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Pipeline Performances under Earthquake-Induced Soil Liquefaction: State of the Art on Real Observations, Model Tests, and Numerical Simulations

机译:地震诱导土壤液化下的管道演出:现有技术的真实观察,模型试验和数值模拟

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The design and the manufacture of the oil and gas pipelines are being improved over the years in response to the observed damages and related disastrous effects. The improvements are possible, thanks to the increasing knowledge about pipeline performances in specific contexts. The seismic hazard on buried pipelines has always been of major concern, and the earthquake-induced soil liquefaction effects are among the most important issues to be accounted for in the design. Experiences based on case histories, experimental modelling, and numerical simulations represent the source of understanding of the involved mechanisms, the affecting parameters, and the structure response. Recently, all these aspects are becoming more accurate, thanks to the use of monitoring systems. The protection of pipelines from the seismic hazard is a crucial and challenging issue. This paper provides an overview of the research that has been conducted over the years in the specific framework of soil liquefaction phenomenon. Case histories on pipeline performances, commonly adopted analytical methods, and results of model tests and numerical simulations are summarized with main focus on the level of knowledge achieved up to date and the existing limitations that represent open issues for further development of the research. This study represents a useful background to be adopted from academics and practitioners in order to enhance the methods of analyses of the pipelines, thus improving their performances in the applications of the oil and gas industry.
机译:多年来,在观察到的损害和相关灾难性效应的年内,石油和天然气管道的设计和制造正在提高。由于在特定上下文中越来越多地了解管道性能的知识,因此可以改善。埋地管道上的地震危害一直是主要的关注,地震诱导的土壤液化效应是设计中最重要的问题之一。基于案例历史,实验建模和数值模拟的经验代表了对所涉及的机制,影响参数和结构响应的理解来源。最近,由于使用监控系统,所有这些方面都变得更加准确。从地震危害中保护管道是一个至关重要的问题。本文概述了多年来在土壤液化现象的具体框架中进行的研究概述。关于管道性能的案例历史,通常采用的分析方法和模型测试结果和数值模拟的结果总结了主要关注日期所取得的知识水平以及代表研究进一步发展的公开问题的现有限制。本研究代表了学术界和从业者采用的有用背景,以提高管道分析方法,从而提高石油和天然气工业应用中的表现。

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