首页> 外文期刊>Journal of Mechanical Science and Technology >3D tomographic PIV, POD and vortex identification of turbulent slot jet flow impinging on a flat plate
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3D tomographic PIV, POD and vortex identification of turbulent slot jet flow impinging on a flat plate

机译:3D断层扫描PIV,豆荚和涡旋识别湍流插槽喷射流动的射击在平板上

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The impinging turbulent slot jet was investigated experimentally using tomographic particle image velocimetry technique. The jet Reynolds number was considered equal to 9000 and the nozzle to plate distance was 10 times the width of the nozzle. The mean flow and turbulent statistics were evaluated at different cross-sections. Then, the dominant three-dimensional structures of the turbulent flow were identified using the Proper orthogonal decomposition (POD) method, and the contribution of different energy modes to the total energy was determined. It is observed that the first 40 POD modes can be considered as the dominant flow modes which contain about 89 % of total kinetic energy of the flow. Also, horseshoe form structures were observed in some POD modes on both sides of the jet central plane. Finally, three-dimensional vortex structures were specified using vorticity, Q and lambda (2) criteria, and compared with each other.
机译:使用断层粒子图像速度技术实验研究了撞击的湍流槽牵引。 喷射雷诺数被认为等于9000,并且喷嘴到板距离的宽度是喷嘴宽度的10倍。 在不同的横截面评估平均流动和湍流统计。 然后,使用适当的正交分解(POD)方法识别湍流的显性三维结构,并确定不同能量模式对总能量的贡献。 观察到,前40个豆荚模式可以被认为是具有约89%的流动总动能的主要流动模式。 而且,在喷射中心平面的两侧的一些荚模式下观察马蹄形形式结构。 最后,使用Vorticity,Q和Lambda(2)标准来指定三维涡旋结构,并相互比较。

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