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Investigation of vortex shedding behind a porous square cylinder using lattice Boltzmann method

机译:格子Boltzmann方法研究多孔方圆柱体后面的涡旋脱落

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摘要

Incompressible, two-dimensional flow around a porous square cylinder placed in an infinite stream is simulated using the d2q9i model of the lattice Boltzmann method. The Reynolds number (based on the height of the cylinder) is kept at 100. The porosity φ of the cylinder is varied from 0.25 to 0.9 and permeability through the Darcy number Da from 0.0001 to 0.1. The velocity data at a point downstream of the cylinder are collected at each time step. Discrete Fourier transform analysis of this data is carried out to extract the dominant frequencies of the unsteady flow field behind the cylinder. Strouhal numbers (St) calculated using these dominant frequencies are compared with those of corresponding solid cylinder to bring out the effect of the porous medium on the wake structure and the vortex shedding. At Re=100, as the nondimensional permeability Da is increased from the solid cylinder limit, more flow results through the porous cylinder. The reduction in the value of the dominant frequency with increasing porous medium permeability Da and porosity φ indicates a substantial reduction in the vortex shedding. Corresponding static pressure plots and St values corroborate this observation at Re=100 and 200.
机译:使用格子Boltzmann方法的d2q9i模型,模拟了无限流动中放置的多孔方圆柱周围的不可压缩二维流。雷诺数(基于圆柱体的高度)保持在100。圆柱体的孔隙率φ在0.25到0.9之间变化,并且通过达西数Da的渗透率从0.0001到0.1变化。在每个时间步采集气缸下游点的速度数据。对该数据进行离散傅里叶变换分析,以提取圆柱体后部非定常流场的主导频率。将使用这些主频率计算出的斯特劳哈尔数(St)与相应的实心圆柱进行比较,以揭示多孔介质对尾流结构和涡旋脱落的影响。在Re = 100处,随着无量纲渗透率Da从实心圆柱体极限增加,更多的流量通过多孔圆柱体。随多孔介质渗透率Da和孔隙率φ的增加,主频率值的降低表明涡旋脱落量显着降低。相应的静压图和St值证实了Re = 100和200时的这一观察结果。

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