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Sound radiated by turbulence - acoustic analogy validation.

机译:湍流辐射出的声音-声学类比验证。

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摘要

Predicting sound radiated by turbulence is of interest in many applications including aeroacoustics, hydroacoustics, and combustion noise. Significant improvements in computer technology in recent years have renewed interest in applying numerical techniques to predict the sound from turbulent flows. One such technique is the hybrid acoustic analogy approach in which the turbulence is computed using a method such as direct numerical simulation (DNS) or large eddy simulation (LES), and the sound is calculated using an acoustic analogy. The objective of this study is to evaluate the hybrid approach for predicting sound from broadband turbulence at low turbulent Mach number using the Lighthill acoustic analogy.;Initial investigations study the effects of source spatial periodicity in an acoustic-analogy calculation. Since many applications of turbulence DNS or LES assume spatial periodicity in one or more directions, understanding such effects is important. In addition, the Lighthill acoustic analogy is validated for a two-dimensional, forced turbulent monopole source by comparison of DNS results with acoustic-analogy predictions.;A primary objective of this dissertation research is to validate the Lighthill acoustic analogy by comparison with DNS results for a three-dimensional, turbulent flow. To the author's knowledge, no such validation has previously been accomplished. In the DNS, both the turbulence and the acoustics in the far field are computed by solving the three-dimensional, compressible, unsteady Navier-Stokes equations. Boundary conditions are periodic in the x- and z-directions and nonreflecting in the y-direction. Acoustic wave propagation is statistically one-dimensional; the plane-mean sound propagates from the turbulence to the acoustic fax field in the y-direction. Analysis predicts that the plane-mean sound is equivalent to sound radiated by a distribution of dipole sources; the amplitude and frequency of plane-mean density fluctuations in the acoustic far field are predicted to scale as M3t and Mt , respectively, for a range of frequencies. DNS results confirm the acoustic-analogy predictions. This study is perhaps the first successful attempt to validate the Lighthill acoustic analogy for sound radiated from a three-dimensional, turbulent flow by comparison of DNS results with acoustic-analogy predictions.
机译:预测湍流辐射的声音在包括航空声学,水声声学和燃烧噪声在内的许多应用中都很重要。近年来,计算机技术的重大进步引起了人们对应用数值技术预测湍流声音的兴趣。一种这样的技术是混合声学模拟方法,其中使用诸如直接数值模拟(DNS)或大涡流模拟(LES)之类的方法来计算湍流,并且使用声学模拟来计算声音。这项研究的目的是评估使用Lighthill声比拟法在低湍流马赫数下从宽带湍流预测声音的混合方法。初步研究研究了声模拟计算中源空间周期性的影响。由于湍流DNS或LES的许多应用都假定一个或多个方向的空间周期性,因此了解这种影响非常重要。此外,通过将DNS结果与声学模拟预测进行比较,对二维强迫湍流单极子源进行了Lighthill声学模拟验证。本研究的主要目的是通过与DNS结果进行比较来验证Lighthill声学模拟。以获得三维湍流。据作者所知,以前尚未完成这种验证。在DNS中,通过求解三维可压缩的非稳态Navier-Stokes方程来计算远场中的湍流和声学。边界条件在x和z方向上是周期性的,而在y方向上是非反射的。声波传播在统计上是一维的;平面平均声音从湍流沿y方向传播到声学传真场。分析预测,平面平均声音等同于偶极子源辐射的声音。预测在一定频率范围内,声远场中平面平均密度波动的幅度和频率分别按M3t和Mt缩放。 DNS结果证实了声学模拟的预测。这项研究也许是通过将DNS结果与声学模拟预测进行比较来验证从三维湍流辐射出的声音的Lighthill声学类比的首次成功尝试。

著录项

  • 作者

    Whitmire, Julie Kathryn.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Mechanical.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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