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PMID: 35997435 Published · epublish English Journal Article

Wing Kinematics and Unsteady Aerodynamics of a Hummingbird Pure Yawing Maneuver.

Biomimetics (Basel, Switzerland) ·Vol. 7 ·No. 3 ·2022-08-19

Menzer A, Ren Y, Guo J, Tobalske BW, Dong H

Abstract

As one of few animals with the capability to execute agile yawing maneuvers, it is quite desirable to take inspiration from hummingbird flight aerodynamics. To understand the wing and body kinematics and associated aerodynamics of a hummingbird performing a free yawing maneuver, a crucial step in mimicking the biological motion in robotic systems, we paired accurate digital reconstruction techniques with high-fidelity computational fluid dynamics (CFD) simulations. Results of the body and wing kinematics reveal that to achieve the pure yaw maneuver, the hummingbird utilizes very little body pitching, rolling, vertical, or horizontal motion. Wing angle of incidence, stroke, and twist angles are found to be higher for the inner wing (IW) than the outer wing (OW). Unsteady aerodynamic calculations reveal that drag-based asymmetric force generation during the downstroke (DS) and upstroke (US) serves to control the speed of the turn, a characteristic that allows for great maneuvering precision. A dual-loop vortex formation during each half-stroke is found to contribute to asymmetric drag production. Wake analysis revealed that asymmetric wing kinematics led to leading-edge vortex strength differences of around 59% between the IW and OW. Finally, analysis of the role of wing flexibility revealed that flexibility is essential for generating the large torque necessary for completing the turn as well as producing sufficient lift for weight support.

Keywords
bio-inspired maneuvering performance computational fluid dynamics simulation hummingbird pure yaw maneuver
作者与单位
共 5 位作者,点击展开单位 / ORCID
Menzer Alec ORCID
Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22903, USA.
Ren Yan
Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22903, USA.
Guo Jiacheng
Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22903, USA.
Tobalske Bret W ORCID
Division of Biological Sciences, University of Montana, Missoula, MT 59812, USA.
Dong Haibo ORCID
Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22903, USA.
Article Info
Journal
Biomimetics (Basel, Switzerland)
Abbr.
Biomimetics (Basel)
ISSN
2313-7673
Published
2022-08-19
电子出版
2022-00-19
Language
English
Country/Region
Switzerland
NLM ID
101719189
基金资助
National Science Foundation · 1829004
National Science Foundation · CEBT-1313217
Air Force Office of Science Research · FA9550-12-1-007
the National Science Foundation · CMMI 1234737
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