Author:
Zhen Zhixin,Wu Xu,Ma Bo,Zhao Huijie,Zhang Ying
Abstract
AbstractThe tailings dam system is complex, and the dam structure changes continuously over time, which can make it difficult to identify key hazards of failure and characterize the accident formation process. To solve the above problems, based on complex network theory, the paper uses the identified hazards and the relationship between hazards to construct the propagation network of tailings dam failure risk (PNTDFR). The traditional analysis methods of network centrality usually focus on one aspect of the information of the network, while it cannot take into account to absorb the advantages of different methods, resulting in the difference between identified key nodes and real key hazards. To find the key hazards of tailing dam failure, based on the characteristics of multi-stage propagation of failure risk, the paper proposes a multi-stage collaborative hazard remediation method (MCHRM) to determine the importance of hazard nodes by absorbing the advantages of different centrality methods under different hazard remediation (deletion) ratios. The paper applies the above methods to Feijão Dam I. It can be found that when the priority remediation range is increased to 45%, the key hazards obtained by the MCHRM will cover all the causes of accidents proposed by the Dam I failure investigation expert group. Besides, the paper compares the monitoring data, daily inspection results and safety evaluation information of key hazards with the ‘Grading standards of hazard indicators’, and obtains the formation process of the Dam I failure and 30 key hazards in trigger state.
Funder
National Key Research and Development Program of China
Beijing Municipal Natural Science Foundation
Publisher
Springer Science and Business Media LLC
Reference38 articles.
1. Robertson, P. K., de Melo, L., Williams, D. J., et al. Report of the expert panel on the technical causes of the failure of Feijão Dam I. Commissioned by Vale, (2019).
2. De Lima, R. E. et al. An anthropogenic flow type gravitational mass movement: the Córrego do Feijão tailings dam disaster, Brumadinho, Brazil. Landslides 17(12), 2895–2906 (2020).
3. Zhaodong, Li. Identification and control of disaster-causing factors in tailing ponds (Northeastern University, 2008).
4. Nascimento, F., Majumdar, A., Ochieng, W.Y., et al. A multistage multinational triangulation approach to hazard identification in night-time offshore helicopter operations. Reliab. Eng. Syst. Saf. 108, 142–153 (2012).
5. Alizadehsalehi, S., Yitmen, I., Celik, T., et al. The effectiveness of an integrated BIM/UAV model in managing safety on construction sites. International journal of occupational safety and ergonomics: JOSE, 26, 829–844 (2018).
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献