A flexible hingeless control surface inspired by aquatic animals

Author:

Wang Zhenlong,Li Jian,Hang Guanrong,Wang Yangwei

Publisher

Springer Science and Business Media LLC

Subject

Bioengineering,Biophysics,Biotechnology

Reference25 articles.

1. Walker J A. Kinematics and performance of maneuvering control surfaces in teleost fishes. IEEE Journal of Oceanic Engineering, 2004, 29, 572–584.

2. Walker J A. Does a rigid body limit maneuverability? The Journal of Experimental Biology, 2000, 203, 3391–3396.

3. Fish F E, Nicastro A J. Aquatic turning performance by the whirligig beetle: Constraints on maneuverability by a rigid biological system. The Journal of Experimental Biology, 2003, 206, 1649–1656.

4. Fish F E. Biological designs for enhanced maneuverability: Analysis of marine mammal performance. Proceedings of the Tenth International Symposium on Unmanned Untethered Submersible Technology: Special Session on Bio-Engineering Research Related to Autonomous Underwater Vehicles, New Hampshire, 1997, 109–117.

5. Fish F E. Performance constraints on the maneuverability of flexible and rigid biological systems. Proceedings of the Eleventh International Symposium on Unmanned Untethered Submersible Technology, Durham, New Hampshire, 1999, 394–406.

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