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Methane in China - 2003 to 2010 from AIRS hyper spectral infrared observations

机译:中国甲烷 - 2003年至2010年来自Airs超频红外观察

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Spaceborne measurements by Atmospheric Infrared Sounder (AIRS) on the EOS/Aqua satellite provide a global view of methane (CH4) distribution in the mid-upper troposphere (MUT-CH4) since September, 2002. In the AIRS retrieval algorithm, a modified Optimal Estimation Model (OEM) is utilized based on Singular Value Decomposition (SVD) technique, which minimizes the dependence of the solution to the first-guess field and the first-guess error characteristics and can get an accurate CH4 retrieval at the maximum sensitive layer in the mid-upper troposphere. Nevertheless, in the less sensitive layer, the CH4 retrieval is close to the first-guess. Therefore, a better first-guess can improve the accuracy and efficiency of CH4 vertical profile retrieval. In this paper, a stable inversion model based on Empirical Orthogonal Functions (EOF) of computational efficiency and acceptable accuracy was developed to solve the above problems. Based on RTTOV 10.2 (a high precision atmospheric radiative transfer model for AIRS), an empirical regression model based on orthogonal function was formulized to retrieve CH4 vertical profile from spacebonre hyperspectral infrared observations. Validation of AIRS CH4 total column amount retrieved from EOF versus FTIR measurements shows that its Person correlative coefficient is bigger than 0.85. The CH4 volume mixing ratio (VMR) near surface retrieved from EOF versus Mt. Waliguan, China (WLG, 36.2879°N 100.8964°E, 3810 m) shows that the RMS error is less than 1.5%. The regression model based on EOF can retrieve CH4 profile from spaceborne hyperspectral infrared observations in a rapid and stable way.
机译:EOS / Aqua卫星的大气红外声探测器(Airs)的空间播种机可在2002年9月以来,在上上层对流层(Mut-CH4)中提供全球甲烷(CH4)分布。在Airs检索算法中,改进的最佳基于奇异值分解(SVD)技术利用估计模型(OEM),这使得解决方案对第一猜测字段的依赖性和第一猜测误差特性最小化,并且可以在最大敏感层中获得准确的CH4检索中上层对流层。然而,在较少敏感的层中,CH4检索接近了第一猜测。因此,更好的首先猜测可以提高CH4垂直轮廓检索的准确性和效率。在本文中,开发了一种基于计算效率和可接受精度的经验正交功能(EOF)的稳定反转模型,以解决上述问题。基于RTTOV 10.2(用于空气的高精度大气辐射转移模型),配制了基于正交函数的经验回归模型,以检索来自Spapebonre Hyperspectral红外观察的CH4垂直型材。验证来自EOF与FTIR测量的EOF检索的总柱量表明其关联系数大于0.85。从EOF检索的表面附近的CH4体积混合比(VMR)与MT.Valiguan(WLG,36.2879°N 100.8964°E,3810米)显示RMS误差小于1.5%。基于EOF的回归模型可以以快速和稳定的方式从太空冰光谱红外观测中检索CH4轮廓。

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