首页> 外文期刊>Transactions of the Institution of Mining and Metallurgy, Section A. Mining Technology >Evaluation of intensive preconditioning in block and panel caving - part II, quantifying the effect on seismicity and draw rates
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Evaluation of intensive preconditioning in block and panel caving - part II, quantifying the effect on seismicity and draw rates

机译:评价强化预处理的块和面板屈服——第二部分、量化影响地震活动和吸引率

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摘要

A combination of preconditioning by hydraulic fracturing and confined blasting referred to as intensive preconditioning was implemented at a major panel caving operation. The aim is to alter rock mass behaviour in a manner that could improve caving mechanics and extraction performance. A benchmark study involving data collected from operations in Chile, South Africa and Australia was carried out to investigate the hypothesis that operational data such as induced seismicity and draw rates could provide a quantitative measure of the impact of different preconditioning techniques. Analysis using Gutenberg and Richter (G-R) curves indicated that a massive and competent rock mass without preconditioning presents an induced-mining seismicity behaviour that is less favourable than a rock mass with intensive preconditioning, in other words, seismic events were shown to be more regular, numerous and their magnitudes higher than in the case where intensive preconditioning was applied. From draw rate data, analysis showed that the application of intensive preconditioning could improve draw rates by 15-28%, with relative differences of up to 38%. It is also important to note that this improvement in performance is achieved in a confined condition and at depths relatively greater than most block and panel caving operations.
机译:结合液压的预处理压裂和限制爆破称为实现在一个密集的预处理主要的操作面板屈服。岩体行为的方式提高屈服力学和提取的性能。收集的操作在智利、南非和澳大利亚进行了探讨假设诱导等操作数据地震活动和吸引率可能会提供一个定量测量的影响不同预处理技术。古登堡和里克特(g r)曲线显示一个巨大的和主管岩体预处理提供了一个induced-mining地震还比不上的行为与强化预处理,岩体句话说,地震事件已经被证明更定期,众多高及其大小比的情况下强化预处理是应用。应用程序的集中预处理可以提高利率上调15 - 28%,相对高达38%的差异。注意,这个性能的改善实现在一个限定条件和深度相对比大多数块和面板屈服的操作。

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