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Seismic Behaviour of Buried Pipelines: 3D Finite Element Approach

机译:地下管道的抗震性能:3D有限元方法

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This paper presents a numerical investigation on six pipeline models to study the seismic response of single and double buried pipelines using finite element method. Different depth and spacing of pipes are considered to investigate their prominent role in the seismic response of buried pipelines under an earthquake loading having PGA of 0.2468 g. In case of single pipeline, the maximum magnitude of final displacement as well as the stress at the end of the seismic sequence is found at the burial depth equal to the pipe diameter. In case of double pipeline, the maximum magnitude of final displacement is found when the spacing between pipes is equal to half the pipe diameter and there is an increasing tendency of developed stress with increase in spacing between pipes. In addition to the above results, the response of the buried pipelines with a particular bend angle (artificially induced bend/buckle) to the permanent ground deformation which is assumed to be the result of seismic wave propagation has also been studied. Remarkable differences in these results are obtained and with these results the designers can reduce seismic risk to their buried pipelines by taking proper precautionary measures.
机译:本文对六个管道模型进行了数值研究,以利用有限元方法研究单埋和双埋管道的地震响应。考虑了不同深度和间距的管道,以研究它们在PGA为0.2468 g的地震荷载下对地下管道地震响应的显著作用。对于单条管道,在等于管道直径的埋藏深度处发现了最终位移的最大值以及地震序列末尾的应力。在双管道的情况下,当管道之间的间距等于管道直径的一半时,可以找到最大位移的最终值,并且随着管道之间间距的增加,出现应力的趋势会越来越大。除上述结果外,还研究了具有特定弯曲角度(人工引起的弯曲/屈曲)的地下管道对永久地基变形的响应,该变形被认为是地震波传播的结果。这些结果有显着差异,设计人员可以通过采取适当的预防措施来降低埋入管道的地震危险。

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