故障树分析
贝叶斯网络
钥匙(锁)
事件树
计算机科学
贝叶斯概率
贝叶斯推理
工程类
消防
推论
风险评估
树形图
风险分析(工程)
事故(哲学)
消防安全
树(集合论)
控制(管理)
防火
运筹学
可靠性工程
数据挖掘
后验概率
根本原因分析
消防
灵敏度(控制系统)
风险管理
消防系统
安全工程
消防工程
防火
断层(地质)
系统安全
软件
动态贝叶斯网络
根本原因
人工智能
事件树分析
决策树
作者
Yushan Zhao,Hui Liu,Bingrui Tong,Cong He,Junjie Zhu
标识
DOI:10.1021/acs.chas.5c00134
摘要
The rapid expansion of higher education has introduced new safety challenges in university laboratories, where fire incidents now represent a critical threat to campus safety. In this paper, we propose a method for analyzing the causes of fire accidents by combining Fault Tree Analysis (FTA) and Bayesian Network (BN), which breaks through the limitations of the static analysis of traditional risk assessment. Based on accident cases at home and abroad, the direct and indirect causes of fires in university laboratories were analyzed by using the accident tree. The fire accident tree of the university laboratory, containing 21 basic events, was constructed and mapped into a Bayesian model with dynamic reasoning ability according to the transformation principle. The model was then optimized according to the actual situation. GENIE5.0 software was used for quantitative analysis, forward reasoning of the occurrence probability of fire accidents, and reverse inference of the posterior probability of the root node. The key factors of fires were determined through probability importance analysis and sensitivity analysis. The analysis results show that the probability of laboratory fire is 2.39%, and the three key risk factors are unreasonable storage of combustibles, insufficient or ineffective laboratory fire extinguishing equipment, and chemical reaction. Prevention and control measures such as “five fixed management” and virtual reality emergency drills are proposed to provide a basis for fire analysis and prevention in university laboratories.
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