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Elastoplastic behavior of jointed rock masses as homogenized media and finite element analysis

机译:节理岩体均质介质的弹塑性行为及有限元分析

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摘要

A comprehensive 3D formulation for the strength properties and elastoplastic constitutive equations of jointed rock masses are derived in this paper. The approach is based on the implementation of the homogenization method of randomly heterogeneous media within the frameworks of limit analysis and elastoplasticity. A rigorous closed-form expression of the macroscopic strength criterion is first given as a function of the failure conditions of the rock matrix and of the joints. As an example of implementation of such a homogenized criterion, the stability analysis of an underground gallery in a jointed rock masses is presented and the scale effects, which prevail if the number of joints is relatively low, are investigated through comparisons with the results derived from direct calculations. Assuming elastoplastic constitutive laws for the rock matrix and the joints, a micromechanical reasoning is used for the formulation of the overall behavior. The macroscopic elastic stiffness as well as the plastic criterion and the plastic flow rule are derived from the knowledge of the mechanical properties of the individual constituents. This anisotropic model is then implemented in a F.E computer code. Due to the multi-potential character of the macroscopic plastic flow rule, the numerical analysis is particularly focused on the iterative algorithm of plastic integration. Examples of numerical simulations dealing with jointed rock structures are finally given.
机译:本文推导出了节理岩体强度特性和弹塑性本构方程的综合3D公式。该方法基于极限分析和弹塑性框架内随机异质介质均质化方法的实施。首先根据岩石基体和节理的破坏条件,给出宏观强度准则的严格封闭形式。作为实施这种均质化标准的示例,我们对节理岩体中的地下通道进行了稳定性分析,并通过与以下方法得出的结果进行比较,研究了如果节理数相对较少的情况下普遍存在的尺度效应。直接计算。假设岩石基体和节理的弹塑性本构律,则采用微机械推理来制定整体行为。宏观弹性刚度以及塑性判据和塑性流动规则是从各个成分的机械性能知识中得出的。然后在F.E计算机代码中实现该各向异性模型。由于宏观塑性流动规则具有多潜能特性,因此数值分析特别关注塑性积分的迭代算法。最后给出了关于节理岩石结构的数值模拟示例。

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