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Examining the predictive capabilities of a bounding surface plasticity-based hyperelastic constitutive model for unsaturated granular soils

机译:检查非饱和颗粒土的边界表面塑性基础塑性组成型模型的预测能力

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摘要

The performance of a recently developed state-dependent constitutive model for unsaturated granular soils is evaluated. The model employs the Bounding Surface plasticity framework and evaluates elastic strains assuming hyperelastic behavior. To realistically simulate the deformation of unsaturated granular soils, the mechanical behavior was modeled without a purely elastic component. The inherent hydro-mechanical coupling was realized by introducing a Bishop-type effective stress, an appropriate work-conjugate variable, and a soil-water characteristic curve function. Relevant details about the model development, parameter estimation, and the assessment of the model’s predictive capabilities are presented. The model performance is evaluated with experimental data obtained for drained and constant-water stress paths. With a given a set of parameter values, the model realistically simulates the main features that characterize the shear and volumetric behavior of unsaturated granular soils over a wide range of matric suction, density, and net confining pressure. This is found to be true for both drained and constant-water stress paths.
机译:评估了最近开发的不饱和颗粒土的状态依赖性本构模型的性能。该模型采用边界表面可塑性框架,并评估具有超弹性行为的弹性菌株。为了实际模拟不饱和颗粒土的变形,在没有纯弹性部件的情况下模拟机械行为。通过引入主题型有效应力,适当的工作缀合物变量和土壤 - 水特征曲线功能来实现固有的水力机械耦合。提出了有关模型开发,参数估计和模型预测能力的评估的相关细节。使用用于排水和恒定水应激路径的实验数据来评估模型性能。对于给定的一组参数值,模型现实地模拟了在宽范围的原始抽吸,密度和净限制压力范围内表征不饱和颗粒土壤的剪切和体积行为的主要特征。对于排水和恒定水分应激路径来说,这是真的。

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