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Finite element analysis of buried steel pipelines under strike-slip fault displacements

机译:走滑断层位移下埋地钢管的有限元分析

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The present paper investigates the mechanical behavior of buried steel pipelines, crossing an active strike-slip tectonic fault. The fault is normal to the pipeline direction and moves in the horizontal direction, causing stress and deformation in the pipeline. The interacting soil-pipeline system is modelled rigorously through finite elements, which account for large strains and displacements, nonlinear material behavior and special conditions of contact and friction on the soil-pipe interface. Considering steel pipelines of various diameter-to-thickness ratios, and typical steel material for pipeline applications (API 5L grades X65 and X80), the paper focuses on the effects of various soil and pipeline parameters on the structural response of the pipe, with particular emphasis on identifying pipeline failure (pipe wall wrinkling/local buckling or rupture). The effects of shear soil strength, soil stiffness, horizontal fault displacement, width of the fault slip zone are investigated. Furthermore, the influence of internal pressure on the structural response is examined. The results from the present investigation are aimed at determining the fault displacement at which the pipeline fails and can be used for pipeline design purposes. The results are presented in diagram form, which depicts the critical fault displacement, and the corresponding critical strain versus the pipe diameter-to-thickness ratio. A simplified analytical model is also developed to illustrate the counteracting effects of bending and axial stretching. The numerical results for the critical strain are also compared with the recent provisions of EN 1998-4 and ASCE MOP 119.
机译:本文研究了穿越活动走滑构造断裂的地下钢管的力学行为。断层垂直于管道方向并沿水平方向移动,从而在管道中引起应力和变形。相互作用的土壤-管道系统是通过有限元严格建模的,其中包括大的应变和位移,非线性的材料行为以及在土壤-管道界面上的接触和摩擦的特殊条件。考虑到各种直径/厚度比的钢管以及用于管线应用的典型钢材(API 5L等级X65和X80),本文着重研究了各种土壤和管线参数对管道结构响应的影响,特别是强调识别管道故障(管道壁起皱/局部屈曲或破裂)。研究了剪切土强度,土刚度,水平断层位移,断层滑动带宽度的影响。此外,检查了内部压力对结构响应的影响。本研究的结果旨在确定管道发生故障时的故障位移,并可将其用于管道设计目的。结果以图表形式显示,描述了临界断层位移以及相应的临界应变与管道直径/厚度比。还开发了简化的分析模型来说明弯曲和轴向拉伸的抵消作用。还将临界应变的数值结果与EN 1998-4和ASCE MOP 119的最新规定进行了比较。

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