论文标题

串联拍打胸鳍的流体动力学有不同的中风相偏移

Hydrodynamics of tandem flapping pectoral fins with varying stroke phase offsets

论文作者

Sampath, Kaushik, Geder, Jason D., Ramamurti, Ravi, Pruessner, Marius D., Koehler, Raymond

论文摘要

我们展示了串联生物启发的鳍片在高冲程振幅上拍打的尺寸如何调节后鳍推力的产生和唤醒特征。负载电池推力测量表明,当后鳍将后鳍滞后于四分之一周期时,后鳍的推力比前鳍高25%,并且当它以相同的量导致前鳍时的性能差8%。使用二维粒子图像测量值和三维计算流体动力学模拟分析了负责这些观察结果的FIN之间的流相互作用。在不同相位偏移的后鳍上诱导的有效流中速度变化的分布。涡流结构的相互作用和粒子耙揭示了前鳍中前沿和尾随边缘涡流的贡献,该涡流在调节后鳍前缘的吸力方面。此外,鳍片的下游尺寸较远,其相干性,轴向和径向范围在不同相位偏移量变化。这些发现与利用此类串联系统的各种无人水下车辆的设计和性能优化有关。

We show how phasing between tandem bioinspired fins flapping at high-stroke amplitudes modulates rear fin thrust production and wake characteristics. Load cell thrust measurements show that the rear fin generates 25% more thrust than the front fin when it lags the latter by a quarter cycle, and performs 8% worse when it leads the front fin by the same amount. The flow interactions between the fins responsible for these observations are analyzed using two-dimensional particle image velocimetry measurements and three-dimensional computational fluid dynamics simulations. Distributions of velocity elucidate variations in the effective flow induced on the rear fin for different phase offsets. Vortex structure interactions and particle rakes reveal the contributions of the leading- and trailing-edge vortices shed by the front fin in modulating the suction at the rear fin leading edge. Furthermore, the wake structure far downstream of the fins changes in its coherence, axial and radial extents for the different phase offsets. These findings are relevant for the design and performance optimization of various unmanned underwater vehicles that utilize such tandem systems.

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