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Computational Study of Three-Dimensional Flow Past an Oscillating Cylinder Following a Figure Eight Trajectory

机译:三维流过振动缸之后的三维流动的计算研究八个轨迹

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The paper presents a computational study of three-dimensional flow past a cylinder forced to oscillate in a uniform stream, following a figure-eight trajectory. Flow simulations were performed for Re = 400, for different cases, defined in terms of the oscillation mode (‘counter-clockwise’ or ‘clockwise’), for values of the ratio, F, of the transverse oscillation frequency to the Strouhal frequency close to 1.0. The results demonstrate that, for F ≤ 1.0, counter-clockwise cylinder motion is associated with positive power transfer from the flow to the cylinder, corresponding to excitation; for the clockwise motion, power transfer is negative at intermediate to high amplitudes, corresponding to damping. For the clockwise mode, in the range F = 0.9–1.1, a transition to two-dimensional vortex street is identified for transverse oscillation amplitude exceeding a critical value. This results from the induced suction of vortices, which moves vortex formation and shedding closer to the cylinder surface, thus resulting in a narrower wake, characterized by an effective lower Reynolds number. Both oscillation modes are characterized by higher harmonics in the lift force spectrum, with the third harmonic being very pronounced, while even harmonics are present for the case of clockwise mode, resulting from a wake transition to a “S P” mode.
机译:本文呈现了三维流动过去的三维流动,在图8的轨迹之后被迫在均匀的流中振荡以振荡。对于RE = 400,对不同情况进行的流动模拟,在振荡模式(“逆时针”或“顺时针”)中定义的不同情况('逆时针'或“顺时针”),对于横向振荡频率的比率f,横向频率关闭1.0。结果表明,对于F≤1.0,逆时针汽缸运动与从流到气缸的流动的正功率传输相关联,相应于激励;对于顺时针运动,功率传输在中间到高幅度处为负,对应于阻尼。对于顺时针模式,在F = 0.9-1.1的范围内,识别到二维Vortex街的过渡,用于超过临界值的横向振荡幅度。这是由诱导的涡流的吸力来使涡旋形成和脱落更接近汽缸表面,从而导致较窄的唤醒,其特征在于有效的下雷诺数。两个振荡模式都是在提升力谱中的更高谐波的特征,其中第三次谐波非常明显,而甚至谐波出于顺时针模式的情况,从尾行过渡到“S P”模式产生。

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