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Wing flexibility effects on the flight performance of an insect-like flapping-wing micro-air vehicle

Nguyen, A.T. and Han, J.-H. (2018) Wing flexibility effects on the flight performance of an insect-like flapping-wing micro-air vehicle. Aerospace Science and Technology, 79. pp. 468-481. ISSN 12709638

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2018_03_28_Wing flexibility_AST_revised.docx

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Abstract

This study explores the effects of wing flexibility on several characteristics of flight, in this case the trim conditions, power requirements and dynamic stability of an insect-like flapping-wing micro-air vehicle (FWMAV) based on the hawkmoth Manduca sexta. The wing structure is analyzed by the finite-element method. A potential-based aerodynamic model which encompasses the unsteady panel method and the extended unsteady vortex-lattice method is employed to compute the aerodynamic forces. The motions of the FWMAV are obtained using a flexible multibody dynamics program coupled with the potential-based aerodynamic model. The results of this study show that the trim conditions of insect-like flexible and rigid FWMAVs may differ significantly from each other. When the flight speed is less than 3.0 m/s, using flexible wings is favorable, as they help the FWMAV reduce the power requirement and stabilize the lateral dynamics. However, at 3.0 m/s, these advantages are almost unnoticeable, while at 4.0 m/s, the flexible insect-like FWMAV requires even more mechanical power than its rigid counterpart. © 2018 Elsevier Masson SAS

Item Type: Article
Divisions: Faculties > Faculty of Aerospace Engineering
Identification Number: 10.1016/j.ast.2018.06.007
Uncontrolled Keywords: Aerodynamics; Crystal lattices; Flexible wings; Superconducting materials; Vortex flow; Wings; Flapping wing; Flexible multi-body dynamics; Panel methods; Unsteady vortex-lattice methods; Wing flexibility; Micro air vehicle (MAV)
Additional Information: Language of original document: English.
URI: http://eprints.lqdtu.edu.vn/id/eprint/9543

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