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首页> 外文期刊>International Journal of Scientific & Technology Research >Determination Of Optimal Stope Strike Length On Steep Orebodies Through Laser Scanning At Lubambe Copper Zambia
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Determination Of Optimal Stope Strike Length On Steep Orebodies Through Laser Scanning At Lubambe Copper Zambia

机译:在赞比亚鲁巴贝铜矿上通过激光扫描确定陡峭矿体的最佳采掘长度

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摘要

Lubambe Copper Mine is located in Chililabombwe, Zambia, and is a joint copper mining venture with three partners that include African Rainbow Minerals (40%), Vale (40%) and the Government of Zambia (20%). The current mining method utilises Longitudinal Room and Pillar Mining (LRP) on 70m long panels strike length. However, these long panels have resulted in unprecedented levels of dilution mainly from the collapse of hanging wall laminated ore shale (OS2) leading to reduced recoveries. Observations made underground show high variability in geological and geotechnical conditions of the rock mass with factors such as weathering on joints, lamina spaced joints and stress changes induced by mining all contributing to weakening and early collapse of the hanging wall. Therefore a study was undertaken to establish the optimal stope strike length of steep ore bodies at Lubambe. The exercise involved the use of Faro Laser Scanner every four stope rings blasted, with time when the scan was performed noted. The spatial coherence of lasers makes them ideal measuring tools in situations where measurements need to be taken in inaccessible areas. Recent advances in laser scanning coupled with the exponential increase in processing power have greatly improved the methods used to estimate stope tonnages extracted from massive inaccessible stopes. The collected data was then used to construct digital three dimensional models of the stope contents. Sections were cut every metre with deformations taken and analysed with respect to time. Deformation rates from the hanging wall was reducing from 0.14t/hr to 0.07t/hr between rings 1 to 8. This reduction was as a result of slot blasting that involved drilling and blasting a number of holes at the same time. Between rings 8 to 25 deformation was constant averaging 0.28t/hr and between rings 26 and 28, a sharp increase in deformation rate was experienced from as low as 0.16t/hr to 6.33t/hr. This sharp increase defines the optimal stope length as 50 m beyond which there is excessive levels of dilution mainly from the hanging wall.
机译:Lubambe铜矿位于赞比亚的奇利拉邦博韦,是一家合资铜矿企业,与三个合作伙伴合作,包括非洲彩虹矿业(40%),淡水河谷(40%)和赞比亚政府(20%)。当前的开采方法是在70m长的板块走向长度上使用纵向室和支柱开采(LRP)。然而,这些长板块导致了前所未有的稀释水平,这主要是由于悬挂壁层压矿石页岩(OS2)的坍塌导致回收率降低。在地下进行的观测表明,岩体的地质和岩土条件具有很大的变化性,其中包括节理的风化,层状节理的间隔以及采矿引起的应力变化等因素,这些都导致了悬壁的减弱和早期倒塌。因此,进行了一项研究来确定卢巴贝比陡峭矿体的最佳采场长度。演习涉及每爆炸四个采场环使用Faro Laser Scanner,并记录进行扫描的时间。激光的空间相干性使其成为需要在无法接近的区域进行测量的情况下的理想测量工具。激光扫描的最新进展以及处理能力的指数级增长大大改善了用于估算从无法进入的大型采场中采出的采场吨位的方法。然后,将收集到的数据用于构建采场内容的数字三维模型。每米切割一次截面,并进行变形并进行时间分析。从吊环1到8之间,悬挂壁的变形速率从0.14t / hr降低到0.07t / hr。这种降低是槽式喷砂的结果,该喷砂包括同时钻孔和爆破多个孔。在环8至25之间,变形平均平均为0.28t / hr,在环26与28之间,变形率从低至0.16t / hr急剧增加至6.33t / hr。这种急剧的增加将最佳采场长度定义为50 m,超过该距离,主要是从悬挂壁上有过多的稀释液。

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