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Meso-scale structures of bidisperse mixtures of particles fluidized by a gas

机译:气体流化的颗粒的双分散混合物的介观结构

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摘要

Flow characteristics of bidisperse mixtures of particles fluidized by a gas predicted by the mixture based kinetic theory of Garzó et al. (2007a,b) and the species based kinetic theory model of Iddir and Arastoopour (2005) are compared. Simulations were carried out in two- and three-dimensional periodic domains. Direct comparison of the meso-scale gas-particle flow structures, and the domain-averaged slip velocities and meso-scale stresses reveals that both mixture and species based kinetic theory models manifest similar predictions for all the size ratios examined in this study. A detailed analysis is presented in which we demonstrate when the species based theory of Iddir and Arastoopour (2005) will reduce to a mathematical form similar to the mixture framework of Garzó et al. (2007a,b). We also find that the flow characteristics obtained for bidisperse mixtures are very similar to those obtained for monodisperse systems having the same Sauter mean diameter for the cases examined; however, the domain-averaged properties of monodisperse and bidisperse gas-particle flows do demonstrate quantitative differences. The use of filtered two-fluid models that average over meso-scale flow structures has already been described in the literature; it is clear from the present study that such filtered models are needed for coarse-grid simulations of polydisperse systems as well.
机译:气体流化的颗粒的双分散混合物的流动特性由Garzó等人的基于混合物的动力学理论预测。 (2007a,b)和Iddir和Arastoopour(2005)的基于物种的动力学理论模型进行了比较。在二维和三维周期域中进行了仿真。直接比较中尺度气体颗粒的流动结构,以及域平均滑动速度和中尺度应力,发现基于混合物和物种的动力学理论模型均对本研究中考察的所有尺寸比均表现出相似的预测。提出了详细的分析,其中我们证明了基于物种的Iddir和Arastoopour(2005)的理论何时可以简化为类似于Garzó等人的混合框架的数学形式。 (2007a,b)。我们还发现,在检查的情况下,双分散混合物获得的流动特性与具有相同Sauter平均直径的单分散体系获得的流动特性非常相似。但是,单分散和双分散气体颗粒流的域平均性能确实显示出数量上的差异。文献中已经描述了在中尺度流动结构上平均的滤波后的两流体模型的使用。从本研究中可以清楚地看出,对于多分散系统的粗网格模拟,也需要这种过滤模型。

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