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Numerical Simulation of Viscous Flow over a Square Cylinder Using Lattice Boltzmann Method

机译:方格Boltzmann方法数值模拟圆柱体上的粘性流动

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This work is concerned with the lattice Boltzmann computation of two-dimensional incompressible viscous flow past a square cylinder confined in a channel. It is known that the nature of the flow past cylindrical obstacles is very complex. In the present work, computations are carried out both for steady and unsteady flows using lattice Boltzmann method. Effects of Reynolds number, blockage ratio, and channel length are studied in detail. As good care has been taken to include appropriate measures in the computational method, these results enjoy good credibility. To sum up, the present study reveals many interesting features of square cylinder problem and demonstrates the capability of the lattice Boltzmann method to capture these features.
机译:这项工作与二维不可压缩粘性流通过一个封闭在通道中的方圆柱体的格子玻尔兹曼计算有关。众所周知,流过圆柱形障碍物的性质非常复杂。在本工作中,使用格子Boltzmann方法对稳态和非稳态流动都进行了计算。详细研究了雷诺数,阻塞比和通道长度的影响。由于在计算方法中已采取适当的措施以包括适当的措施,因此这些结果具有良好的信誉。综上所述,本研究揭示了方柱问题的许多有趣特征,并证明了格子Boltzmann方法捕获这些特征的能力。

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