对遭受技术危害的储罐进行动态脆弱性评估的新方法

IF 3.6 3区 工程技术 Q2 ENGINEERING, CHEMICAL
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引用次数: 0

摘要

储油罐很容易受到火灾或爆炸等灾难性技术危害的影响。虽然人们已多次尝试评估储罐在特定火灾或爆炸情况下的脆弱性,但却很少关注不同事故情景的不确定性和随时间变化的损害效应。本文开发了一种新方法来动态估算化学品储罐的易损性,并在统一的框架内研究了与储罐易损性相关的静态和动态因素。利用动态事件树对技术危险演变过程中的不确定性进行了离散化和评估,其中考虑了点火的动态可能性和潜在的情景转换。此外,还对物理效应的动态后果和随时间变化的破坏行为进行了详细研究,为更准确地评估坦克脆弱性提供了支持。案例研究表明,所开发的方法可以模拟技术危险的时空随机演变过程,并能对随时间变化的损害模式进行全面分析。此外,还对不同安全屏障的保护和缓解效果进行了评估和讨论,其结果对降低油库风险具有重要价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel methodology for dynamic vulnerability assessment of storage tank exposed to technological hazards
Storage tanks are vulnerable to catastrophic technological hazards such as fires or explosions. Although many attempts have been made to assess the tank vulnerability exposed to a certain fire or explosion, little attention has been paid to the uncertainties of diverse accident scenarios and time-dependent damage effects. In this paper, a novel methodology is developed to dynamically estimate the vulnerability of chemical storage tank, while the static and dynamic factors related to tank vulnerability are studied in a unified framework. The uncertainties in the evolution of technological hazard are discretized and assessed using the dynamic event tree, in which the dynamic possibility of ignition and potential scenario transition are taken into account. Furthermore, a detailed study of the dynamic consequence and time-dependent damage behavior of physical effects is conducted, supporting a more accurate assessment of tank vulnerability. The case study demonstrates that the developed methodology could simulate the stochastic process of spatio-temporal evolution of technological hazards and enable a comprehensive analysis of damage patterns over time. Besides, the protection and mitigation effects of different safety barriers are evaluated and discussed, the results are valuable for reducing the risks of tank farms.
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来源期刊
CiteScore
7.20
自引率
14.30%
发文量
226
审稿时长
52 days
期刊介绍: The broad scope of the journal is process safety. Process safety is defined as the prevention and mitigation of process-related injuries and damage arising from process incidents involving fire, explosion and toxic release. Such undesired events occur in the process industries during the use, storage, manufacture, handling, and transportation of highly hazardous chemicals.
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