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The influence of temperature fluctuations on hot-wire measurements in wall-bounded turbulence

机译:温度波动对壁面湍流中热线测量的影响

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摘要

There are no measurement techniques for turbulent flows capable of reaching the versatility of hot-wire probes and their frequency response. Nevertheless, the issue of their spatial resolution is still a matter of debate when it comes to high Reynolds number near-wall turbulence. Another, so far unattended, issue is the effect of temperature fluctuations—as they are, e.g. encountered in non-isothermal flows—on the low and higher-order moments in wall-bounded turbulent flows obtained through hot-wire anemometry. The present investigation is dedicated to document, understand, and ultimately correct these effects. For this purpose, the response of a hot-wire is simulated through the use of velocity and temperature data from a turbulent channel flow generated by means of direct numerical simulations. Results show that ignoring the effect of temperature fluctuations, caused by temperature gradients along the wall-normal direction, introduces— despite a local mean temperature compensation of the velocity reading—significant errors. The results serve as a note of caution for hot-wire measurements in wall-bounded turbulence, and also where temperature gradients are more prevalent, such as heat transfer measurements or high Mach number flows. A simple correction scheme involving only mean temperature quantities (besides the streamwise velocity information) is finally proposed that leads to a substantial bias error reduction.
机译:没有湍流的测量技术能够达到热线探针的多功能性及其频率响应。然而,当涉及到高雷诺数近壁湍流时,它们的空间分辨率问题仍然是一个争论的问题。到目前为止,另一个尚未引起注意的问题是温度波动的影响,例如温度波动的影响。非等温流动中遇到的问题—在通过热线风速计获得的有边界的湍流中的低阶和高阶矩。本研究致力于记录,理解并最终纠正这些影响。为此,通过使用直接数值模拟生成的湍流通道流中的速度和温度数据来模拟热线的响应。结果表明,尽管对速度读数进行了局部平均温度补偿,但忽略沿壁法线方向的温度梯度所引起的温度波动的影响,仍会带来明显的误差。该结果为在壁面湍流中进行热线测量以及在温度梯度更为普遍的情况下(例如传热测量或高马赫数流量)提供了谨慎的注意。最后提出了一种仅涉及平均温度量(沿流速度信息除外)的简单校正方案,该方案可显着降低偏差误差。

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