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Influence of Void Fraction Calculation on Fidelity of CFD-DEM Simulation of Gas-Solid Bubbling Fluidized Beds

机译:空隙率计算对气固鼓泡流化床CFD-DEM模拟逼真度的影响

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摘要

The correct calculation of cell void fraction is pivotal in accurate simulation of two-phase flows using a computational fluid dynamics-discrete element method (CFD-DEM) approach. Two classical approaches for void fraction calculations (i.e., particle centroid method or PCM and analytical approach) were examined, and the accuracy of these methodologies in predicting the particle-fluid flow characteristics of bubbling fluidized beds was investigated. It was found that there is a critical cell size (3.82 particle diameters) beyond which the PCM can achieve the same numerical stability and prediction accuracy as those of the analytical approach. There is also a critical cell size (1/19.3 domain size) below which meso-scale flow structures are resolved. Moreover, a lower limit of cell size (1.63 particle diameters) was identified to satisfy the assumptions of CFD-DEM governing equations. A reference map for selecting the ideal computational cell size and the suitable approach for void fraction calculation was subsequently developed.
机译:使用计算流体动力学离散元方法(CFD-DEM)方法对两相流进行精确模拟,正确计算单元空隙分数至关重要。研究了两种计算空隙率的经典方法(即颗粒质心法或PCM和分析法),并研究了这些方法在预测鼓泡流化床颗粒-流体流动特性方面的准确性。发现存在一个临界孔尺寸(3.82粒径),超过该尺寸,PCM可以实现与分析方法相同的数值稳定性和预测精度。还有一个关键的像元大小(1 / 19.3域大小),在该大小以下即可解析中尺度流动结构。而且,确定了泡孔尺寸的下限(1.63粒径)以满足CFD-DEM控制方程的假设。随后开发了用于选择理想计算像元大小的参考图以及用于空隙率计算的合适方法。

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