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Simulation of the Clustering Phenomenon in a Fast Fluidized Bed: The Importance of Drag Correlation

机译:快速流化床中聚集现象的模拟:阻力相关性的重要性

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摘要

Drag force is a key parameter in the numerical modeling of gas-particle flow in circulating fluidized beds. The reliability of current drag force correlations over the regime of fast fluidization has, however, not been thoroughly investigated. In this article, a drag force correlation accounting for the clustering effects for Geldart A particles is used to simulate the behaviors typical of fast fluidization, including dynamic evolution of clusters as well as time- averaged axial and lateral voidage profiles. Diverse images of clusters are captured and the time-averaged profiles of voidage are shown to be in quantitative agreement with the present empirical correlation. The results based on different constitutive correlations of drag force show the importance of the choice of drag force in modeling fast-fluidized beds. This drag force correlation, based on a simple averaging assumption, could give some basic insights about the magnitude of the drag reduction.
机译:阻力是循环流化床中气体颗粒流动数值模拟的关键参数。但是,目前的拖曳力相关性在快速流化过程中的可靠性尚未得到充分研究。在本文中,考虑了Geldart A颗粒的聚集效应的阻力关联用于模拟快速流化的典型行为,包括聚集的动态演化以及时间平均的轴向和横向空隙分布。捕获群集的不同图像,并且显示空隙的时间平均分布与当前的经验相关性在数量上一致。基于阻力的不同本构关系的结果表明,在建模快速流化床中选择阻力非常重要。基于简单平均假设的这种阻力相关性可以提供有关阻力减小幅度的一些基本见解。

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