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Two-Point Dynamic Rayleigh Scattering Measurements in a Free Jet

机译:自由射流中的两点动态瑞利散射测量

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A molecular Rayleigh scattering based measurement technique is advanced to measure dynamic gas density and velocity simultaneously at two spatial points in a free jet facility at NASA Glenn Research Center. The gas density is measured by detecting the total scattered light via photomultiplier tubes operated in the photon counting mode providing dynamic measurements at 10kHz data rates. The gas velocity is measured by using a Fabry-Perot interferometer to analyze the spectrum of the scattered light. The interference fringe patterns are detected with a low noise CCD camera providing time-average measurements of velocity at this time. The effort serves as a preliminary step in designing an image dissector system that along with photon counting via photomultiplier tubes will provide simultaneous density and velocity measurements at high data rates. The importance of the development of this non-intrusive two-point dynamic measurement system lies in the promise for obtaining high-quality space-time correlations of density and velocities that are useful in aeroacoustic computational models.
机译:先进的基于分子瑞利散射的测量技术可以同时在NASA格伦研究中心的免费喷射设施中的两个空间点测量动态气体密度和速度。通过在光子计数模式下运行的光电倍增管检测总散射光来测量气体密度,从而以10kHz数据速率进行动态测量。气体速度通过使用Fabry-Perot干涉仪测量以分析散射光的光谱。用低噪声CCD相机检测干涉条纹图案,此时可提供速度的时均测量值。这项工作是设计图像解剖器系统的第一步,该系统与通过光电倍增管进行的光子计数一起将以高数据速率同时提供密度和速度测量。开发这种非侵入式两点动态测量系统的重要性在于有望获得在航空声学计算模型中有用的高质量的密度和速度时空相关性。

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