The State Key Laboratory of Nonlinear Mechanics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China. School of Engineering Science, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
Bioinspir Biomim. 2018 Jul 31;13(5):056011. doi: 10.1088/1748-3190/aad419.
The intermittent locomotion performance of a fish-like elastic swimmer is studied numerically in this paper. The actuation is imposed only at the head and the locomotion is indirectly driven by passive elastic mechanism. For intermittent swimming, certain time durations of passive coasting are interspersed between two half-periods of active bursting. To facilitate the comparison of energy efficiencies in continuous and intermittent swimming at the same cruising speed, we consider both intermittent swimming at various duty cycles and also continuous swimming at reduced actuation frequencies. The result indicates that the intermittent style is more economical than the continuous style only when the cruising Reynolds number is sufficiently large and the duty cycle is moderate. We also explore the passive tail-beating pattern and wake structure for intermittent swimming. It is found that the kinematics of the tail contains a preparatory burst phase which lies in between the active bursting and the passive coasting phases. Three vortex streets are found in the wake structures behind the intermittent swimmers. The two oblique streets consist of strong vortex dipoles and the horizontal street is made up of weak vortices. The results of this study can provide some insight into the burst-and-coast swimming of fish and also inform the design of efficient bio-mimetic under-water vehicles.
本文研究了一种类鱼弹性游动体的间歇性运动性能。激励仅施加在头部,运动通过被动弹性机构间接驱动。对于间歇性游泳,在两个主动爆发的半周期之间插入一定时间的被动滑行。为了方便在相同巡航速度下比较连续和间歇性游泳的能量效率,我们考虑了不同占空比的间歇性游泳和降低激励频率的连续游泳。结果表明,只有在巡航雷诺数足够大且占空比适中时,间歇性游泳才比连续游泳更经济。我们还探索了间歇性游泳的被动尾部拍打模式和尾迹结构。结果发现,尾部的运动学包含一个预备爆发阶段,位于主动爆发和被动滑行阶段之间。在间歇性游泳者的尾部后面发现了三个涡街。两个斜向涡街由强涡偶极子组成,而水平涡街由弱涡组成。本研究的结果可以为鱼类的爆发-滑行游泳提供一些启示,也可以为高效仿生水下航行器的设计提供信息。