首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Parameter analysis of batoid fin motions using fluid-structure interaction-based simulation and design of experiments
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Parameter analysis of batoid fin motions using fluid-structure interaction-based simulation and design of experiments

机译:基于流体-结构相互作用的仿真鳍状鳍运动参数分析与实验设计

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Recently, much attention has been focused on the development of bio-mimetic underwater vehicles with a view to emulate the characteristics and performances of fishes and marine mammals. This study examines the thrust motions of batoids, which have excellent cruise and manoeuvrability characteristics during underwater movement. Numerical results concerning moving distance and velocity derived from batoid fin motions are studied. The commercial software package ADINA is employed for three-dimensional time-dependent fluid-structure interaction analysis. Following the numerical identification of fin motion under the simplified model of an actual cownose ray, a parameter design is performed to predict the optimal levels of fin width, thickness, frequency, and amplitude, and the significant factor effects of these in the design of experiments are discussed. This study also shows that fin frequency has strong interaction with amplitude and width.
机译:近来,为了仿效鱼类和海洋哺乳动物的特性和性能,人们已将许多注意力集中在仿生水下车辆的开发上。这项研究研究了类蝙蝠的推力运动,它们在水下运动时具有出色的巡航和机动性特征。研究了从鳍鳍运动得出的有关移动距离和速度的数值结果。商业软件包ADINA用于三维时间相关的流体-结构相互作用分析。在实际牛鼻射线的简化模型下对鳍运动的数值识别之后,进行参数设计以预测鳍宽度,厚度,频率和幅度的最佳水平,以及在设计实验中这些因素的显着影响讨论。这项研究还表明,鳍片频率与幅度和宽度具有很强的相互作用。

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