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SPIV investigations of correlation between streamwise vorticity and velocity in the wake of a vortex generator in a boundary layer

机译:spIV研究边界层中涡流发生器尾流中涡流与涡度之间的相关性

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摘要

The current work describes the experimental parametric study of streamwise vortices generated in a boundary layer by a rectangular vane (commonly named vortex generator) mounted perpendicularly to the wall and at an angle to the oncoming flow. Stereoscopic Particle Image Velocimetry measurements have been conducted in cross-planes to obtain a full picture of the wake for each measured case. It is observed that this seemingly simple configuration produces a complicated vortex system consisting of 4 vortices: the tip vortex, a horseshoe vortex system consisting of two sleeves and a secondary vortex generated by the interaction between the tip vortex and the wall. Depending on the height and angle of the vane, some structures are enhanced and others are suppressed. Comparing the corresponding vorticity and velocity fields, a strong correlation between the two is found. Stream-wise vorticity induced velocity with the observed strong correlation found is not at all evident. This has previously been shown to be true for the primary (tip) vortex, but not for the remaining secondary structures.
机译:当前的工作描述了由矩形叶片(通常称为涡流发生器)在边界层中垂直于壁并与迎面而来的流成一定角度生成的流向涡流的实验参数研究。立体粒子图像测速仪已在横断面中进行了测量,以获得每种测量情况下的尾流的全貌。可以看出,这种看似简单的构造产生了一个复杂的涡流系统,该系统由4个涡流组成:尖端涡流,由两个套筒组成的马蹄形涡流系统以及由尖端涡流和壁之间的相互作用产生的次级涡流。根据叶片的高度和角度,某些结构得到了增强,而另一些则受到抑制。比较相应的涡度场和速度场,发现两者之间有很强的相关性。与观察到的强相关性的流向涡度诱发的速度一点也不明显。先前已经证明这对于一级(尖端)涡流是正确的,但对于其余二级结构却不是。

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