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A SEEPAGE-DEFORMATION COUPLED ANALYSIS OF AN UNSATURATED RIVER EMBANKMENT USING A MULTIPHASE ELASTO-VISCOPLASTIC THEORY

机译:多相弹黏弹塑性理论的非饱和河堤渗流-变形耦合分析

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References(17) Cited-By(1) A multiphase deformation analysis of a river embankment was carried out using an air-soil-water coupled finite element method capable of considering unsaturated seepage flow. A numerical model for unsaturated soil was constructed based on the mixture theory and an elasto-viscoplastic constitutive model. The theory used in the analysis is a generalization of Biot's two-phase mixture theory for saturated soil. An air-soil-water coupled finite element method was developed using the governing equations for three-phase soil based on the nonlinear finite deformation theory, i.e., the updated Lagrangian method. Two-dimensional numerical analyses of the river embankment under seepage conditions were conducted, and the deformation associated with the seepage flow was studied. We have found that the occurrence of large deformations corresponds to the large values of the hydraulic gradients at the toe of the embankment, and that the overflow of river water makes the embankment more unstable. It has been confirmed that seepage-deformation coupled three-phase behavior can be simulated well with the proposed method.
机译:参考文献(17)引用(1)利用考虑非饱和渗流的气-水-水耦合有限元方法对河堤进行了多相变形分析。基于混合理论和弹黏塑性本构模型,建立了非饱和土的数值模型。分析中使用的理论是Biot对饱和土壤的两相混合理论的概括。基于非线性有限变形理论,即更新的拉格朗日方法,利用三相土的控制方程,开发了一种气-水-水耦合有限元方法。对渗流条件下的河堤进行了二维数值分析,研究了与渗流有关的变形。我们发现,大变形的发生与路堤脚趾处水力梯度的大值相对应,并且河水的溢出使路堤更加不稳定。已经证实,所提出的方法可以很好地模拟渗流-变形耦合的三相行为。

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