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Improved Atmospheric Soundings and Error Estimates from Analysis of AIRS/AMSU Data

机译:从Airs / AMSU数据分析改进的大气探测和错误估计

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The AIRS Science Team Version 5.0 retrieval algorithm became operational at the Goddard DAAC in July 2007 generating near real-time products from analysis of AIRS/AMSU sounding data. This algorithm contains many significant theoretical advances over the AIRS Science Team Version 4.0 retrieval algorithm used previously. Three very significant developments of Version 5 are: 1) the development and implementation of an improved Radiative Transfer Algorithm (RTA) which allows for accurate treatment of non-Local Thermodynamic Equilibrium (non-LTE) effects on shortwave sounding channels; 2) the development of methodology to obtain very accurate case by case product error estimates which are in turn used for quality control; and 3) development of an accurate AIRS only cloud clearing and retrieval system. These theoretical improvements taken together enabled a new methodology to be developed which further improves soundings in partially cloudy conditions, without the need for microwave observations in the cloud clearing step as has been done previously. In this methodology, longwave CO_2 channel observations in the spectral region 700 cm~(-1) to 750 cm~(-1) are used exclusively for cloud clearing purposes, while shortwave CO_2 channels in the spectral region 2195 cm~(-1) to 2395 cm~(-1) are used for temperature sounding purposes. The new methodology for improved error estimates and their use in quality control is described briefly and results are shown indicative of their accuracy. Results are also shown of forecast impact experiments assimilating AIRS Version 5.0 retrieval products in the Goddard GEOS 5 Data Assimilation System using different quality control thresholds.
机译:Airs Science Team Version 5.0检索算法于2007年7月在Goddard DAAC中成为运行,从Airs / AMSU发出数据分析中产生近实时产品。该算法包含诸如先前使用的Airs Science Team Version 4.0检索算法的许多显着的理论前进。第5版的三个非常重要的发展是:1)改进的辐射转移算法(RTA)的开发和实施,其允许精确处理对短波探测通道的非本地热力学平衡(非LTE)效应; 2)通过替代用于质量控制的情况下,通过案例的产品误差估算来获得非常准确的案例的方法; 3)仅开发精确的空中云清算和检索系统。这些理论改进在一起使得能够开发新的方法,该方法进一步改善了部分多云的条件,而不需要在云清算步骤中进行微波观察,如前所述。在该方法中,光谱区域700cm〜(-1)到750cm〜(-1)中的长波CO_2通道观察专门用于云清除目的,而光谱区域中的短波柯达通道2195cm〜(-1) 2395cm〜(-1)用于温度探测目的。简要描述了改进误差估计的新方法及其在质量控制中的使用,结果表明其准确性。结果也显示出预测使用不同质量控制阈值的戈达德GEOS 5数据同化系统中的AIRS版5.0检索产品的预测影响实验。

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