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Performance of Airfoil Plunging Using Sinusoidal Waves Superposition

Institute of Aviation Engineering and Technology, Cairo, Egypt
State Key Laboratory of Turbulence and Complex Systems, Collaborative Innovation Center of Advanced Aero-Engine, Peking University, Beijing 100871, China
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Abstract

This paper aims to study the aerodynamic and propulsive performance of a plunging airfoil using novel plunging waveform, that creates additional trailing edge vortices, that affects the flow field and, consequently, the aerodynamic loads on the airfoil. This waveform is generated by means of superpositioning of the regular sinusoidal wave with a faster one. This novel waveform not only allows to add another pair of trailing edge vortices but also to control their strength. It is found that as the weight of the faster wave increases, the thrust coefficient increases rapidly while the propulsive efficiency decreases slowly, allowing a window of high thrust with small efficiency reduction. Understanding the effect of generating additional trailing edge vortices within the regular flapping cycle on the propulsive performance is the main objective of this work.

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Unmanned Systems
Pages 157-166

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Cite this article:
El-Salamony M. Performance of Airfoil Plunging Using Sinusoidal Waves Superposition. Unmanned Systems, 2026, 14(1): 157-166. https://doi.org/10.1142/S2301385025500888

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Received: 20 January 2024
Accepted: 01 November 2024
Published: 07 December 2024
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