首页> 外文会议>ASME Fluids Engineering Division summer meeting >EFFECTS OF TAIL GEOMETRIES ON THE PERFORMANCE AND WAKE PATTERN IN FLAPPING PROPULSION
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EFFECTS OF TAIL GEOMETRIES ON THE PERFORMANCE AND WAKE PATTERN IN FLAPPING PROPULSION

机译:尾翼几何形状对襟翼推进性能和尾迹形态的影响

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Swimming fishes exhibit remarkable diversities of the caudal fin geometries. In this work, a computational study is conducted to investigate the effects of the caudal fin shape on the hydrodynamic performance and wake patterns in flapping propulsion. We construct the propulsor models in different shapes by digitizing the real caudal fins of fish across a wide range of species spanning homocercal tails with low aspect ratio (square shape used by bluegill sunfish, rainbow trout, etc.) or high aspect ratio (lunate shape adopted by tuna, swordfish, etc.), and even heterocercal caudal fin adopted by sharks. Those fin models perform the same flapping motion in a uniform flow to mimic fish's forward swimming. We then simulate the flow around the flapping fins by an in-house immersed-boundary-method based flow solver. According to the analysis of the hydrodynamic performance, we have found that the lunate shape model (high aspect-ratio) always generates a larger thrust compared to other models. The comparison of the propulsive efficiency shows that the large aspect ratio fins (tuna and shark) have a higher efficiency when the Strouhal number (St) is in the range of steady swimming (0.20.4, in which the fish is accelerating or maneuvering. Finally, the 3D wake patterns of those propulsors are analyzed in detail.
机译:游泳鱼类的尾鳍几何形状表现出显着的多样性。在这项工作中,进行了一项计算研究,以研究尾鳍形状对扑动推进中水动力性能和尾流模式的影响。我们通过数字化宽宽比低的长颈比(蓝g翻车鱼,虹鳟鱼等所用的正方形)或高宽高比(月牙形)的各种物种的真实尾鳍来构建不同形状的推进器模型被金枪鱼,箭鱼等所捕食,甚至被鲨鱼所采的异颈尾鳍。这些鳍模型以相同的流量执行相同的拍打动作,以模仿鱼的向前游泳。然后,我们通过一个基于内部浸入边界方法的流动求解器来模拟绕动鳍片的流动。根据对水动力性能的分析,我们发现,与其他模型相比,月牙形模型(高长宽比)始终会产生更大的推力。推进效率的比较表明,当Strouhal数(St)在稳定游泳范围(0.2 0.4时,鳍片(cat鱼,鳟鱼等)的效率更高,其中鱼类在加速或机动。最后,详细分析了这些推进器的3D唤醒模式。

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