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Analysis of cylindrical cavity expansion in anisotropic overconsolidated clays using the Extended UH model

机译:使用延伸的UH模型分析各向异性过碳粘土中的圆柱腔膨胀

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摘要

Anisotropy and overconsolidation are two important features of depositional clay and are not comprehensively addressed in current cavity expansion solutions. Aiming at better modeling the cavity expansion responses in the natural soils, this paper develops a novel and rigorous elastoplastic semi-analytical solution by implementing the advanced anisotropic unified hardening (UH) model in conjunction with incorporating the anisotropic SMP criterion. The novel incorporation of the anisotropic SMP criterion and the proper consideration of overconsolidated properties are the major contributions of the present solution. By utilizing the anisotropic stress transformation method, the initial stress-induced anisotropy, anisotropic yielding and anisotropic failure of soil are also incorporated into the proposed solution. Following the derived constitutive equations in incremental form and large strain theory, both undrained and the drained cases are reduced to boundary-value problems consisting of several first-order ordinary differential equations formed in the Lagrangian scheme. Detailed parametric analyses are presented and compared with other existing solutions to investigate the effects of anisotropy and initial overconsolidation on the cavity responses. The present solution could properly capture the cross-anisotropy and 3D strength of overconsolidated soil and hence provides a more advanced and generic approach for modeling the cavity expansion responses in wide ranges of soils.
机译:各向异性和过度分区是沉积粘土的两个重要特征,并且在当前腔膨胀解决方案中没有全面地解决。旨在更好地建模天然土壤中的腔膨胀反应,通过结合掺入各向异性SMP标准,开发一种新颖和严谨的弹性塑料半分析解决方案。新型掺入各向异性SMP标准和对过索化性质的适当考虑是本发明溶液的主要贡献。通过利用各向异性应力转化方法,初始应激诱导的各向异性,各向异性产量和土壤各向异性衰竭也掺入所提出的溶液中。在增量形式和大应变理论中衍生的本构关系方程之后,不推迟的和排出的情况减少到由拉格朗日方案中形​​成的几个一阶常微分方程组成的边值问题。呈现详细的参数分析,并与其他现有解决方案进行了比较,以研究各向异性和初始过度叠加层对腔响应的影响。本溶液可以正确地捕获过覆土壤的横向各向异性和3D强度,因此提供了一种更先进和通用的方法,用于在宽范围的土壤中建模腔膨胀反应。

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