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Evaluation of intensive preconditioning in block and panel caving – Part I, quantifying the effect on intact rock

机译:块状和面板崩落式密集预处理的评估-第一部分,量化对完整岩石的影响

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摘要

A combination of preconditioning by hydraulic fracturing and confined blasting referred to as intensive preconditioning has been implemented for the first time at a major panel caving operation. The reasoning behind this application was the potential to alter rock mass behaviour in a manner that could improve caving mechanics and overall extraction performance. A comprehensive sampling and testing campaign was conducted before and after the application of large scale intensive preconditioning. Intact rock data was analysed with the combined use of uniaxial compressive strength tests and acoustic emission monitoring. The aim was to define damage thresholds of intact rock and study specific boundaries associated with different degrees of preconditioning. To evaluate the intact rock failure process, four stages or damage were studied, they included crack initiation stress, crack damage stress, uniaxial peak strength and cumulative count of Acoustic Emission (AE) events. Results from this analysis indicated that between in situ and post hydraulic fracturing preconditioning, the initiation of damage occurs almost at the same stress levels, which as expected, demonstrated that hydraulic fracturing does not affect intact rock strength. However, after preconditioning by confined blasting, results indicated that the on-set of excessive damage prior to failure was occurring at lower axial stresses, this confirmed the presence of micro-fractures in the samples which may be attributed to confined blasting induced stresses.
机译:水力压裂和密闭爆破的预处理(称为强化预处理)相结合,是首次在大型面板放矿作业中实现的。该应用程序背后的原因是,有可能以改善崩落力学和整体开采性能的方式改变岩体行为。在进行大规模密集预处理之前和之后,进行了全面的采样和测试活动。通过结合使用单轴抗压强度测试和声发射监测来分析完整的岩石数据。目的是定义完整岩石的破坏阈值,并研究与不同程度的预处理相关的特定边界。为了评估完整的岩石破坏过程,研究了四个阶段或破坏,包括裂纹萌生应力,裂纹破坏应力,单轴峰值强度和声发射(AE)事件的累积计数。该分析的结果表明,在原位和水力压裂预处理之间,破坏的发生几乎在相同的应力水平下发生,这与预期的一样,表明水力压裂不会影响完整的岩石强度。但是,在通过有限爆破进行预处理之后,结果表明,在较低的轴向应力作用下,会发生破坏之前的过度破坏,这证实了样品中存在微裂纹,这可能是由于有限爆破引起的应力所致。

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