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Influence of Wake and Background Turbulence on Predicted Fan Broadband Noise

机译:尾流和背景湍流对预测的风扇宽带噪声的影响

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摘要

Next-generation fan designs featuring large bypass ratios have the potential to reduce rotor-stator interaction noise of fans. However, these designs pose new challenges and long-held beliefs regarding the acoustic benefit of such concepts that need to be evaluated. At off-design operating points, the increase in nozzle area serves to maintain the stall margin by reducing the fan loading. To an extent, this may lower the contribution of wake turbulence to fan broadband noise. Therefore, investigating the relative contribution of other noise sources becomes relevant. In this paper, the authors examine the contribution of wake and ingested turbulence to fan broadband noise levels at approach for the ASPIRE fan, which is a next-generation fan concept. To enable the investigation of background turbulence, a Reynolds stress turbulence model is used. The computational fluid dynamics solution then provides inputs for a two-dimensional cyclostationary synthetic turbulence method. The noise predictions are improved by performing simulations at three spanwise positions and by introducing a correction technique to account for the three-dimensional interstage flow. For the investigated case, it is shown that broadband noise generated at the stator is as high as for conventional concepts. Furthermore, both wake and background turbulence contribute significantly to the overall fan broadband noise.
机译:具有大旁路比的下一代风扇设计有可能降低风扇的转子-定子相互作用噪声。然而,这些设计提出了新的挑战,并长期存在关于需要评估的此类概念在声学上的益处的信念。在非设计运行点,喷嘴面积的增加可通过减少风扇负载来保持失速裕度。在某种程度上,这可能会降低尾流湍流对风扇宽带噪声的影响。因此,调查其他噪声源的相对贡献就变得很重要。在本文中,作者在ASPIRE风扇的方法中研究了尾流和吸入湍流对风扇宽带噪声水平的影响,这是下一代风扇概念。为了能够研究背景湍流,使用了雷诺应力湍流模型。然后,计算流体动力学解决方案为二维循环平稳合成湍流方法提供了输入。通过在三个翼展方向位置执行模拟并引入校正技术以解决三维级间流动,可以改善噪声预测。对于所研究的情况,表明定子处产生的宽带噪声与常规概念一样高。此外,尾流和背景湍流都对整体风扇宽带噪声有很大影响。

著录项

  • 来源
    《AIAA Journal》 |2020年第2期|659-672|共14页
  • 作者单位

    German Aerosp Ctr DLR Inst Prop Technol Dept Engine Acoust D-10623 Berlin Germany;

  • 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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