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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >A stochastic cut-off grade optimization model to incorporate uncertainty for improved project value
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A stochastic cut-off grade optimization model to incorporate uncertainty for improved project value

机译:一种随机切断级优化模型,包括改进项目价值的不确定性

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摘要

Cut-off grade is a decision-making criterion often used for determining the quantities of material (ore and waste) to be mined, ore processed, and saleable product. It therefore directly affects the cash flows from a mining operation and the net present value (NPV) of a mining project. A series of different cut-off grades that are applied over the life of mine (LOM) of an operation defines a cut-off grade policy. Due to the complexity of the calculation process, previous work on cut-off grade calculation has mostly focused on deterministic approaches. However, deterministic approaches fail to capture the uncertainty inherent in input parameters such as commodity price and grade-tonnage distribution. This paper presents a stochastic cut-off grade optimization model that extends Lane's deterministic theory for calculating optimal cut-off grades over the LOM. The model, code-named 'NPVMining, uses realistic grade-tonnage realizations and commodity price distribution to account for uncertainty. NPVMiningwas applied to a gold mine case study and produced an NPV ranging between 7% and 186% higher than NPVs from deterministic approaches, thus demonstrating improved project value from using stochastic optimization approaches.
机译:截止等级是通常用于确定待开采的材料(矿石和废物),矿石加工和可销售产品的决策准则。因此,它直接影响采矿业务的现金流量和矿业项目的净目前(NPV)。一系列不同的截止等级,在矿山(LOM)的寿命中施加的操作定义了截止级别政策。由于计算过程的复杂性,之前的截止级计算的工作主要集中在确定性方法。然而,确定性方法未能捕获输入参数所固有的不确定性,例如商品价格和等级 - 吨位分布。本文提出了一种随机截止级优化模型,扩展了LANE的确定性理论,用于计算LOM上的最佳截止等级。该模型代码名为“NPVMining”,使用现实级别的吨位实现和商品价格分配来解释不确定性。 NPVMiningSwas应用于金矿案例研究,并产生的NPV比确定性方法高出7%和186%,从而展示了使用随机优化方法的改进的项目价值。

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