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Bu-Geun Paik Jin Kim Young-Ha Park Ki-Sup Kim 《Journal of Marine Science and Technology》2007,12(2):72-82
The vortex structure of the wake behind a marine propeller was investigated in terms of loading variation by using particle
image velocimetry. One hundred and fifty instantaneous velocity fields were ensemble averaged to study the spatial evolution
of the wake and the behavior of the tip vortices in the region ranging from the trailing edge to one propeller diameter downstream.
The trailing vorticity was found to be related to the radial velocity jump, and the viscous wake was affected by the boundary
layers developed on the blade surfaces. A vortex identification method using the swirling strength was employed to extract
the location of the tip vortex. The loading on the blade made a clear difference to the contraction angles. Slipstream contraction
occurred in the very near wake region, and unstable oscillation occurred because of reduced interaction between the tip vortex
and the wake sheet behind the maximum contraction point for each loading condition. The maximum tangential velocity around
the tip vortex center revealed the average radius of its core, which was used for calculating the vortex strength. Additionally,
variation of the average radius of tip vortices with the change of blade loading was related to vortex tube stretching in
the wake region. The nearly constant vortex strength continued up to one diameter downstream for light loading and design
loading conditions. 相似文献
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通气超空泡内部流场的PIV实验图像处理 总被引:1,自引:0,他引:1
PIV测试是流体动力学实验研究的重要方法之一,可以成为通气超空泡内部流场结构实验研究的有效手段。通过水洞实验利用PIV对通气超空泡内部流场进行测试时,激光在气液两相界面处会发生折射,导致实验图像变形和失真。文章分析了激光在空化流场中各相界面的折射特性和PIV实验图像的变形规律;在此基础上,推导了图像变形的分析计算式,给出了通过原始流场图像获取真实流场图像的还原处理方法;编制了图像还原计算程序,并对原始PIV图像进行了处理,得到了反映真实空泡内部流场结构的图像。 相似文献
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