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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Full 3D correlation tensor computed from double field stereoscopic PIV in a high Reynolds number turbulent boundary layer
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Full 3D correlation tensor computed from double field stereoscopic PIV in a high Reynolds number turbulent boundary layer

机译:从高雷诺数湍流边界层中的双场立体PIV计算的完整3D相关张量

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摘要

The turbulence structure near a wall is a very active subject of research and a key to the understanding and modeling of this flow. Many researchers have worked on this subject since the fifties Hama et al. (J Appl Phys 28:388-394, 1957). One way to study this organization consists of computing the spatial two-point correlations. Stanislas et al. (C R Acad Sci Paris 327(2b):55-61, 1999) and Kahler (Exp Fluids 36:114-130, 2004) showed that double spatial correlations can be computed from stereoscopic particle image velocimetry (SPIV) fields and can lead to a better understanding of the turbulent flow organization. The limitation is that the correlation is only computed in the PIV plane. The idea of the present paper is to propose a new method based on a specific stereoscopic PIV experiment that allows the computation of the full 3D spatial correlation tensor. The results obtained are validated by comparison with 2D computation from SPIV. They are in very good agreement with the results of Ganapthisubramani et al. (J Fluid Mech 524:57-80, 2005a).
机译:壁附近的湍流结构是一个非常活跃的研究主题,也是理解和模拟这种流动的关键。自50年代哈马(Hama)等人以来,许多研究人员一直在研究这个问题。 (J Appl Phys 28:388-394,1957)。研究这种组织的一种方法是计算空间两点相关性。 Stanislas等。 (CR Acad Sci Paris 327(2b):55-61,1999)和Kahler(Exp Fluids 36:114-130,2004)表明,可以从立体粒子图像测速(SPIV)场计算出双重空间相关性,并且可以得出更好地了解湍流组织。限制是仅在PIV平面中计算相关性。本文的思想是提出一种基于特定立体PIV实验的新方法,该方法允许计算完整的3D空间相关张量。通过与SPIV的2D计算进行比较,可以验证所获得的结果。它们与Ganapthisubramani等人的结果非常吻合。 (J Fluid Mech 524:57-80,2005a)。

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