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Energy-based decomposition of friction drag in turbulent square-duct flows

机译:湍流方形管道流动中摩擦拖曳的能量分解

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The generation of friction drag in turbulent duct flows has direct connection with statistical quantities and corresponding turbulence dynamics in the duct cross-section. In this study, we generalize the RD identity (Renard and Deck, 2016) to a `two-dimensional' form which we exploit to decompose the mean friction drag in turbulent square-duct flows into contributions associated with viscosity, turbulence and cross-stream convection. The friction Reynolds number of the duct flows ranges from 220 to 2000. The scaling, spatial distribution and local normalization of the contributions to friction are investigated and compared with those in pipe and channel flows. As in other canonical flows, we find logarithmic growth of the turbulent contribution in contrast to the viscous one, the former thus becoming dominant at high enough Reynolds numbers. Whereas cross-stream convection has no net effect on friction, its contribution may be locally comparable to the other two, hence may be responsible for redistribution of friction along the duct perimeter.
机译:在湍流管道中产生摩擦拖动的产生与导管横截面中的统计量和相应的湍流动态直接连接。在这项研究中,我们将RD身份(雷纳德和甲板,2016)概括为“二维”形式,我们利用湍流方形管道流入与粘度,湍流和交叉流相关的贡献中的平均摩擦拖动对流。管道流量的摩擦雷诺数为220至2000.对摩擦贡献的缩放,空间分布和局部标准化进行了研究,并与管道和通道流中的贡献进行比较。与其他规范流动一样,我们发现与粘性的湍流贡献的对数生长,这是前者在足够高的雷诺数时变得显着。虽然交叉流对流对摩擦没有净效应,但其贡献可以局部地与其他两个局部相当,因此可能负责沿着管道周长的摩擦再分配。

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