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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Measurements of spectroscopic parameters of CO2 transitions for Voigt, Rautian, galatry and speed-dependent voigt profiles near 1.43 mu m using the WM-DAS method
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Measurements of spectroscopic parameters of CO2 transitions for Voigt, Rautian, galatry and speed-dependent voigt profiles near 1.43 mu m using the WM-DAS method

机译:使用WM-DAS方法将voigt,Radian,Galatry,Galatry,Galatry和速度voigt谱附近1.43μm接近1.43μm的光谱参数测量

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摘要

Linestrengths, self-broadening and narrowing coefficients for 8 absorption transitions of CO2 near 1.43 mu m were measured using the wavelength modulation direct absorption spectroscopy (WM-DAS) at 3001000 K and 5-20 kPa. The SNR was enhanced to 1500 for the peak absorbance around 5% at room temperature and remains at 550 for the peak absorbance around 1% at high temperatures by use of the WM-DAS method. The Voigt, Rautian, Galatry and quadratic speed-dependent Voigt profiles were used to recover the absorbance and retrieve the best-fit spectroscopic parameters and their temperature dependence. The quadratic speed-dependent Voigt profile was found to give the best combination of accuracy and robust lineshape parameters. The measured linestrengths and self-broadening coefficients compare well with the available values listed in the HITRAN/HITEMP database. The self-narrowing coefficients were also determined for GP, RP and qSDVP with analyses of the uncertainties in these spectroscopic parameters. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用3001000K和5-20kPa的波长调制直接吸收光谱(WM-DAS)测量8.43μm附近1.43μm的8个吸收转变的射线长度,自扩大和窄的系数。通过使用WM-DAS法,SNR在室温下为500%的峰值吸光度增强至1500,在550℃下保持550,在高温下保持达到1%的峰值吸光度。使用Voigt,Radian,Galatry和二次速度依赖性VoIGT型材来恢复吸光度并检索最佳的光谱参数及其温度依赖性。发现二次速度依赖的VoIGT配置文件,以提供准确性和强大的线厚度参数的最佳组合。测量的Linestrength和自扩大系数很好地比较了HITRAN / HITEMP数据库中列出的可用值。还针对这些光谱参数中的不确定性分析来确定自变细系数。 (c)2018年elestvier有限公司保留所有权利。

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    Tsinghua Univ Dept Energy &

    Power Engn State Key Lab Power Syst Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Energy &

    Power Engn State Key Lab Power Syst Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Energy &

    Power Engn State Key Lab Power Syst Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Energy &

    Power Engn State Key Lab Power Syst Beijing 100084 Peoples R China;

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  • 正文语种 eng
  • 中图分类 光学;
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