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Bounding surface constitutive model for unsaturated soils considering microscopic pore structure and bonding effect

机译:考虑微观孔隙结构和粘合效应的不饱和土的边界表面本构型模型

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摘要

This article presents a bounding surface model for unsaturated soils by using skeleton stress and bonding variable based on microcosmic pore structure as constitutive variables. A Hydraulic hysteresis soil-water characteristic curve model considering deformation and hydraulic hysteresis is combined to achieve hydraulic coupling. The proposed model can capture the change of the inter-particles bonding effect in the deformation process of unsaturated soils and accurately predict the hydraulic mechanical behavior of unsaturated soils under complicated loading paths and wetting-drying cycles. The validity of the proposed model is confirmed by the results of unsaturated isotropic compression tests, wetting-drying cycles tests and unsaturated triaxial shear tests reported in the literature.
机译:本文通过使用基于微观孔结构的骨架应力和粘合变量作为本构变量来介绍不饱和土壤的边界表面模型。考虑变形和液压滞后的液压滞后土壤 - 水特性曲线模型得到了液压联轴器。所提出的模型可以在不饱和土的变形过程中捕获颗粒间粘合效果的变化,并准确地预测复杂的负载路径和润湿干燥循环下不饱和土的液压力学行为。所提出的模型的有效性通过不饱和各向同性压缩试验的结果,润湿干燥循环试验和文献中的不饱和三轴剪切试验证实。

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