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3D FE Analyses of Buried Pipeline with Elbows Subjected to Lateral Loading

机译:侧向荷载作用下弯头埋地管道的3D有限元分析

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This study investigates the interaction between soil and pipeline in sand subjected to lateral ground displacements with emphasis on the peak force exerted to a bended elbow-pipe. A series of three-dimensional (3D) finite-element (FE) analyses were performed in both opening and closing modes of the elbow section for different initial pipe bending angles. To model the mechanical behavior of sands, two soil models were adopted: Mohr-Coulomb and Nor-Sand soil model. Investigations also included the effects of pipe embedment depth and soil density. Results show that the opening mode exhibits higher ultimate forces and greater localized deformations than the closing mode. Nondimensional charts that account for pipeline location, bending angle, and soil density are developed. Soil-spring pipeline analyses of an elbow-pipe were performed using modified F-δ soil-spring models based on the 3D FE results and were compared to the findings of conventional spring model analyses using the standard two-dimensional soil-spring model. Results show that the pipe strain does not change in the closing mode case. However, in the opening mode case, the pipe strain computed by the modified analysis is larger than that by the conventional analysis and the difference is more pronounced when the pipe stiffness is stiffer.
机译:这项研究调查了土壤和管道在砂土中的相互作用,这些砂土受到侧向地面位移,重点是施加在弯曲弯管上的峰值力。针对不同的初始弯管角度,在肘节的打开和关闭模式下都进行了一系列三维(3D)有限元(FE)分析。为了模拟沙子的力学行为,采用了两种土壤模型:Mohr-Coulomb模型和Nor-Sand土壤模型。调查还包括管道埋深和土壤密度的影响。结果表明,与关闭模式相比,打开模式表现出更高的极限力和更大的局部变形。绘制了说明管道位置,弯曲角度和土壤密度的无量纲图表。基于3D FE结果,使用改良的F-δ土-弹簧模型对弯管进行了土-弹簧管道分析,并将其与使用标准二维土-弹簧模型的常规弹簧模型分析结果进行了比较。结果表明,在关闭模式下,管道应变不变。然而,在打开模式的情况下,通过改进分析计算出的管道应变要比通过常规分析计算出的管道应变大,并且当管道刚度变得更大时,差异会更加明显。

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