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Rock Mechanics Design and Practice for Squeezing Ground and High Stress Conditions at Perseverance Mine

机译:岩石力学设计与实践,在坚持不懈地挤压地面和高压力条件

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Mining of the Agnew nickel deposit commenced in 1970 using a variety of underground mining methods, though with mixed success due to the difficult ground conditions. WMC Resources Ltd acquired the operation in 1989, and commenced nickel production with an open pit. In 1995 all production reverted to the rejuvenated underground mine, using exclusively SLC (sublevel caving) methods. Currently the mine produces 1.4 Mt per annum, at an average grade of 1.74 per cent Ni. Underground mining of the Perseverance orebody has always presented significant challenges due to the difficult ground conditions in the weak and altered ultramafic rocks. The range of problems include areas of swelling minerals, intense and extremely weak shear zones, relatively high in situ stress, and in other areas very brittle rocks. Under these conditions rock mechanics input has been and remains a critical element of the mining strategy. Severe ground behaviour difficulties down to a depth of 500 m below surface prompted a review of the mining strategy for the large disseminated nickel orebody, including evaluation of alternative mining methods. However, sublevel caving was ultimately selected as the preferred method, and a re-design of the SLC cross-cut layout followed. A selection of rock mechanics investigations of interest are described, including complex virgin stress measurements, detailed ground behaviour monitoring, and the use of non-linear stress analyses to re-design the mine layout. Subsequent ground behaviour, support design and production scheduling are also described.
机译:1970年开始的雄芯矿床开采了使用各种地下采矿方法,但由于艰难的地面条件,成功的成功。 WMC Resources Ltd于1989年收购了该行动,并开展了距离坑的镍生产。 1995年,所有生产都恢复到恢复活力的地下矿井,仅使用SLC(Sublevel Caving)方法。目前,矿井每年生产1.4吨,平均级别为1.74%。由于弱势和改变的超岩石岩石的艰难地,恒定矿石的地下挖掘一直呈现出重大挑战。问题范围包括肿胀矿物质,强烈和极其弱剪力区的区域,相对较高的原位应力,以及其他地区非常脆弱的岩石。在这些条件下,岩石力学投入已经存在,并且仍然是采矿策略的关键因素。严重的地面行为难以下降500米的困难促使对大型播放镍矿体的采矿策略进行审查,包括评估替代采矿方法。然而,最终选择了Sublevel崩落作为优选的方法,并遵循SLC交叉布局的重新设计。描述了一种摇滚力学调查的感兴趣的研究,包括复杂的处方应力测量,详细的地面行为监测,以及使用非线性应力分析来重新设计矿井布局。还描述了随后的接地行为,支持设计和生产调度。

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