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Hydromechanical modeling of granular soils considering internal erosion

机译:内部侵蚀考虑粒状土壤的流体力学建模

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This paper attempts to formulate a coupled practical model in the framework of continuum mechanics to evaluate the phenomenon of internal erosion and its consequences on the mechanical behavior of soils. For this purpose, a four-constituent numerical approach has been developed to describe the internal erosion process. The detachment and transport of the fine particles have been described by a mass exchange formulation between the solid and fluid phases. The stress-strain relationship of the soil is represented by a nonlinear incremental model. Based on experimental data, this constitutive model has been enhanced by the introduction of a fines content-dependent critical state, which allows accounting for the influence of fines on soil deformation and strength. The applicability of the practical approach to capture the main features of the internal erosion process and its impact on the mechanical behavior of the eroded soil have been validated by comparing numerical and experimental results of internal erosion tests on Hong Kong completely decomposed granite (HK-CDG) mixtures, which demonstrated that the practical model was able to reproduce, with reasonable success, the experimental data. Furthermore, the influence of the stress state, the initial soil density, and the initial fraction of fines have been analyzed through numerical simulations using the proposed model.
机译:本文试图在连续内力学框架中制定耦合的实际模型,以评估内部侵蚀的现象及其对土壤机械行为的影响。为此目的,已经开发了一种四组成数值方法来描述内部侵蚀过程。已经通过固体和流体相之间的配方制剂描述了细颗粒的脱离和运输。土壤的应力 - 应变关系由非线性增量模型表示。基于实验数据,通过引入罚款依赖性临界状态,该本构模型得到了增强,这允许罚款对土壤变形和强度的影响。通过比较香港完全分解的花岗岩的内部侵蚀试验的数值和实验结果,验证了实用方法捕获内部侵蚀过程的主要特征及其对侵蚀土壤的力学行为的影响。(HK-CDG )混合物,表明实际模型能够具有合理的成功,实验数据能够繁殖。此外,通过使用所提出的模型通过数值模拟分析了应力状态,初始土密度和初始分数的影响。

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