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'Transverse Action' - A model benchmark exercise for numerical analysis of the Callovo-Oxfordian claystone hydromechanical response to excavation operations

机译:“横向动作”-对挖掘作业中的卡洛沃-牛津粘土岩水力学响应进行数值分析的模型基准练习

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The Callovo-Oxfordian claystone (COx) is considered as a potential geological formation to host an industrial radioactive waste repository in France. A detailed understanding of the thermo-hydro-mechanical (THM) behavior of the COx is a key issue for design of different repository structures and the safety calculations of the project. More particularly, numerical modeling of induced fracture networks around drifts excavated at the main level of the Andra's Meuse/Haut-Marne Underground Research Laboratory (M/HM URL) and short and long term behavior of the COx around these drifts are of great interest. Several constitutive models have been developed/used in the framework of the R&D and simulation programs of Andra. A model benchmark exercise has been launched since 2012 to provide an overall view of the developed models regarding the in situ observations. In this view, two series of test cases, respectively at material point scale and at drift excavation scale are defined. Different kinds of constitutive models based on the elasto-visco-plasticity concept, continuum damage mechanics, the rigid block spring method and two-scale computational homogenized model (CHM) are used within this exercise. The obtained results show that accounting for material anisotropy and strain localization treatment techniques can improve the obtained results when elasto-visco-plastic models are used. Damage mechanics based approaches and methods accounting for discontinuities through discrete elements provide also interesting insights especially when fracturing processes must be modeled. However, more efforts are necessary to improve the robustness of these kinds of approaches in the complex context of COx response to excavation works. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Callovo-Oxfordian粘土岩(COx)被认为是在法国托管工业放射性废物处置库的潜在地质构造。对COx的热水力学(THM)行为的详细了解是设计不同存储库结构和项目安全计算的关键问题。更具体地说,在安德拉(Andra)的Meuse / Haut-Marne地下研究实验室(M / HM URL)的主要层上挖掘出的巷道周围的诱导裂缝网络的数值模型以及这些巷道周围的COx的短期和长期行为都引起了人们的极大兴趣。在Andra的R&D和仿真程序的框架中已经开发/使用了几种本构模型。自2012年以来,已开展了模型基准测试活动,以提供有关实地观测的已开发模型的整体视图。在此视图中,定义了两个系列的测试案例,分别在物料点规模和漂移开挖规模。在本练习中,将使用基于弹黏塑性概念,连续损伤力学,刚性块弹簧方法和两尺度计算均质模型(CHM)的不同类型的本构模型。所得结果表明,考虑使用弹性粘塑性模型,考虑材料各向异性和应变局部化处理技术可以改善所得结果。基于破坏力学的方法和方法解决了离散元素的不连续性,也提供了有趣的见解,尤其是在必须对压裂过程进行建模时。但是,在复杂的COx对开挖作业的响应中,需要采取更多的措施来提高此类方法的鲁棒性。 (C)2016 Elsevier Ltd.保留所有权利。

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