Extremum-seeking optimisation of uidic jet-noise control

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33

摘要:

In this work we use an extremum-seeking algorithm to optimise a uidic jet-noise controller. The device, which we call a uidevron, has been shown to produce reductions in jet noise which are comparable with those achieved using conventional microjets, but the underlying flow-physics have been shown to be very different (see Laurendeau et al.1 for details). A negative effect produced by the control comprises a high-frequency noise increase. The extremum-seeking algorithm is used to optimise the control either for maximum low-frequency noise-reduction, or for maximum overall noise-reduction. This is achieved through a speci cation of the frequency-range over which noise reduction is sought. The extremum-seeking is shown to perform well, producing flows with integrated low-frequency gains of the order of 2.5dB when tuned for maximum low-frequency bene t, and flows where the high frequency penalty is virtually eliminated when tuned for maxi- mum spectral range. The extremum-seeking is then implemented using metrics computed from farfield microphones at different polar stations; the control effect is thus found to be omnidirectional. This shows that there is no directional bias in the response of the source mechanisms to the actuation. Finally, the relationship between noise reduction and flow-rate is studied and found to be non-linear: the source mechanisms are most receptive at low flow-rate, a saturation point being reached after which the actuation no longer has any control authority over the source dynamics.

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会议名称:

AIAA/CEAS aeroacoustics conference;AIAA aeroacoustics conference; 20090511-13;20090511-13; Miami, FL(US);Miami, FL(US)

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8

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