Clap-and-fling mechanism in a hovering insect-like two-winged flapping-wing micro air vehicle

Author:

Phan Hoang Vu12,Au Thi Kim Loan12,Park Hoon Cheol12ORCID

Affiliation:

1. Artificial Muscle Research Center, Konkuk University, Seoul 143-701, South Korea

2. Department of Advanced Technology Fusion, Konkuk University, Seoul 143-701, South Korea

Abstract

This study used numerical and experimental approaches to investigate the role played by the clap-and-fling mechanism in enhancing force generation in hovering insect-like two-winged flapping-wing micro air vehicle (FW-MAV). The flapping mechanism was designed to symmetrically flap wings at a high flapping amplitude of approximately 192°. The clap-and-fling mechanisms were thereby implemented at both dorsal and ventral stroke reversals. A computational fluid dynamic (CFD) model was constructed based on three-dimensional wing kinematics to estimate the force generation, which was validated by the measured forces using a 6-axis load cell. The computed forces proved that the CFD model provided reasonable estimation with differences less than 8%, when compared with the measured forces. The measurement indicated that the clap and flings at both the stroke reversals augmented the average vertical force by 16.2% when compared with the force without the clap-and-fling effect. In the CFD simulation, the clap and flings enhanced the vertical force by 11.5% and horizontal drag force by 18.4%. The observations indicated that both the fling and the clap contributed to the augmented vertical force by 62.6% and 37.4%, respectively, and to the augmented horizontal drag force by 71.7% and 28.3%, respectively. The flow structures suggested that a strong downwash was expelled from the opening gap between the trailing edges during the fling as well as the clap at each stroke reversal. In addition to the fling phases, the influx of air into the low-pressure region between the wings from the leading edges also significantly contributed to augmentation of the vertical force. The study conducted for high Reynolds numbers also confirmed that the effect of the clap and fling was insignificant when the minimum distance between the two wings exceeded 1.2c (c = wing chord). Thus, the clap and flings were successfully implemented in the FW-MAV, and there was a significant improvement in the vertical force.

Funder

Ministry of Science, ICT and Future Planning

Defense Acquisition Program Administration and Agency for Defense Development

Publisher

The Royal Society

Subject

Multidisciplinary

Reference59 articles.

1. Controlled Flight of a Biologically Inspired, Insect-Scale Robot

2. Controlling free flight of a robotic fly using an onboard vision sensor inspired by insect ocelli

3. Keennon MT Klingebiel K Won H Andriukov A. 2012 Development of the nano hummingbird: a tailless flapping wing micro air vehicle. In Proc. of 50th AIAA Aerospace Sciences Meeting Nashville TN 6--12 January AIAA 2012-0588. (doi:10.2514/6.2012-588)

4. Design, aerodynamics and autonomy of the DelFly

5. Insect-like flapping wing mechanism based on a double spherical Scotch yoke

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