Research on the influence of ground effect on the performance of robotic fish propelled by oscillating paired pectoral fins

地面效应(汽车) 推力 鱼翅 推进 后缘 机械 海洋工程 物理 工程类 机械工程 航空航天工程 生物 渔业
作者
Hongwei Ma,Shuai Ren,Junxiang Wang,Hui Ren,Yang Liu,Shusheng Bi
出处
期刊:Industrial Robot-an International Journal [Emerald Publishing Limited]
卷期号:48 (1): 133-141 被引量:9
标识
DOI:10.1108/ir-04-2020-0081
摘要

Purpose This paper aims to carry out the research on the influence of ground effect on the performance of robotic fish propelled by oscillating paired pectoral fins. Design/methodology/approach The two-dimensional ground effect model of the oscillating pectoral fin without considering flexible deformation is established by introducing a two-dimensional fluid ground effect model. The parameters of the influence of ground effect on the oscillating pectoral fin are analyzed. Finally, the ground effect test platform is built, and a series of hydrodynamic experiments are carried out to study the influence of ground effect on the propulsion performance of the robotic fish propelled by oscillating paired pectoral fins under different motion parameters. Findings The thickness of the trailing edge and effective clearance are two important parameters that can change the influence of ground effect on the rigid pectoral fin. The experimental results are consistent with that obtained through theoretical analysis within a certain extent, which indicates that the developed two-dimensional ground effect model in this paper can be used to analyze the influence of ground effect on the propulsion performance of the oscillating pectoral fin. The experiment results show that the average thrust increases with the decreasing distance between the robot fish and the bottom. Meanwhile, with the increase of oscillation frequency and amplitude, the average thrust increases gradually. Originality/value The developed two-dimensional ground effect model provides the theoretical basis for the further research on the influence of ground effect on the propulsion performance of the oscillating pectoral fin. It can also be used in the design of the bionic pectoral fins.
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