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Effect of Flow Interaction between Median Paired and Caudal Fins on Propulsion

机译:中位数配对与尾鳍之间的流动相互作用对推进的影响

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In this study, the effects of fin stroke phase offset, flapping frequency, and freestream flow speed on thrust production are investigated for a median paired (pectoral) fin - caudal fin configuration. Fin geometries and kinematics are selected to be representative of common bio-inspired unmanned vehicles as well as the fish that inspire them, and for this study the fins are rigid to limit the variable parameter space. Experimental results demonstrate a significant correlation between freestream flow speed and thrust-optimal stroke phase offset, as well as between fin flap speed and thrust-optimal stroke phase offset. The results also highlight differences between the time-histories of thrust at high- and low-thrust generating stroke phase offsets suggesting a significant difference in wake signatures. This study provides the foundation for development of a comprehensive analytical tool for flapping fin and vehicle design.
机译:在这项研究中,针对中值配对(Pectral)Fin - 尾部鳍配置研究了翅片行程阶段偏移,拍摄频率和自由流动流速对推力生产的影响。鳍几何和运动学被选为常见的生物启发无人驾驶车辆以及激励它们的鱼类,并且对于这项研究,鳍片是刚性的,以限制变量参数空间。实验结果表明了自由流动速度和推力最佳行程相位偏移的显着相关性,以及翅片瓣速度和推力最佳行程相位偏移。结果还突出了高压和低推力产生行程阶段偏移的推力时间历史之间的差异,这表明唤醒签名的显着差异。本研究为开发泛翅和车辆设计的综合分析工具提供了基础。

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