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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >The effect of spectroscopic parameter inaccuracies on ground-based millimeter wave remote sensing of the atmosphere
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The effect of spectroscopic parameter inaccuracies on ground-based millimeter wave remote sensing of the atmosphere

机译:光谱参数误差对大气地面毫米波遥感的影响

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摘要

A sensitivity study was performed to assess the impact that uncertainties in the spectroscopic parameters of atmospheric species have on the retrieval of gas concentrations using the 265-280 GHz region of the electromagnetic spectrum. Errors in the retrieval of O-3, N2O, HNO3, and ClO from spectra measured by ground-based radiometers were investigated. The goal of the study was to identify the spectroscopic parameters of these target species, and other interfering species, available in the JPL and HITRAN 2008 catalogues, which contribute the largest error to retrieved atmospheric concentration profiles in order to provide recommendations for new laboratory measurements. The parameters investigated were the line position, line strength, broadening coefficients and their temperature dependence, and pressure shift. Uncertainties in the air broadening coefficients of gases tend to contribute the largest error to retrieved atmospheric concentration profiles. For O-3 and N2O, gases with relatively strong spectral signatures, the retrieval is sensitive to uncertainties in the parameters of the main spectral line that is observed. For HNO3, the uncertainties in many closely spaced HNO3 lines can cause large errors in the retrieved profile, and for ClO, the error in the profile is dominated by uncertainties in nearby, stronger O-3 lines. Fourteen spectroscopic parameters are identified, for which updated measurements would have the most impact on the accuracy of ground-based remote sensing of the target species at 265-280 GHz. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了一项敏感性研究,以评估大气物质光谱参数的不确定性对使用电磁光谱的265-280 GHz区域的气体浓度反演的影响。研究了从地面辐射计测量的光谱中检索O-3,N2O,HNO3和ClO的误差。该研究的目的是确定JPL和HITRAN 2008目录中可用的这些目标物种及其他干扰物种的光谱参数,这些参数对检索到的大气浓度曲线贡献最大,以便为新的实验室测量提供建议。研究的参数是管线位置,管线强度,加宽系数及其温度依赖性和压力变化。气体在空气中的增宽系数的不确定性往往会给大气浓度分布图带来最大的误差。对于O-3和N2O(具有相对较强的光谱特征的气体),检索对观察到的主光谱线参数的不确定性敏感。对于HNO3,许多紧密间隔的HNO3管线中的不确定性会导致所取剖面的较大误差,而对于ClO,轮廓中的误差主要由附近的较强O-3管线中的不确定性所决定。确定了14个光谱参数,对于这些参数,更新后的测量值将对265-280 GHz下目标物种的地面遥感准确性产生最大影响。 (C)2015 Elsevier Ltd.保留所有权利。

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