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Large field SPIV with separated sheets in a spanwise plane of a turbulent boundary layer with vortex generators

机译:在具有涡流发生器的湍流边界层的翼展方向平面中具有分离片的大场spIV

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摘要

The Stereoscopic PIV is nowadays a well established measurement technique for turbulent flows. However, the accuracy and the spatial resolution are still highly questionable in presence of complex flow with both strong gradients and out of plane motions. To give guidelines for both setup and measurements of such flow configurations, a large region of overlap between two SPIV systems on the same laser light sheet is acquired in a plane normal to the streamwise direction of a high Reynolds turbulent boundary layer flow. A simple separation of the two light sheets is used to improve the accuracy of measurements by increasing the velocity dynamic range especially. It also presents the enhancement of accuracy due to the light sheets separation for characterizing streamwise vortices (i.e. perpendicular to the sheet). The present experiment was performed in the Laboratoire de Mécanique de Lille wind tunnel facility which has been specially designed to study fully developed turbulent boundary layer at high Reynolds number. The outlooks are to study in detail the physics of the streamwise vortices generated from vortex generators taking advantage of large scales of this turbulent boundary layer.
机译:如今,立体PIV是一种公认​​的湍流测量技术。然而,在复杂的流动同时具有强梯度和平面外运动的情况下,精度和空间分辨率仍然是值得质疑的。为了给这种流动配置的设置和测量提供指导,在垂直于高雷诺湍流边界层流的流向的平面上获取了同一激光薄片上两个SPIV系统之间的较大重叠区域。通过将两个光片简单分开,可以通过增加速度动态范围来提高测量精度。由于用于表征流向旋涡(即垂直于板)的轻板分离,它还提供了精度的提高。本实验是在里尔实验室的里尔风洞设施中进行的,该设施专门设计用于研究高雷诺数下充分发育的湍流边界层。展望将详细研究由涡流发生器产生的沿流涡旋的物理性质,并利用这种湍流边界层的大尺度优势。

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