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Flow Property Measurement Using Laser-induced Fluorescence in the NASA Ames Interaction Heating Facility

机译:在NASA Ames相互作用加热装置中使用激光诱导荧光进行流动特性测量

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The spectroscopic diagnostic technique of two photon absorption laser-induced fluorescence (TALIF) of atomic species has been applied to single-point measurements of velocity and static temperature in the NASA Ames Interaction Heating Facility (IHF) arc jet. Excitation spectra of atomic oxygen and nitrogen were recorded while scanning a tunable dye laser over the absorption feature. Thirty excitation spectra were acquired during 8 arc jet runs at two facility operating conditions; the number of scans per run varied between 2 and 6. Curve fits to the spectra were analyzed to recover their Doppler shifts and widths, from which the flow velocities and static temperatures, respectively, were determined. An increase in the number of independent flow property pairs from each as-measured scan was obtained by extracting multiple lower-resolution scans. The larger population sample size enabled the mean property values and their uncertainties for each run to be characterized with greater confidence. The average ±2cr uncertainties in the mean velocities and temperatures for all 8 runs were ±1.4% and ±11%, respectively.
机译:原子物种的两种光子吸收激光诱导的荧光(TALIF)的光谱诊断技术已应用于NASA Ames相互作用加热设施(IHF)电弧射流中速度和静态温度的单点测量。记录原子氧和氮的激发光谱,同时在吸收特征上扫描可调染料激光。在两个设备运行条件下的8次电弧喷射运行期间,获得了三十个激发光谱。每次运行的扫描次数在2到6之间变化。分析与光谱的曲线拟合,以恢复其多普勒频移和宽度,从而分别确定流速和静态温度。通过提取多个较低分辨率的扫描,可以从每个测量的扫描中获得独立的流动特性对的数量的增加。较大的人口样本数量使每次运行的平均属性值及其不确定性具有更高的置信度。所有8次运行的平均速度和温度的平均±2cr不确定度分别为±1.4%和±11%。

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