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Secondary wake instabilities of a blunt trailing edge profiled body as a basis for flow control

机译:钝尾边缘轮廓物体的次级尾流不稳定性作为流量控制的基础

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Flow in the wake of a blunt trailing edge profiled body, comprised of an elliptical leading edge and a rectangular trailing edge, has been investigated experimentally, to identify and characterize the secondary instabilities accompanying the von Kármán vortices. The experiments, which involve laser-induced fluorescence for visualization and particle image velocimetry for quantitative measurement of the wake instabilities, cover Reynolds numbers ranging from 250 to 2,150 based on thickness of the body, to include the wake transition regime. The dominant secondary instability appears as spanwise undulations in von Kármán vortices, which evolve into pairs of counter-rotating vortices, with features resembling the instability mechanism predicted by Ryan et al. (J Fluid Mech 538:1–29, 2005). Feasibility of a flow control approach based on interaction with the secondary instability using a series of discrete trailing edge injectors has also been investigated. The control approach mitigates the adverse effects of vortex shedding in certain conditions, where it is able to amplify the secondary instability effectively.
机译:对由椭圆形前缘和矩形后缘组成的钝化后缘异形体后的流动进行了实验研究,以识别和表征伴随冯·卡尔曼涡旋的次生不稳定性。实验涉及激光诱导的荧光用于可视化,而粒子图像测速技术用于定量测量尾迹不稳定性,该实验覆盖了基于人体厚度从250到2,150的雷诺数,以包括尾迹过渡制度。主要的次级不稳定性在vonKármán涡流中以展向波动形式出现,并演变成成对的反向旋转涡流,其特征类似于Ryan等人预测的不稳定性机制。 (J Fluid Mech 538:1-29,2005)。还研究了使用一系列离散后缘喷射器基于与次级不稳定性相互作用的流量控制方法的可行性。控制方法可以减轻某些条件下涡流脱落的不利影响,在这种情况下,它可以有效地放大次级不稳定性。

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