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Numerical modeling of deformation and damage around underground excavation by phase-field method with hydromechanical coupling

机译:采用流体机械耦合的相现场方法对地下挖掘变形和损伤的数值模型

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In the context of feasibility study for geological disposal of radioactive waste, this work focuses on numerical modeling of hydromechanical response and induced damage zones around an experimental gallery at the underground research laboratory (URL) at Bure in France. A new phase-field method is first proposed by considering two independent damage fields in order to easily describe both tensile and shear cracks. The phase-field method is extended to saturated porous media by incorporating the effect of fluid pressure. The proposed method is implemented in a finite element code and applied to the experimental gallery. The evolutions of hydromechanical responses and induced damaged zones are analyzed in both excavation and post-excavation phases. Numerical results are compared with experimental observations and measurements. It is found that the proposed method is able to well describe the main features of hydromechanical responses and damage processes such as tensile and shear cracked zones.
机译:在放射性废物地质处置的可行性研究的背景下,这项工作侧重于法国Buze在地下研究实验室(URL)的实验画廊周围的流体力力学响应和诱导损伤区的数值建模。首先通过考虑两个独立的损伤场来提出一种新的阶段 - 现场方法,以便容易地描述拉伸和剪切裂缝。通过掺入流体压力的效果,相场方法延伸到饱和多孔介质。所提出的方法以有限元码实现并应用于实验库。在挖掘和挖掘后阶段分析了流体力学响应和诱导受损区的演变。将数值结果与实验观察和测量进行比较。发现该方法能够很好地描述流体机械响应和损伤过程的主要特征,如拉伸和剪切裂纹区域。

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