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Passive flow control study in a convoluted intake using Stereo Particle Image Velocimetry

机译:立体颗粒图像测速技术在回旋进气中的被动流动控制研究

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摘要

The ability of vortex generators (VG) to reduce the unsteady distortion at the exit plane of an S-duct (AIP) is investigated. The 3 components of the velocity at the AIP were measured using a Stereo Particle Velocimetry system with high spatial resolution. This enabled an assessment of the synchronous swirl distortion at the duct exit. A total of nine VG cases have been investigated with a systematic variation of key design variables. Overall the VGs change the duct secondary flows and separation and are able to substantially restructure the flow field at the AIP. The pressure distortion could be reduced up to 50% and a reduction in pressure loss of 30% was achieved for the mean flow field. The VGs have a substantial influence on the unsteadiness of the flow field with a reduction in peak swirl unsteadiness of 61% and an overall reduction of unsteady swirl distortion of 67%. They also suppress the primary unsteady flow switching mechanism of the datum configuration which is associated with the oscillation of bulk and twin swirl regimes. Consequently, extreme events which leads to high swirl intensity are suppressed which lower by 45% the maximum swirl intensity for the VG cases.
机译:研究了涡流发生器(VG)减少S管道(AIP)出口平面处的不稳定变形的能力。使用具有高空间分辨率的立体粒子测速系统测量了AIP速度的3个分量。这使得能够评估管道出口处的同步涡流畸变。总共调查了9个VG案例,其中有关键设计变量的系统变化。总体而言,VG改变了管道的二次流和分离,并能够在AIP处显着地重构流场。对于平均流场,可以将压力变形降低到50%,并将压力损失降低30%。 VG对流场的不稳定性具有重大影响,峰值涡流不稳定性降低了61%,不稳定涡流畸变总体降低了67%。它们还抑制了基准构造的主要非稳态流动切换机制,该机制与大体积和双涡旋状态的振荡有关。因此,抑制了导致高涡流强度的极端事件,这使VG情况的最大涡流强度降低了45%。

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