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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A three-dimensional simulation of a steady approach flow past a circular cylinder at low Reynolds number
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A three-dimensional simulation of a steady approach flow past a circular cylinder at low Reynolds number

机译:低雷诺数下通过圆柱的稳定进场流的三维模拟

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摘要

The three-dimensional (3D) unsteady viscous wake of a circular cylinder exposed to a steady approach flow is calculated using a fractional-step finite-difference/spectral-element method. The calculated flow fields at Reynolds numbers of 100 (2D) and 200 (3D) are examined in detail. The flow field at Re = 100 is 2D as expected, while the flow field at Re = 200 has distinct 3D features, with spanwise wavelengths of about 3.75 cylinder diameters. The calculated results produce drag and lift coefficients and Strouhal numbers that agree extremely well with the experimental values. These 3D values at Re = 200 are in better agreement with experimental values than the results of a 2D calculation at Re = 200, which is expected.
机译:使用分数步有限差分/频谱元素方法计算暴露于稳定进场流的圆柱的三维(3D)非稳态粘性尾流。将详细检查雷诺数分别为100(2D)和200(3D)时的计算流场。 Re = 100时的流场是预期的2D,而Re = 200时的流场则具有独特的3D特征,其跨度波长约为3.75圆柱直径。计算结果产生的阻力和升力系数以及Strouhal数与实验值非常吻合。与预期的Re = 200的2D计算结果相比,Re = 200的这些3D值与实验值更加吻合。

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