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首页> 外文期刊>Engineering Computations >Optimum cut-off grade policy for open pit mining operations through net present value algorithm considering metal price and cost escalation
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Optimum cut-off grade policy for open pit mining operations through net present value algorithm considering metal price and cost escalation

机译:考虑金属价格和成本上涨的净现值算法的露天采矿最佳品位策略

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Purpose - This paper sets out to propose a new cut-off optimization algorithm for effective decision making at the open pit mine planning stage.rnDesign/methodology/approach - The determination of optimum cut-off grade to maximize the net present value of an open pit mining operation is influenced by the economic parameters including metal price and operating costs, the capacities of mine, mill, and refining stages, and grade distribution of the mineral deposit. The market plays a vital role in changing the economic parameters; therefore, they may escalate during mine life. The effect of these changes could be enormous on optimum cut-off grade policy. The main motive is to introduce economic parameters escalation into the established theory of optimum cut-off grades and study the impact of these changes on overall economics of the operation. Therefore, a cut-off grade optimization algorithm is developed, which considers dynamic metal price and cost escalation during mine life.rnFindings - A copper deposit case study shows that, keeping the metal price escalation at a minimum, the impact of mining and milling costs escalation is relatively higher than refining and administrative costs. Hence, a high-escalation rate in mining and milling costs may change an economic operation into an uneconomic scenario.rnResearch limitations/implications - Management of stockpiles as a policy may be introduced in the algorithm for improvement in economy through maximum utilization of mineral resources. Originality/value - The algorithm due to its flexibility allows analysis of various options in the least possible time, which makes it valuable to mine planners in decision making for major mining investments.
机译:目的-本文着手提出一种新的边界优化算法,以在露天矿山规划阶段进行有效的决策。设计/方法/方法-确定最佳边界等级以最大化露天矿的净现值露天采矿作业受以下经济参数影响,包括金属价格和运营成本,矿山,轧机和精炼阶段的能力以及矿床的品位分布。市场在改变经济参数方面起着至关重要的作用。因此,它们可能会在矿山使用期间升级。这些变化对最佳截止品位政策的影响可能是巨大的。主要动机是将经济参数的提升引入已建立的最佳临界品位理论,并研究这些变化对运营总体经济的影响。因此,开发了一种考虑金属矿产生命周期中金属价格动态变化和成本上涨的临界品位优化算法。rn发现-铜矿床案例研究表明,将金属价格上涨保持在最低水平,对采矿和铣削成本的影响升级相对高于炼油和管理成本。因此,采矿和制粉成本的高增长率可能会将经济运行转变为不经济的情况。研究限制/意义-可以将库存管理作为一项策略引入到算法中,以通过最大程度地利用矿产资源来改善经济。独创性/价值-该算法由于具有灵活性,因此可以在最短的时间内分析各种选择,这对于矿业计划者进行重大采矿投资的决策具有重要的价值。

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