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研究逆流区域对仿生机器鱼水动力性能的影响。

Investigating the Influence of Counterflow Regions on the Hydrodynamic Performance of Biomimetic Robotic Fish.

作者信息

Gong Yanling, Wang Ming, Zhao Qianchuan, Wang Ruilong, Zuo Lingchen, Zheng Xuehan, Gao He

机构信息

School of Information and Electrical Engineering, Shandong Jianzhu University, Jinan 250101, China.

Department of Automation, Tsinghua University, Beijing 100084, China.

出版信息

Biomimetics (Basel). 2024 Jul 24;9(8):452. doi: 10.3390/biomimetics9080452.

Abstract

Biomimetic robotic fish are a novel approach to studying quiet, highly agile, and efficient underwater propulsion systems, attracting significant interest from experts in robotics and engineering. These versatile robots showcase their ability to operate effectively in various water conditions. Nevertheless, the comprehension of the swimming mechanics and the evolution of the flow field of flexible robots in counterflow regions is still unknown. This paper presents a framework for the self-propulsion of robotic fish that imitates biological characteristics. The method utilizes computational fluid dynamics to analyze the hydrodynamic efficiency of the organisms at different frequencies of tail movement, under both still and opposing flow circumstances. Moreover, this study clarifies the mechanisms that explain how changes in the aquatic environment affect the speed and efficiency of propulsion. It also examines the most effective swimming tactics for places with counterflow. The results suggest that the propulsion effectiveness of robotic fish in counterflow locations does not consistently correspond to various tail-beat frequencies. By utilizing vorticity maps, a comparative analysis can identify situations when counterflow zones improve the efficiency of propulsion.

摘要

仿生机器鱼是研究安静、高度敏捷且高效的水下推进系统的一种新方法,吸引了机器人技术和工程领域专家的极大兴趣。这些多功能机器人展示了它们在各种水况下有效运行的能力。然而,对于柔性机器人在逆流区域的游泳力学以及流场演变的理解仍然未知。本文提出了一种模仿生物特征的机器鱼自推进框架。该方法利用计算流体动力学来分析生物体在静止和逆流情况下不同尾动频率下的水动力效率。此外,本研究阐明了解释水生环境变化如何影响推进速度和效率的机制。它还研究了逆流区域最有效的游泳策略。结果表明,机器鱼在逆流位置的推进效果与各种尾拍频率并不始终对应。通过利用涡度图,对比分析可以识别出逆流区域提高推进效率的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b66/11352019/6a633f19b4d3/biomimetics-09-00452-g001.jpg

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