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Safety of buried steel natural gas pipelines under earthquake-induced ground shaking: A review

机译:地震引起的地震动下地下钢制天然气管道的安全性

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Evidence from past earthquakes suggests that damage inflicted to buried natural gas (NG) pipelines can cause long service disruptions, leading to unpredictably high socioeconomic losses in unprepared communities. In this review paper, we aim to critically revisit recent progress in the demanding field of seismic analysis, design and resilience assessment of buried steel NG pipelines. For this purpose, the existing literature and code provisions are surveyed and discussed while challenges and gaps are identified from a research, industrial and legislative perspective. It is underscored that, in contrast to common belief, transient ground deformations in non-uniform sites are not necessarily negligible and can induce undesirable deformations in the pipe, overlooked in the present standards of practice. It is further highlighted that the current seismic fragility framework is rich in empirical fragility relations but lacks analytical and experimental foundations that would permit the reliable assessment of the different parameters affecting the expected pipe damage rates. Pipeline network resilience is still in a developing stage, thus only few assessment methodologies are available whereas absent is a holistic approach to support informed decision-making towards the necessary mitigation measures. Nevertheless, there is ground for improvement by adapting existing knowledge from research on other types of lifeline networks, such as transportation networks. All above aspects are discussed and directions for future research are provided.
机译:过去地震的证据表明,埋没的天然气(NG)管道造成的损坏可能会导致长期服务中断,从而导致无准备的社区遭受不可预期的高社会经济损失。在这篇综述文章中,我们旨在批判性地回顾在地下NG钢管道的地震分析,设计和弹性评估等苛刻领域中的最新进展。为此,对现有的文献和法规进行了调查和讨论,同时从研究,行业和立法的角度确定了挑战和差距。要强调的是,与普遍的看法相反,非均匀部位的瞬时地面变形不一定可以忽略,而是会在管道中引起不希望的变形,这在当前的实践标准中被忽略了。需要进一步强调的是,当前的地震脆性框架具有丰富的经验脆性关系,但缺乏分析和实验基础,无法对影响预期管道损坏率的不同参数进行可靠的评估。管道网络的恢复能力仍处于发展阶段,因此只有很少的评估方法可用,而缺少评估方法则是一种全面的方法来支持明智的决策,以采取必要的缓解措施。然而,通过改编其他类型的生命线网络(例如运输网络)研究中的现有知识,可以为改进提供基础。讨论了以上所有方面,并提供了未来研究的方向。

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