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首页> 外文期刊>Journal of near infrared spectroscopy >Radiative transfer modeling of atmospheric methane for satellite measurements in the 1.66 micron spectral window
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Radiative transfer modeling of atmospheric methane for satellite measurements in the 1.66 micron spectral window

机译:1.66微米光谱窗口卫星测量辐射转移建模

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Atmospheric methane is the second most important greenhouse gas after carbon dioxide and has significant impact on the atmosphere and climate. Continuous estimation and prediction of atmospheric CH4 concentrations is important for understanding the associated global climate change. To constrain suitable spectral window and detector resolutions for satellite instruments, spectral simulations have been performed considering tropical atmospheric conditions. The study is focused on the 1.66 micron spectral region having CH4 bands that are suitable for its detection and estimation. Both CH4 concentration and spectral resolution are varied to identify optimum spectral resolution limit. The R branch peak at 1.6456 mu m is found to be the most sensitive and suitable for CH4 estimation. A concentration retrieval scheme is proposed and it is interpreted that the spectral resolution should not be worse than 0.2 nm.
机译:大气甲烷是二氧化碳后的第二个最重要的温室气体,对大气和气候产生重大影响。 常压估计和预测大气CH4浓度对于了解相关的全球气候变化非常重要。 为了限制合适的频谱窗口和卫星仪器的检测器分辨率,考虑到热带大气条件进行光谱仿真。 该研究专注于具有适合于其检测和估计的CH4带的1.66微米光谱区域。 CH4浓度和光谱分辨率都变化以识别最佳光谱分辨率极限。 发现R分支峰值为1.6456 mu m,是最敏感的,适合CH4估计。 提出了浓度检索方案,并解释了光谱分辨率不应比0.2nm更差。

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