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Simulation of unstable rock failure under unloading conditions

机译:卸载条件下不稳定岩石破坏的模拟

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Rockburst is an unstable rock failure and one of the most hazardous problems in deep hard-rock mines. Before excavation, rocks are loaded under a polyaxial condition. Upon excavation, the rocks at the excavation boundaries are loaded in the tangential direction and unloaded in the radial direction. Understanding rock behaviour under this excavation loading condition is critical for developing measures to control rock failure in underground construction. In this paper, numerical simulation results of unstable rock failure using an explicit finite element tool are presented. Firstly, uniaxial compression tests were simulated to confirm the suitability of the adopted numerical tool for simulating unstable rock failures. Transferred energy ratio (TER) and loading system reaction intensity (LSRI) were proposed as indicators to distinguish between stable and unstable failures. Secondly, unstable rock failures under polyaxial unloading conditions were simulated. The influences of loading system stiffness (LSS), specimen's height to width ratio (H/W), and intermediate principal stress (sigma(2)) on rock failure were investigated. The simulation results showed that rock failure was more violent when the loading system was softer, the specimen was taller, and the confinement was lower. The modelling approach presented in this paper can be useful for predicting unstable rock failure and estimating released kinetic energy, which is important for designing rock support in deep tunnels to control rockburst damage.
机译:岩爆是不稳定的岩石破坏,是深层硬岩矿山中最危险的问题之一。在开挖之前,岩石会在多轴条件下加载。开挖时,开挖边界处的岩石沿切线方向加载,而沿径向方向不加载。了解这种开挖荷载条件下的岩石行为对于制定控制地下建筑岩石破坏的措施至关重要。本文提出了使用显式有限元工具对不稳定岩石破坏进行数值模拟的结果。首先,模拟了单轴压缩试验,以确认所采用的数值工具对不稳定岩石破坏进行模拟的适用性。提出了传递能量比(TER)和加载系统反应强度(LSRI)作为区分稳定故障和不稳定故障的指标。其次,模拟了多轴卸载条件下的不稳定岩石破坏。研究了加载系统刚度(LSS),试样的高宽比(H / W)和中间主应力(sigma(2))对岩石破坏的影响。仿真结果表明,加载系统较软,标本较高,围岩较低时,岩石破坏更为剧烈。本文提出的建模方法可用于预测不稳定的岩石破坏并估算释放的动能,这对于设计深部隧道中的岩石支护以控制岩爆破坏非常重要。

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