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On near wall measurements of wall bounded flows-The necessity of an accurate determination of the wall position

机译:在壁边界流的近壁测量中-准确确定壁位置的必要性

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摘要

The present review paper is an account on the experimental determination of the wall position relative to the probe in wall-bounded turbulent flow studies. A thorough review on common measurement techniques as well as correction methods reveals, that there are a number of pitfalls, that-when not accounted for-can lead to wrong conclusions about the wall position and thereby also on the near-wall behaviour of mean and turbulence quantities. Employing the state-of-the-art databases from direct numerical simulations of wall-bounded turbulent flows various indirect methods have been tested and assessed in terms of their robustness and accuracy. It is also demonstrated that accurate measurements reaching the viscous sublayer are necessary in order to ensure a correctly deduced wall position, and dependent quantities as for instance the near-wall scaling of mean (e.g. Reynolds number dependence of the buffer region or the log law constants) and turbulence (e.g. the near-wall peak location of Reynolds stresses) quantities. In experiments using hot-wires near the wall it is well known that heat conduction between the hot-wire and the wall gives errors and mean velocity data from the viscous sublayer can usually not be used to determine the wall position. In this paper we introduce a new method which takes advantage of the similarity of the probability density distributions (pdf) in the near wall region. By using the high velocity data of the pdf, which is shown not to be affected by heat conduction, the heat conduction problem can be circumvented. Extensive appendices are included, describing the history and present knowledge about the scaling of the mean velocity in the near wall and overlap regions in wall bounded turbulent flows.
机译:本文的综述是在壁流湍流研究中实验确定壁相对于探头的位置。对常见的测量技术和校正方法进行的全面审查显示,存在许多陷阱,如果不加以考虑,可能会导致关于壁位置的错误结论,从而得出均值和均值的近壁行为。湍流量。利用对有边界的湍流进行直接数值模拟得到的最新数据库,已经对各种间接方法进行了测试和评估,其可靠性和准确性很高。还证明了达到粘性子层的准确测量是必要的,以确保正确推断壁位置以及相关量,例如均值的近壁缩放(例如,缓冲区的雷诺数依赖性或对数定律常数) )和湍流(例如雷诺应力的近壁峰位置)数量。在使用靠近壁的热线的实验中,众所周知,热线与壁之间的热传导会产生误差,并且通常无法使用来自粘性子层的平均速度数据来确定壁的位置。在本文中,我们介绍了一种利用近壁区域中概率密度分布(pdf)相似性的新方法。通过使用pdf的高速数据,该数据显示不受热传导的影响,可以规避热传导问题。包括了大量的附录,描述了近壁和湍流中壁附近和重叠区域中平均速度的尺度变化的历史和当前知识。

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