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Numerical study of the effects of particle size and polydispersity on the agglomerate dispersion in a cyclonic flow

机译:粒径和多分散度对旋流中团聚体分散影响的数值研究

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This paper presents an investigation of powder dispersion based on a combined computational fluid dynamics (CFD) and discrete element method (DEM) approach. Agglomerates of different particle sizes and polydispersities are dispersed in a cyclonic flow at different flow velocities. The analysis of flow field and agglomerate properties indicates that the dispersion is governed by two competitive interactions, i.e. particle-particle cohesion and particle-wall impact, with the latter related to the air flow or the particle-fluid interaction. The internal shearing induced by air flow, however, only plays a minor role in powder dispersion for the system considered. The dispersion performance is described by fragment size distribution and fine particle fraction (FPF) which is the weight percentage of fragments with size less than 4.5 μm. Agglomerates of finer particles are more difficult to disperse at low flow rates due to strong particle-particle cohesion, but their dispersion becomes more efficient at high flow rates. Agglomerates with narrower particle size distributions tend to have better dispersion. An index based on the ratio of particle-wall impact energy and agglomerate cohesion energy is proposed to provide a quantitative characterization of dispersion performance.
机译:本文介绍了基于组合计算流体动力学(CFD)和离散元方法(DEM)方法的粉末分散性研究。不同粒径和多分散性的团聚物以不同的流速分散在旋风流中。对流场和附聚物性质的分析表明,分散体受两种竞争性相互作用控制,即颗粒-颗粒内聚力和颗粒-壁碰撞,后者与气流或颗粒-流体相互作用有关。但是,对于所考虑的系统,由气流引起的内部剪切仅在粉末分散中起较小的作用。分散性能由碎片尺寸分布和细颗粒分数(FPF)来描述,FPF是尺寸小于4.5μm的碎片的重量百分比。由于强的颗粒-颗粒内聚力,较细的颗粒的团聚体在低流速下更难分散,但在高流速下它们的分散效率更高。具有较窄粒度分布的附聚物趋于具有较好的分散性。提出了一种基于颗粒壁碰撞能与团聚内聚能之比的指数,以定量表征分散性能。

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