Humidity Effects on Unsteady Characteristics of Supersonic Flow

S. Takagi, T. Uemura, Yutaka Hirata, Kosuke Takada
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引用次数: 3

Abstract

In supersonic wind tunnels, the humidity content of the working fluid is known to have a significant effect on flow conditions in the test section. The intent of this paper is to evaluate the influence of moisture on the test section flow quality for the indraft supersonic wind tunnel located at the Muroran Institute of Technology. The static-pressure fluctuation is measured by means of an unsteady pressure sensor buried in a 10-degree-aperture cone model installed in the test section. The results show that supersonic flow at Mach 2 is contaminated by the self-sustained oscillation of a condensation shock wave for ambient relative humidity greater than approximately 50%. It is also found that for the Mach 2 flow, that the ratio of the static-pressure fluctuation to the dynamic pressure is less than 0.1%, if the absolute humidity is kept below a critical value of 2[g/m 3 ]. Experimental observations also reveal that the three-dimensional boundary-layer transition process is hypersensitive to the influence of free-stream humidity.
湿度对超音速流动非定常特性的影响
在超声速风洞中,已知工作流体的湿度含量对试验段的流动状况有显著影响。本文的目的是评估水分对位于Muroran理工学院的进气道超音速风洞的试验段流动质量的影响。静压脉动的测量方法是将非定常压力传感器埋设在试验段的10度孔径锥体模型中。结果表明,当环境相对湿度大于50%左右时,2马赫的超声速流动受到凝结激波自持续振荡的污染。研究还发现,对于马赫2的流动,当绝对湿度低于临界值2[g/ m3]时,静压波动与动压的比值小于0.1%。实验结果还表明,三维边界层过渡过程对自由气流湿度的影响非常敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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