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Decaying, Swirling Flow in a Pipe: Axial Velocity Field Development with Reversed Axial Flow

机译:腐烂,管道中的旋转流动:轴向速度场显影,具有反向轴向流量

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Streamwise development of the axial velocity field in a confined, decaying swirling flow is explored in the present study. A tangential injection mechanism produces swirling flow at the inlet of a constant diameter pipe. Particle image velocimetry is employed for axial velocity measurements. Representative axial velocity profiles are presented for axial locations of 3 to 67 pipe diameters. The axial velocity profiles are asymmetric relative to the pipe centerline and the asymmetries persist as the flow develops in the axial direction. The eccentricity of the swirling flow spatially oscillates as the flow develops in the axial direction. The spatial oscillations of the axial velocity suggest that a vortex breakdown may be located near the inlet of the pipe and the entire pipe is the wake region of the vortex breakdown. The centerline axial velocity is also used to document the axial development of the flow. A comprehensive view of die flow field is provided by considering theoretical explanations presented in the literature for decaying, swirling pipe flows and for vortex breakdown.
机译:在本研究中探讨了狭窄,衰变旋转流动中轴向速度场的流动发展。切向注射机构在恒定直径管道的入口处产生旋流。粒子图像速度用于轴向速度测量。代表性的轴向速度剖面用于3至67根管直径的轴向位置。轴向速度分布相对于管道中心线是不对称的,并且由于流动在轴向方向上发展,不对称持续存在。随着流动在轴向上显影,旋流流动的偏心空间横向振荡。轴向速度的空间振动表明,涡流击穿可以位于管道的入口附近,并且整个管道是涡流击穿的唤醒区域。中心线轴向速度也用于记录流动的轴向开发。通过考虑文献中的理论解释来提供诸如腐烂,旋转管道流动和涡流击穿的理论解释提供了综合视图。

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