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Mitigating effect of embankment to adjacent pipe with CDM columns

机译:用CDM色谱柱缓解堤防对邻近管道的影响

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Pipelines are valuable infrastructures that covering a large area or expanding to long distance for the transporting function. This leads to the variety of loads and effects applied on such buried structures. A thread to pipeline integrity is the construction of the embankment on the soft soil which leads to the displacement of the pipe adjacent to the slope. This displacement will effect to the increase of internal force or causing failure of the near-by pipes. The use of concrete pile to improve the soil properties may be a solution; however, the cost for this is expensive. To propose an alternative solution for the problem, this study uses a system of cement deep mixing, CDM, columns as the solution for protecting the pipe. A simple 2D Finite Element, FE, model using Plaxis software has been established based on the equivalent soil approach which considering the CDM columns and their surrounding soil as an unified soil. The effectiveness of the proposed solution has been numerically investigated and proven. The lateral displacement of pipe and the maximum ring bending moment and other internal forces are significantly reduced with the appearance of the CDM columns. The selective parametric study has been implemented revealing the critical input variables are the distance of pipe to the slope and the length of the CDM column.
机译:管道是有价值的基础设施,覆盖大面积或扩展到运输功能的长距离。这导致了在这种掩埋结构上施加的载荷和效果。管道完整性的螺纹是柔软土壤上的堤防的构造,这导致管道靠近斜坡的位移。这种位移将影响内部力的增加或导致近近管的失效。使用混凝土桩改善土壤性质可以是一种溶液;但是,这是昂贵的。为提出解决问题的替代解决方案,本研究使用水泥深混合,CDM,柱作为保护管的溶液。一种简单的2D有限元,FE,使用Plaxis软件的型号基于认为CDM柱及其周围土壤作为统一土壤的等效土壤方法建立。提出的解决方案的有效性已经在数值上进行了数值调查和证明。通过CDM柱的外观,管道和最大环弯矩和其他内部力的横向位移显着降低。已经实施了选择性参数研究,揭示了临界输入变量是管道距离的距离和CDM列的长度。

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