Publisher DOI: 10.5281/zenodo.17280518
Title: Noise reduction of a circulation-controlled wing with porous insert
Language: English
Authors: Ananthan, Varun B. 
Akkermans, Rinie A. D. 
Hu, Tianxiang 
Liu, Peiqing Q. 
Burzynski, David 
Editor: Hickel, Stefan 
Salvetti, Maria Vittoria 
Issue Date: 10-Oct-2025
Publisher: zenodo.org
Part of Series: Proceedings of the 15th ERCOFTAC Symposium on Engineering Turbulence Modelling and Measurements : Dubrovnic, Croatia, 22-24 September 2025 
Journal or Series Name: Zenodo : research shared 
Startpage: 27
Endpage: 32
Conference: International ERCOFTAC Symposium on Engineering Turbulence Modelling and Measurements 2025 
Abstract: 
A circulation-controlled wing has the potential to significantly increase lift, however, at the cost of in creased noise. In this study, we use Overset-LES to explore the noise reduction capabilities of applying porous materials to such a circulation-controlled wing. The presence of a porous medium in the flap allows airflow to pass through, in contrast to a non-porous flap configuration. Consequently, the boundary layer on the flap’s suction side thickens considerably. This study provides insights into the role of flow-through behavior in porous materials and its effect on boundary layer thickening, highlighting the need to moderate this phenomenon to achieve effective noise reduction. Additionally, the findings underscore the significance of curvature noise, which should be the primary focus to reduce noise of circulation-controlled wings.
URI: https://hdl.handle.net/20.500.12738/18294
Review status: This version was reviewed (alternative review procedure)
Institute: Fakultät Technik und Informatik 
Fakultät Luftfahrt- und Fahrzeugsysteme 
Type: Chapter/Article (Proceedings)
Additional note: The authors also gratefully acknowledge the North-German Supercomputing Alliance (HLRN) for providing computational resources under project ID nii00132.
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