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首页> 外文期刊>Journal of Fluid Mechanics >Wall-induced forces on a rigid sphere at finite Reynolds number
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Wall-induced forces on a rigid sphere at finite Reynolds number

机译:有限雷诺数下在刚性球体上的壁感应力

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We perform direct numerical simulations of a rigid sphere translating parallel to a flat wall in an otherwise quiescent ambient fluid. A spectral element method is employed to perform the simulations with high accuracy. For Re < 100, we observe the lift coefficient to decrease with both Reynolds number and distance from the wall. In this regime the present results are in good agreement with the low-Reynolds-number theory of Vasseur & Cox (1977), with the recent experiments of Takemura & Magnaudet (2003) and with the simulations of Kim et at. (1993). The most surprising result from the present simulations is that the wall-induced lift coefficient increases dramatically with increasing Re above about 100. Detailed analysis of the flow field around the sphere suggests that this increase is due to an imperfect bifurcation resulting in the formation of a double-threaded wake vortical structure. In addition to a non-rotating sphere, we also simulate a freely rotating sphere in order to assess the importance of free rotation on the translational motion of the sphere. We observe the effect of sphere rotation on lift and drag forces to be small. We also explore the effect of the wall on the onset of unsteadiness.
机译:我们对在静态环境流体中平行于平壁的平直球体进行直接数值模拟。频谱元素方法用于高精度地执行仿真。对于Re <100,我们观察到提升系数随雷诺数和距墙的距离而减小。在这种情况下,目前的结果与Vasseur&Cox(1977)的低雷诺数理论,Takemura&Magnaudet(2003)的最新实验以及Kim等人的模拟非常吻合。 (1993)。本模拟最令人惊讶的结果是,随着Re的增加,壁诱导的升力系数显着增加,超过100。对球体周围流场的详细分析表明,这种增加是由于不完美的分叉而导致形成的。双线程尾涡结构。除了非旋转球体,我们还模拟了一个自由旋转的球体,以评估自由旋转对球体平移运动的重要性。我们观察到球体旋转对升力和阻力的影响很小。我们还探讨了墙体对不稳定状态的影响。

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