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Piecewise-Spreading Regime Model for Calculating Effective Gol'dberg Numbers for Supersonic Jet Noise

机译:计算超声速射流噪声的有效戈尔登堡数的分段扩展状态模型

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摘要

A method for calculating the effective Gol'dberg number for diverging waveforms is presented, which leverages known features of a high-speed jet and its associated sound field. The approach employs a ray tube situated along the Mach wave angle where the sound field is not only most intense, but advances from undergoing cylindrical decay to spherical decay. Unlike other efforts, a "piecewise-spreading regime" model is employed, which yields, separately, effective Gol'dberg numbers for the cylindrically and spherically spreading regions in the far field. The new approach is applied to a plethora of experimental databases, encompassing both laboratory- and full-scale jet noise studies. The findings demonstrate how cumulative nonlinear distortion is expected to form in the acoustic near field of laboratory-scale round jets where pressure amplitudes decay cylindrically; waveform distortion is not expected in the acoustic far field where waveform amplitudes diverge spherically. On the other hand, where full-scale jet studies are concerned, effective Gol'dberg number calculations demonstrate how cumulative waveform distortion is significant in both the cylindrical- and spherical-spreading regimes. The laboratory-scale studies also reveal a pronounced sensitivity to humidity conditions, relative to the full-scale counterpart.
机译:提出了一种用于计算发散波形的有效哥德堡数的方法,该方法利用了高速射流及其相关声场的已知特征。该方法采用沿马赫波角定位的射线管,声场不仅强度最大,而且从经历圆柱衰变发展为球形衰变。与其他工作不同的是,采用了“分段扩展方式”模型,该模型分别为远场中的圆柱形和球形扩展区域产生有效的Gol'dberg数。新方法已应用于大量实验数据库,包括实验室和全尺寸射流噪声研究。这些发现表明,在压力振幅呈圆柱形衰减的实验室规模的圆形射流的声近场中,预计将如何形成累积非线性失真。在声振幅场呈球形发散的远场中,不会出现波形失真。另一方面,在涉及全尺寸射流研究的情况下,有效的Gol'dberg数计算证明了在圆柱扩展和球形扩展方案中累积波形失真如何显着。实验室规模的研究还表明,相对于满量程的同类产品,其对湿度条件具有明显的敏感性。

著录项

  • 来源
    《AIAA Journal》 |2016年第9期|2833-2842|共10页
  • 作者单位

    Univ Melbourne, Dept Mech Engn, Parkville, Vic 3010, Australia;

    Univ Texas Austin, Appl Res Labs, Austin, TX 78713 USA;

    Univ Texas Austin, Appl Res Labs, Austin, TX 78713 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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