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Hydromechanical Constitutive Model for Unsaturated Soils with Different Overconsolidation Ratios

机译:不同超固结比的非饱和土的水力本构模型

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Overconsolidated unsaturated soils emerge in many engineering problems. This article presents a constitutive model for unsaturated soils using skeleton stress and degree of saturation as fundamental variables. A subloading surface is introduced into the framework to interpret the effect of overconsolidation on the coupled hydromechanical behavior of overconsolidated unsaturated soils. The main advantage of the proposed model is that it is capable of reproducing the hydromechanical behavior of unsaturated soils with different initial overconsolidation ratios, such as the overconsolidation effect on the shearing-induced saturation change. The material parameters of the proposed model can be calibrated through conventional tests. Numerical studies were conducted to assess the performance of the model for a fictional silt under two typical scenarios. The validity of the proposed model was confirmed by experimental results for both isotropic and triaxial conditions reported in the literature.
机译:过度固结的不饱和土壤出现在许多工程问题中。本文以骨架应力和饱和度为基本变量,提出了一种非饱和土的本构模型。在框架中引入了一个超载面,以解释超固结对超固结非饱和土耦合水动力特性的影响。该模型的主要优点是能够再现具有不同初始超固结比的非饱和土的水力学行为,如对剪切引起的饱和度变化的超固结作用。建议模型的材料参数可以通过常规测试进行校准。进行了数值研究,以评估两种典型情况下虚拟淤泥模型的性能。文献报道的各向同性和三轴条件下的实验结果证实了所提出模型的有效性。

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