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Experimental source characterization techniques for studying the acoustic properties of perforates under high level acoustic excitation

机译:研究高强度声激发下穿孔的声学特性的实验声源表征技术

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摘要

This paper discusses experimental techniques for obtaining the acoustic properties of in-duct samples with non-linear acoustic characteristic. The methods developed are intended both for studies of non-linear energy transfer to higher harmonics for samples only accessible from one side such as wall treatment in aircraft engine ducts or automotive exhaust systems and for samples accessible from both sides such as perforates or other top sheets. When harmonic sound waves are incident on the sample nonlinear energy transfer results in sound generation at higher harmonics at the sample (perforate) surface. The idea is that these sources can be characterized using linear system identification techniques similar to one-port or two-port techniques which are traditionally used for obtaining source data for in-duct sources such as IC-engines or fans. The starting point will be so called polyharmonic distortion modeling which is used for characterization of nonlinear properties of microwave systems. It will be shown how acoustic source data models can be expressed using this theory. Source models of different complexity are developed and experimentally tested. The results of the experimental tests show that these techniques can give results which are useful for understanding non-linear energy transfer to higher harmonics.
机译:本文讨论了获得具有非线性声学特性的管道内样品声学特性的实验技术。所开发的方法既适用于研究非线性能量转移到高次谐波的问题,也适用于只能从一侧进入的样品,例如飞机发动机导管或汽车排气系统中的壁处理,也可以用于从两侧进入的样品,例如穿孔或其他顶板。当谐波声波入射到样品上时,非线性能量转移导致在样品(穿孔)表面以更高的谐波产生声音。想法是,可以使用类似于单端口或两端口技术的线性系统识别技术来表征这些源,该技术通常用于获取感应式源(如IC引擎或风扇)的源数据。起点将是所谓的多谐波失真建模,该模型用于表征微波系统的非线性特性。将说明如何使用该理论来表达声源数据模型。开发了不同复杂度的源模型并进行了实验测试。实验测试的结果表明,这些技术可以提供有助于理解将非线性能量转移到高次谐波的结果。

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