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Tomographic and Time-Resolved PIV measurement of an Impinging Jet on a Slotted Plate

机译:开槽板上撞击射流的层析成像和时间分辨PIV测量

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In order to reveal the complete topology of unsteady coherent flow structures the instantaneous measurement of the 3D velocity field is being of the great interest in fluid mechanic. Several different methods were proposed to achieve a 3D version of the technique (scanning light sheet, holography, 3D PTV). We aimed in our study to develop a 3D technique than enables to obtain the 3D kinematic field of an impinging jet by using 2D measurements. In this study and in order to validate the proposed technique [1], the tomographic particle image velocimetry technique has been applied to time resolved PIV recordings. The first step before the validation was to study the vortex shedding phenomena between the jet exit and the slotted plate. The experiments were performed at a Re = 4458 with an initial velocity U_(0)=7m/s using three cameras Phantom V711 and a Nd: YLF LDY 300 Litron laser. In the present study, we analyzed the coherent structures organization by a 3D-velocity visualization. Both mean and fluctuating part of velocity were analyzed for several positions in z. The results has shown that a couple of vortex rolls are created downstream the flow at y/H=2.
机译:为了揭示不稳定的相干流结构的完整拓扑,对3D速度场的瞬时测量在流体力学中引起了极大的兴趣。提出了几种不同的方法来实现该技术的3D版本(扫描光片,全息术,3D PTV)。我们的研究目标是开发一种3D技术,该技术能够通过使用2D测量获得撞击射流的3D运动场。在这项研究中,为了验证所提出的技术[1],层析X线图像图像测速技术已应用于时间分辨PIV记录。验证之前的第一步是研究射流出口与开槽板之间的涡旋脱落现象。实验使用三台Phantom V711摄像机和Nd:YLF LDY 300 Litron激光在Re = 4458且初始速度U_(0)= 7m / s的条件下进行。在本研究中,我们通过3D速度可视化分析了相干结构的组织。分析了z中多个位置的速度的平均值和波动部分。结果表明,在y / H = 2时,在流的下游产生了两个涡卷。

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