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An experimental investigation into the influence of installed chevron jet flows on wall-pressure fluctuations.

Authors :
Carbini, Edoardo
Meloni, Stefano
Camussi, Roberto
Lawrence, Jack
Proença, Anderson
Source :
INTER-NOISE & NOISE-CON Congress & Conference Proceedings; 2023, Vol. 265 Issue 5, p351-358, 8p
Publication Year :
2023

Abstract

Jet-surface interaction represents a significant community noise problem for the installation of modern ultra-high bypass ratio turbofan engines. The use of chevron nozzles is known to reduce low-frequency jet mixing noise by increasing the mixing rate close to the nozzle. It is currently unknown, however, to what extent such a nozzle lip treatment affects the Kelvin-Helmholtz instability, generated in the vicinity of the wing, which will modify the source of jet-surface interaction noise. To clarify the physics of the jet-surface interaction noise source, an extensive experimental investigation was conducted using the Flight Jet Rig in the anechoic chamber of the Doak Laboratory, at the University of Southampton. Various measurements were carried out on a round and a chevron single stream, unheated subsonic jet, both in an isolated configuration and installed beneath a 2D NACA4415 airfoil "wing". The wall-pressure field on the wing surface was investigated using a pair of miniature wall-pressure transducers and a set of ultra-thin precision microphones. These sensors were flush-mounted in both the stream-wise and span-wise directions on the pressure side of the wing and the unsteady wall-pressure data were analysed in the time and frequency domains. The far-field noise results show significant broadband noise reduction by the chevron jet. This is further evidenced by a reduction in the span-wise correlation length along the wing trailing edge over a wide range of frequencies. Significant reduction of the tonal trapped wave energy is also observed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07362935
Volume :
265
Issue :
5
Database :
Complementary Index
Journal :
INTER-NOISE & NOISE-CON Congress & Conference Proceedings
Publication Type :
Conference
Accession number :
179562651
Full Text :
https://doi.org/10.3397/in_2022_0335