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Spatially and Temporally-Resolved Multi-Parameter Interferometric Rayleigh Scattering

机译:时空分解的多参数干涉瑞利散射

摘要

A novel approach to simultaneously measure the translational temperature, bulk velocity, and density in gases by collecting, referencing, and analyzing nanosecond time-scale Rayleigh scattered light from molecules is described. A narrow-band pulsed laser source is used to probe two largely separated measurement locations, one of which is used for reference. The elastically scattered photons containing information from both measurement locations are collected at the same time and analyzed spectrally using a planar Fabry - Perot interferometer. A practical means of referencing the measurement of velocity using the laser frequency, and the density and temperature using the information from the reference measurement location maintained at constant properties is described. To demonstrate the technique single-shot spectra of elastic scattered light are obtained in a near zero velocity H2-air Hencken burner flame and simultaneously in an N2-filled gas cell. A simplified Gaussian distribution model to the scattered light spectra is used to obtain the flame properties. Corrections to this model are applied at lower gas temperatures when the simplified Gaussian approximation is no longer suitable. The near-zero measured velocity as a function of the measured flame temperature, and a comparison of the measured flame density and temperature with the perfect gas law are presented.
机译:描述了一种通过收集,参考和分析来自分子的纳秒级时标瑞利散射光来同时测量气体中的平移温度,整体速度和密度的新颖方法。窄带脉冲激光源用于探测两个大大分开的测量位置,其中一个用作参考。同时收集包含来自两个测量位置信息的弹性散射光子,并使用平面Fabry-Perot干涉仪进行光谱分析。描述了一种实用的方法,该方法使用激光频率参考速度的测量值,并使用来自保持恒定特性的参考测量位置的信息来参考密度和温度。为了证明该技术,在零速H2空气Hencken燃烧器火焰中以及同时在充满N2的气室中获得了弹性散射光的单发光谱。对散射光谱的简化高斯分布模型用于获得火焰特性。当简化的高斯近似不再适用时,可在较低的气体温度下对此模型进行校正。给出了接近零的测得速度与测得火焰温度的函数关系,并将测得火焰密度和温度与理想气体定律进行了比较。

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