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Visualization of pre-set vortices in boundary layer flow over wavy surface in rectangular channel

机译:矩形通道中波浪表面上边界层流动中预设涡流的可视化

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摘要

Abstract: Smoke-wire flow visualization is used to study the development of pre-set counter-rotating streamwise vortices in boundary layer flow over a wavy surface in a rectangular channel. The formation of the vortices is indicated by the vortical structures on the cross-sectional plane normal to the wavy surface. To obtain uniform spanwise vortex wavelength which will result in uniform vortex size, two types of spanwise disturbances were used: a series of perturbation wires placed prior and normal to the leading edge of the wavy surface, and a jagged pattern in the form of uniform triangles cut at the leading edge. These perturbation wires and jagged pattern induce low-velocity streaks that result in the formation of counter-rotating streamwise vortices that evolve downstream to form the mushroom-like structures on the cross-sectional plane of the flow. The evolution of the most amplified disturbances can be attributed to the formation of these mushroom-like structures. It is also shown that the size of the mushroom-like structures depends on the channel entrance geometry, Reynolds number, and the channel gap.Graphical Abstract: [Figure not available: see fulltext.]
机译:摘要:烟丝流可视化用于研究矩形通道中波浪表面上边界层流中预设的逆向旋转涡流的发展。漩涡的形成由垂直于波浪形表面的横截面上的漩涡结构指示。为了获得均匀的展向涡旋波长,这将导致均匀的涡旋尺寸,使用了两种类型的展向扰动:一系列位于扰动线之前和垂直于波浪形表面的前沿的扰动线,以及呈均匀三角形形式的锯齿状图案削减前沿。这些扰动线和锯齿状图案会引起低速条纹,导致形成反向旋转的流向涡流,这些涡流向下游扩展,在流的横截面上形成蘑菇状结构。最放大的干扰的演变可以归因于这些蘑菇状结构的形成。还显示出蘑菇状结构的大小取决于通道入口的几何形状,雷诺数和通道间隙。图形摘要:[未提供此图:请参见全文。

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