Safety and Security Science Group, TU Delft, Delft, The Netherlands.
Dipartimento di Ingegneria Civile e Industriale, Universita di Pisa, Pisa, Italy.
Risk Anal. 2017 Sep;37(9):1652-1667. doi: 10.1111/risa.12712. Epub 2016 Nov 10.
In the present study, we have introduced a methodology based on graph theory and multicriteria decision analysis for cost-effective fire protection of chemical plants subject to fire-induced domino effects. By modeling domino effects in chemical plants as a directed graph, the graph centrality measures such as out-closeness and betweenness scores can be used to identify the installations playing a key role in initiating and propagating potential domino effects. It is demonstrated that active fire protection of installations with the highest out-closeness score and passive fire protection of installations with the highest betweenness score are the most effective strategies for reducing the vulnerability of chemical plants to fire-induced domino effects. We have employed a dynamic graph analysis to investigate the impact of both the availability and the degradation of fire protection measures over time on the vulnerability of chemical plants. The results obtained from the graph analysis can further be prioritized using multicriteria decision analysis techniques such as the method of reference point to find the most cost-effective fire protection strategy.
在本研究中,我们提出了一种基于图论和多准则决策分析的方法,用于对易受火灾多米诺效应影响的化工厂进行具有成本效益的消防保护。通过将化工厂中的多米诺效应建模为有向图,可以使用图中心度度量(如出度接近度和中间中心度得分)来识别在引发和传播潜在多米诺效应中起关键作用的装置。结果表明,对具有最高出度接近度得分的装置进行主动消防保护,以及对具有最高中间中心度得分的装置进行被动消防保护,是降低化工厂易受火灾多米诺效应影响的最有效策略。我们采用动态图分析来研究随着时间的推移,消防措施的可用性和退化对化工厂脆弱性的影响。可以使用多准则决策分析技术(如参考点方法)对从图分析中获得的结果进行优先级排序,以找到最具成本效益的消防保护策略。