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NUMERICAL SIMULATIONS OF DYNAMIC EMBEDMENT DURING PIPE LAYING ON SOFT CLAY

机译:软土地基上铺管过程中动力嵌入的数值模拟

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Prediction of the as-laid embedment of a pipeline, which affects many aspects of pipeline design, is complicated by the dynamic motions that occur during the lay process. These motions cause pipelines to embed deeper than predicted based on static penetration models, as the seabed soils are both softened and physically displaced by the pipeline motion. This paper describes the results of 2D numerical analyses using a large displacement finite element approach aimed at quantifying pipeline embedment due to cyclic lateral motion at various fixed vertical load levels. The validity of the numerical results is first assessed by comparison with published data from centrifuge model tests in two different types of clay. A parametric study varying the normalized vertical load is then presented, which suggests a simple approach for estimating an upper limit to the dynamic embedment.
机译:在铺设过程中发生的动态运动会使影响管线设计许多方面的管线的初始嵌入预测变得复杂。这些运动使管道比基于静态渗透模型的预测更深地埋入管道,因为海底土壤由于管道运动而软化并发生物理位移。本文介绍了使用大位移有限元方法进行二维数值分析的结果,该方法旨在量化在各种固定垂直载荷水平下循环横向运动引起的管道埋设。首先通过与两种不同类型粘土中离心模型测试的公开数据进行比较,评估数值结果的有效性。然后进行了一个参数化研究,该研究改变了标准化的垂直载荷,这提出了一种简单的方法来估算动态嵌入的上限。

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