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Quantitative Risk Assessment of a Natural Gas Pipeline in an Underground Utility Tunnel

机译:地下公用工程隧道中天然气管道的定量风险评估

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摘要

With rapid urbanization in China, many underground utility tunnels have been established these years. This huge underground construction facilitates city life, but may introduce societal risks due to the installation of high-risk pipelines. Natural gas pipelines have the potential to cause catastrophic accident if a gas leakage and a subsequent explosion occurs. The potential hazards in the gas compartments of a utility tunnel are quite different from those in conventional directly buried gas pipelines. This study developed a dynamic quantitative risk analysis method for natural gas pipelines in a utility tunnel. First, potential accident scenarios of natural gas pipelines situated in a utility tunnel were identified and implemented in a Bow-tie diagram based on case studies of typical gas pipeline accidents and expert experience. Then, a Bayesian network was established from the Bow-tie diagram using a mapping algorithm. Based on a comprehensive analysis of the results of probability updating and sensitivity analysis, critical influencing factors were identified. The proposed framework provides a predictive analysis of the gas pipeline accident evolution process from causes to consequences and examines key challenges in gas pipeline risk management in utility tunnels. (c) 2019 American Institute of Chemical Engineers Process Saf Prog: e12051 2019
机译:随着中国城市化的迅速发展,近年来建立了许多地下公用隧道。巨大的地下建筑便利了城市生活,但由于安装了高风险管道,可能会带来社会风险。如果发生天然气泄漏和随后的爆炸,天然气管道有可能导致灾难性事故。公用事业隧道的气室中的潜在危害与传统的直接埋入天然气管道中的危害完全不同。这项研究开发了一种用于公用事业隧道中天然气管道的动态定量风险分析方法。首先,根据典型天然气管道事故的案例研究和专家经验,以领结图的形式确定并实施了位于公用事业隧道中的天然气管道的潜在事故场景。然后,使用映射算法从Bow-tie图建立贝叶斯网络。在对概率更新结果和敏感性分析进行综合分析的基础上,确定了关键影响因素。拟议的框架提供了从原因到后果的天然气管道事故演变过程的预测分析,并研究了公用事业隧道中天然气管道风险管理中的主要挑战。 (c)2019美国化学工程师学会工艺研究进展:e12051 2019

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