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Application of Hot-Wire Anemometry in the High Subsonic Organic Vapor Flow Regime

机译:热线风化术在高亚音子有机蒸汽流状态下的应用

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Hot-wire anemometry (HWA) is a measurement technique which allows for the investigation of highly fluctuating flows. It has been widely used for turbulence studies including turbomachinery flow analysis, but relatively little is reported regarding its application in organic vapor flows. In this contribution, preliminary results are presented of an HWA study conducted in the test section of a closed-loop organic vapor wind tunnel using a constant-temperature-anemometry (CTA) system. The working fluid for this study was the perfluorinated ketone Novec 649, but air was also investigated for comparison reasons. Low subsonic up to high subsonic flows (i.e., up to M = 0.7) were considered, and the performance of HWA was assessed by obtaining turbulence intensities, velocity spectra, autocorrelation, and corresponding turbulent length scales. It was demonstrated that HWA is a useful tool for investigating turbulence phenomena in organic vapor flows although the dynamic loads and the wire Reynolds number levels are rather high.
机译:热线风速度(HWA)是一种测量技术,可允许对高波动的流动进行调查。它已广泛用于包括涡轮机械流量分析,但据报道其在有机蒸汽流动中的应用相对较少。在这种贡献中,初步结果呈现在使用恒温 - 气候体系(CTA)系统的闭环有机蒸汽风隧道的试验部分中进行的HWA研究。本研究的工作液是全氟化酮Novec 649,但还研究了空气以进行比较原因。考虑低亚音速(即,高达M = 0.7),通过获得湍流强度,速度光谱,自相关和相应的湍流长度尺度来评估HWA的性能。据证明,HWA是用于在有机蒸汽流动中调查有机蒸汽流动现象的有用工具,尽管动态载荷和线雷诺数为相当高。

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