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首页> 外文期刊>Journal of Chemical Engineering of Japan >Occurrence and Structure of Taylor–Goertler Vortices Induced in Two-Dimensional Wavy Channels for Steady Flow
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Occurrence and Structure of Taylor–Goertler Vortices Induced in Two-Dimensional Wavy Channels for Steady Flow

机译:二维波浪通道中稳态流动引起的泰勒-哥特勒涡旋的发生和结构

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References(26) Cited-By(29) The occurrence and structure of longitudinal vortices are examined by a flow visualization technique for various sinusoidal wavy channels. Longitudinal vortices are confirmed to appear in a channel with a narrow spacing in the range of geometrical parameters considered here. The geometrical conditions for the onset of such vortices are shown by a diagram. The longitudinal vortex is a kind of Taylor–Goertler vortex observed in a curved rectangular-section channel. However, the wavy channel is different from the curved rectangular-section channel in the processes of vortex development and destruction. It is found that an unstable mode, in which the vortices formed at the upper and lower walls of the channel have some interaction, leads to vortex destruction and significantly promotes the transition to turbulence.
机译:参考文献(26)By-By(29)通过流可视化技术检查了各种正弦波波浪通道的纵向涡旋和结构。在这里考虑的几何参数范围内,确认纵向涡流出现在通道中,且通道间距狭窄。通过图表显示了发生这种涡旋的几何条件。纵向涡流是在弯曲的矩形截面通道中观察到的泰勒-格特勒涡流。但是,在涡旋的形成和破坏过程中,波浪形通道与弯曲矩形截面通道不同。发现在通道的上壁和下壁处形成的涡旋具有某种相互作用的不稳定模式导致涡旋破坏并显着促进了向湍流的过渡。

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