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Numerical study of liquid–gas–solid flow in classifying hydrocyclones: Effect of feed solids concentration

机译:水力旋流器分级中液-气-固流动的数值研究:进料固体浓度的影响

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This work presents a numerical study of liquid–gas–solid flow in classifying hydrocyclones (CHs). In the numerical model, the turbulent flow of a liquid–gas–solid mixture is modelled using the Reynolds stress model. The interface between the liquid and air core, and the particle flow are both modelled using the mixture multiphase model under different conditions. The flow features are examined in terms of flow field, pressure drop, amount of water split to underflow, and separation efficiency. The approach is first verified by comparing the measured and calculated results. Then, it is used to investigate the effects of feed solids concentration and its fluctuation. The results show that when feed solids concentration is increased, the separation efficiency decreases while the cut size increases; the inlet pressure initially decreases to a minimum and then increases, and the amount of water split to underflow firstly increases to a maximum and then decreases. It is also shown that the air core, solid mass flowrates on the underflow and overflow, and inlet pressure drop fluctuate corresponding to feed solids fluctuation. However, the fluctuation only affects the average CH separation efficiency slightly.
机译:这项工作提出了对水力旋流器(CHs)进行分类的液-气-固流动的数值研究。在数值模型中,使用雷诺应力模型对液-气-固混合物的湍流进行建模。使用混合多相模型在不同条件下对液芯与空芯之间的界面以及颗粒流进行建模。根据流场,压降,分流至下溢的水量和分离效率来检查流动特征。首先通过比较测量结果和计算结果来验证该方法。然后,它用于研究进料固体浓度及其波动的影响。结果表明,当进料固形物浓度增加时,分离效率降低,而切粒尺寸增加;入口压力最初减小到最小然后增加,并且分解成底流的水量首先增加到最大然后减小。还显示出,空气芯,固体质量在下溢和溢流上流动,并且入口压降对应于进料固体波动而波动。但是,波动仅会轻微影响平均CH分离效率。

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