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首页> 外文期刊>Journal of Fluid Mechanics >Statistics of turbulence in the energy-containing range of Taylor-Couette compared to canonical wall-bounded flows
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Statistics of turbulence in the energy-containing range of Taylor-Couette compared to canonical wall-bounded flows

机译:与典型壁界流量相比,泰勒 - 耦合的含能范围湍流统计

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Considering structure functions of the streamwise velocity component in a framework akin to the extended self-similarity hypothesis (ESS), de Silva et al. (J. Fluid Mech., vol. 823, 2017, pp. 498-510) observed that remarkably the large-scale (energy-containing range) statistics in canonical wall-bounded flows exhibit universal behaviour. In the present study, we extend this universality, which was seen to encompass also flows at moderate Reynolds number, to Taylor-Couette flow. In doing so, we find that also the transversal structure function of the spanwise velocity component exhibits the same universal behaviour across all flow types considered. We further demonstrate that these observations are consistent with predictions developed based on an attached-eddy hypothesis. These considerations also yield a possible explanation for the efficacy of the ESS framework by showing that it relaxes the self-similarity assumption for the attached-eddy contributions. By taking the effect of streamwise alignment into account, the attached-eddy model predicts different behaviour for structure functions in the streamwise and in the spanwise directions and that this effect cancels in the ESS framework - both consistent with the data. Moreover, it is demonstrated here that also the additive constants, which were previously believed to be flow dependent, are indeed universal at least in turbulent boundary layers and pipe flow where high Reynolds number data are currently available.
机译:考虑到类似于框架框架中的流速度分量的结构功能,以类似于延伸的自我相似性假设(ESS),De Silva等。 (J. Fluid Mech。,Vol.823,2017,PP。498-510)观察到,规范壁有限流中的大规模(含能范围)统计数据表现出普遍行为。在本研究中,我们延长了这种普遍性,这被认为是在适度的雷诺数,到泰勒汤流量的流动。在这样做时,我们发现,翼展速度分量的横向结构功能也在考虑所有流量类型中表现出相同的普遍行为。我们进一步证明,这些观察结果与基于附加涡涡假设开发的预测一致。这些考虑还可以通过表明它放松了所连接的涡贡献的自相似度假设来产生可能的解释。通过对帐户进行流动对准的影响,附加涡模型预测了在流动方向和南瓜方向上的结构函数的不同行为,并且在ESS框架中取消了这种效果 - 都与数据一致。此外,这里证明了先前被认为是依赖的添加剂常数,其确实是通用的,至少在湍流边界层和当前可用的高雷诺数数据的管道流中。

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