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The reduction of mixing noise and shock associated noise using chevrons and other mixing enhancement devices.

机译:使用人字形和其他混合增强装置来减少混合噪声和与震动相关的噪声。

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摘要

This experimental research project varied nozzle discharge geometries in an effort to reduce jet noise. Chevrons and other mixing enhancement devices introduced streamwise vortices into the initial shear layer of the jet.;Single flow noise reduction. Air was injected into the center of streamwise vortices. They were energized and increased mixing across the shear layer, which reduced low frequency noise. The vortices broke down with lower circumferential velocities, which reduced high frequency noise.;More robust streamwise vortices created additional mixing. This reduced low frequency noise but created additional high frequency noise. The size of the streamwise vortices was reduced. This did not effect low frequency noise, but reduced high frequency noise.;Coaxial flow noise reduction. The noise reduction when using fan and core chevrons together was shown to be additive. Reductions attributed to core chevrons plus reductions attributed to fan chevrons were roughly equal to reductions when both chevron nozzles were installed. Low frequency noise was predominantly generated in the mixed region, which can be modified by either nozzle. The effect was compounded when both chevron nozzles were installed. High frequency noise was predominantly generated in the shear layers. Under the current test conditions, the shear layers were close enough that acoustic measurements could only resolve one noise source. Either chevron nozzle modified noise in the shear layer(s), the effect was compounded when both were installed.;Underexpanded flow noise reduction. Baseline and chevron nozzles were used on an underexpanded core stream. Chevrons increased shock associated noise for lower fan flow velocities but reduced shock associated noise for the highest fan flow velocity. Shock associated noise is created as turbulence interacts with shock cells. Both the values of turbulence and the magnitude of pressure fluctuations are important. For the lower fan flow velocities, chevrons increased turbulence but did not effect the pressure fluctuations. This increased shock noise. For the highest fan flow velocity, chevrons did not change turbulence levels but significantly reduced pressure fluctuations. This reduced shock associated noise.
机译:该实验研究项目旨在降低喷嘴的排放几何形状,以减少喷射噪声。人字形和其他混合增强装置将水流涡流引入射流的初始剪切层。单流降噪。空气被注入到涡流的中心。它们通电并增加了整个剪切层的混合,从而降低了低频噪声。涡流以较低的圆周速度破裂,从而降低了高频噪声。;更坚固的流式涡流产生了额外的混合。这样可以减少低频噪声,但会产生其他高频噪声。流向涡流的尺寸减小了。这不会影响低频噪声,但会减少高频噪声。风扇和核心人字形臂一起使用时的降噪效果是可加的。安装了两个人字形喷嘴时,归因于核心人字形的减少量加上归因于风扇人字形的减少量大致等于减少量。低频噪声主要发生在混合区域,可以通过任一喷嘴进行修改。当安装两个人字形喷嘴时,效果更加复杂。剪切层中主要产生高频噪声。在当前的测试条件下,剪切层足够紧密,以至于声学测量只能解决一个噪声源。人字形喷嘴均会改变剪切层中的噪音,当同时安装时,效果会更加复杂。基线和人字形喷嘴用于膨胀不足的岩心流。人字形增加了与震动相关的噪声,从而降低了风扇的流速,但降低了与震动相关的噪声,从而实现了最高的风扇流速。湍流与激波单元相互作用时会产生与激波相关的噪声。湍流值和压力波动的幅度都很重要。对于较低的风扇流速,人字形增加了湍流,但没有影响压力波动。这增加了冲击声。对于最高的风扇流速,人字形不会改变湍流水平,但会显着减小压力波动。这样减少了震动引起的噪音。

著录项

  • 作者

    Rask, Olaf Haller.;

  • 作者单位

    University of Cincinnati.;

  • 授予单位 University of Cincinnati.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

  • 入库时间 2022-08-17 11:38:23

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