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Macroscopic Flow Structure of Solid Particles in Circulating Liquid-Solid Fluidized Bed Riser

机译:循环液固流化床立管中固体颗粒的宏观流动结构

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References(23) Cited-By(16) Macroscopic flow structure of circulating liquid-solid fluidized beds (CLSFB) is investigated over a wide range of liquid velocities and circulating solid mass fluxes. Two kinds of glass ballotini, having respective mean diameters of 93 μm and 182 μm, were employed as a bed material, which always exhibit particulate fluidization in a batch operation. From systematic measurements of static pressures in the CLSFB riser at various liquid velocities and circulating solid mass fluxes it is found that the axial distribution of solid holdup is always uniform throughout the riser. The liquid-solid slip velocity is found to become appreciably higher than that in batch liquid-solid fluidized beds. From visual observation, it is found that particles tend to form aggregates with irregular shapes at liquid velocity higher than the particle terminal velocity, indicating the transition of fluidization state from particulate to aggregative. The change of the fluidization states with the operating conditions is quantitatively characterized by a power spectral density distribution and a fractal dimension of local voidage fluctuation obtained from an image analysis of photographs taken through the riser wall for the different fluidization regimes. The results clearly indicated that the formation of larger scale aggregates takes place at a liquid velocity appreciably higher than the particle terminal velocity leading to a slight decrease of complexity in the microscopic spatial distribution of bed voidage.
机译:参考文献(23)引用(16)对液体-固体流化床(CLSFB)的宏观流动结构进行了研究,研究了液体速度和固体流通量的变化。分别使用平均直径分别为93μm和182μm的两种玻璃巴洛蒂尼作为床材料,它们在分批操作中始终表现出颗粒流态化。通过在各种液体速度和循环固体质量通量下对CLSFB立管中的静压进行系统测量,可以发现固体含量的轴向分布在整个立管中始终是均匀的。发现液固滑移速度明显高于分批液固流化床。从视觉观察,发现颗粒倾向于以高于颗粒末端速度的液体速度形成具有不规则形状的聚集体,表明流化状态从颗粒到聚集体的转变。流化状态随操作条件的变化通过功率谱密度分布和局部空隙度波动的分形维数定量表征,局部空隙度波动是通过对不同流化方式通过立管壁拍摄的照片进行图像分析而获得的。结果清楚地表明,较大规模的聚集体的形成是在液体速度明显高于颗粒末端速度的情况下发生的,从而导致床空隙微观空间分布的复杂性略有降低。

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