018, 2019-05.
  18. Moon M.W., and Yang K.Y. (1996). "A Study on the Major Contruction Accidents Analysis using Work Classification System." Proceedings of the architectural institute of korea structure & construction conference, 16(2), pp. 711-713.
  19. Occupational Safety & Health Research Institute (2018). The Introduction of the OSH Corporate Disclosure System with the focus on how to estimating the direct and indirect costs of work injuries.
  20. Rozenfeld, O., Sacks, R., Rosenfeld, Y., and Baum, H. (2010). "Construction job safety analysis." Safety science, 48(4), pp. 491-498. https://doi.org/10.1016/j.ssci.2009.12.017
  21. Siami-Irdemoosa, E., Dindarloo, S.R., and Sharifzadeh, M. (2015). "Work breakdown structure (WBS) development for underground construction." Automation in Construction, 58, pp. 85-94. https://doi.org/10.1016/j.autcon.2015.07.016
  22. Sigmund, Z., and Radujkovic, M. (2014). "Risk breakdown structure for construction projects on existing buildings." Procedia-Social and Behavioral Sciences, 119, pp. 894-901. https://doi.org/10.1016/j.sbspro.2014.03.100
  23. Suarez-Cebador, M., Rubio-Romero, J.C., and López-Arquillos, A. (2014). "Severity of electrical accidents in the construction industry in Spain." Journal of safety research, 48, pp. 63-70. https://doi.org/10.1016/j.jsr.2013.12.002
  24. Supriadi, L.S.R., Latief, Y., Susilo, B., and Rajasa, M. (2017). "Development of risk-based standardized WBS (Work Breakdown Structure) for cost estimation of apartment's project." International Journal of Civil Engineering and Technology, 8, pp. 822-833.
  25. Sutrisna, M., Ramanayaka, C.D., and Goulding, J.S. (2018). "Developing work breakdown structure matrix for managing offsite construction projects." Architectural Engineering and Design Management, 14(5), 381-397. https://doi.org/10.1080/17452007.2018.1477728
  26. Vongpisal, C., and Yodpijit, N. (2017). "Construction accidents in Thailand: Statistical data analysis. King Mongkut's University of Technology North Bangkok." International Journal of Applied Science and Technology, 10(1). pp. 7-21.
  27. Xu, K.,Li,H.M., and Lu, S.S. (2014). "Safety Risk Analysis of Box-Culvert Jacking Construction by Using Fuzzy Fault Tree Method Based on WBS-RBS." In Advanced Materials Research, 838, pp. 355-359. https://doi.org/10.4028/www.scientific.net/AMR.838-841.355
  28. Yang, Y.J., Oh, S.H., and Noh, J.K. (2018). "Risk Assessment of Agricultural Construction Works using Accident Analysis and Analytic Hierarchy Process." Journal of The Korean Society of Agricultural Engineers, 60(4), pp. 15-25. https://doi.org/10.5389/KSAE.2018.60.4.015
  29. Zhou, Z., Goh, Y.M., and Li, Q. (2015). "Overview and analysis of safety management studies in the construction industry." Safety science, 72, pp. 337-350. https://doi.org/10.1016/j.ssci.2014.10.006