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Extensive characterisation of a high Reynolds number decelerating boundary layer using advanced optical metrology

机译:使用高级光学计量学对高雷诺数减速边界层进行广泛的表征

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摘要

Over the last years, the observation of large-scale structures in turbulent boundary layer flows has stimulated intense experimental and numerical investigations. Nevertheless, partly due to the lack of comprehensive experimental data at sufficiently high Reynolds number, our understanding of turbulence near walls, especially in decelerating situations, is still quite limited. The aim of the present contribution is to combine the equipment and skills of several teams to perform a detailed characterisation of a large-scale turbulent boundary layer under adverse pressure gradient. Extensive particle image velocimetry (PIV) measurements are performed, including a set-up with 16 sCMOS cameras allowing the characterisation of the boundary layer on 3.5 m, stereo PIV and high resolution near wall measurements. In this paper, detailed statistics are presented and discussed, boundary conditions are carefully characterised, making this experiment a challenging test case for numerical simulation.
机译:在过去的几年中,在湍流边界层流动中对大型结构的观测刺激了激烈的实验和数值研究。然而,部分地由于缺乏足够高的雷诺数的综合实验数据,我们对壁附近湍流的理解,特别是在减速情况下,仍然非常有限。本文稿的目的是结合多个团队的设备和技能,以在不利的压力梯度下对大规模湍流边界层进行详细的表征。进行了广泛的颗粒图像测速(PIV)测量,包括使用16 sCMOS相机进行的设置,可表征3.5 m上的边界层,立体PIV和高分辨率近壁测量。在本文中,将详细介绍统计数据并进行讨论,并对边界条件进行仔细表征,从而使该实验成为数值模拟的具有挑战性的测试案例。

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