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Optimized kinematics enable both aerial and aquatic propulsion from a single three-dimensional flapping wing

Jacob Izraelevitz, Miranda Kotidis, Michael S. Triantafyllou

Year
2018
Citations
17
Access
Open access

Abstract

Experiments on a prototype flapping robotic wing show that a single design can propel in both air and water, as do puffins and other auks, by varying wing kinematics. We optimize for each fluid with a force measurement feedback scheme and determine the unsteady wakes through dye visualization.

Keywords

KinematicsFlappingWingPropulsionMarine engineeringAerospace engineeringDroneComputer scienceVisualizationSimulation

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