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The Influence of Spatial Resolution due to Hot-Wire Sensors on Measurements in Wall-Bounded Turbulence.

机译:热线传感器引起的空间分辨率对边界湍流测量的影响。

摘要

Reassessment of compiled data reveal that recorded scatter in the hot-wire measured near-wall peak in viscous-scaled streamwise turbulence intensity is due in large part to the simultaneous competing effects of Reynolds number and viscous-scaled wire-length l ( lUt n, where l is the wirelength, Ut is friction velocity and n is kinematic viscosity). These competing factors can explain much of the disparity in existing literature, in particular explaining how previous studies have incorrectly concluded that the inner-scaled near-wall peak is independent of Re. We also investigate the appearance of the, so-called, ‘outerpeak’ in the broadband streamwise intensity, found by some researchers to occur within the log-region of high Reynolds number boundary layers. We show that this ‘outer-peak’ is most likely a symptom of attenuation of small-scales due to large l . Fully mapped energy spectra, obtained with two different l , are presented to demonstrate this phenomena. The spatial attenuation resulting from wires with large l effectively filters small-scale fluctuations from the recorded signal.
机译:对汇编数据的重新评估显示,在热丝中测得的粘性壁流湍流强度的近壁峰处的散射在很大程度上归因于雷诺数和粘性壁丝长度l(lUt n,其中l是线长,Ut是摩擦速度,n是运动粘度。这些竞争因素可以解释现有文献中的许多差异,特别是可以解释先前的研究如何错误地得出结论,即内部标度的近壁峰与Re无关。我们还研究了宽带流向强度中所谓的“外峰”的出现,一些研究人员发现这种现象出现在高雷诺数边界层的对数区域内。我们表明,这种“外峰”很可能是由于l大导致小规模衰减的症状。呈现了用两个不同的l获得的完全映射的能谱,以证明这一现象。 l大的导线引起的空间衰减可有效地从记录的信号中滤除小范围的波动。

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