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Development of a robotic fin for hydrodynamic propulsion and aerodynamic control

Jason Geder, Ravi Ramamurti, Dan Edwards, Trent Young, Marius Pruessner

Year
2014
Citations
16

Abstract

An unmanned vehicle is being developed for highspeed aerial ingress to a target shallow water environment after which it will transition to underwater low-speed operations. This paper describes the design and analysis of a bio-inspired robotic fin for use as an underwater propulsion and control mechanism, and the effect this fin has on the aerodynamic characteristics of the air-deployed vehicle platform. Building on previous fin research, both computational fluid dynamics (CFD) simulation results and experimental data are used to evaluate the hydrodynamic thrust of a flapping fin, as well as the aerodynamic lift of a static fin. This analysis validates the fin design for use on a hybrid air-underwater vehicle.

Keywords

FinPropulsionAerodynamicsThrustMarine engineeringComputational fluid dynamicsLift (data mining)UnderwaterAerospace engineeringEngineering

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