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Pipe-soil interaction for segmented buried pipelines subjected to dip faults

机译:倾覆断层下分段地下管道的管土相互作用

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This paper describes an investigation of pipe-soil interaction equations suggested by currently used pipeline seismic design codes and the applicability of these equations to segmented pipelines. The results of computer-aided analyses were compared to results obtained in full-scale experiments on a segmented ductile iron pipeline 93 mm in diameter and 15 m in length. The pipeline was installed 600 mm below the ground surface in a sandy soil compacted to two different subgrade reaction values. The type of fault considered was a reverse fault with an intersection angle of 60° with the pipeline, and the fault movement was a total of 350 mm in three same steps in the fault trace direction. The findings of this study demonstrate the necessity of considering the nature of soil behavior in pipe-soil interaction equations and the effects of connection joints on the integrated response of pipelines to fault-induced ground deformations. A new combination of equations constituting a direction-wise selection from among the equations proposed by currently used guidelines is introduced as a new series to describe pipe-soil interaction for segmented pipelines and is verified using the results of full-scale experiments.
机译:本文介绍了对当前使用的管道抗震设计规范建议的管土相互作用方程式的研究,以及这些方程式在分段管道中的适用性。将计算机辅助分析的结果与在直径为93 mm,长度为15 m的分段球墨铸铁管道上进行的全面实验获得的结果进行比较。管道安装在地面以下600毫米的沙土中,压实成两个不同的路基反应值。所考虑的故障类型是与管道相交角为60°的反向故障,并且在故障追踪方向上,在三个相同的步骤中,故障移动总计为350 mm。这项研究的结果表明,有必要考虑管土相互作用方程中土性的性质以及连接节对管道对断层引起的地面变形的综合响应的影响。介绍了一种新的组合公式,该组合构成了当前使用的指南提出的方程式中的一个方向选择项,作为描述分段管道的管-土相互作用的新系列,并已通过全面实验的结果进行了验证。

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