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Coupled Plasticity and Damage Constitutive Model Considering Residual Shear Strength for Shales

机译:考虑Shales残留剪切力量的耦合可塑性和损伤本构模型

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摘要

Shales are the most common materials on the Earth's surface that are frequently encountered in various energy, environmental, and engineering applications. Numerically predicting the mechanical behavior of shales is of great importance in the geomechanics community. A coupled plasticity and damage constitutive model is developed in this study to describe the mechanical behavior of shales that spans the prepeak, peak, and postpeak regions. A concept of a damaged part of geomaterials, which possesses residual shear strength, is introduced in the proposed model. A thermodynamic conjugate force is presented by accounting for the residual shear strength of the damaged part. Procedures to determine the model input parameters and an algorithm to implement the constitutive model in a numerical code are presented. Validation against experimentally observed stress-strain curves of shales shows that the proposed model can predict the mechanical behavior of shales under various stress paths and confining stresses from the pre- to postfailure regimes.
机译:Shales是地球表面上最常见的材料,经常在各种能源,环境和工程应用中遇到。数值预测神话的力学行为在地质力学界中具有重要意义。本研究开发了一种耦合的可塑性和损伤本构模型,以描述跨越Prepake,Peak和Postpeak区的Shales的机械行为。在所提出的模型中引入了具有剩余剪切强度的磨损部分的损坏部分的概念。通过算用于损坏部分的残留剪切强度来提出热力学缀合物力。呈现了确定模型输入参数的过程和实现数值代码中的本构体模型的算法。针对实验观察到的Shales的应力 - 应变曲线的验证表明,该模型可以预测各种应力路径下的Shales的力学行为,并从预先发布后制度限制应力。

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