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Numerical Investigation of Dynamic Pipe-Soil Interaction on Electrokinetic-Treated Soft Clay Soil

机译:电动处理软黏土上管-土动力相互作用的数值研究

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Researchers have underscored the importance for a pipeline to safeguard against adverse effects resulting from its displacement in the vertical, axial, and lateral directions because of the low shear strength of the soil. The seabed may sometimes consist of soft or very soft clay soil with high water content and low shear strength. Dissipation of the water content from the soil void increases its effective stress, with a resultant increase in the soil shear strength. The electrokinetic (EK) concept has been applied to increase soil bearing capacity with barely any study conducted on its possible application on pipe-soil interaction. The need to explore more options merits further research. The EK process for the pipe-soil interaction consists of two main stages: the electroosmotic consolidation process and dynamic analyses of the pipe-soil interaction. The present study numerically investigated the impact of EK-treated soil on pipe-soil interaction over the non-EK process. The results of dynamic pipe-soil interaction on EK-treated soil when compared with non-EK-treated soil indicate a significant increase in the force required to displace a pipeline.
机译:研究人员强调,由于土壤的抗剪强度低,管道在垂直,轴向和侧向位移时所产生的不利影响的防范措施至关重要。海底有时可能由含水量高,抗剪强度低的软或极软粘土组成。水分从土壤孔隙中耗散会增加其有效应力,从而增加土壤的抗剪强度。电动(EK)概念已被应用于增加土壤承载力,几乎没有对其在管道-土壤相互作用中可能应用的任何研究。探索更多选择的需求值得进一步研究。管道-土壤相互作用的EK过程包括两个主要阶段:电渗固结过程和管道-土壤相互作用的动态分析。本研究数值研究了EK处理土壤对非EK过程中管土相互作用的影响。与未进行EK处理的土壤相比,在EK处理的土壤上动态管土相互作用的结果表明,置换管线所需的力显着增加。

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