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在实验室实验中利用大规模自由流湍流对高雷诺数壁面湍流相互作用进行建模。

Modelling high Reynolds number wall-turbulence interactions in laboratory experiments using large-scale free-stream turbulence.

作者信息

Dogan Eda, Hearst R Jason, Ganapathisubramani Bharathram

机构信息

Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK.

Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK

出版信息

Philos Trans A Math Phys Eng Sci. 2017 Mar 13;375(2089). doi: 10.1098/rsta.2016.0091.

Abstract

A turbulent boundary layer subjected to free-stream turbulence is investigated in order to ascertain the scale interactions that dominate the near-wall region. The results are discussed in relation to a canonical high Reynolds number turbulent boundary layer because previous studies have reported considerable similarities between these two flows. Measurements were acquired simultaneously from four hot wires mounted to a rake which was traversed through the boundary layer. Particular focus is given to two main features of both canonical high Reynolds number boundary layers and boundary layers subjected to free-stream turbulence: (i) the footprint of the large scales in the logarithmic region on the near-wall small scales, specifically the modulating interaction between these scales, and (ii) the phase difference in amplitude modulation. The potential for a turbulent boundary layer subjected to free-stream turbulence to 'simulate' high Reynolds number wall-turbulence interactions is discussed. The results of this study have encouraging implications for future investigations of the fundamental scale interactions that take place in high Reynolds number flows as it demonstrates that these can be achieved at typical laboratory scales.This article is part of the themed issue 'Toward the development of high-fidelity models of wall turbulence at large Reynolds number'.

摘要

为了确定主导近壁区域的尺度相互作用,对受自由流湍流作用的湍流边界层进行了研究。鉴于之前的研究报告了这两种流动之间存在相当多的相似性,因此将结果与典型的高雷诺数湍流边界层相关联进行讨论。通过安装在一个沿边界层移动的耙上的四根热线同时进行测量。特别关注典型高雷诺数边界层和受自由流湍流作用的边界层的两个主要特征:(i)对数区域中的大尺度在近壁小尺度上的足迹,特别是这些尺度之间的调制相互作用,以及(ii)幅度调制中的相位差。讨论了受自由流湍流作用的湍流边界层“模拟”高雷诺数壁面湍流相互作用的可能性。这项研究的结果对未来高雷诺数流动中基本尺度相互作用的研究具有鼓舞人心的意义,因为它表明这些相互作用可以在典型的实验室尺度上实现。本文是主题为“迈向大雷诺数下壁面湍流高保真模型的发展”的特刊的一部分。

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引用本文的文献

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Philos Trans A Math Phys Eng Sci. 2017 Mar 13;375(2089). doi: 10.1098/rsta.2016.0092.

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