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Aerodynamic investigation of a rotating rib-roughened channel by time-resolved particle image velocimetry

机译:时间分辨粒子图像测速技术研究旋转肋筋通道的空气动力学研究

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摘要

Particle image velocimetry (PIV) is used to study the turbulent flow over the rib-roughened wall of a cooling channel model in rotation. The aspect ratio is 0.9, the blockage ratio is 0.1 and the rib pitch-to-height ratio is 10. The flow direction is outward, with a Reynolds number of 1.5 × 104 and a rotation number of 0.3 in both rotational directions. The PIV system rotates with the channel, allowing to directly measure the relative flow velocity with high spatial and temporal resolution. Coriolis forces affect the stability of the shear layers: cyclonic (anticyclonic) rotation inhibits (enhances) the turbulent motion, influencing velocity, vorticity, and turbulence intensity of the flow. The time-resolved measurements show the effect of rotation on the shear layer instability and on the consequent formation of spanwise vortices, as well as on the time trace of the reattachment point. Turbulent energy spectra suggest that all temporal scales are affected by rotation.
机译:粒子图像测速(PIV)用于研究旋转中冷却通道模型的肋粗糙壁上的湍流。长宽比为0.9,阻塞率为0.1,肋骨间距与高度之比为10。流向是向外的,雷诺数为1.5×10 4 ,转数为在两个旋转方向上均为0.3。 PIV系统随通道旋转,从而可以高时空分辨率直接测量相对流速。科里奥利力会影响剪切层的稳定性:气旋(反气旋)旋转会抑制(增强)湍流运动,从而影响流动的速度,涡度和湍流强度。时间分辨的测量结果表明,旋转对剪切层的不稳定性以及随之而来的展向旋涡的形成,以及对重新附着点的时间轨迹的影响。湍流能谱表明,所有时标都受旋转影响。

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  • 来源
    《Journal of Power and Energy》 |2011年第7期|p.975-984|共10页
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  • 作者单位

    Turbomachinery and Propulsion Department, von Karman Institute for Fluid Dynamics, Rhode-Saint-Genèse, Belgium;

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