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首页> 外文期刊>International Journal of Mineral Processing >Numerical studies of the influence of particles' size distribution characteristics on the gravity separation performance of Liquid-solid Fluidized Bed Separator
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Numerical studies of the influence of particles' size distribution characteristics on the gravity separation performance of Liquid-solid Fluidized Bed Separator

机译:粒子尺寸分布特性对液固流化床分离器重力分离性能影响的数值研究

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摘要

A new CFD model for Liquid-solid Fluidized Bed Separator (LSFBS), namely the Eulerian-Eulerian-Lagrangian/RNG k-epsilon approach, was put forward and validated. According to the simulated separation results of two cases, the root-mean-square error (RMSE) between predicted partition numbers of all density fractions and corresponding experimental values were 2.47 and 2.83 respectively, demonstrating the CFD model was able to give accurate simulation results. The Rosin-Rammler model was used to describe the size distribution characteristics (SDC) of the feed, with the parameter D-x and n describing the fineness and particles size variation of the feed respectively. Single-factor tests and central composite design were then developed and simulated using the CFD model to investigate the influence of the two aspects of SDC on the separation performance of LSFBS based on density. The simulated separation results indicate that the finer the feed is, the greater the separation density (delta(50)) and E-p value are; the smaller the particles size variation is, the smaller the delta(50) and E-p value are. According to the response surface analysis, the influence of feed fineness on delta(50) is larger than that of particles size variation while the influence of feed fineness on E-p is smaller than that of particles size variation; the interactive effect between these two factors has a noteworthy influence on E-p but insignificant influence on delta(50). (C) 2016 Elsevier B.V. All rights reserved.
机译:提出并验证了一种新的液体固体流化床分离器(LSFBS)的新型CFD模型,即欧拉欧利亚拉拉格兰语/ rng k-epsilon方法。根据两种情况的模拟分离结果,所有密度分数和相应的实验值的预测分区数与相应的实验值之间的根均方误差(RMSE)分别为2.47和2.83,证明CFD模型能够提供精确的仿真结果。 Rosin-Rammler模型用于描述进料的尺寸分布特性(SDC),参数D-X和N分别描述饲料的细度和粒子尺寸变化。然后使用CFD模型开发和模拟单因素测试和中央复合设计,探讨SDC两个方面对基于密度的LSFB分离性能的影响。模拟分离结果表明饲料更细,分离密度越大(δ(50))和E-P值是;颗粒尺寸变化越小,δ(50)和E-P值越小。根据响应表面分析,饮料细度对δ(50)的影响大于颗粒尺寸变化的影响,而E-P对饲料细度的影响小于颗粒尺寸变化的影响;这两个因素之间的互动效果对E-P的影响有值得注意的影响,但对Δ(50)的影响微不足道。 (c)2016年Elsevier B.v.保留所有权利。

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