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首页> 外文期刊>The Journal of the Acoustical Society of America >Measurement of the low-wavenumber component within a turbulent wall pressure by an inverse problem of vibration
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Measurement of the low-wavenumber component within a turbulent wall pressure by an inverse problem of vibration

机译:通过振动的反问题来测量湍流壁压力内的低波数分量

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摘要

An experimental validation is implemented for the measurement of a weak acoustic component within a turbulent wall pressure by an inverse problem of vibration. The turbulent flow is generated by a forward-facing step in a wind tunnel. In addition to the flow, an acoustic source with a low level excites the plate and plays the role of an additional acoustic component to be identified. The inverse methods called the force analysis technique and the corrected force analysis technique are used to compute the wall pressure fluctuations from the measurement of the plate vibration using an array of 13 accelerometers. The results show that contrary to the conventional techniques using pressure sensors, the inverse methods have a very good signal-to-noise ratio at the low wavenumbers. Indeed, the plate vibration is much more sensitive to the acoustic component than to the aerodynamic part. Moreover, this study shows that both methods can be used to isolate the weak acoustic part and identify its frequency spectrum. (C) 2016 Acoustical Society of America.
机译:通过振动反问题,实现了对湍流壁压力内弱声分量的测量的实验验证。湍流是通过风洞中的前向步骤产生的。除了流动之外,声级低的声源还会激励板,并起着待识别的其他声成分的作用。使用称为力分析技术和校正后的力分析技术的逆方法,通过使用13个加速度计的阵列,通过测量板振动来计算壁压力波动。结果表明,与使用压力传感器的常规技术相反,该逆方法在低波数下具有非常好的信噪比。实际上,板振动对声学分量的敏感度要比对空气动力学零件的敏感度大得多。此外,这项研究表明,两种方法都可以用来隔离弱声部分并确定其频谱。 (C)2016年美国声学学会。

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