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An empirical study on the importance of a speed-dependent Voigt line shape model for tropospheric water vapor profile remote sensing

机译:速度相关Voigt线形模型对对流层水汽剖面遥感重要性的实证研究

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摘要

We use high quality ground-based solar absorption spectra measured in close coincidence with Vaisala RS92 radiosonde in situ water vapor profiles to demonstrate that a Voigt line shape model yields systematic errors in the remotely sensed tropospheric water vapor profiles. We analyse absorption signatures of 4 H_2~(16)O and 2 HD~(16)O bands situated between 790 and 4710cm~(-1). We find that applying a speed-dependent Voigt line shape model instead of a Voigt line shape model significantly improves the agreement between the water vapor profiles obtained by the radiosondes and by infrared remote-sensing in the different bands. An optimal agreement is obtained for a γ2 (relaxation rate for speed-dependence) of 6-21 of γ0 (Voigt relaxation rate), which is consistent to the values derived from laboratory experiments. Our study suggests that further extensive laboratory investigations of line shape models are a key for improving the quality of modern water vapor remote sensing products.
机译:我们使用与维萨拉 RS92 无线电探空仪原位水蒸气剖面高度吻合测量的高质量地面太阳吸收光谱来证明 Voigt 线形模型在遥感对流层水蒸气剖面中产生系统误差。我们分析了位于790-4710cm~(-1)之间的4个H_2~(16)O和2个HD~(16)O波段的吸收特征。我们发现,应用与速度相关的Voigt线形模型而不是Voigt线形模型可以显著提高无线电探空仪与红外遥感在不同波段的水汽分布之间的一致性。当γ2(速度依赖性弛豫率)为γ0(Voigt弛豫率)的6-21%时,获得了最佳一致性,这与实验室实验得出的值一致。我们的研究表明,对线形模型进行进一步广泛的实验室研究是提高现代水汽遥感产品质量的关键。

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