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首页> 外文期刊>International journal of computational fluid dynamics >Numerical simulation of fluid flow of two rotating side-by-side circular cylinders by Lattice Boltzmann method
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Numerical simulation of fluid flow of two rotating side-by-side circular cylinders by Lattice Boltzmann method

机译:Lattice Boltzmann方法数值模拟两个并排旋转圆柱体的流体流动

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A numerical investigation of the two-dimensional laminar flow around side-by-side rotating circular cylinders using Lattice Boltzmann method is conducted. The effects of variation of rotational speed ratio β and different gap spacings g* at Reynolds number of 100 are studied. A various range of rotational speed ratio 0≤β≤ 2 for four different gap spacings of 3, 1.5, 0.7 and 0.2 are investigated. Flow conditions and its characteristics, such as lift and drag coefficients and Strouhal number, is studied. The results indicated that as β increases, the flow changes its condition from periodic to steady after a critical rotational speed. Results also indicated that variation of the gap spacing and rotational speed has significant effect on wake pattern. Wake pattern in turn has significant effect on the Strouhal number. Finally, the result is compared with experimental and other numerical data.
机译:利用莱迪思·玻尔兹曼方法对并排旋转的圆柱周围的二维层流进行了数值研究。研究了雷诺数为100时转速比β的变化和不同间隙间距g *的影响。对于四个不同的间隙间隔3、1.5、0.7和0.2,研究了转速比0≤β≤2的各种范围。研究了流动条件及其特性,例如升力和阻力系数以及Strouhal数。结果表明,随着β的增加,临界转速后,流体的状态从周期性改变为稳定。结果还表明,间隙间距和转速的变化对尾流模式有显着影响。唤醒模式又对斯特劳哈尔数有重要影响。最后,将结果与实验数据和其他数值数据进行比较。

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