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Nominally two-dimensional waves in inclined film flow in channels of finite width

机译:倾斜膜中的名义二维波在有限宽度的通道中流动

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摘要

Traveling waves in inclined film flow in channels of finite width are never truly two-dimensional (2D) because of a long-range effect of sidewalls. The present study documents the characteristics of the first waves that are observed beyond the primary instability (termed nominally 2D) by taking measurements in a 3000 mm long inclined facility with adjustable width up to 450 mm using a fluorescence imaging technique. It is observed that nominally 2D waves are very persistent structures with their crests attaining a parabolic shape, which is symmetric with respect to the channel centerplane irrespective of the 3D content of the inlet forcing. The apex curvature of the parabola varies inversely with channel width and Reynolds number. The wave height is maximum at the centerplane and decreases to zero at the sidewalls, irrespective of the wetting properties of the system. The linear phase velocity of nominally 2D waves is always lower than predicted by the theory for small amplitude, 2D waves, and significantly in narrow channels and/or small inclinations. The above characteristics are shown to explain discrepancies between theory and observations, in particular the recently reported deviation of the onset of the primary instability from the classical prediction [M. Vlachogiannis et al., Phys. Fluids22, 012106 (2010)].
机译:由于侧壁的远距离效应,倾斜膜在有限宽度的通道中流动的行波永远不会真正成为二维(2D)。本研究通过使用荧光成像技术在3000毫米长的倾斜设备中进行了测量,并在最大宽度不超过450毫米的范围内进行了测量,从而记录了超出原始不稳定性(标称2D)之外观察到的第一波的特征。可以看出,名义上的2D波是非常持久的结构,其波峰达到抛物线形状,与入口中心平面的3D含量无关,它相对于通道中心平面对称。抛物线的顶点曲率与通道宽度和雷诺数成反比。与系统的润湿特性无关,波高在中心平面处最大,而在侧壁处减小至零。标称2D波的线性相速度始终低于小振幅,2D波的理论值,并且在狭窄通道和/或小倾角时明显低于线性理论速度。显示上述特征是为了解释理论与观察之间的差异,特别是最近报道的原发性不稳定性发作与经典预测之间的偏差[M. Vlachogiannis等,Phys。流体22,012106(2010)]。

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