首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >TURBULENT VORTICITY DIFFUSION IN THE STRONGER WALL JET MANAGED BY A FLAT PLATE WING IN THE OUTER LAYER
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TURBULENT VORTICITY DIFFUSION IN THE STRONGER WALL JET MANAGED BY A FLAT PLATE WING IN THE OUTER LAYER

机译:外层平板翼控制的壁面湍流湍流扩散

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The present experiment focuses on the vorticity diffusion in a stronger wall jet managed by a three-dimensional flat plate wing in the outer layer. Measurement of the fluctuating velocities and vorticity correlation has been carried out with 4-wire vorticity probe. The turbulent vorticity diffusion due to the large scale eddies in the outer layer is quantitatively examined by using the 4-wire vorticity probe. Quantitative relationship between vortex structure and Reynolds shear stress is revealed by means of directly measured experimental evidence which explains vorticity diffusion process and influence of the manipulating wing. It is expected that the three-dimensional outer layer manipulator contributes to keep convex profile of the mean velocity, namely, suppression of the turbulent diffusion and entrainment.
机译:本实验的重点是由外层中的三维平板机翼控制的更强的壁流中的涡旋扩散。波动速度和涡度相关性的测量已经使用4线涡度探头进行了。使用4线涡度探头定量检查了由于外层中存在大量涡流而引起的湍流涡流扩散。通过直接测量的实验证据揭示了涡结构和雷诺切应力之间的定量关系,该证据解释了涡的扩散过程和操纵翼的影响。期望三维外层操纵器有助于保持平均速度的凸轮廓,即抑制湍流扩散和夹带。

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