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Using equivalent grade factors to find the optimum cut-off grades of multiple metal deposits

机译:使用等效的品位因子来找到多种金属矿床的最佳边界品位

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摘要

One of the most important aspects of mine design is to determine the optimum cut-off grades. Material grading above and below the cut-off is directed to different destinations. Optimization of cut-off grade is now an accepted principle for open pit planning studies. The most commonly criteria used in cut-off grade optimization is to maximize net present value. Lane formulated the concept of cut-off grade optimization for single metal deposit but this method cannot be use in multiple metal deposits. Because in single metal deposits six points are possible candidates for the optimum cut-off grade, in multiple metal deposits an infinite number of points are possible candidates for the optimum cut-off grades. The objective function evaluation of these infinite points is impossible. In this paper, the equivalent grade factor is used to find optimum cut-off grade of multiple metal deposits. First, the objective function is defined for multiple metal deposits and then objective function is converted to one variable function by using equivalent factors. The optimum equivalent cut-off grade of main metal can be found by the optimization techniques such as the Lane algorithm or elimination methods. At final step, the optimum cut-off grades will be determined by interpolation of grade-tonnage distribution of deposit.
机译:矿山设计的最重要方面之一是确定最佳的边界品位。分界点上方和下方的物料分级将定向到不同的目标。截止品位的优化现已成为露天矿计划研究的公认原则。临界品位优化中最常用的标准是使净现值最大化。莱恩(Lane)提出了针对单一金属矿床的临界品位优化的概念,但该方法不能用于多种金属矿床。因为在单个金属沉积物中六个点是最佳截止品位的可能候选者,所以在多个金属沉积物中,无限多个点可能是最佳截止品位的候选者。这些无限点的目标函数评估是不可能的。在本文中,等效品位因子用于找到多种金属矿床的最佳边界品位。首先,为多种金属沉积物定义目标函数,然后使用等效因子将目标函数转换为一个变量函数。可以通过优化技术(例如Lane算法或消除方法)来找到主要金属的最佳等效截止品位。在最后一步,最佳插值等级将通过插值矿床的吨位分布来确定。

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