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Mechanical response analysis of the buried pipeline due to adjacent foundation pit excavation

机译:邻近基坑开挖引起的地下管道力学响应分析

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摘要

Foundation pit is one of the most factors that threaten the safe operations of buried pipeline. In order to study the effect of foundation pit excavation on the buried pipeline, a three-dimensional model of pipeline and foundation pit was established, and the variation regulations of pipeline's deformation under the foundation pit excavation were investigated. Effects of pipeline parameters, foundation pit parameters, soil parameters and underground continuous wall on the stress, strain and deformation of the pipeline were studied. The results show that the underground continuous wall can effectively reduce the pipeline deformation. After the foundation pit excavation, the upper surface of the pipeline's middle section is pressed, and the lower surface is pulled, but the strain distribution of the pipeline at the edge of the pit is opposite. Horizontal and vertical displacements occurs on the pipeline, horizontal displacement moves to the inside of the pit, and vertical displacement moves to the bottom of the pit. The pipeline deformation decreases with the increasing of pipeline's radius-thickness ratio, but it increases with the increasing of the distance between the pipeline and foundation pit. The internal pressure has a small effect on the pipeline deformation. Pipeline deformation increases with increasing of the foundation pit's width and depth. However, the length of the foundation pit has no effect on the pipeline. The pipeline deformation increases with the soil's Poisson's ratio increases, and it decreases with the increasing of soil's cohesion and elastic modulus. With the increasing of thickness and elastic modulus of the underground continuous wall, the pipeline deformation decreases. Those results can be used for pipeline laying, construction, maintenance and safety evaluation.
机译:基坑是威胁地下管道安全运行的最主要因素之一。为了研究基坑开挖对埋地管道的影响,建立了管道和基坑的三维模型,研究了基坑开挖过程中管道变形的变化规律。研究了管道参数,基坑参数,土壤参数和地下连续墙对管道应力,应变和变形的影响。结果表明,地下连续墙可有效减少管道变形。基坑开挖后,管道中间部分的上表面受压,下表面被拉动,但管道在基坑边缘的应变分布相反。管道上发生水平和垂直位移,水平位移移至坑的内部,垂直位移移至坑的底部。管道变形随着管道半径-厚度比的增加而减小,但是随着管道与基坑之间距离的增加而增大。内部压力对管道变形的影响很小。管道变形随基坑宽度和深度的增加而增加。但是,基坑的长度对管道没有影响。管道变形随土壤泊松比的增加而增加,随土壤内聚力和弹性模量的增加而减小。随着地下连续墙厚度和弹性模量的增加,管道变形减小。这些结果可用于管道铺设,施工,维护和安全评估。

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