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Seismic Analysis of a Buried Operating Steel Pipeline with Emphasis on the Equivalent-Boundary Conditions

机译:以等效边界条件为重点的埋地作业钢管的地震分析

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It is of fundamental importance in engineering design practice to accurately evaluate the structural response of buried pipelines subjected to seismic hazards, like landslides, lateral spreading due to liquefaction, and faulting, because these seriously threaten pipeline safety. The present paper investigates the seismic performance of a buried operating steel pipeline subjected to strike-slip faulting using the continuum finite element modeling approach and considering appropriate equivalent boundaries representing the interaction with the rest of the soil-pipeline system. The latter are derived analytically in terms of an axial spring expressed in function of the soil-pipeline nonlinearities, service loads like the internal pressure and temperature variation, pipeline unanchored length, cross-section area, and the different loading paths either in tension or compression. The obtained analytical and numerical results give a better insight into the mechanical behavior of the soil-pipeline system subjected to strike-slip faulting that induces overall tension in the pipeline under different levels of operating loads. The methodology described in this paper, including the formulation of the equivalent boundaries, can be applied to accurately and efficiently assess the seismic performance of operating buried pipelines subjected to strike-slip fault movement and similar permanent ground deformations (PGDs). (C) 2018 American Society of Civil Engineers.
机译:在工程设计实践中,准确评估遭受地震灾害(例如滑坡,液化引起的侧向扩展和断裂)的地下管道的结构响应至关重要,因为这些因素会严重威胁管道安全。本文利用连续有限元建模方法并考虑了代表与土壤管道系统其余部分相互作用的适当当量边界,研究了具有走滑断裂作用的地下作业钢管的抗震性能。后者是通过轴向弹簧分析得出的,该轴向弹簧表示为土壤-管道非线性,功能性载荷(例如内部压力和温度变化),管道无锚固长度,横截面积以及在拉伸或压缩状态下的不同载荷路径。所获得的分析和数值结果可以更好地了解发生走滑断层的土壤管道系统的机械行为,该断层会在不同水平的工作负荷下在管道中引起整体张力。本文介绍的方法,包括等效边界的公式化,可用于准确有效地评估承受走滑断层运动和类似永久性地面变形(PGD)的在役地下管道的抗震性能。 (C)2018美国土木工程师学会。

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