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Investigation of the spatio-temporal flow structure in the buffer region of a turbulent boundary layer by means of multiplane stereo PIV

机译:利用多平面立体PIV研究湍流边界层缓冲区的时空流动结构

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摘要

In order to examine the physical process associated with the production and transport of turbulence in wall bounded flows, a fully developed turbulent boundary layer flow along a flat plate is investigated in stream-wise span-wise planes at y(+)approximate to10, 20, and 30, and Re(theta)approximate to7,800 by using a high-resolution multiplane stereo PIV system. Of particular interest are the structural features of the coherent flow structures, such as their average size and shape, but their intensity, dynamics, and interaction are also examined. The information is deduced from the joint probability density function of the velocity fluctuations and from various correlation, cross-correlation, and conditional-correlation functions. Furthermore, characteristic instantaneous velocity fields are analyzed in order to examine the importance of the individual coherent flow structures for the production of turbulence and the transport of Reynolds stresses. [References: 31]
机译:为了检查与壁边界流中湍流的产生和传输相关的物理过程,研究了沿平板的完全展开的湍流边界层流,该流在y(+)处的流向展向平面中y(+)大约为10、20。通过使用高分辨率多平面立体声PIV系统,Reθ约为30,800,Reθ约为7800。特别令人关注的是相干流动结构的结构特征,例如它们的平均大小和形状,但是还检查了它们的强度,动力学和相互作用。该信息是根据速度波动的联合概率密度函数以及各种相关,互相关和条件相关函数推导出的。此外,分析了特征瞬时速度场,以检验各个相干流动结构对于产生湍流和传递雷诺应力的重要性。 [参考:31]

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