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Tomographic and time resolved PIV measurements on a finite cylinder mounted on a flat plate

机译:在安装在平板上的有限圆柱体上的层析成像和时间分辨PIV测量

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摘要

Tomographic and time resolved PIV measurements were performed to examine the 3D flow topology and the flow dynamic above the upper surface of a low-aspect ratio cylinder at Re ≈ 1 × 105. This generic experiment is of fundamental interest because it represents flow features which are relevant to many applications such as laminar separation bubbles and turbulent reattachment. At Re ≈ 1 × 105, laminar separation bubbles arise on the side of the cylinder. Furthermore, on the top of the cylinder a separation with reattachment is of major interest. The tomographic PIV measurement, which allows to determine all three velocity components in a volume instantaneously, was applied to examine the flow topology and interaction between the boundary layer and wake structures on the top of the finite cylinder. In the instantaneous flow fields the tip vortices and the recirculation region becomes visible. However, it is also observed that the flow is quite unsteady due to the large separation occurring on the top of the cylinder. In order to study the temporal behaviour of the separation, time resolved PIV was applied. This technique allows capturing the dynamic processes in detail. The development of vortices in the separated shear layer is observed and in addition regions with different dominant frequencies are identified.
机译:进行了层析和时间分辨的PIV测量,以检查3D流动拓扑和Re = 1×105 的低纵横比圆柱体上表面上方的流动动力学。这个通用实验具有根本的意义,因为它代表了与许多应用相关的流动特征,例如层流分离气泡和湍流重新附着。在Re≈1×105 时,圆柱体侧面会产生层流分离气泡。此外,在汽缸的顶部,具有重新连接的分离是主要的关注点。层析PIV测量可以即时确定一个体积中的所有三个速度分量,并用于检查流动拓扑以及边界层与有限圆柱体顶部的尾流结构之间的相互作用。在瞬时流场中,尖端涡旋和再循环区域变得可见。但是,还可以观察到,由于在气缸顶部发生了较大的分离,因此流量非常不稳定。为了研究分离的时间行为,应用了时间分辨的PIV。此技术允许详细捕获动态过程。观察到在分离的剪切层中涡旋的发展,并且还识别出具有不同主导频率的区域。

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  • 来源
    《Experiments in Fluids》 |2008年第4期|715-724|共10页
  • 作者单位

    Institut für Strömungsmechanik Technische Universität Braunschweig Bienroder Weg 3 38106 Brunswick Germany;

    Institut für Strömungsmechanik Technische Universität Braunschweig Bienroder Weg 3 38106 Brunswick Germany;

    LaVision GmbH Anna-Vandenhoeck-Ring 19 37081 Göttingen Germany;

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