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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Security vulnerability assessment of gas pipelines using Discrete-time Bayesian network
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Security vulnerability assessment of gas pipelines using Discrete-time Bayesian network

机译:使用离散时间贝叶斯网络的燃气管道安全脆弱性评估

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摘要

Security of chemical and oil & gas facilities became a pressing issue after the terrorist attacks of 9/11, due to relevant quantities of hazardous substances that may be present in these sites. Oil & gas pipelines, connecting such facilities, might be potential targets for intentional attacks. The majority of methods addressing pipeline security are mostly qualitative or semi-quantitative, based on expert judgment and thus potentially subjective. In the present study, an innovative security vulnerability assessment methodology is developed, based on Discrete-time Bayesian network (DTBN) technique to investigate the vulnerability of a hazardous facility (pipeline in this study) considering the performance of security countermeasures in place. The methodology is applied to an illustrative gas pipeline in order to rank order the pipeline segments based upon their criticality. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于这些位点中可能存在的有害物质,化学和石油和天然气设施的安全性成为9/11的恐怖袭击事件。 提供这些设施的石油和天然气管道可能是故意攻击的潜在目标。 根据专家判断,解决管道安全的大多数方法主要是定性或半定量的,因此可能是主观的。 在本研究中,基于离散时间贝叶斯网络(DTBN)技术来调查危险设施(本研究中的管道)的脆弱性的创新安全漏洞评估方法是考虑到安全对策到位的性能。 该方法应用于说明性气体管道,以基于它们的临界性对管道区段进行排序。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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