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Investigating the Aerodynamic and Aeroacoustic Behavior of a Single Propeller-Wing Configuration in Turbulent Flow

Research output: Chapter in Book/Report/Conference proceedingConference Contribution (Conference Proceeding)

6 Citations (Scopus)
217 Downloads (Pure)

Abstract

This study experimentally examines how turbulent inflow affects the noise emitted by a single propeller–wing configuration and compares it with that of an isolated propeller in clean flow, using a five-bladed propeller. Tests were conducted at free-stream velocities from 8 to 30 m s−1, corresponding to advance ratios of J = 0.26–1.05. Aerodynamic measurements show that the wing improves propeller performance, increasing thrust and propulsive efficiency across the entire advance-ratio range relative to an isolated propeller. Spectral analysis of baseline SPL reveals that the overall reduction in noise with increasing J is driven mainly by a pronounced decline in broadband energy between the first and third blade-passing frequencies. The propeller–wing system was exposed to both clean flow and three turbulent inflows generated by grids with progressively larger integral length scales and intensities. Turbulence-flow reduces the aerodynamic force coefficients yet preserves the general trend with advance ratio observed in clean flow. Far-field data demonstrate that turbulence-flow markedly increases the overall sound-pressure level (OASPL) at high J. For 0.26 < J < 0.46, the smallest-scale grid produces noise levels indistinguishable from those in clean flow, whereas the two higher-intensity grids introduce only mild broadband increases. Above J ≈ 0.46, all turbulent cases diverge from the baseline, with the highest-intensity grid adding up to 10 dB downstream. These results confirm that low-intensity, small-scale turbulence has little acoustic impact at high advance ratios, whereas larger, more energetic eddies significantly amplify radiated noise.
Original languageEnglish
Title of host publicationAIAA AVIATION FORUM AND ASCEND 2025
PublisherAmerican Institute of Aeronautics and Astronautics Inc. (AIAA)
Number of pages17
ISBN (Electronic)9781624107382
DOIs
Publication statusPublished - 21 Jul 2025
EventAIAA AVIATION Forum and ASCEND 2025 - Las Vegas, United States
Duration: 21 Jul 202525 Jul 2025
https://aiaa.org/events-learning/events/2025-las-vegas/

Publication series

NameAIAA Aviation Forum and ASCEND, 2025

Conference

ConferenceAIAA AVIATION Forum and ASCEND 2025
Country/TerritoryUnited States
CityLas Vegas
Period21/07/2525/07/25
Internet address

Bibliographical note

Publisher Copyright:
© 2025, American Institute of Aeronautics and Astronautics Inc, AIAA. All rights reserved.

Research Groups and Themes

  • Fluid and Aerodynamics

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