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Computational modeling of deformation bands in granular media. I. Geological and mathematical framework

机译:颗粒介质中变形带的计算建模。一,地质数学框架

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摘要

Failure of granular media under natural and laboratory loading conditions involves a variety of micromechanical processes producing several geometrically, kinematically, and texturally distinct types of structures. This paper provides a geological framework for failure processes as well as a mathematical model to analyze these processes. Of particular interest is the formation of tabular deformation bands in granular rocks, which could exhibit distinct localized deformation features including simple shearing, pure compaction/dilation, and various possible combinations thereof. The analysis is carried out using classical bifurcation theory combined with non-linear continuum mechanics and theoretical/computational plasticity. For granular media, yielding and plastic flow are known to be influenced by all three stress invariants, and thus we formulate a family of three-invariant plasticity models with a compression cap to capture the entire spectrum of yielding of geomaterials. We then utilize a return mapping algorithm in principal stress directions to integrate the stresses over discrete load increments, allowing the solution to find the critical bifurcation point for a given loading path. The formulation covers both the infinitesimal and finite deformation regimes, and comparisons are made of the localization criteria in the two regimes. In the accompanying paper, we demonstrate with numerical examples the role that the constitutive model and finite deformation effects play on the prediction of the onset of deformation bands in geomaterials.
机译:颗粒介质在自然和实验室载荷条件下的破坏涉及多种微机械过程,这些过程会产生几种几何,运动和质地不同类型的结构。本文提供了故障过程的地质框架以及分析这些过程的数学模型。特别令人感兴趣的是在颗粒状岩石中形成板状形变带,这种形变带可能表现出明显的局部形变特征,包括简单的剪切,纯压实/膨胀及其各种可能的组合。使用经典分叉理论,结合非线性连续体力学和理论/计算可塑性,进行分析。对于粒状介质,已知屈服和塑性流动会受所有三个应力不变量的影响,因此,我们用压缩帽公式化了一个三变量可塑性模型族,以捕获土工材料的整个屈服谱。然后,我们在主应力方向上利用折返映射算法对离散载荷增量上的应力进行积分,从而使解决方案能够找到给定载荷路径的临界分叉点。该公式涵盖了无限小变形和有限变形两种形式,并比较了两种形式中的定位标准。在随附的论文中,我们通过数值示例证明了本构模型和有限变形效应在预测土工材料中变形带的开始中的作用。

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