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首页> 外文期刊>The Journal of the Acoustical Society of America >Noise suppression of a dipole source by tensioned membrane with side-branch cavities
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Noise suppression of a dipole source by tensioned membrane with side-branch cavities

机译:带有侧腔的张紧膜抑制偶极子源的噪声

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摘要

Reducing the ducted-fan noise at the low frequency range remains a big technical challenge. This study presents a passive approach to directly suppress the dipole sound radiation from an axial-flow fan housed by a tensioned membrane with cavity backing. The method aims at achieving control of low frequency noise with an appreciable bandwidth. The use of the membrane not only eliminates the aerodynamic loss of flow, but also provides flexibility in controlling the range of the stopband with high insertion loss by varying its tension and mass. A three-dimensional model is presented which allows the performance of the proposed device to be explored analytically. With the proper design, this device can achieve a noise reduction of 5 dB higher than the empty expansion cavity recently proposed by Huang [J. Acoust. Soc. Am. 128, 152-163 (2010)]. Through the detailed modal analysis, even in vacuo modes of the membrane vibration are found to play an important role in the suppression of sound radiation from the dipole source. Experimental validation is conducted with a loudspeaker as the dipole source and good agreement between the predicted and measured insertion loss is achieved.
机译:减少低频范围的管道风扇噪声仍然是一项巨大的技术挑战。这项研究提出了一种被动方法,可以直接抑制来自带有腔背衬的张紧膜的轴流风扇的偶极声辐射。该方法旨在实现具有可观带宽的低频噪声的控制。膜的使用不仅消除了流动的空气动力学损失,而且还通过改变其张力和质量,以高插入损失为控制阻带的范围提供了灵活性。提出了三维模型,该模型可以分析所提出的设备的性能。通过适当的设计,与Huang最近提出的空膨胀腔相比,该设备可以降低噪声5 dB。 co Soc。上午。 128,152-163(2010)]。通过详细的模态分析,即使在真空模式下,膜振动也被发现在抑制偶极子声辐射中起着重要作用。使用扬声器作为偶极子源进行了实验验证,并在预测和测量的插入损耗之间达成了良好的一致性。

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