首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Study of slip velocity and application of drift-flux model to slip velocity in a liquid-solid circulating fluidized bed
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Study of slip velocity and application of drift-flux model to slip velocity in a liquid-solid circulating fluidized bed

机译:液固循环流化床滑移速度研究及漂移通量模型在滑移速度中的应用

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摘要

The increasing applications of liquid-solid circulating fluidized bed in chemical/biochemical industries require a better understanding of hydrodynamics of such system. This work aims to experimentally investigate the slip between the phases in a LSCFB. The variation of slip velocity with superficial liquid velocity, solids velocity, bed voidage and particle size and density is discussed. The apparent slip velocity of the phases is higher than the particle terminal velocity of a single particle. The R-Z equation developed based on the homogenous flow characteristics underpredicts the slip velocity in a LSCFB. The drift-flux model which considers the radial non-uniformity and slip between the phases was applied to the data of the present study. The predicted value by the model agreed with the apparent slip velocity well. The study also proposed an empirical correlation to predict the slip velocity. The empirical correlations aggress well with the experimental data.
机译:液-固循环流化床在化学/生化工业中的日益增长的应用要求对这种系统的流体动力学有更好的了解。这项工作旨在通过实验研究LSCFB中各相之间的滑移。讨论了滑移速度随表观液体速度,固体速度,床空隙率以及粒径和密度的变化。相的表观滑动速度高于单个颗粒的颗粒末端速度。基于均质流动特性开发的R-Z方程预测了LSCFB中的滑动速度。考虑了相间径向不均匀性和滑动的漂移通量模型被应用于本研究的数据。模型的预测值与表观滑移速度很好。该研究还提出了经验相关性以预测滑移速度。经验相关性与实验数据相吻合。

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