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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental study on mixing behaviors of wet particles in a bubbling fluidized bed
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Experimental study on mixing behaviors of wet particles in a bubbling fluidized bed

机译:鼓泡流化床中湿颗粒混合行为的实验研究

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Mixing behavior of binary particles with different densities in a wet fluidized bed has been experimentally investigated in this work. Some important hydrodynamic characteristics during mixing, such as the minimum fluidization velocity, flow pattern, and flotsam particle distribution are measured. The differences between dry and wet particles are systematically compared. It is found that the minimum fluidization velocity U-mf of wet particles is higher than that of dry particles due to the liquid bridge force between particles. U-mf reaches its maximum when the liquid saturation S = 0.1, and then decreases, and does not change much when the liquid saturation in the region of S = 0.2-0.3. Liquid addition can bring two opposite effects on the mixing of a binary mixture of particles with different densities. First, the intensity of bubbling in the wet fluidized bed is lower than that in the dry fluidized bed at the same operation gas velocity U-f, which will weaken the mixing. Secondly, the liquid bridge forces between particles can restrain the density segregation, which is beneficial for mixing. A simple method is developed based on the analysis of forces on flotsam particles to evaluate the effect of liquid bridge force on mixing. A segregation index S-e, defined as S-e = F-lift/F-resis, where F-lift contains the drag force F-d and buoyancy force F-b, and F-resis contains the gravitation force F-g and liquid bridge force F-lb, is used to indicate the segregation potential. The calculated results show that S-e 1 in the dry fluidized bed and S-e 1 in the wet fluidized bed, and dry particles are more inclined to segregate than wet particles. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中实验研究了湿流化床中具有不同密度的二元颗粒的混合行为。测量混合过程中的一些重要的流体动力学特性,例如最小流化速度,流动模式和浮素颗粒分布。系统地比较干和湿颗粒之间的差异。结果发现,由于颗粒之间的液体桥力,湿颗粒的最小流化速度U-MF高于干颗粒的流化速度。当液态饱和度S = 0.1然后减小时,U-MF达到其最大值,并且当S = 0.2-0.3区域中的液体饱和时不会变化很大。液体添加可以对不同密度的颗粒的二元混合物混合产生两个相反的影响。首先,在湿流化床中鼓泡的强度低于在相同操作气体速度U-F的干燥流化床中的强度,这将削弱混合。其次,颗粒之间的液体桥力可以抑制密度偏析,这是有益的混合。一种简单的方法,基于浮选颗粒上的力分析来评估液体桥力对混合的影响。定义为SE = F升降机/ f重的分离指数SE,其中F升力包含拖动力FD和浮力力FB,使用F-Resis包含重力FG和液态桥力F-LB,表示分离潜力。计算结果表明,S-E> 1在干燥流化床和S-E<在湿流化床中,干燥颗粒更倾斜以比湿颗粒隔离。 (c)2018 Elsevier B.v.保留所有权利。

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