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Downwards force-displacement response of buried pipelines during dip-slip faulting in sandy soil

机译:埋藏管道在砂土中浸析断层期间埋地管道的向下力响应

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摘要

In the numerical analysis of underground pipelines against dip-slip faulting, it is common practice to model the problem as a beam surrounded by soil-equivalent nonlinear springs. Previous studies have recognised the importance of the vertical bearing soil springs (VBSS) in the modelling of pipe-fault interaction. Nevertheless, prior studies on VBSS are limited. This study presents an analytical framework for determining a hyperbolic force-displacement (P-y) curve for VBSS in dry sand. This hyperbolic criterion was established based on the ultimate bearing resistance (UBR) of pipe and the elastic subgrade modulus of the soil. Different mechanisms such as flow, arching, bearing, and friction, and various parameters like soil compressibility, pipe-soil relative stiffness, and soil elastic properties have been used in the determination of these two parameters. The P-y curves were verified and calibrated with experimental data. More reliable curves have been obtained compared to the existing methods. A numerical study was also performed to compare the current study with a pipeline seismic design guideline. The results of the current study method are in good agreement with sample experimental data compared to the seismic guideline.
机译:在针对倾滑断层作用的地下管道数值分析中,通常将问题建模为一个由土壤等效非线性弹簧包围的梁。以往的研究已经认识到垂直支承土弹簧(VBS)在管道-断层相互作用建模中的重要性。然而,之前对VBS的研究有限。本研究提出了一个分析框架,用于确定干砂中VBSS的双曲线力-位移(P-y)曲线。该双曲线准则是基于管道的极限承载力(UBR)和土壤的弹性地基模量建立的。在确定这两个参数时,使用了不同的机制,如流动、拱起、支承和摩擦,以及土壤压缩性、管土相对刚度和土壤弹性性质等各种参数。用实验数据对P-y曲线进行了验证和校准。与现有方法相比,获得了更可靠的曲线。还进行了数值研究,将当前研究与管道抗震设计指南进行了比较。与地震准则相比,目前的研究方法的结果与样品实验数据吻合良好。

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