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IMPACT OF CONCENTRATE FEED TEMPORAL FLUCTUATIONS ON A COPPER FLASH SMELTING PROCESS

机译:浓缩进料温度波动对铜闪熔过程的影响

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A numerical investigation of the impact of concentrate feed temporal fluctuations on the performance of a copper flash smelting process is presented. These fluctuations, which originate from the burner feed system, can adversely affect the combustion process in the reaction shaft. This work aims at predicting the severity of these detrimental effects using computational fluid dynamics (CFD). An unsteady, two-dimensional axisymmetric reaction shaft model was implemented in a commercial CFD package. The accuracy of this model was first assessed by comparing numerical predictions with available plant data. Simulations were then performed for different concentrate mass flow rate time-dependent input functions. This investigation focused on previously published feed throughput fluctuation frequencies. In all simulated cases, the time-mean concentrate throughput remained constant to allow direct comparison with an ideal non-fluctuating case. Numerical predictions of key performance indicators, such as the time-mean oxygen efficiency and average matte grade, are presented and discussed.
机译:提出了关于精矿进料时间波动对闪速熔炼工艺性能影响的数值研究。这些源自燃烧器进料系统的波动可能会对反应炉中的燃烧过程产生不利影响。这项工作旨在使用计算流体力学(CFD)预测这些有害影响的严重性。在商业CFD软件包中实现了非稳态二维轴对称反应轴模型。该模型的准确性首先通过将数值预测与可用的工厂数据进行比较来评估。然后针对不同的精矿质量流量随时间变化的输入函数进行了仿真。这项研究的重点是以前发布的饲料通过量波动频率。在所有模拟情况下,平均时间精矿通量保持恒定,可以与理想的非波动情况直接进行比较。提出并讨论了关键性能指标的数值预测,例如时间平均氧气效率和平均雾面等级。

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