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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Lagrangian coherent structure analysis in the three-dimensional wake of a bio-inspired trapezoidal pitching panel
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Lagrangian coherent structure analysis in the three-dimensional wake of a bio-inspired trapezoidal pitching panel

机译:APS-流体动力学APS部门第70届年会-事件-生物启发梯形俯仰板的三维唤醒中的拉格朗日相干结构分析

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Three-dimensional Lagrangian analysis using the finite-time Lyapunov exponent (FTLE) field has been carried out on experimentally captured wake downstream of an oscillating trapezoidal panel. The trapezoidal geometry of the panel served as a simple model of a fish caudal fin. Three-dimensional FTLE isosurface appears as a shell wrapped around the wake vortex structures. A slice through the isosurfaces results in the familiar two-dimensional FTLE ridges. The attracting ridges (nFTLE) and the repelling ridges (pFTLE) are near-material lines and their intersections are analogous to topological saddle points in the flow field. A vortex-ring-based wake structure induces a streamwise momentum jet, evolution of which appears to be related to the timing of saddle point generation and behavior at the trailing edge. The time of release of these saddles at the trailing edge inside a pitching period appears to coincide with thrust extrema in similar experimental and numerical studies on foils and fins published in the literature. The merger of a pair of saddles from two consecutively shed vortices at a downstream location coincides with the occurrence of wake breakdown and precedes the formation of interconnected vortex loops and beginning of momentum-deficit zone in the time-averaged sense.
机译:使用有限时间Lyapunov指数(FTLE)场的三维拉格朗日分析已在振荡梯形板下游实验捕获的尾流上进行。面板的梯形几何形状是鱼尾鳍的简单模型。三维FTLE等值面表现为包裹在尾流涡流结构周围的壳。穿过等值面的切片会产生熟悉的二维FTLE脊。吸引脊(nFTLE)和排斥脊(pFTLE)是近物质线,它们的交点类似于流场中的拓扑鞍点。基于涡流环的尾流结构引起了沿流方向的动量射流,其动量射流的出现似乎与鞍点的产生时间和后缘的行为有关。在文献中发表的有关箔和鳍片的类似实验和数值研究中,在俯仰周期内后缘释放这些鞍形的时间似乎与推力极值一致。来自两个连续脱落的涡流的一对鞍座在下游位置的合并与尾流击穿的发生同时发生,并且在时间平均的意义上先于形成相互连接的涡流环和动量赤字区开始。

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