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The airfoil design and parameter optimization of the deformable micro air vehicle

Shengxian Huang (Shanghai Key Laboratory of Multiphase Flow and Heat Transfer of Power Engineering, School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai, China)
Huihe Qiu (Department of Mechanical and Aerospace Engineering , Hong Kong, Hong Kong)
Ying Wang (Shanghai Key Laboratory of Multiphase Flow and Heat Transfer of Power Engineering, School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai, China) (Department of Mechanical and Aerospace Engineering , Hong Kong, Hong Kong)

Engineering Computations

ISSN: 0264-4401

Article publication date: 23 October 2023

Issue publication date: 5 December 2023

123

Abstract

Purpose

Since most of the existing literature do not disclose the node coordinate data of its fixed-wing aircraft airfoil, in order to develop and obtain a practical and suitable deformation airfoil for fixed-wing micro air vehicle (MAV), this paper proposes an improved airfoil design method of fixed-wing MAV based on the profile data of S5010 airfoil.

Design/methodology/approach

Combined with the body shape variation of the stingray in the propulsion process, the parametric study of the aerodynamic shape of the original design airfoil is carried out to explore the influence of a single parameter change on the aerodynamic performance of the airfoil. Then, according to the influence law of single parameter variation on the aerodynamic performance of the airfoil, the original airfoil is synthetically deformed by changing multiple parameters.

Findings

By comparing the aerodynamic performance of the multi-parameter deformed airfoil with the original airfoil, it is found that the lift coefficient of the multi-parameter deformed airfoil changes from negative to positive value when AOA = 0°. When AOA = 2°, the lift coefficient growth rate is the largest, which is 47.27%, and the lift-to-drag ratio is increased by 50.00%. At other angles of attack, the lift, drag, and torque coefficients of the multi-parameter deformed airfoil are optimized to some extent.

Originality/value

Combined the body shape variation of the stingray in the propulsion process, the parametric study of the aerodynamic shape of the original design airfoil is carried out to explore the influence of a single parameter change on the aerodynamic performance of the airfoil.

Keywords

Acknowledgements

This study was sponsored by the Foundation of National Key Laboratory of Science and Technology on Aerodynamic Design and Research (Grant No: 6142201200314) and Shanghai Pujiang Program.

Citation

Huang, S., Qiu, H. and Wang, Y. (2023), "The airfoil design and parameter optimization of the deformable micro air vehicle", Engineering Computations, Vol. 40 No. 9/10, pp. 2029-2048. https://doi.org/10.1108/EC-11-2021-0653

Publisher

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Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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