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Published in: Acoustical Physics 2/2023

01-04-2023 | ATMOSPHERIC AND AEROACOUSTICS

Validation of a Two-Point Jet–Wing Interaction Noise Model for a Realistic Configuration

Authors: O. P. Bychkov, G. A. Faranosov

Published in: Acoustical Physics | Issue 2/2023

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Abstract

For the case of a realistic small-scale “double-stream nozzle–high-lift wing” configuration, a previously developed simplified semiempirical method for calculating the low-frequency noise of jet–wing interaction is tested. As input data for calculating the noise, we used the results of measuring the amplitude and convective velocity of perturbations in the near field of a turbulent jet near the trailing edge of an extended flap. The measurements were performed with a pair of pressure sensors flush-mounted on the lower surface of the wing model. It is demonstrated that the results of the calculated estimate for the spectral characteristics and directivity of the interaction noise agree well with direct noise measurements in the far field both under static conditions and in the presence of coflow simulating the effect of flight.

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Metadata
Title
Validation of a Two-Point Jet–Wing Interaction Noise Model for a Realistic Configuration
Authors
O. P. Bychkov
G. A. Faranosov
Publication date
01-04-2023
Publisher
Pleiades Publishing
Published in
Acoustical Physics / Issue 2/2023
Print ISSN: 1063-7710
Electronic ISSN: 1562-6865
DOI
https://doi.org/10.1134/S106377102260067X

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