首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >STUDY OF SELF-PROPELLED PUFFERFISH DRIVEN BY MULTIPLE FINS - A COMPARISON BETWEEN RIGID AND DEFORMABLE FINS
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STUDY OF SELF-PROPELLED PUFFERFISH DRIVEN BY MULTIPLE FINS - A COMPARISON BETWEEN RIGID AND DEFORMABLE FINS

机译:多鳍驱动的自推进PU鱼的研究-刚性鳍与可变形鳍的比较

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In this work, we numerically studied the steady swimming of a pufferfish driven by the undulating motion of its dorsal, anal and caudal fins. The simulations are based on experimentally measured kinematics. To model the self-propelled fish swimming, a Computational Fluid Dynamics (CFD) tool was coupled with a Multi-Body-Dynamics (MBD) technique. It is widely accepted that deformable/flexible or undulating fins are better than rigid fins in terms of propulsion efficiency. To elucidate the underlying mechanism, we established an undulating fins model based on the kinematics of live fish, and conducted a simulation under the same operating conditions as rigid fins. The results presented here agree with this view by showing that the contribution of undulating fins to propulsion efficiency is significantly larger than that of rigid fins.
机译:在这项工作中,我们对河豚的背鳍,臀鳍和尾鳍的起伏运动驱动的稳定游泳进行了数值研究。仿真基于实验测量的运动学。为了模拟自走式鱼的游泳,将计算流体动力学(CFD)工具与多体动力学(MBD)技术结合使用。公认的是,在推进效率方面,可变形/柔性或起伏的翅片优于刚性翅片。为了阐明其基本机制,我们基于活鱼的运动学建立了起伏的鳍片模型,并在与刚性鳍片相同的操作条件下进行了仿真。此处给出的结果与该观点一致,表明波纹状鳍片对推进效率的贡献显着大于刚性鳍片。

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