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Lattice modeling of excavation damage in argillaceous clay formations: Influence of deformation and strength anisotropy

机译:泥质黏土地层开挖损伤的格子模型:变形和强度各向异性的影响

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摘要

This paper presents modeling of mechanical anisotropy in argillaceous rocks using an irregular lattice modeling approach, namely the rigid-body-spring network. To represent the mechanical anisotropy, new schemes are implemented in the modeling framework. The directionality of elastic deformation is resolved by modifying the element formulation with anisotropic elastic properties. The anisotropy of strength and failure characteristics is facilitated by adopting orientation-dependent failure criteria into the failure model. The verification of the improved modeling procedures is performed against theoretical model predictions for unconfined compression tests with various bedding orientations. Furthermore, excavation damage and fracturing processes in rock formations are simulated for different geomechanical configurations, such as rock anisotropy and tectonic heterogeneity. The simulated excavation damage characteristics are realistic and comparable with the actual field observation at a tunnel located in an argillaceous clay formation. The simulation results provide insights into the excavation damage zone phenomena with an explicit representation of fracturing processes.
机译:本文提出了使用不规则晶格建模方法(即刚体-弹簧网络)对泥质岩石力学各向异性进行的建模。为了表示机械各向异性,在建模框架中实施了新的方案。弹性变形的方向性通过修改具有各向异性弹性特性的单元配方来解决。通过将与方向相关的破坏准则应用于破坏模型,可以促进强度和破坏特征的各向异性。针对具有各种铺垫方向的无边压缩试验,针对理论模型预测对改进的建模程序进行了验证。此外,针对岩石各向异性和构造异质性等不同的地质力学构造,模拟了岩层中的开挖损伤和压裂过程。模拟的开挖损伤特征是现实的,并且与位于泥质粘土地层中的隧道的实际现场观察结果相当。仿真结果提供了对开挖破坏带现象的洞察力,并明确表示了压裂过程。

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