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Discrete particle simulations for flow of binary particle mixture in a bubbling fluidized bed with a transport energy weighted averaging scheme

机译:带有传输能量加权平均方案的二元颗粒混合物在鼓泡流化床中流动的离散颗粒模拟

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摘要

Flow behavior of small and big particles with the same particle density in a bubbling fluidized bed is mod_eled by a combined approach of discrete particle method and computational fluid dynamics (CFD-DPM). The collision time of a collision pair is computed by a quartic equation in which the effect of acceleration due to the different diameters is considered. A transport energy weighted averaging approach is proposed to determine the local gas velocity at a particle. The fluidization behavior of binary mixture differing in size is experimentally and numerically studied in the gas bubbling fluidized bed. The distributions of mass fraction of small and big particles along the bed height are simulated, and the profiles of the mean particle diameters of binary mixture are determined. The numerical results are in agreement with experimental data. The distributions of granular temperature, stresses, and shear viscosities of small and big particles are compared.
机译:在离散沸腾流化床中,具有相同颗粒密度的大小颗粒的流动行为是通过离散颗粒方法和计算流体力学(CFD-DPM)的组合方法来模拟的。碰撞对的碰撞时间是通过四次方程计算的,其中考虑了不同直径引起的加速度影响。提出了一种运输能量加权平均方法来确定颗粒处的局部气体速度。在鼓泡流化床中对不同尺寸的二元混合物的流化行为进行了实验和数值研究。模拟了小颗粒和大颗粒沿床高的质量分数分布,并确定了二元混合物的平均粒径分布。数值结果与实验数据吻合。比较了小颗粒和大颗粒的颗粒温度,应力和剪切粘度的分布。

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