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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Numerical simulation of elasto-plastic electro-osmosis consolidation at large strain
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Numerical simulation of elasto-plastic electro-osmosis consolidation at large strain

机译:大应变弹塑性电渗固结的数值模拟

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摘要

In this paper, a numerical solution for the electro-osmosis consolidation of clay in multi-dimensional domains at large strains is presented, with the coupling of the soil mechanical behaviour, pore water transport and electrical fields being considered. In particular, the Modified Cam Clay model is employed to describe the elasto-plastic behaviour of clay, and some empirical expressions are used to consider the nonlinear variation of the hydraulic and electrical conductivities of the soil mass during the consolidation processes. The implementation of the theoretical model in a finite element code allows for analysis of the evolution of the transient response of the clay subjected to electro-osmosis treatment. The proposed model is verified via comparison with data from a large strain electro-osmosis laboratory test, to demonstrate its accuracy and effectiveness. Various numerical examples are also investigated to study the deformation characteristics and time-dependent evolution of the excess pore pressure. Finally, a well-documented field application of electro-osmosis is simulated to provide further verification. The results show that the numerical solution is effective in predicting the nonlinear behaviour of clay during electro-osmosis consolidation.
机译:本文提出了在大应变下多维区域中粘土电渗固结的数值解,并考虑了土壤力学行为,孔隙水迁移和电场的耦合。特别是,采用修正凸轮粘土模型来描述粘土的弹塑性行为,并使用一些经验表达式来考虑固结过程中土体水力和电导率的非线性变化。用有限元代码实现理论模型可以分析经过电渗处理的粘土的瞬态响应的演变。通过与来自大型应变电渗实验室测试的数据进行比较,对提出的模型进行了验证,以证明其准确性和有效性。还研究了各种数值示例,以研究过剩孔隙压力的变形特征和随时间变化的情况。最后,模拟了一个有据可查的电渗透现场应用,以提供进一步的验证。结果表明,数值解法可有效预测电渗固结过程中黏土的非线性行为。

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