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Computational research on a combined undulating-motion pattern considering undulations of both the ribbon fin and fish body

机译:考虑带状鳍和鱼体起伏的联合起伏运动模式的计算研究

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In this work, the combined undulating-motion pattern (LUMP) of the undulatory ribbon-fin propulsion is numerically investigated, inspired by the swimming of the large-mouthed catfish (Silurus soldatovi meridionalis Chen). The swimming of a juvenile large-mouthed catfish is observed and recorded to study the undulation of its elongated anal fin, commonly known as the "ribbon fin". Compared with the knifefish, which undulates the ribbon fin to swim while maintaining a relatively rigid fish body, the large-mouthed catfish performs a CUMP propulsion, which comprises the undulation of the fish body and the active undulation of the ribbon fin. Accordingly, a fin-body fish model is used to study the effect of the CUMP propulsion on the swimming performance. Simulation results show that the phase-angle difference between the undulations of the fish body and the ribbon fin has a significant impact on the thrust and heave forces. More specifically, an in-phase CUMP propulsion, which is commonly found in the swimming of actual large-mouthed catfish, can dramatically improve the thrust. In addition, the effects of the angular amplitude of ribbon fin and the swimming frequency are considered as well. Finally, the reasons for the thrust augmentation in the in-phase CUMP propulsion are detailed and analyzed.
机译:在这项工作中,受大嘴cat鱼(Silurus soldatovi meridionalis Chen)游泳的启发,对起伏的带状鳍推进的组合起伏运动模式(LUMP)进行了数值研究。观察并记录了幼年大嘴cat鱼的游泳,以研究其伸长的鳍的起伏,通常被称为“丝带鳍”。与在保持相对刚性的鱼体时使带状鳍起伏游泳的刀鱼相比,大嘴cat鱼具有CUMP推进力,包括鱼体的起伏和带状鳍的主动起伏。因此,鳍鳍鱼模型用于研究CUMP推进对游泳成绩的影响。仿真结果表明,鱼体起伏和带状鳍片之间的相角差对推力和升沉力有很大影响。更具体地说,在实际的大嘴,鱼游泳中常见的同相CUMP推进力可以显着提高推力。另外,还考虑了带状鳍片的角度幅度和游泳频率的影响。最后,详细分析了同相CUMP推进中推力增大的原因。

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