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Hydrodynamic Analysis On The Shape Of Bionic Fish Based On Cfd

机译:基于CFD的仿生鱼形状的流体动力学分析

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The research of underwater bionics technology has been paid more attention. In this paper, we established four kinds of bionic fish models adopted reverse engineering method. In order to explore the relationship between the shape and swimming velocity, we analyzed the lift-drag ratio of these models applying computational fluid dynamics (CFD) technology. Besides, the surface pressure distribution and the hydrodynamic characteristics also been studied, which can improve the kinematic performance of bionic robotic fish. Finally, the simulation results showed that the Carangidae bionic model has the optimal shape and lift-drag ratio, which laid a theoretical foundation for further engineering design and application.
机译:水下仿生学技术的研究得到了更多关注。 在本文中,我们建立了四种仿生鱼模型采用了逆向工程方法。 为了探讨形状和游泳速度之间的关系,我们分析了应用计算流体动力学(CFD)技术的这些模型的升力比。 此外,还研究了表面压力分布和流体动力学特性,可以提高仿生机器人鱼类的运动学性能。 最后,仿真结果表明,Carangidae仿生模型具有最佳的形状和升力比,其为进一步的工程设计和应用奠定了理论基础。

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