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Stochastic Mine Production Scheduling with Multiple Processes: Application at Escondida Norte, Chile

机译:具有多个过程的随机矿山生产调度:在智利埃斯孔迪达的应用

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摘要

Mining complexes can contain multiple mines operating simultaneously along with multiple processing streams, stockpiles and products. Stochastic optimization methods developed to date generate only local optimal solutions in the sense that they do not consider the entire mining complex. This paper presents an extension of a multi-stage method used for generating long-term risk-based mine production schedules, to operations with multiple rock types and processing streams. The developed method uses a simulated annealing based algorithm during the optimization stage, seeking to minimize deviations from production targets for waste and different ore processing streams. The proposed approach is applied at Escondida Norte copper deposit, Chile, in which sulphide, oxide, mixed and waste materials are present with milling, bio-leaching and acid-leaching being the available processing streams. The stochastic schedule generates expected deviations from mill and waste production targets smaller than 5%, which avoid indirect costs associated to idle capacities. A schedule generated conventionally exhibits expected deviations of the order of 20%.
机译:采矿综合体可能包含多个同时运行的矿山以及多个处理流,库存和产品。迄今为止开发的随机优化方法仅在不考虑整个采矿综合体的意义上仅生成局部最优解。本文介绍了一种用于生成基于长期风险的矿山生产计划的多阶段方法的扩展,该方法适用于具有多种岩石类型和加工流的作业。所开发的方法在优化阶段使用基于模拟退火的算法,力求最大程度地减少与废物和不同矿石加工流的生产目标之间的偏差。拟议的方法在智利的埃斯孔迪达·诺特铜矿床中使用,该矿床中存在硫化物,氧化物,混合材料和废料,并且可以进行研磨,生物浸出和酸浸处理。随机进度表会导致与工厂和废物生产目标之间的预期偏差小于5%,从而避免了与闲置产能相关的间接成本。常规上生成的进度表表现出约20%的预期偏差。

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