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Fully coupled finite element model for dynamics of partially saturated soils

机译:局部饱和土动力的全耦合有限元模型

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摘要

Understanding the response of partially saturated earth structures under various static and dynamic loads is important for the design and construction of economical and safe geotechnical engineering structures. In this study, the numerical approach is used to understand the dynamics of partially saturated soils. The mathematical equations governing the dynamics of partially saturated soils are derived based on the theory of mixtures and implemented within a finite element framework. The stress-strain behavior of the soil is represented by an elasto-plastic constitutive model for unsaturated soil based on bounding surface concept and the moisture-suction behavior is modeled using van Genuchten model. Fully coupled finite element simulations are performed to study the response of partially saturated soil embankment under earthquake loading and validated with centrifuge test results available in the literature. The predicted displacement responses are in good agreement with the measured responses. The pore water pressure, pore air pressure, matric suction, the degree of saturation in various elements and the response of the embankment under different initial moisture content are also discussed.
机译:理解部分饱和土结构在各种静态和动态载荷下的响应对于经济安全的岩土工程结构的设计和施工非常重要。在这项研究中,数值方法被用来理解部分饱和土壤的动力学。基于混合理论推导了控制部分饱和土动力学的数学方程式,并在有限元框架内实现。土壤的应力-应变行为由基于边界面概念的非饱和土壤弹塑性本构模型表示,并使用van Genuchten模型对吸水行为进行建模。进行全耦合有限元模拟以研究部分饱和土堤在地震作用下的响应,并通过文献中的离心测试结果进行了验证。预测的位移响应与测得的响应非常吻合。还讨论了孔隙水压力,孔隙空气压力,基质吸力,各种元素的饱和度以及路堤在不同初始含水量下的响应。

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