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Effects of stiffness distribution and spanwise deformation on the dynamics of a ray-supported caudal fin

机译:刚度分布的影响和枝条变形对光线支撑的尾鳍动态的影响

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摘要

Using a fluid-structure interaction model, we study the effect of ray stiffness distribution on the deformation and performance of a caudal fin. By prescribing a simple swaying motion, our results show that through passive structural deformation alone it is possible to reproduce some complicated fin movements (e.g. the cup and 'W'-shape deformations) observed in real fish. Moreover, it has been numerically shown that, compared with a fin with uniform ray stiffness, at the same ( average) ray stiffness fins with nonuniform stiffness distribution may achieve further performance enhancement, e.g. increase in propulsion efficiency and decrease in lateral force generation. This is attributed to spanwise deformations caused by phase differences between different rays.
机译:使用流体结构相互作用模型,我们研究射线刚度分布对尾鳍变形和性能的影响。 通过规定简单的摇曳运动,我们的结果表明,通过被动结构变形单独,可以再现一些复杂的翅片运动(例如,在真正的鱼中观察到的杯子和'w'形变形)。 此外,已经数量地表明,与具有均匀射线刚度的鳍片相比,在具有非均匀性刚度分布的相同(平均)射线刚度翅片中,可以实现进一步的性能增强,例如,实现进一步的性能增强。 提高推进效率和侧向力的减少。 这归因于由不同光线之间的相差引起的始线变形。

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