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Prediction of contra-rotating open rotor broadband noise in isolated and installed configurations

Prediction of contra-rotating open rotor broadband noise in isolated and installed configurations
Prediction of contra-rotating open rotor broadband noise in isolated and installed configurations
Broadband noise is a significant part of the noise emitted by contra-rotating open rotors. Several noise sources can contribute to the total broadband sound field, with the most dominant ones probably being trailing edge noise, rotor-wake interaction noise and pylon-wake interaction noise. This paper addresses the prediction of these noise sources using analytical models based on Amiet’s flat plate airfoil theory and also to empirical turbulence models, fed by input data extracted from steady and unsteady CFD RANS simulations. The models are assessed against wind tunnel tests of Rolls-Royce’s rig 145 (build 1) conducted at the DNW anechoic open jet test facility using Rolls-Royce blades and Airbus pylons. The study showed promising results in terms of the ability of the models to predict acoustic power spectrum shapes, peak frequencies and absolute levels. The effects of changes in thrust on broadband wake-interaction noise are well reproduced. However, the models significantly underestimate the effect of thrust on trailing edge noise and the effect of rotational velocity on pylon interaction noise.
Node-Langlois, Thomas
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Wlassow, Fabien
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Languille, Vianney
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Colin, Yann
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Caruelle, Bastien
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Gill, James R.
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Chen, Xiaoxian
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Zhang, Xin
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Parry, Anthony B.
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Node-Langlois, Thomas
746d8e36-a76a-449d-95d2-0da56af9ec44
Wlassow, Fabien
dbd2c357-1f2e-4176-b07a-e07d8be6cd7a
Languille, Vianney
d64be6d3-968d-4943-964a-a3802c902e79
Colin, Yann
5bb46886-6484-4e99-873b-e07bac2ad2ed
Caruelle, Bastien
10f7740d-4cad-4c15-9db6-529083d0795b
Gill, James R.
1e31eb24-f833-462e-b610-23b5b28e7285
Chen, Xiaoxian
1c7ce635-f117-4cb5-8f61-cb6a9b23d8a5
Zhang, Xin
3056a795-80f7-4bbd-9c75-ecbc93085421
Parry, Anthony B.
5fde3fdc-35a1-4788-afd8-4b69863c09fb

Node-Langlois, Thomas, Wlassow, Fabien, Languille, Vianney, Colin, Yann, Caruelle, Bastien, Gill, James R., Chen, Xiaoxian, Zhang, Xin and Parry, Anthony B. (2014) Prediction of contra-rotating open rotor broadband noise in isolated and installed configurations. 20th AIAA/CEAS Aeroacoustics Conference, Atlanta, United States. 16 - 20 Jun 2014. 15 pp .

Record type: Conference or Workshop Item (Paper)

Abstract

Broadband noise is a significant part of the noise emitted by contra-rotating open rotors. Several noise sources can contribute to the total broadband sound field, with the most dominant ones probably being trailing edge noise, rotor-wake interaction noise and pylon-wake interaction noise. This paper addresses the prediction of these noise sources using analytical models based on Amiet’s flat plate airfoil theory and also to empirical turbulence models, fed by input data extracted from steady and unsteady CFD RANS simulations. The models are assessed against wind tunnel tests of Rolls-Royce’s rig 145 (build 1) conducted at the DNW anechoic open jet test facility using Rolls-Royce blades and Airbus pylons. The study showed promising results in terms of the ability of the models to predict acoustic power spectrum shapes, peak frequencies and absolute levels. The effects of changes in thrust on broadband wake-interaction noise are well reproduced. However, the models significantly underestimate the effect of thrust on trailing edge noise and the effect of rotational velocity on pylon interaction noise.

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Published date: June 2014
Venue - Dates: 20th AIAA/CEAS Aeroacoustics Conference, Atlanta, United States, 2014-06-16 - 2014-06-20
Organisations: Aerodynamics & Flight Mechanics Group

Identifiers

Local EPrints ID: 369430
URI: http://eprints.soton.ac.uk/id/eprint/369430
PURE UUID: 22848eb9-5ee4-4cc6-806e-dbbea4c1e049

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Date deposited: 29 Sep 2014 16:03
Last modified: 14 Mar 2024 18:03

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Contributors

Author: Thomas Node-Langlois
Author: Fabien Wlassow
Author: Vianney Languille
Author: Yann Colin
Author: Bastien Caruelle
Author: James R. Gill
Author: Xiaoxian Chen
Author: Xin Zhang
Author: Anthony B. Parry

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