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首页> 外文期刊>International Journal of Mineral Processing >Eulerian-Lagrangian study of dense liquid-solid flow in an industrial-scale cylindrical hydrocyclone
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Eulerian-Lagrangian study of dense liquid-solid flow in an industrial-scale cylindrical hydrocyclone

机译:工业规模圆柱形水力旋流器中稠密液固流的欧拉-拉格朗日研究

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摘要

Hydrocyclone has been widely used in particle separation processes. Extensive efforts have been devoted to studying the liquid-solid flow in conical hydrocyclone, however, studies on cylindrical hydrocyclone were much less, regardless of its industrial importance. To this end,an Eulerian-Lagrangian model, dense discrete phase model (DDPM), was used to simulate the complex liquid-solid flow in an industrial-scale cylindrical hydrocyclone, where Reynolds stress model (RSM) was used to model the turbulence of liquid phase due to its swirling nature, and then the numerical results were validated against the experimental data obtained from an industrial-scale cylindrical hydrocyclone. The validated model was then used to systematically study the effects of operating conditions as well as the geometry of cylindrical hydrocyclone on its separation efficiency. It was shown that (i) particle concentration at inlet had a remarkable influence on particle separation efficiency, but had a negligible effect upon processing capacity, expressed as the inlet volumetric flow rate of liquid-solid mixture; (ii) the increase of the length of vortex finder resulted in a slight decrease of separation efficiency and larger diameter of vortex finder led to increased mass flow rate through overflow and slightly decreased separation efficiency; (iii) increasing the height of cylindrical part resulted in a larger mass flow rate through underflow and better particle separation efficiency. Present studies indicated that DDPM method coupled with RSM was an effective tool for the design of liquid-solid hydrocyclone. (C) 2016 Elsevier B.V. All rights reserved.
机译:水力旋流器已广泛用于颗粒分离过程中。已经致力于研究圆锥形水力旋流器中的液固流动,但是,不管其工业重要性如何,对圆柱状水力旋流器的研究都很少。为此,使用欧拉-拉格朗日模型,致密离散相模型(DDPM)来模拟工业规模圆柱水力旋流器中的复杂液固流动,其中使用雷诺应力模型(RSM)来模拟湍流。液相由于其旋流特性,然后利用工业规模的圆柱型水力旋流器的实验数据验证了数值结果。经过验证的模型随后用于系统地研究操作条件以及圆柱形水力旋流器的几何形状对其分离效率的影响。结果表明:(i)入口颗粒浓度对颗粒分离效率有显着影响,但对处理能力的影响可忽略不计,以液-固混合物入口体积流量表示; (ii)涡流收集器长度的增加导致分离效率略有降低,而涡流收集器的较大直径导致通过溢流的质量流率增加,分离效率略有降低; (iii)增加圆柱部分的高度导致更大的通过底流的质量流率和更好的颗粒分离效率。目前的研究表明,DDPM方法结合RSM是设计液固水力旋流器的有效工具。 (C)2016 Elsevier B.V.保留所有权利。

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