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Three-Dimensional Pitching Panel Wake: Lagrangian Analysis and Momentum Distribution from Experiments

机译:三维音高面板唤醒:实验的拉格朗日分析和动量分布

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摘要

A majority of fish and other aquatic animals generate thrust by oscillating their fins and flukes, which creates a highly three-dimensional and complex wake that is characterized by spanwise compression, transverse expansion, wake breakdown, etc. The interaction between the oscillating fins and the surrounding fluid creates a complex system of wake structures that is a signature of what can be an animal's markedly efficient swimming abilities. To interrogate the evolution of these flowfields, Lagrangian analysis using the finite-time Lyapunov exponent field was carried out on experimentally recorded three-dimensional velocity data in the wake of an oscillating trapezoidal panel that models a fish caudal fin in a Strouhal number range of 0.17-0.56. The release of bounding Lagrangian saddles, identified as intersections of positive- and negative-time finite-time Lyapunov exponent ridges, from the panel trailing edge is shown to be related to the extrema of thrust and the evolution of the streamwise momentum field during an oscillation period. The location of vortex disintegration, which is observed downstream of the panel-fluid interaction, was observed to correspond with regions of low streamwise momentum, bifurcated wake structure, and the merger of Lagrangian saddles from two consecutive spanwise structures.
机译:大多数鱼类和其他水生动物通过使其鳍和摆动而产生推力,从而产生高度三维复杂的尾流,其特征为翼展方向压缩,横向膨胀,尾流分解等。周围的液体形成了一个复杂的尾流结构系统,这是动物明显有效的游泳能力的标志。为了询问这些流场的演变,使用了有限时间Lyapunov指数场的拉格朗日分析,是在振荡的梯形面板之后对实验记录的三维速度数据进行的,该模型模拟了Strouhal数范围为0.17的鱼尾鳍。 -0.56。拉格朗日鞍从面板后缘的释放,被确定为正时和负时有限时Lyapunov指数脊的交点,与拉力的极值和振荡过程中流向动量场的演化有关期。涡旋崩解的位置(在面板流体相互作用的下游)被观察到,它对应于低水流动量,分叉的尾流结构以及来自两个连续的展向结构的拉格朗日鞍的合并区域。

著录项

  • 来源
    《AIAA Journal》 |2019年第9期|3701-3715|共15页
  • 作者单位

    Syracuse Univ Mech & Aerosp Engn Dept Syracuse NY 13244 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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