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首页> 外文期刊>The Journal of the Acoustical Society of America >Reproduction of random pressure fields based on planar nearfield acoustic holography
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Reproduction of random pressure fields based on planar nearfield acoustic holography

机译:基于平面近场声全息技术的随机压力场再现

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摘要

This article discusses an open-loop approach based on planar nearfield acoustic holography (P-NAH) for the reproduction of random pressure fields, mainly intended for the measurement of vibroacoustic properties of plane panels. The main application is the simulation of turbulent boundary layer excitation in a laboratory environment, as an alternative to in-flight or wind tunnel experiments. The problem under study is the synthesis of random pressure distributions on a plane reproduction surface using acoustic monopoles distributed on a plane source surface facing the reproduction surface. The problem of reproducing a pressure distribution on a plane surface is addressed using the theoretical framework of P-NAH, which is extended to random pressure fields with corresponding imposed cross-spectral density functions. Results of numerical simulations are presented for the reproduction of a diffuse acoustic field, and a subsonic and supersonic turbulent boundary layer. The influence on the reproduction accuracy of the respective sizes of the two planes, their separation and the reproduction source separation are studied. The reproduction approach shows to be effective for the reproduction of diffuse acoustic field and turbulent boundary layer, but with different requirements in terms of plane separation and reproduction sources separation. In the specific case of subsonic turbulent boundary layer and associated sub-wavelength correlation scales reproduction, possible improvements of the method are suggested.
机译:本文讨论了一种基于平面近场声全息术(P-NAH)的开环方法,用于再现随机压力场,主要用于测量平板的振动声特性。主要应用是在实验室环境中模拟湍流边界层激发,作为飞行中或风洞实验的替代方法。研究中的问题是使用分布在面向再生表面的平面源表面上的声学单极子在平面再生表面上合成随机压力分布。使用P-NAH的理论框架解决了在平面上再现压力分布的问题,该理论框架已扩展到具有相应强加的交叉光谱密度函数的随机压力场。给出了数值模拟的结果,用于再现扩散声场以及亚音速和超音速湍流边界层。研究了两个平面各自的尺寸对再现精度的影响,它们的间距和再现源的间距。再现方法显示出对于扩散声场和湍流边界层的再现是有效的,但是在平面分离和再现源分离方面有不同的要求。在亚音速湍流边界层和相关的亚波长相关尺度再现的特定情况下,建议对该方法进行可能的改进。

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