中国安全科学学报 ›› 2026, Vol. 36 ›› Issue (5): 27-37.doi: 10.16265/j.cnki.issn1003-3033.2026.05.1176

• 安全技术与工程 • 上一篇    下一篇

基于SFEP-SD的高海拔地区水电工程施工安全风险传递路径研究

江新1,2(), 曹路2,**(), 杨静2, 李冰姿2, 晋良海1,2   

  1. 1 三峡大学 水电工程施工与管理湖北省重点实验室, 湖北 宜昌 443002
    2 三峡大学 水利与环境学院, 湖北 宜昌 443002
  • 收稿日期:2025-12-25 修回日期:2026-03-02 出版日期:2026-05-28
  • 通信作者:
    ** 曹路(1997—),男,湖北武汉人,硕士研究生,主要研究方向为水利水电工程施工与管理、系统决策理论及安全评价。E-mail:
  • 作者简介:

    江 新 (1966—),男,安徽寿县人,硕士,教授,主要从事工程项目群管理、系统决策理论及安全评价等方面的研究。E-mail:

    晋良海 教授

  • 基金资助:
    国家自然科学基金资助(52179136)

Research on safety risk transmission paths of hydropower engineering construction in high-altitude area based on SFEP-SD

Jiang Xin1,2(), Cao Lu2,**(), Yang Jing2, Li Bingzi2, Jin Lianghai1,2   

  1. 1 Hubei Key Laboratory of Construction and Management in Hydropower Engineering, China Three Gorges University, Yichang Hubei 443002, China
    2 College of Hydraulic & Environmental Engineering, China Three Gorges University, Yichang Hubei 443002, China
  • Received:2025-12-25 Revised:2026-03-02 Published:2026-05-28

摘要:

为管控风险传递,降低施工安全事故发生概率,探究高海拔地区水电工程施工安全风险传递的演化过程和特征。首先,基于高海拔地区水电工程施工事故报告和4M1E理论,从人员、机械设备及材料、管理、技术和环境5个方面构建施工安全风险因素体系,采用决策试验和评价试验法(DEMATEL)分析风险因素引发的风险事件;然后,基于系统故障演化过程(SFEP)理论建立施工安全风险传递网络,通过关联规则计算各路径风险传递概率;利用系统动力学(SD)构建施工安全风险传递网络SD模型;最后,以西藏某大型水电工程为例,开展仿真验证。结果表明:施工安全风险传递网络SD模型揭示了从17种边缘事件、15种过程事件至5种最终事件的29条风险传递路径及其演化趋势与敏感性,确定环境与管理风险事件为关键节点,识别出3条关键传递路径。据此,立足关键节点与关键路径阻断风险传递,有效降低事件发生与演化概率,减少施工安全事故。

关键词: 高海拔地区水电工程, 施工安全风险, 风险传递路径, 系统故障演化过程(SFEP), 系统动力学(SD)

Abstract:

To manage risk transmission and reduce the probability of construction safety accidents, the evolution process and characteristics of construction safety risk transmission in high-altitude areas were explored. Firstly, based on construction accident reports of hydropower projects in high-altitude areas and the 4M1E theory, a construction safety risk factor system was constructed from five aspects: personnel, machinery and equipment, materials, management, technology, and environment. The Decision-Making Experiment and Assessment Technique (DEMATEL) was used to analyze risk events triggered by risk factors. Then, based on the SFEP theory, a construction safety risk transmission network was established, and the risk transmission probability of each path was calculated through association rules. The SD method was utilized to construct an SD model of the construction safety risk transmission network. Finally, a large hydropower project in Xizang was taken as an example for simulation verification. The results show that the SD model of the construction safety risk transmission network reveals 29 risk transmission paths from 17 edge events, 15 process events, to 5 final events, as well as their evolution trends and sensitivities. Environmental and management risk events are identified as key nodes, and three key transmission paths are identified. Based on this, targeted risk transmission prevention and control measures are proposed, providing a theoretical basis for the management of construction safety risks in hydropower projects in high-altitude areas.

Key words: hydropower projects in high-altitude areas, construction safety risk, risk transmission paths, system fault evolution process (SFEP), system dynamics (SD)

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