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基于莱特希尔声学类比和几何声学的射流混合噪声预测。

Prediction of jet mixing noise with Lighthill's Acoustic Analogy and geometrical acoustics.

作者信息

Ilário Carlos R S, Azarpeyvand Mahdi, Rosa Victor, Self Rod H, Meneghini Júlio R

机构信息

EMBRAER S.A., Avenue Brigadeiro Faria Lima, 2170, 12227-901, São José dos Campos - SP, Brazil.

Department of Mechanical Engineering, University of Bristol, Bristol, United Kingdom.

出版信息

J Acoust Soc Am. 2017 Feb;141(2):1203. doi: 10.1121/1.4976076.

Abstract

A computational aeroacoustics prediction tool based on the application of Lighthill's theory is presented to compute noise from subsonic turbulent jets. The sources of sound are modeled by expressing Lighthill's source term as two-point correlations of the velocity fluctuations and the sound refraction effects are taken into account by a ray tracing methodology. Both the source and refraction models use the flow information collected from a solution of the Reynolds Averaged Navier-Stokes equations with a standard k-epsilon turbulence model. By adopting the ray tracing method to compute the refraction effects a high-frequency approximation is implied, while no assumption about the mean flow is needed, enabling the application of the method to jet noise problems with inherently three-dimensional propagation effects. Predictions show good agreement with narrowband measurements for the overall sound pressure levels and spectrum shape in polar angles between 60° and 110° for isothermal and hot jets with acoustic Mach number ranging from 0.5 to 1.0. The method presented herein can be applied as a relatively low cost and robust engineering tool for industrial optimization purposes.

摘要

提出了一种基于莱特希尔理论应用的计算气动声学预测工具,用于计算亚音速湍流射流产生的噪声。通过将莱特希尔源项表示为速度波动的两点相关性来对声源进行建模,并采用射线追踪方法考虑声音折射效应。声源模型和折射模型均使用从带有标准k-ε湍流模型的雷诺平均纳维-斯托克斯方程解中收集的流动信息。通过采用射线追踪方法计算折射效应,隐含了高频近似,同时无需对平均流作任何假设,从而能够将该方法应用于具有固有三维传播效应的射流噪声问题。预测结果表明,对于马赫数在0.5至1.0之间的等温射流和热射流,在60°至110°极角范围内,总体声压级和频谱形状与窄带测量结果具有良好的一致性。本文提出的方法可作为一种成本相对较低且稳健的工程工具用于工业优化目的。

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