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Underground pipeline response to earthquake-induced ground deformation

机译:地下管道对地震引起的地面变形的响应

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摘要

The principal causes of earthquake-induced ground deformation are identified and their interaction with underground infrastructure, primarily pipelines and conduits, is described. The coupled forces normal and parallel to underground pipelines arising from earthquake-induced ground movement are evaluated, including a review of measured stresses on pipe surfaces during large-scale testing, evaluation of frictional forces related to soil-pipe interaction, and the resolution of interaction forces along and across pipelines. Methods for characterizing soil reaction to pipe lateral and vertical movements are presented. The maximum downward pipe force is only about one-third the maximum force determined with conventional bearing capacity equations, thus requiring changes in current analytical and design practice. The analytical results for pipeline response to strike-slip and normal fault rupture are shown to compare favorably with the results of both large-scale and centrifuge tests of soil-pipeline interaction simulating these types of severe ground deformation. Published by Elsevier Ltd.
机译:确定了地震引起的地面变形的主要原因,并描述了它们与地下基础设施(主要是管道和管道)的相互作用。评估了地震引起的地面运动引起的垂直于地下管道的平行力和平行于地下管道的耦合力,包括在大规模测试中对管道表面应力的评估,与土管相互作用相关的摩擦力的评估以及相互作用的分辨率沿管道的力量。提出了表征土壤对管道横向和纵向运动反应的方法。最大的向下管道作用力仅为常规轴承承载力方程式确定的最大作用力的三分之一,因此需要对当前的分析和设计实践进行更改。结果表明,管道对走滑和正常断裂的响应的分析结果与模拟这些严重地面变形的土壤管道相互作用的大规模试验和离心试验的结果相比具有优势。由Elsevier Ltd.发布

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