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Investigation of a turbulent spot and a tripped turbulent boundary layer flow using time-resolved tomographic PIV

机译:使用时间分辨断层扫描PIV研究湍流斑和湍流边界层流

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摘要

In this feasibility study the tomographic PIV technique has been applied to time resolved PIV recordings for the study of the growth of a turbulent spot in a laminar flat plate boundary layer and to visualize the topology of\udcoherent flow structures within a tripped turbulent flat plate boundary layer flow. The experiments are performed around (Re ) ≈ 450 in a low speed wind-tunnel using four high speed CMOS cameras operating up to 5 kHz. The volume illumination required a multiple-reflection system able to intensify light intensity within the measurement volume. This aspect is deemed essential when a high-speed tomographic PIV system is applied in air flows. The particle image recordings are used for a three dimensional tomographic reconstruction of the light intensity distribution\udwithin the illuminated volume. Each pair of reconstructed three-dimensional light distributions is analyzed by 3D spatial cross-correlation using iterative multi-grid schemes with volume-deformation, yielding a correlated time\udsequence of three-dimensional instantaneous velocity vector volumes. The coherent structures organization is analyzed by 3D-vorticity and -swirling-strength iso-surfaces visualization. In both flow types streaks and hairpin-like or arch vortical structures are most prominent. The data giving insight into the role of these structures for the spatio-temporal arrangement of the wall normal flow exchange mechanisms, especially of the instantaneous Reynolds stress events Q2 and Q4. A description of different self-sustainable flow organizations based on modifications of the hairpin-vortex- and\udstreak- models is given. Two preliminary results are essential: Self-sustainability of a coherent vortical structure depends on the possibility to entrain high momentum fluid, initially Q4. And, stream-wise swirl at the near-wall region of arch or hairpin-like vortices has been observed to be seldom.
机译:在这项可行性研究中,层析PIV技术已应用于时间分辨PIV记录,以研究层状平板边界层中湍流点的生长,并可视化了绊倒的湍流平板边界内的\非相干流动结构的拓扑层流。实验是在低速风洞中使用(Re)≈450进行的,实验使用了四个工作频率高达5 kHz的高速CMOS相机。体积照明需要能够增强测量体积内光强度的多重反射系统。当在气流中应用高速断层扫描PIV系统时,这一方面被认为是必不可少的。粒子图像记录用于对照明体积内的光强度分布进行三维层析成像重建。使用具有体积变形的迭代多网格方案,通过3D空间互相关分析每对重构的三维光分布,从而产生三维瞬时速度矢量体积的相关时间\序列。通过3D涡度和-旋流强度等值面可视化分析相干结构的组织。在两种流动类型中,条纹和发夹状或拱形涡旋结构最为突出。这些数据使人们深入了解了这些结构对于壁法向流动交换机制(尤其是瞬时雷诺应力事件Q2和Q4)的时空排列的作用。给出了对基于发夹涡模型和\ udstreak模型的修改的不同自持流动组织的描述。两个初步的结果是必不可少的:相干涡旋结构的自我可持续性取决于夹带高动量流体的可能性,最初是Q4。并且,很少观察到在拱形或发夹状涡旋的近壁区域处的沿流方向的旋流。

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