首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Quantification of aerodynamically induced noise and vibration-induced noise in a suction unit
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Quantification of aerodynamically induced noise and vibration-induced noise in a suction unit

机译:抽吸单元中空气动力学引起的噪声和振动引起的噪声的量化

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摘要

Noise, generated by a centrifugal blower, can be divided according to its origin, into aerodynamically induced noise and vibration-induced noise. The contribution of the individual noise source to the total emitted noise is hard to determine, but it is crucial for the design of noise reduction measures. In order to reduce the noise of the centrifugal blower in a broad range of operating conditions, an identification of noise sources needs to be performed. An analysis of the most important noise origin in a centrifugal blower presented in this article was performed by measurements of the transfer function between noise and vibration, under different types of excitation. From the analyses one can conclude that the dominant noise source of a centrifugal blower can be attributed to the aerodynamically generated noise which exceeds the vibration-induced noise for more than 10 dB in a broad frequency range.
机译:离心鼓风机产生的噪声可根据其来源分为空气动力学引起的噪声和振动引起的噪声。很难确定单个噪声源对总发射噪声的贡献,但是这对于设计降噪措施至关重要。为了在广泛的运行条件下减小离心鼓风机的噪声,需要进行噪声源的识别。通过测量在不同类型的激励下噪声与振动之间的传递函数,对本文介绍的离心鼓风机中最重要的噪声源进行了分析。从分析中可以得出结论,离心鼓风机的主要噪声源可归因于空气动力学产生的噪声,该噪声在很宽的频率范围内超过振动引起的噪声超过10 dB。

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