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Applicability of the Mathews Stability Method to Open Stope Stability Assessment at Olympic Dam Mine

机译:Mathews稳定性方法在奥林匹克大坝露天采场稳定性评估中的适用性

摘要

Olympic Dam underground mine is located in South Australia approximately 520km north-north-west of Adelaide. The copper-gold-uranium deposit is extracted by open stope mining. The empirical Mathews stability method has been applied to open stope stability forecasting at Olympic Dam for the more than 20 years. This method adjusts the rock tunneling quality index (Q’) to allow for a rock stress factor, the orientation of any discontinuity and the orientation of the geometric surface formed by the excavation.The applicability of the Mathews stability method at Olympic Dam was analysed by assessing the volume of over break outside the stope design profile. It was found that 41% of all stope surface predictions were correct, and that 59% (by difference) of all predictions were therefore incorrect. This was found to be primarily due to the method as applied at Olympic Dam, rather than the inherent errors of the Mathews stability method. However there are a number of weaknesses in the Mathews stability method including the inability to identify structural weaknesses in the rock mass, to allow for different stress concentrations around irregular shaped stopes and to account for stope relaxation.A high resolution non-linear, Hoek Brown, numerical model is capable of providing displacement, velocity and strain rates for points within a rock mass. Velocity is the modelled rate of displacement of the points within the rock mass relative to the stope profile. An existing numerical model of this sort at Olympic Dam was used to investigate the relationship of the velocity of points moving toward a stope, and the probability of them becoming over break. It was found that with increasing rates of velocity the probability of a point becoming over break increased.The identified limitations of the application of the Mathews stability method are not enough to justify removing the method from the stope design process at Olympic Dam. With the implementation of recommended improvements such as, increasing the frequency of window mapping collection, live stress measurements and detailed post-mining assessment of stopes, an increase in the methods reliability can be expected. These improvements should be incorporated in conjunction with the continued trial of velocity as a stope performance indicator at Olympic Dam.
机译:奥林匹克大坝地下矿位于南澳大利亚州阿德莱德西北约520公里处。铜-金-铀矿床通过露天开采开采。 20多年来,经验性的Mathews稳定性方法已用于奥林匹克大坝的露天采场稳定性预测。该方法通过调整岩石隧道质量指数(Q')来考虑岩石应力因子,任何不连续面的方向以及开挖形成的几何表面的方向。通过对Mathews稳定性法在奥林匹克大坝上的适用性进行了分析评估采场设计轮廓之外的过分突破量。发现所有采场表面预测中有41%是正确的,因此所有预测中有59%(以差异为准)是不正确的。发现这主要是由于奥林匹克大坝所采用的方法,而不是马修斯稳定性方法的固有误差。但是,马修斯稳定性方法存在许多缺陷,包括无法识别岩体中的结构缺陷,无法在不规则形状的采场周围进行不同的应力集中以及无法解决采场松弛问题。高分辨率非线性,霍克·布朗(Hoek Brown) ,数值模型能够为岩体中的点提供位移,速度和应变率。速度是岩体中各个点相对于采场轮廓的模拟位移率。使用奥林匹克大坝上现有的此类数值模型来研究点向采场移动的速度与它们过度突破的可能性之间的关系。研究发现,随着速度的增加,一个点超过极限的可能性也增加了。Mathews稳定性方法的应用所确定的局限性不足以证明从奥林匹克大坝采场设计过程中删除该方法是合理的。通过实施建议的改进,例如增加窗口映射收集的频率,实时应力测量以及采场的详细采后评估,可以预期方法可靠性的提高。这些改进应与速度的持续试验结合起来,作为奥林匹克大坝的采场性能指标。

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