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Production Scheduling with Horizontal Mixing Simulation in Block Cave Mining

机译:砌块洞穴挖掘中水平混合仿真的生产调度

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摘要

High production rates and low operating costs highlight block caving as one of the favorable underground mining methods. However, the uncertainties involved in the material flow make it complicated to optimize the production schedule for such operations. In this paper, a stochastic mixed-integer linear optimization model is proposed in order to capture horizontal mixing that occurs among the draw columns within the production scheduling optimization. The goal is to not only consider the material above each drawpoint for extraction from the same drawpoint, as traditional production scheduling does, but also to capture the horizontal movements among the adjacent draw columns. In this approach, different scenarios are generated to simulate the horizontal mixing among adjacent slices within a neighborhood radius. The best height of draw for draw columns is also calculated as part of the optimization. The model is tested for a block-cave mine with 640 drawpoints to feed a processing plant for 15 years. The resulting NPV is 473M$ while the deviations from the targets in all scenarios during the life of the mine are minimized. Using the proposed model will result in more reliable mine plans as it takes the horizontal mixing into account in addition to achieving the production goals. Using different penalties for grade deviations shows that the model is a flexible tool in which the mine planners can achieve their goals based on their priorities.
机译:高生产率和低运营成本突出了块体崩落法作为一种有利的地下采矿方法。然而,物流中涉及的不确定性使得优化此类操作的生产计划变得复杂。本文提出了一种随机混合整数线性优化模型,以捕获生产调度优化中各分栏之间的水平混合。其目的是不仅考虑在每个抽出点上方的材料用于从相同的抽出点提取,如传统的生产调度所做的,而且还捕捉相邻绘制列之间的水平运动。在这种方法中,生成不同的场景来模拟邻域半径内相邻切片之间的水平混合。作为优化的一部分,还将计算拉伸柱的最佳拉伸高度。该模型在一个有640个取料点的块状洞穴矿上进行了15年的测试。由此产生的净现值为4.73亿美元,而在矿山寿命期间的所有情况下,与目标的偏差都最小化。除了实现生产目标外,还考虑了水平混合,因此使用拟议模型将产生更可靠的采矿计划。对品位偏差使用不同的惩罚表明,该模型是一种灵活的工具,在该工具中,矿山规划者可以根据其优先级实现其目标。

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