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Numerical simulation and wind tunnel tests investigation and validation of a morphing wing-tip demonstrator aerodynamic performance

Sugar-Gabor, O; Koreanschi, A; Botez, RM; Mamou, M; Mebarki, Y

Authors

A Koreanschi

RM Botez

M Mamou

Y Mebarki



Abstract

This paper presents the results obtained from the numerical simulation and experimental wind tunnel testing of a morphing wing equipped with a flexible upper surface and controllable actuated aileron. The technology demonstrator is representative of a real aircraft wing tip section, and it was developed following a complex, multidisciplinary design process. The model was fitted with a composite material upper skin whose shape can be morphed, as a function of the flight condition, by four electrical actuators placed inside the wing structure. The optimizations were performed with the aim of controlling the extent of the laminar flow region, and the resulting shapes were scanned using high-precision photogrammetry. The numerical simulations were performed using Computational Fluid Dynamics (CFD) and included a model for predicting the laminar-to-turbulent flow transition over the entire wing surface. The analyses included cases with three aileron deflection angles and angles of attack situated within five degrees range. The CFD results were compared with infrared thermography measurements in terms of transition location, surface pressure measurements and balance loads measurements acquired during subsonic wind tunnel tests performed at the National Research Council Canada.

Citation

Sugar-Gabor, O., Koreanschi, A., Botez, R., Mamou, M., & Mebarki, Y. (2016). Numerical simulation and wind tunnel tests investigation and validation of a morphing wing-tip demonstrator aerodynamic performance. Aerospace science and technology, 53, 136-153. https://doi.org/10.1016/j.ast.2016.03.014

Journal Article Type Article
Acceptance Date Mar 21, 2016
Online Publication Date Mar 26, 2016
Publication Date Jun 1, 2016
Deposit Date Mar 10, 2017
Journal Aerospace Science and Technology
Print ISSN 1270-9638
Publisher Elsevier
Volume 53
Pages 136-153
DOI https://doi.org/10.1016/j.ast.2016.03.014
Publisher URL http://dx.doi.org/10.1016/j.ast.2016.03.014
Related Public URLs http://www.sciencedirect.com/science/journal/12709638