An interdisciplinary study of sea lion swimming: from biological studies to a robotic platform
ORAL · Invited
Abstract
California sea lions (Zalophus californianus) are highly maneuverable swimmers, capable of generating high thrust and agile turns. Their main propulsive surfaces, the foreflippers, feature multiple degrees of freedom, allowing their use for thrust production (through a downward, sweeping motion referred to as a “clap”), turning, stability and station holding (underwater “hovering”). Additionally, their flexible bodies and amphibious nature make them an excellent platform to inspire the next generation of unmanned underwater vehicles. Through multiple interdisciplinary studies of the fundamental systems of sea lion locomotion, we have designed and built a swimming robotic platform to further both our scientific and robotic goals. These studies include: geometric and kinetic studies of both forward swimming and maneuvering, Fore- and hindflipper studies, several robotic platforms to investigate the fluid mechanics and control of their thrust production, in situ measurements of swimming and porpoising, and many more. These have all informed the robotic platform, SEAMOUR, that is capable independent of sea lion-inspired swimming.
*ONR N00014-21-1-2133
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Publication:Kerr, S.J, Fish, F.E., Nicastro, A.J., Zeligs, J., Skrovan, S. and Leftwich, M.C. (2022) "Biomechanical energetics of terrestrial locomotion in California sea lions (Zalophus californianus)" Journal of Experimental Biology, doi.org/10.1242/jeb.244163
Perrotta, G., Fish, F.E., Adams, D., Leahy, A., Bowns, A. and Leftwich, M.C. (2022) "Velocity Field Measurements of the California Sea Lion Propulsive Stroke using Bubble PIV" Fluids 7(1), 3, doi.org/10.3390/fluids7010003
Ariel M Leahy, Frank E Fish, Sarah J Kerr, Jennifer A Zeligs, Stephanie Skrovan, Kaitlyn L Cardenas, and Megan C Leftwich (2021) "The role of California sea lion (Zalophus californianus) hindflippers as aquatic control surfaces for maneuverability." Journal of Experimental Biology 224(20), jeb243020.
Kashi, E., Kulkarni, A.A., Perrotta, G. and Leftwich, M.C. (2020) "Flowfields produced by a robotic sea lion foreflipper starting from rest" Bioinspiration & Biomimetics, 15(3), doi:10.1088/1748-3190/ab6a62