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CFD-DEM modelling of multiphase flow in dense medium cyclones

机译:稠密气旋中多相流的CFD-DEM建模

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摘要

Dense medium cyclone (DMC) is a high-tonnage device that is widely used to upgrade run-of-mine coal in coal preparation. It is simple in design but the flow pattern within it is complex due to the size and density distributions of the feed and process medium solids, and the turbulent vortex formed. This paper presents a mathematical model to describe this flow system by means of combining Discrete Element Method (DEM) with Computational Fluid Dynamics (CFD). The DEM is used to model the motion of discrete particles by applying Newton's laws of motion. The CFD is used to model the motion of slurry medium by numerically solving the local-averaged Navier-Stokes equations facilitated with the Volume of Fluid (VOF) and Mixture multiphase flow models. The approach is shown to be able to reproduce typical flow phenomena in DMCs. The effect of medium-to-coal ratio and the so-called "surging" phenomenon are analyzed. An attempt is made to explain the observed phenomena in terms of particle-particle, particle-fluid and particle-wall interaction forces. The approach offers a convenient way to examine the flow and performance of DMC in relation to geometric, material and operational conditions.
机译:重介质旋风分离器(DMC)是一种高吨位设备,被广泛用于升级选煤中的原煤。它设计简单,但由于进料和工艺介质固体的尺寸和密度分布以及形成的湍流涡流,其内部的流型复杂。本文提出了一种数学模型,通过结合离散元方法(DEM)和计算流体动力学(CFD)来描述该流动系统。 DEM用于通过应用牛顿运动定律对离散粒子的运动进行建模。 CFD用于通过数值求解流体体积(VOF)和混合物多相流模型促进的局部平均Navier-Stokes方程来对浆液介质的运动进行建模。实践证明,该方法能够重现DMC中的典型流动现象。分析了中煤比的影响和所谓的“喘振”现象。试图从颗粒-颗粒,颗粒-流体和颗粒-壁的相互作用力来解释观察到的现象。该方法提供了一种方便的方法来检查与几何,材料和操作条件有关的DMC的流量和性能。

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