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首页> 外文期刊>Rock Mechanics and Rock Engineering >Use of Probabilistic Numerical Modeling to Evaluate the Effect of Geomechanical Parameter Variability on the Probability of Open-Stope Failure: A Case Study of the Niobec Mine, Quebec (Canada)
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Use of Probabilistic Numerical Modeling to Evaluate the Effect of Geomechanical Parameter Variability on the Probability of Open-Stope Failure: A Case Study of the Niobec Mine, Quebec (Canada)

机译:概率数值模型的使用评价地质力学参数变异对开放式故障概率的影响 - 以魁北克(加拿大)为例

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The inherent variability of the geomechanical parameters of a rock mass plays a critical role in affecting underground mine stability. Neglecting this characteristic of a rock mass oversimplifies stability assessment and provides potentially inaccurate results as the actual behavior of rock mass is not considered. Use of probabilistic methods in conjunction with numerical analysis is a reliable approach for evaluating the effect of geomechanical parameter variability on the different modes of underground instability. The degree of stability can be expressed by the probability of failure for different stress-induced instability modes. Here, we use probabilistic methods (random Monte Carlo and Monte Carlo simulations) coupled with the finite difference code FLAC3D to incorporate the variability of rock mass geomechanical parameters into numerical analysis. We assess the stability of seven existing primary open stopes at mining levels V and VI at the Niobec Mine, Quebec, Canada. The stability around each open stope is evaluated by calculating the tensile and compressive probabilities of failure, based on the Hoek-Brown tensile and compressive safety factor, and the probability of brittle damage initiation (PDI), via the brittle shear ratio. For the evaluated open stopes, tensile and compressive failures share similar probabilities of occurrence. Considering the PDI values around all the open stopes, no brittle failure is expected to occur under the existing conditions of rock mass quality and in situ stress regime at the Niobec Mine. Comparison of these probabilistic numerical model results with those run using a deterministic numerical approach highlights the effect of variability of rock mass geomechanical parameters on stope stability.
机译:岩石地质力学参数的固有变异在影响地下矿井稳定性方面发挥着关键作用。忽略岩石群众的这种特征过度简化稳定性评估,并提供可能不准确的结果,因为不考虑岩体的实际行为。使用概率方法与数值分析的使用是一种可靠的方法,用于评估地质力学参数变异性对地下不稳定性模式的影响。稳定性可以通过对不同应力诱导的不稳定模式的失效概率来表示的。在这里,我们使用概率方法(随机蒙特卡罗和蒙特卡罗模拟)与有限差分码FLAC3D耦合,将岩体大规模地质力学参数的可变性掺入数值分析中。我们在加拿大魁北克省纽伯克矿的矿业水平v和vi处分评估七个现有的初级开放停止的稳定性。通过计算通过脆性剪切比计算失效的拉伸和压缩概率,通过脆性剪切率来评估每个开放迹象周围的稳定性。对于评估的开放式停止,拉伸和压缩失败共享类似的发生概率。考虑到所有开放停止周围的PDI值,预计在现有的岩石质量条件下会出现脆性失败,并在Niobec矿井的原位压力制度下发生。这些概率数值模型结果与使用确定性数值方法运行的这些概率数值模型结果突出了岩体地质机质参数变异性对静止稳定性的影响。

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