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A time-dependent anisotropic model for argillaceous rocks. Application to an underground excavation in Callovo-Oxfordian claystone

机译:泥质岩石的时变各向异性模型。在Callovo-Oxfordian粘土岩的地下开挖中的应用

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The paper presents a constitutive model for argillaceous rocks, developed within the framework of elasto-plasticity, that includes a number of features that are relevant for a satisfactory description of their hydromechanical behaviour: anisotropy of strength and stiffness, behaviour nonlinearity and occurrence of plastic strains prior to peak strength, significant softening after peak, time-dependent creep deformations and permeability increase due to damage. Both saturated and unsaturated conditions are envisaged. The constitutive model is then applied to the simulation of triaxial and creep tests on Callovo-Oxfordian (COx) claystone. Although the main objective has been the simulation of the COx claystone behaviour, the model can be readily used for other argillaceous materials. The constitutive model developed is then applied, via a suitable coupled hydromechanical formulation, to the analysis of the excavation of a drift in the Meuse/Haute-Marne Underground Research Laboratory. The pattern of observed pore water press sures and displacements, as well as the shape and extent of the damaged zone, are generally satisfactorily reproduced. The relevance and importance of rock anisotropy and of the development of a damaged zone around the excavations are clearly demonstrated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种在弹性塑性框架内开发的泥质岩石本构模型,其中包括许多与令人满意地描述其流体力学行为有关的特征:强度和刚度的各向异性,行为非线性和塑性应变的发生峰值强度之前,峰值后会明显软化,随时间变化的蠕变变形和渗透性会因损坏而增加。设想饱和和不饱和条件。然后,将本构模型应用于Callovo-Oxfordian(COx)黏土的三轴和蠕变试验模拟。尽管主要目的是模拟COx粘土岩的行为,但该模型可轻松用于其他泥质材料。然后,通过合适的耦合流体力学公式将开发的本构模型应用于在Meuse / Haute-Marne地下研究实验室中进行的巷道开挖分析。通常可以令人满意地重现观察到的孔隙水压力和位移的图形,以及损坏区域的形状和程度。岩石各向异性和基坑周围受损区域的发展的相关性和重要性得到了明确证明。 (C)2016 Elsevier Ltd.保留所有权利。

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