首页 /研究 /A Flapped Paddle-Fin for Improving Underwater Propulsive Efficiency of Oscillatory Actuation
LOCOMOTION

A Flapped Paddle-Fin for Improving Underwater Propulsive Efficiency of Oscillatory Actuation

Ashutosh Simha, Roza Gkliva, Ülle Kotta, Maarja Kruusmaa

发表年份
2020
引用次数
18

摘要

This letter presents a novel design of an oscillatory fin for thrust-efficient and agile underwater robotic locomotion. We propose a flat paddle-fin comprising a set of overlapping cascaded soft flaps that open in one half of the stroke cycle and close in the other. Consequently, asymmetry in the lateral drag force exerted by the fin during oscillatory actuation is passively achieved. This enables a substantially higher degree of efficiency in force generation than conventional oscillatory fins which rely on weaker longitudinal wake-induced forces. Experimental results show a high degree of improvement in net thrust and propulsive-efficiency over conventional fins. Locomotion with the proposed fin has been demonstrated on an underwater robotic platform. Various gaits were achieved using oscillatory actuation, via angular and phase offsets between the actuators.

关键词

FinPropulsive efficiencyThrustWakeUnderwaterPaddleDragActuatorPropulsionFish fin

相关论文

查看 LOCOMOTION 分类全部论文