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An elastoviscoplastic constitutive model for geomaterials: Application to hydromechanical modelling of claystone response to drift excavation

机译:岩土材料的弹黏塑性本构模型:在黏土对开挖响应的水力学模型中的应用

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An isotropic elastoviscoplastic constitutive model based on a generalized Hoek-Brown criterion is proposed. The plastic mechanism is characterized by a positive and a negative hardening, and a specific non-associated flow rule allows to take into account the evolution of the dilatancy. Several hydromechanical finite element simulations corresponding to realistic configurations of drift excavations in the underground research laboratory of Bure are presented. Regularization techniques are required to avoid localization phenomena due to softening. A second gradient formulation has been used as it is well suited for dilatant materials such as claystone. Numerical results are discussed and compared with experimental measurements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了基于广义Hoek-Brown准则的各向同性弹塑性本构模型。塑性机制的特征是正硬化和负硬化,并且特定的非关联流动规则允许考虑剪胀性的演变。提出了一些与Bure地下研究实验室中的实际漂移构造相对应的流体力学有限元模拟。需要正规化技术来避免由于软化而引起的局部化现象。已经使用了第二种梯度配方,因为它非常适用于膨胀材料,例如粘土岩。讨论了数值结果,并与实验测量结果进行了比较。 (C)2016 Elsevier Ltd.保留所有权利。

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