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金枪鱼状鱼体和鱼鳍的可变刚度对游泳性能的影响。

The effect of variable stiffness of tuna-like fish body and fin on swimming performance.

机构信息

Department of Naval Architecture, Ocean and Marine Engineering, University of Strathclyde, Glasgow, G4 0LZ, United Kingdom.

School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, People's Republic of China.

出版信息

Bioinspir Biomim. 2020 Nov 7;16(1):016003. doi: 10.1088/1748-3190/abb3b6.

Abstract

The work in this paper focuses on the examination of the effect of variable stiffness distributions on the kinematics and propulsion performance of a tuna-like swimmer. This is performed with the use of a recently developed fully coupled fluid-structure interaction solver. The two different scenarios considered in the present study are the stiffness varied along the fish body and the caudal fin, respectively. Our results show that it is feasible to replicate the similar kinematics and propulsive capability to that of the real fish via purely passive structural deformations. In addition, propulsion performance improvement is mainly dependent on the better orientation of the force near the posterior part of swimmers towards the thrust direction. Specifically, when a variable body stiffness scenario is considered, the bionic body stiffness profile results in better performance in most cases studied herein compared with a uniform stiffness commonly investigated in previous studies. Given the second scenario, where the stiffness is varied only in the spanwise direction of the tail, similar tail kinematics to that of the live scombrid fish only occurs in association with the heterocercal flexural rigidity profile. The resulting asymmetric tail conformation also yields performance improvement at intermediate stiffness in comparison to the cupping and uniform stiffness.

摘要

本文的工作重点研究了变刚度分布对仿金枪鱼游泳生物的运动学和推进性能的影响。这是使用最近开发的完全耦合流固耦合求解器来实现的。本研究考虑了两种不同的情况,分别是鱼体和尾鳍的刚度沿体长变化。我们的研究结果表明,通过纯粹的被动结构变形,实现与真实鱼类相似的运动学和推进能力是可行的。此外,推进性能的提高主要取决于更好地将力在游泳者后部附近的方向调整为推力方向。具体而言,当考虑变体刚度情况时,仿生体刚度分布在本文研究的大多数情况下比以前研究中通常研究的均匀刚度更能产生更好的性能。对于第二个情况,即仅在尾部的展向方向上变化刚度,只有在与长尾异形弯曲刚度分布相关时,才会出现类似于活体鲭鱼的尾鳍运动学。与杯状和均匀刚度相比,这种不对称的尾鳍构型在中等刚度下也能提高性能。

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