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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Noise control of subsonic cavity flows using plasma actuated receptive channels
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Noise control of subsonic cavity flows using plasma actuated receptive channels

机译:使用等离子激励接收通道控制亚音速腔流的噪声

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摘要

We introduce a passive receptive rectangular channel at the trailing edge of an open rectangular cavity to reduce the acoustic tones generated due to coherent shear layer impingement. The channel is numerically tested at Mach 0.3 using an unsteady three-dimensional large eddy simulation. Results show reduction in pressure fluctuations in the cavity due to which sound pressure levels are suppressed. Two linear dielectric barrier discharge plasma actuators are placed inside the channel to enhance the flow through it. Specifically, acoustic suppression of 7 dB was obtained for Mach 0.3 flow with the plasma actuated channel. Also, the drag coefficient for the cavity reduced by over three folds for the channel and over eight folds for the plasma actuated channel. Such a channel can be useful in noise and drag reduction for various applications, including weapons bay, landing gear and branched piping systems.
机译:我们在开放矩形腔体的后缘引入无源矩形接收通道,以减少由于相干剪切层碰撞而产生的声音。使用不稳定的三维大涡模拟,以0.3马赫的速度对通道进行了数值测试。结果表明,由于抑制了声压级,空腔中的压力波动减小了。两个线性介质阻挡放电等离子体致动器被放置在通道内部以增强通过通道的流量。具体而言,对于等离子驱动通道,对于0.3马赫流量,可获得7 dB的声学抑制。而且,腔的阻力系数对于通道减小了三倍以上,对于等离子致动通道减小了八倍以上。这样的通道对于减少各种应用的噪音和减阻有用,包括武器舱,起落架和分支管道系统。

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