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Optimisation of the Paste Fill Cycle at Angas Zinc Mine, Strathalbyn, South Australia

机译:南澳大利亚斯特拉达尔邦斯塔斯锌矿膏填埋周期的优化

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The aim of this research is to develop a model through which the appropriate paste recipe parameters, for example solid content and cement content, can be derived given the stope specific requirements such as stope dimensions, required strength and curing time. A large number of samples and uniaxial compressive strength (UCS) tests were conducted at the Angas Zinc Mine (AZM) paste plant and testing facility. Samples were varied in tailings solids content, cement content and sand content. The results of this testing were modelled to determine the UCS relationship to each of the parameters. The output of this modelling was an easy-to-use program that outputs the design mixture given the stope dimensions and required stope backfill-curing time. This allowed flexibility within the mining schedule for curing times of cemented paste backfill stopes. The optimised schedule using the stope specific mix design, when compared to the standard 14-day curing time used previously, resulted in a smoother weekly mine production schedule. For the modelled 12-week period (one quarter) the 14-day curing time would result in an eight-day shutdown of the mill. The cost for each shutdown is in the order of $125 000/d. Due to the unique nature of each mine's tailings, this exact outcome would not be directly applicable to another paste fill site. However, the process in this report could be followed for another site to achieve a system similar to the output of this project. This would ultimately lead to a more optimised backfill and stoping cycle and a more optimised mine.
机译:该研究的目的是开发一种模型,通过该模型,可通过该模型,例如,可以推导出具有诸如Stope尺寸,所需的强度和固化时间的迹象特定要求,例如固体含量和水泥含量。在Angas锌矿(AZM)浆料厂和测试设施中进行了大量样品和单轴抗压强度(UCS)测试。样品在尾矿固体含量,水泥含量和砂含量中变化。该测试的结果被建模以确定与每个参数的UCS关系。该建模的输出是一种易于使用的程序,可在给定尺寸和所需的STOPE回填固化时间时输出设计混合物。这在采矿时间表内允许灵活性,以固化水泥浆料回填停止的时间。优化的时间表使用Stope特定的混合设计,与先前使用的标准的14天固化时间相比,导致更平稳的每周矿井生产计划。对于建模的12周(四分之一),为期14天的固化时间将导致轧机的八天停机。每次关机的费用为125000美元/ D的订单。由于每个矿山尾矿的独特性,这种确切的结果不会直接适用于另一个粘贴填充部位。但是,可以遵循此报告中的进程,以实现类似于此项目的输出的系统。这将最终导致更优化的回填和停止周期和更优化的矿井。

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