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Experimental study on the 3D-flow field of a free-surface vortex using stereo PIV

机译:立体PIV对自由表面涡旋3D流场的实验研究

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In order to analyse the flow characteristics of free-surface vortexes and to validate the Burgers vortex model by using stereo particle image velocimetry, experiments are conducted in a 600 mm diameter vortex tank. Measured axial velocities indicate that 10-25% of the flow is transported through the vortex core. The velocity profiles show that the axial flow is concentrated in a domain bounded by two times the core radius. Despite Burgers' assumption of radially independent axial velocity profiles, the model quantifies the tangential velocity profile within a relative uncertainty of circa 10%. The measurements show that it seems valid to use Burgers' model to obtain an estimate for the core radius by taking the average axial velocity over a radial domain of approximately 2.2 times the core radius. The Burgers model quantifies the air core depth with an uncertainty of 20% relative to the measurements. When compared with the magnitude of vorticity diffusion by molecular viscosity, the experiments show that there is no significant diffusion by radial turbulence.
机译:为了分析自由表面涡旋的流动特性并通过使用立体粒子图像测速法验证Burgers涡旋模型,在直径为600 mm的涡旋罐中进行了实验。测得的轴向速度表明有10-25%的流量是通过涡流芯传输的。速度分布图表明,轴向流集中在以芯半径的两倍为界的区域中。尽管Burgers假定径向独立的轴向速度曲线,该模型仍在大约10%的相对不确定性内对切向速度曲线进行了量化。测量结果表明,使用Burgers模型获得芯半径的估计值似乎是正确的,方法是在大约2.2倍芯半径的径向区域上取平均轴向速度。 Burgers模型以相对于测量值20%的不确定性量化空芯深度。与通过分子粘度进行的涡旋扩散的大小进行比较时,实验表明,径向湍流没有明显的扩散。

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