Abstract
Noise sources in an axial flow fan can be divided into fluctuating axial thrust and circumferential drag forces. For the popular design of seven-blade rotor driven by a motor supported by four struts, drag noise dominates. This study aims to suppress the drag noise globally by active control schemes. Drag noise features a rotating dipole and it has to be cancelled by a secondary source of the same nature. This is achieved experimentally by a pair of loudspeakers positioned at the right angle to each other on the fan rotational plane. An adaptive LMS feedforward scheme is used to produce the control signal for one loudspeaker and the time-derivative of this signal is used to drive the other loudspeaker. The antisounds radiated by the two loudspeakers have a fixed phase relation of 90o forming a rotating dipole. An open-loop control scheme is also implemented for the purpose of comparison and easier implementation in practice. The results show that the globally integrated sound power is reduced by about 13 dB for both close- and open-loop schemes.
Cite
CITATION STYLE
Huang, L., & Wang, J. (2006). Active control of drag noise from a small axial flow fan. In Institute of Noise Control Engineering of the USA - 35th International Congress and Exposition on Noise Control Engineering, INTER-NOISE 2006 (Vol. 4, pp. 2416–2425). https://doi.org/10.1121/1.2204443
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