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Eulerian and Lagrangian views of a turbulent boundary layer flow using time-resolved tomographic PIV

机译:使用时间分辨层析PIV的湍流边界层流的欧拉和拉格朗日视图

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Coherent structures and their time evolution in the logarithmic region of a turbulent boundary layer investigated by means of 3D space–time correlations and time-dependent conditional averaging techniques are the focuses of the present paper. Experiments have been performed in the water tunnel at TU Delft measuring the particle motion within a volume of a turbulent boundary layer flow along a flat plate at a free-stream velocity of 0.53 m/s at Re θ = 2,460 based on momentum thickness by using time-resolved tomographic particle image velocimetry (PIV) at 1 kHz sampling rate and particle tracking velocimetry (PTV). The obtained data enable an investigation into the flow structures in a 3D Eulerian reference frame within time durations corresponding to 28 δ/U. An analysis of the time evolution of conditional averages of vorticity components representing inclined hairpin-like legs and of Q2- and Q4-events has been performed, which gives evidence to rethink the early stages of the classical hairpin development model for high Reynolds number TBLs. Furthermore, a PTV algorithm has been applied on the time sequences of reconstructed 3D particle image distributions identifying thousands of particle trajectories that enable the calculation of probability distributions of the three components of Lagrangian accelerations.
机译:本文通过3D时空相关和时间相关的条件平均技术研究了湍流边界层对数区域的相干结构及其时间演化。已经在TU Delft的水隧道中进行了实验,测量了在Re θ =的自由流速度为0.53 m / s的情况下,沿平板湍流边界层流动的一定体积内的颗粒运动。通过使用1 kHz采样率的时间分辨断层层析粒子图像测速(PIV)和粒子跟踪测速(PTV),基于动量厚度2,460。所获得的数据使得能够在对应于28δ/ U的持续时间内对3D欧拉参考系中的流动结构进行研究。进行了代表倾斜的发夹状腿和Q2和Q4事件的涡度分量的条件平均值的时间演化分析,这为重新考虑高雷诺数TBL的经典发夹发展模型的早期阶段提供了证据。此外,PTV算法已应用于重构的3D粒子图像分布的时间序列,该序列标识了数千个粒子轨迹,从而能够计算拉格朗日加速度的三个分量的概率分布。

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