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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Detection and tracking of vortex phenomena using Lagrangian coherent structures
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Detection and tracking of vortex phenomena using Lagrangian coherent structures

机译:使用拉格朗日相干结构检测和跟踪涡旋现象

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摘要

The formation and shedding of vortices in two vortex-dominated flows around an actuated flat plate are studied to develop a better method of identifying and tracking coherent structures in unsteady flows. The work automatically processes data from the 2D simulation of a flat plate undergoing a 45. pitch-up maneuver, and from experimental particle image velocimetry data in the wake of a continuously pitching trapezoidal panel. The Eulerian Gamma(1), Gamma(2), and Q functions, as well as the Lagrangian finite-time Lyapunov exponent are applied to identify both the centers and boundaries of the vortices. The multiple vortices forming and shedding from the plates are visualized well by these techniques. Tracking of identifiable features, such as the Lagrangian saddle points, is shown to have potential to identify the timing and location of vortex formation, shedding, and destruction more precisely than by only studying the vortex cores as identified by the Eulerian techniques.
机译:研究了围绕驱动平板的两个涡流主导流中涡流的形成和脱落,以开发一种识别和跟踪非定常流中相干结构的更好方法。该工作自动处理来自经过45度俯仰操作的平板的2D模拟数据,以及连续俯仰梯形面板之后来自实验粒子图像测速数据的数据。欧拉Gamma(1),Gamma(2)和Q函数,以及拉格朗日有限时间Lyapunov指数均用于识别涡旋的中心和边界。通过这些技术可以很好地观察到形成和脱落的多个涡流。与仅研究欧拉技术确定的涡旋核心相比,跟踪可识别特征(例如拉格朗日鞍点)具有更精确地识别涡旋形成,脱落和破坏的时间和位置的潜力。

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