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Geometrical structure analysis of a zero-pressure-gradient turbulent boundary layer

机译:零压力梯度湍流边界层的几何结构分析

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摘要

The present work focuses on the geometrical features of a zero-pressure-gradient turbulent boundary layer based on vectorline segment analysis. In a turbulent vector field, tracing from any non-singular point, along either the vector or the inverse direction, one will reach a local extremum of the vector magnitude. The vectorline between the two local extrema is defined as the vectorline segment corresponding to the given spatial point. Specifically the vectorline segment can be the streamline segment for the velocity vector case, or the vorticity line segment for the vorticity vector case. Such a quantitatively defined and space-filling vectorline segment structure reflects the natural vectorial topology. Because of inhomogeneity in the wall-normal direction, vectorline segments corresponding to the grid points at specified wall-normal distances are sampled for statistics. For streamline segments, the probability density function (p.d.f.) of the normalized segment length in different flow regions matches a model solution, and for vorticity line segments such a p.d.f. in the log-law region and beyond matches the same model solution, which indicates some universality of different flow regions and different vector field structures. Typically the joint p.d.f. of the characteristic parameters of streamline segments presents clear asymmetry, which is closely related to the skewness of the velocity derivative. Moreover, the orientation statistics of vectorline segments, characterized by the coordinate difference between the segment starting point and ending point, have been provided to quantify the flow anisotropy.
机译:本工作侧重于基于载体线段分析的零压梯度湍流边界层的几何特征。在湍流载体场中,沿着载体或逆方向追踪任何非奇异点,一个将达到矢量幅度的局部极值。两个本地极值之间的矢量线被定义为与给定空间对应的矢量线段。具体地,Vectorline段可以是速度矢量壳体的流线段,或涡旋矢量案例的涡度线段。这种定量定义和空间填充的载体线段结构反映了自然vsialial拓扑。由于壁正常方向上的不均匀性,对应于特定壁正常距离处的网格点对应的矢量线段被采样以进行统计。对于流线段,不同流量区域中的归一化段长度的概率密度函数(p.d.f.)与模型解决方案匹配,以及用于涡旋线段这样的涡流线段。在“日志法”区域中,除了相同的模型解决方案之外,这表明了不同流量区域的一些普遍性和不同的矢量场结构。通常是关节p.d.f.流线段的特征参数呈现出透明的不对称性,其与速度衍生物的偏斜性密切相关。此外,已经提供了由段起起点和结束点之间的坐标差异的传染媒介曲线段的取向统计来量化流动各向异性。

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