Three-Dimensional Free-Flight Analysis of the Rapid Turning of a Dragonfly Using Fluid-Structure Interaction Analysis

Author:

HAMAMOTO Masaki1,OHTA Yoshiji2,HARA Keita3,HISADA Toshiaki4

Affiliation:

1. Advanced Technology Research Laboratories, Corporate Research and Development Group, Sharp Corporation

2. Solar Systems Group/Solar Systems Business Division, Residential PV Sytem CAD Design Center, Sharp Corporation

3. Department I of the Healthcare Systems Laboratories, Corporate Research and Development Group Sharp Corporation

4. Institute of Environmental Studies, Graduate School of Frontier Sciences, The University of Tokyo

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference20 articles.

1. (1) Azuma, A., The biokinetics of flying and swimming. Springer-Verlag (1992).

2. (2) Brodsky, A. K., The evolution of insect flight. Oxford University Press (1994).

3. (3) Dickinson, M. H., Lehamann, F. O., and Sane, S. P., Wing rotation and the aerodynamic basis of insect flight, Science, Vol. 284 (1999), pp. 1954-1960.

4. (4) M. B. James and M. H. Dickinson, Spanwise flow and the attachment of the leadingedge vortex on insect wings, Nature, Vol. 412 (2001), pp. 729-733.

5. (5) S. P. Sane and M. H. Dickinson, The aerodynamic effects of wing rotation and a revised quasi-steady model of flapping flight, J. Exp. Biol., Vol. 205 (2002), pp. 1087-1096.

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