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The influence of pipeline-backfill-trench interaction on the lateral soil resistance: A numerical investigation

机译:管道回填 - 沟槽相互作用对横向土壤抗性的影响:数值调查

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Large lateral displacement of trenched subsea pipelines may be induced by ground movement, landslides, ice gouging, etc. Pre-excavated seabed soil is usually used for backfilling as a cost-effective solution. The large difference between the shear strength of the highly remoulded backfill material and the native soil may significantly affect the pipeline-backfill-trench interaction, the failure mechanisms, and consequently the lateral soil resistance. However, this challenging and less-explored aspect has not been covered thoroughly in design codes. In this paper, the influences of pipeline-backfill-trench interaction on the failure mechanism and resultant lateral soil resistance were investigated by large deformation finite element analyses. Two different methods were considered and compared, including the remeshing and interpolation technique with small strain (RITSS) and coupled Eulerian-Lagrangian (CEL) methods, to assess their relative merits for this problem. A modified Tresca model considering strain-softening effects was incorporated and a parametric study was conducted to investigate the influences of key factors including the trench geometry, stiffness of backfill material, native seabed soil properties, burial depth, and intensity of pipeline-trench bed interaction. The study showed that the ignorance of the pipeline-backfill-trench interaction by using uniform soil may result in underestimation and overestimation of the lateral soil resistance against the pipeline moving inside the backfill and into the trench wall, respectively.
机译:挖沟海底管道的大型横向位移可以通过地面运动,滑坡,冰刨花等引起预挖掘的海底土壤通常用于回填作为经济效益的解决方案。高压回填材料和天然土壤的剪切强度之间的巨大差异可能会显着影响管道回填 - 沟槽相互作用,故障机构,从而显着地横向土壤阻力。但是,这种具有挑战性和更少探索的方面尚未在设计代码中彻底覆盖。本文采用大变形有限元分析研究了管线回填 - 沟槽相互作用对破坏机理的影响和所得到的横向防尘。考虑并进行了两种不同的方法,包括具有小菌株(射铃)和耦合Eulerian-Lagrangian(CEL)方法的倒闭和插值技术,以评估其对此问题的相对优点。考虑菌株软化效果的改进的TRESCA模型被纳入,并进行了参数研究,研究了关键因素,包括沟槽几何形状,回填材料刚度,土着海底土壤性质,埋藏深度和管道 - 沟床相互作用的强度的影响。该研究表明,使用均匀土壤的管道回填 - 沟槽相互作用的无知可能导致分别低估并分别在回填内部移动到沟槽壁内部的管道的横向土壤阻力的低估和高估。

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