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Analysis of elastic viscoplastic consolidation of sand drain foundations with exponential seepages

机译:用指数渗透的砂漏基础弹性粘塑固结分析

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Studies have shown that the pore seepage in soft clay deviates from Darcy's law, with the compressibility and permeability of the soil demonstrating obvious nonlinear characteristics during the consolidation process. These factors will affect the sand drain foundation consolidation process. In order to explore the consolidation mechanism of sand drain foundation in saturated clay, this paper introduces the UH model considering the time effect to describe the nonlinear deformation relation of the soil skeleton under the Barron free strain assumption and introduces the exponential seepage equation as an alternative to Darcy's law. Additionally, the impact of the permeability coefficient and the smearing effect is considered which is used to re-derive the conventional sand drain consolidation equation, and then the finite difference method is adopted to give the implicit numerical solutions of the equation. By comparing with literature results, the validity of the method developed in this paper is verified. Then, the effects of the soil nonlinearity, construction disturbance, and external load on the sand drain foundation nonlinear consolidation process are studied as a function of time. The current results reveal that due to the viscous effect of soil, the pore pressure near the undrained boundary of the sand drain foundation during the pre-loading period increases. The above phenomenon is more evident when considering the non-Darcy seepage; meanwhile, the consolidation rate of the sand drain foundation also becomes increasingly slow. Moreover, the decrease of the permeability coefficient in the smear zone can significantly reduce the dissipation rate of the overall pore pressure of the sand drain foundation, while the increase of the external load accelerates foundation consolidation.
机译:研究表明,软粘土中的孔渗出偏离达西法,土壤的可压缩性和渗透性在整合过程中展示了明显的非线性特性。这些因素会影响沙漏基础固结过程。为了探讨饱和粘土中的砂漏基础的固结机制,介绍了考虑到禁止禁止应变假设下土壤骨架非线性变形关系的UH模型,并将指数渗流等式作为替代方案介绍对达西的法律。另外,认为渗透系数和涂抹效果的影响被认为是用于重新推导出传统的砂排水固结方程,然后采用有限差分法给出了等式的隐式数值解。通过与文学结果相比,验证了本文开发的方法的有效性。然后,作为时间的函数,研究了土壤非线性,施工干扰和外部负荷对砂漏基础非线性固结过程的影响。目前的结果表明,由于土壤的粘性效果,在预装载期内砂排水基础的未染色边界附近的孔隙压力增加。在考虑非达西渗流时,上述现象更加明显;同时,砂排水基础的整合率也变得越来越慢。此外,涂抹区中渗透系数的降低可以显着降低砂排水基础整体孔隙压力的耗散速率,而外部负荷的增加加速了基础固结。

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