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Control of cavity resonance using oscillatory blowing.

机译:使用振荡吹气控制腔共振。

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The near-zero net mass oscillatory blowing control of a subsonic cavity flow has been experimentally investigated. An actuator was designed and fabricated to provide both steady and oscillatory blowing over a range of blowing amplitudes and forcing frequencies. The blowing was applied just upstream of the cavity front wall through interchangeable plate configurations. These configurations enabled the effects of hole size, hole shape, and blowing angle to be examined. A significant finding is that in terms of the blowing amplitude, the near zero net mass oscillatory blowing is much more effective than steady blowing; momentum coefficients up two orders of magnitude smaller than those required for steady blowing are sufficient to accomplish the same control of cavity resonance.; The detailed measurements obtained in the experiment include fluctuating pressure data within the cavity wall, and hot-wire measurements of the cavity shear layer. Spectral and wavelet analysis techniques are applied to understand the dynamics and mechanisms of the cavity flow with control. The oscillatory blowing is effective in enhancing the mixing in the cavity shear layer and thus modifying the feedback loop associated with the cavity resonance. The nonlinear interactions in the cavity flow are no longer driven by the resonant cavity modes but by the forcing associated with the oscillatory blowing. The oscillatory blowing does not suppress the mode switching behavior of the cavity flow, but the amplitude modulation is reduced.
机译:对亚音速腔流的接近零净质量振荡吹气控制进行了实验研究。设计和制造了一种执行器,以在一定范围的吹气振幅和强制频率范围内提供稳定的吹气和振荡吹气。通过可互换的板结构将吹气施加在腔体前壁的上游。这些配置使得能够检查孔尺寸,孔形状和吹角的影响。一个重要的发现是,在吹气振幅方面,接近零的净质量振荡吹气比稳定吹气更有效。动量系数比稳定吹气所需的动量系数小两个数量级,足以实现对腔共振的相同控制。在实验中获得的详细测量值包括腔壁内的波动压力数据,以及腔体剪切层的热线测量值。频谱和小波分析技术可用于通过控制了解空腔流动的动力学和机理。振荡吹气有效地增强了腔体剪切层中的混合,从而改变了与腔体共振相关的反馈回路。腔流中的非线性相互作用不再由谐振腔模式驱动,而是由与振荡吹动相关的强迫驱动。振荡吹气不会抑制空腔流的模式切换行为,但会降低幅度调制。

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