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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Prediction of gas holdup in a column flotation cell using computational fluid dynamics (CFD)
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Prediction of gas holdup in a column flotation cell using computational fluid dynamics (CFD)

机译:计算流体动力学(CFD)柱浮选细胞气体持有的预测

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Computational fluid dynamics (CFD) was applied to predict the average gas holdup and the axial gas holdup variation in a 13.5 m high cylindrical column 0.91 m diameter. The column was operating in batch mode. A Eulerian-Eulerian multiphase approach with appropriate interphase momentum exchange terms was applied to simulate the gas-liquid flow inside the column. Turbulence in the continuous phase was modelled using the k-€ realizable turbulence model. The predicted average gas holdup values were in good agreement with experimental data. The axial gas holdup prediction was generally good for the middle and top parts of the column, but was over-predicted for the bottom part of the column. Bubble velocity profiles were observed in which the axial velocity of the air bubbles decreased with height in the column. This may be related to the upward increase in gas holdup in the column. Simulations were also conducted to compare the gas holdup predicted with the universal, the Schiller-Naumann, and the Morsi-Alexander drag models. The gas holdup predictions for the three drag models were not significantly different.
机译:应用计算流体动力学(CFD)以预测13.5M高圆柱柱0.91M直径的平均气体堆积和轴向气体堆积变化。该列以批处理模式运行。应用具有适当间间动量交换术语的Eulerian-eulerian多相方法来模拟柱内的气液流动。连续相中的湍流使用K-€可实现的湍流模型进行建模。预测的平均气体持有值与实验数据吻合良好。轴向气体堆叠预测通常适用于柱的中间部分和顶部,但过度预测为柱的底部。观察到气泡速度分布,其中气泡的轴向速度随柱中的高度而降低。这可能与柱子中的气体堆积的向上增加有关。还进行了模拟以比较普通,席勒 - 纳穆南和Morsi-Alexander拖曳模型预测的气体持有量。三个阻力模型的气体持有预测并没有显着差异。

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