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Modeling absorption spectra for detection of the combustion products of jet engines by laser remote sensing

机译:通过激光遥感检测喷射发动机燃烧产物的建模吸收光谱

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摘要

The absorption spectra of exhaust gases (H2O, CO, CO2, NO, NO2, and SO2) and aerosol (soot and Al2O3) particles were modeled at different temperatures for the first time and suitable spectral ranges were determined for conducting laser remote sensing of the combustion products of jet engines. The calculations were conducted on the basis of experimental concentrations of the substances and the sizes of the aerosol particles. The temperature and geometric parameters of jet engine exhausts were also taken from the literature. The absorption spectra were obtained via the line-by-line method, making use of the spectral line parameters from the authors' own high-temperature databases (for NO2 and SO2 gases) and the HITEMP 2010 database, and taking into account atmospheric transmission. Finally, the theoretical absorption spectra of the exhaust gases were plotted at temperatures of 400, 700, and 1000 K, and the impact of aerosol particles on the total exhaust spectra was estimated in spectral ranges suitable for remote sensing applications. (C) 2016 Optical Society of America
机译:废气的吸收光谱(H 2 O,CO,CO 2,NO,NO2和SO2)和气溶胶(烟灰和AL2O3)颗粒在第一次的不同温度下进行建模,并且确定用于导电激光遥感的合适的光谱范围喷气发动机的燃烧产物。基于物质的实验浓度和气溶胶颗粒的尺寸进行计算。喷气发动机排气的温度和几何参数也取自文献。通过逐行方法获得吸收光谱,利用来自作者自己的高温数据库(对于No2和SO2气体)和Hitemp 2010数据库的光谱线参数,并考虑到大气传输。最后,在400,700和1000k的温度下绘制废气的理论吸收光谱,并且在适用于遥感应用的光谱范围内估计气溶胶颗粒对总排气的影响。 (c)2016年美国光学学会

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  • 来源
    《Applied optics》 |2016年第14期|共10页
  • 作者单位

    Natl Res Tomsk State Univ Fac Radiophys Dept Quantum Elect &

    Photon 36 Lenin Ave Tomsk 634050 Russia;

    Academician VD Kuznetsov Siberian Phys Tech Res I 1 Novosobornaya Sq Tomsk 634050 Russia;

    Natl Res Tomsk State Univ Fac Radiophys Dept Quantum Elect &

    Photon 36 Lenin Ave Tomsk 634050 Russia;

    Natl Res Tomsk Polytech Univ Inst Cybernet 30 Lenin Ave Tomsk 634050 Russia;

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  • 正文语种 eng
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