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A numerical investigation of brittle rock damage model in deep underground openings

机译:地下深部脆性岩石损伤模型的数值研究

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The excavation of underground openings generally causes damage to the rock in the vicinity of the openings. The dominant causes of irreversible rock deformations are damage process and plastic flow. Most of the existing elastic-plastic models employed in the analysis and design of rock structures only consider the plastic flow and ignore the full damage process. The common approach used to model the rock failure, does not model the rock realistically and often the important issues such as stiffness degradation, softening, and significant differences in rock response under tensile and compressive loadings are ignored. Therefore, developments of realistic damage models are essential in the design process of rock structures. In this paper, the basic concepts of continuum damage mechanics are outlined. Then, a more clear and accurate definition of the damage function is established. In the definition of rock damage function, many authors considered only the tensile stress condition. Since quasi brittle materials such as rock degrade under tensile and compressive stress fields, separate tensile and compressive damage functions are introduced. The proposed damage functions are formulated in the framework of a damage model which was coded and implemented into a commercial code. Accordingly, the developed algorithm was applied to the simulation of brittle rocks behavior. Using field measurements from the AECL's (Atomic Energy of Canada Limited) Mine-by Experiment tunnel, the new developed damage model was calibrated and validated for its ability to reproduce the shape and size of excavation damage zone (EDZ) around the Mine-by test tunnel.
机译:地下开口的开挖通常会对开口附近的岩石造成破坏。不可逆的岩石变形的主要原因是破坏过程和塑性流动。岩石结构分析和设计中使用的大多数现有弹塑性模型仅考虑塑性流动,而忽略了完整的破坏过程。用于对岩石破坏进行建模的常用方法无法对岩石进行实际建模,因此通常会忽略诸如刚度降低,软化以及在拉伸和压缩载荷下岩石响应的显着差异之类的重要问题。因此,开发实际损伤模型对于岩石结构的设计过程至关重要。本文概述了连续损伤力学的基本概念。然后,建立损伤函数的更清晰和准确的定义。在定义岩石破坏函数时,许多作者只考虑了张应力条件。由于诸如岩石的准脆性材料会在拉伸应力和压缩应力场下降解,因此引入了单独的拉伸损伤和压缩损伤功能。拟议的破坏功能是在破坏模型的框架内制定的,该模型已编码并实施为商业代码。因此,将开发的算法应用于脆性岩石行为的模拟。使用来自AECL(加拿大原子能有限公司)“地雷试验”隧道的现场测量结果,对新开发的损伤模型进行了校准,并验证了其能够再现“地雷试验”周围挖掘破坏区域(EDZ)的形状和大小的能力。隧道。

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