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Low-Speed Fan Noise Reduction With Trailing Edge Blowing

机译:带后缘吹气的低速风扇降噪

摘要

An experimental proof-of-concept test was conducted to demonstrate reduction of rotor-stator interaction noise through rotor-trailing edge blowing. The velocity deficit from the viscous wake of the rotor blades was reduced by injecting air into the wake from a trailing edge slot. Composite hollow rotor blades with internal flow passages were designed based on analytical codes modeling the internal flow. The hollow blade with interior guide vanes creates flow channels through which externally supplied air flows from the root of the blade to the trailing edge. The impact of the rotor wake-stator interaction on the acoustics was also predicted analytically. The Active Noise Control Fan, located at the NASA Glenn Research Center, was used as the proof- of-concept test bed. In-duct mode and farfield directivity acoustic data were acquired at blowing rates (defined as mass supplied to trailing edge blowing system divided by fan mass flow) ranging from 0.5 to 2.0 percent. The first three blade passing frequency harmonics at fan rotational speeds of 1700 to 1900 rpm were analyzed. The acoustic tone power levels (PWL) in the inlet and exhaust were reduced 11.5 and -0.1, 7.2 and 11.4, 11.8 and 19.4 PWL dB, respectively. The farfield tone power levels at the first three harmonics were reduced 5.4, 10.6, and 12.4 dB PWL. At selected conditions, two-component hotwire and stator vane unsteady surface pressures were acquired. These measurements illustrate the physics behind the noise reduction.
机译:进行了实验性的概念验证测试,以证明通过转子尾缘吹气减少了转子-定子相互作用的噪声。通过将空气从后缘缝隙注入到尾流中,可以减少来自转子叶片粘性尾流的速度不足。具有内部流动通道的复合空心转子叶片是根据对内部流动建模的解析代码设计的。具有内部导向叶片的中空叶片形成流道,外部供应的空气通过该流道从叶片根部流到后缘。还通过分析预测了转子尾流-定子相互作用对声学的影响。位于美国国家航空航天局格伦研究中心的有源噪声控制风扇被用作概念验证测试台。管道内模式和远场方向性声学数据是在0.5%到2.0%的吹风率(定义为供给后缘吹风系统的质量除以风机质量流量)下获得的。分析了风扇转速为1700至1900 rpm时前三个叶片通过的频率谐波。进气和排气中的声调功率水平(PWL)分别降低了11.5和-0.1、7.2和11.4、11.8和19.4 PWL dB。前三个谐波处的远场音调功率水平分别降低了5.4、10.6和12.4 dB PWL。在选定的条件下,获得了两部分热线和定子叶片的不稳定表面压力。这些测量结果说明了降噪背后的物理原理。

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