首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Direct block-support simulation of grades in multi-element deposits: application to recoverable mineral resource estimation at Sungun porphyry copper-molybdenum deposit
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Direct block-support simulation of grades in multi-element deposits: application to recoverable mineral resource estimation at Sungun porphyry copper-molybdenum deposit

机译:多元素沉积物等级的直接阻断模拟:应用于Sugun卟啉铜 - 钼矿床中可恢复的矿产资源估算

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摘要

Recoverable mineral resources assessment has become a standard geostatistical application in the mining industry, with various geostatistical techniques currently available. This investigation aimed to improve the prediction at the Sungun deposit and to obtain mineral resource models capable of handling (i) the change of support from drill-hole composites to selective mining units (SMUs), (ii) the multivariate nature of the ore control selection criteria that involves both copper and molybdenum grades; and (iii) the local uncertainty on the true (unknown) grades. The solution presented in this paper is to use direct block-support sequential cosimulation in order to construct a set of alternative outcomes of the copper and molybdenum grades on block support over the deposit, with no need for storing point-support values, hence with a considerable gain in memory management and CPU time. The grade realizations so obtained are then processed to calculate the uncertainty in the mineral resources that can be recovered above given cut-off grades, both globally and on a block-by-block basis.
机译:可收回的矿产资源评估已成为采矿业中标准的地统计学应用,目前可用各种地统计学技术。这项调查旨在改善Sungun沉积物的预测,并获得能够处理(i)钻孔复合材料对选择性采矿单位(SMU)的转变的矿产资源模型,(ii)矿石控制的多变量性质涉及铜和钼等级的选择标准; (iii)真实(未知)等级的局部不确定性。本文提出的解决方案是使用直接块支持顺序化妆,以便在沉积物上构建铜和钼等级的一组替代结果,无需存储点支持值,因此内存管理和CPU时间的相当大的增益。然后处理如此获得的等级实现,以计算可以在全球和逐块的截止等级上方恢复的矿产资源中的不确定性。

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