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Effects of camber angle on aerodynamic performance of flapping-wing micro air vehicle

Cited 19 time in Web of Science Cited 25 time in Scopus
Authors

Yoon, Sang-Hoon; Cho, Haeseong; Lee, Junhee; Kim, Chongam; Shin, Sang-Joon

Issue Date
2020-08
Publisher
Academic Press
Citation
Journal of Fluids and Structures, Vol.97, p. 103101
Abstract
This study investigates the unsteady aerodynamic characteristics of the cambered wings of a flapping-wing micro air vehicle (FW-MAV) in hover. A three-dimensional fluid-structure interaction solver is developed for a realistic modeling of large-deforming wing structure and geometry. Cross-validation is conducted against the experimental results obtained also in the present study to establish more accurate analyses of cambered wings. An investigation is carried out on the unsteady vortex structures around the wings caused by the passive twisting motion. A parametric study is then conducted to evaluate the aerodynamic performance with respect to the camber angle at three different flapping frequencies including normal operating conditions. The camber angles producing the largest thrust and highest propulsive efficiency are estimated at each flapping frequency, and their effects on aerodynamic performance are analyzed in terms of the stroke phase. The timing and magnitude of the passive twisting motion, which are dependent on the camber angle at the operating frequency, greatly affects the unsteady vortex structure. Consequently, the camber angle designed at the operating frequency plays a key role in enhancing the aerodynamic performance of FW-MAVs. (C) 2020 Elsevier Ltd. All rights reserved.
ISSN
0889-9746
URI
https://hdl.handle.net/10371/195733
DOI
https://doi.org/10.1016/j.jfluidstructs.2020.103101
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