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CFD modelling of the flow and reactions in the Olympic Dam flash furnace smelter reaction shaft

机译:奥林匹克大坝闪蒸炉冶炼厂反应竖井中流动和反应的CFD建模

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摘要

The performance of flash furnace burners can be evaluated quickly and efficiently using CFD modelling. Gas flows are modelled using the conventional Eulerian approach, while Lagrangian particle tracking is used to model the flow of solid feed through the burner and into the reaction shaft. A composite particle model has been developed that considers the solid feed to be made up of single particles containing appropriate quantities of concentrate, flux and dust. Solid fuels (such as coal) can also be included in the composite particle. Reactions between the solids and gas are then modelled using standard heat and mass transfer relationships. Results from the modelling process are shown for BHP-Billiton's Olympic Dam copper flash smelter with the burner that was used from 1998-2003. Flow patterns, temperature and gas composition distributions, particle dispersion and residence time, and overall extent of sulphur removal are predicted and used to evaluate furnace performance. However, results are sensitive to the assumed size of the composite particles, and plant measurements are required to determine the appropriate composite particle size to predict quantitative data.
机译:可以使用CFD模型快速有效地评估闪蒸炉燃烧器的性能。使用常规的欧拉方法对气体流进行建模,而拉格朗日粒子跟踪用于对通过燃烧器并进入反应炉的固体进料流进行建模。已开发出一种复合颗粒模型,该模型考虑了固体进料由包含适当量的精矿,助熔剂和粉尘的单个颗粒组成。固体燃料(例如煤)也可以包含在复合颗粒中。然后使用标准的传热和传质关系对固体和气体之间的反应进行建模。显示了BHP-Billiton的Olympic Dam铜闪速熔炼炉(从1998年至2003年使用)的建模过程结果。预测了流型,温度和气体成分分布,颗粒分散度和停留时间以及脱硫的总体程度,并将其用于评估炉子性能。但是,结果对假定的复合颗粒尺寸敏感,因此需要进行工厂测量以确定合适的复合颗粒尺寸以预测定量数据。

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