Articles:2022,Vol:27,Issue(3):129-143
Citation:
JIANG Weiyang, HE Xiaoliang, DU Hejia. Safety Risk Analysis of Large-scale Complex Project based on WBS-RBS and Interval Numbers[J]. International Journal of Plant Engineering and Management, 2022, 27(3): 129-143

Safety Risk Analysis of Large-scale Complex Project based on WBS-RBS and Interval Numbers
JIANG Weiyang, HE Xiaoliang, DU Hejia
Rocket Force University of Engineering, Xi'an 710025, China
Abstract:
Safety risks are essential to the success or failure of the large-scale complex projects. In order to assess and evaluate the safety risks of the large-scale complex projects scientifically, a risk assessment method of work breakdown structure and risk breakdown structure (WBSRBS) is proposed to identify the project risks. In this paper, interval numbers are used to evaluate the risk levels, weights are assigned automatically based on the complexity and risk degree of WBS to distinguish three types of nodes in WBS, and a risk assessment algorithm is designed to assess safety risk at all layers of the project. A case study is conducted to demonstrate how to apply the method. The results show the practicality, robustness and efficiency of our new method, which can be applied to different kinds of large-scale complex projects in reality.
Key words:    large-scale complex project    risk assessment    WBS-RBS    assign weights automatically   
Received: 2022-05-17     Revised:
DOI: 10.13434/j.cnki.1007-4546.2022.03001
Funds: This paper was supported by National Social Science Foundation of China(2019-SKJJ-035)
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Authors
JIANG Weiyang
HE Xiaoliang
DU Hejia

References:
[1] LI Y F, LIU Y C, HU D S, et al. Study on risk classification assessment method of hydropower station project based on risk matrix:taking Wudongde hydropower station as example[J]. Journal of Safety Science and Technology, 2020,16(1):130-134 (in Chinese)
[2] TIAN S M, SHI Z Z. The research on distinguishing the hazard source of weapon equipment and the methods of risk controlling[J]. Journal of Safety Science and Technology, 2007, 3(2):111-113 (in Chinese)
[3] HILLSON D. Using a risk breakdown structure in project management[J]. Journal of Facilities Management, 2003(1):85-97
[4] LIU Z, ZHANG W D. The application of WBS-RBS in copyright risk identification of net work information collection[J]. Documentation, Information & Knowledge, 2011(6):86-92 (in Chinese)
[5] HUANG W C, SHUAI B, ZHANG G Y. Improved WBS-RBS based identification of risks in railway transportation of dangerous goods[J]. China Safety Science Journal, 2018,28(8):93-99 (in Chinese)
[6] REN N, HAN B J, HE Y X. Project risk identification and assessment based on WBS-RBS-DSM[J]. Systems Engineering, 2014,32(11):96-100 (in Chinese)
[7] LU H Q, NIE F Y. Risk analysis of hazardous goods road transportation based on wbs-rbs and risk degree[J]. Industrial Safety and Environmental Protection, 2014,32(11):96-100 (in Chinese)
[8] GUO H D, LI H M, MENG H. Evaluation of construction enterprise safety management capability maturity based on ANP-interval number[J]. China Safety Science Journal, 2015,25(4):145-150 (in Chinese)
[9] ZHANG Y D, LYU S R, LIU F M. Study on model for system safety risk management and control capability maturity[J].China Safety Science Journal, 2017,27(12):56-61 (in Chinese)
[10] GB/T13861-2022 Classification and code for the hazardous and harmful factors in process[S]. 2022 (in Chinese)
[11] GB6441-1986 Classification standard for casualty accidents of employees in enterprises[S]. 1986 (in Chinese)
[12] WANG W, ZHANG M J. Risk indentification of data transaction infringement based on WBS-RBS[J]. Information Studies:Theory & Application, 2021,44(1):83-88 (in Chinese)