Computational Acoustic Beamforming for Noise Source Identification for Small Wind Turbines.

International Scholarly Research Notices Pub Date : 2017-03-09 eCollection Date: 2017-01-01 DOI:10.1155/2017/7061391
Ping Ma, Fue-Sang Lien, Eugene Yee
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引用次数: 2

Abstract

This paper develops a computational acoustic beamforming (CAB) methodology for identification of sources of small wind turbine noise. This methodology is validated using the case of the NACA 0012 airfoil trailing edge noise. For this validation case, the predicted acoustic maps were in excellent conformance with the results of the measurements obtained from the acoustic beamforming experiment. Following this validation study, the CAB methodology was applied to the identification of noise sources generated by a commercial small wind turbine. The simulated acoustic maps revealed that the blade tower interaction and the wind turbine nacelle were the two primary mechanisms for sound generation for this small wind turbine at frequencies between 100 and 630 Hz.

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小型风力发电机噪声源识别的计算声波束形成。
本文提出了一种计算声波束形成(CAB)方法,用于风电机组小噪声源的识别。这种方法是验证使用的情况下,NACA 0012翼型后缘噪声。对于这个验证案例,预测的声图与声波束形成实验的测量结果非常吻合。在此验证研究之后,将CAB方法应用于商用小型风力涡轮机产生的噪声源识别。模拟声学图显示,在100 ~ 630 Hz的频率范围内,叶片塔架相互作用和风力机机舱是该小型风力机产生声音的两种主要机制。
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