首页> 外文会议>Algorithms and Technologies for Multispectral, Hyperspectral, and Ultraspectral Imagery XIV >Atmospheric Parameter Climatologies from AIRS: Monitoring Short-, and Longer-Term Climate Variabilities and 'Trends'
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Atmospheric Parameter Climatologies from AIRS: Monitoring Short-, and Longer-Term Climate Variabilities and 'Trends'

机译:AIRS的大气参数气候学:监测短期和长期气候变化和“趋势”

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The AIRS instrument is currently the best space-based tool to simultaneously monitor the vertical distribution of key climatically important atmospheric parameters as well as surface properties, and has provided high quality data for more than 5 years. AIRS analysis results produced at the GODDARD/DAAC, based on Versions 4 & 5~3 of the AIRS retrieval algorithm, are currently available for public use. Here, first we present an assessment of interrelationships of anomalies (proxies of climate variability based on 5 full years, since Sept. 2002) of various climate parameters at different spatial scales. We also present AIRS-retrievals-based global, regional and 1×1 degree grid-scale "trend"-analyses of important atmospheric parameters for this 5-year period. Note that here "trend" simply means the linear fit to the anomaly (relative the mean seasonal cycle) time series of various parameters at the above-mentioned spatial scales, and we present these to illustrate the usefulness of continuing AIRS-based climate observations. Preliminary validation efforts, in terms of intercomparisons of interannual variabilities with other available satellite data analysis results, will also be addressed. For example, we show that the outgoing longwave radiation (OLR) interannual spatial variabilities from the available state-of-the-art CERES measurements and from the AIRS computations are in remarkably good agreement. Version 6 of the AIRS retrieval scheme (currently under development) promises to further improve bias agreements for the absolute values by implementing a more accurate radiative transfer model for the OLR computations and by improving surface emissivity retrievals.
机译:AIRS仪器是目前同时监测关键的重要气候参数的垂直分布以及地表特性的最佳太空工具,并且已经提供了超过5年的高质量数据。基于AIRS检索算法的版本4和5〜3,由GODDARD / DAAC生成的AIRS分析结果目前可供公众使用。在这里,我们首先介绍不同空间尺度上各种气候参数异常(相互之间的相互关系)的评估(自2002年9月以来基于5个整年的气候变异性)。我们还提出了基于AIRS的全球,区域和1×1度网格规模“趋势”分析,用于分析这5年期间的重要大气参数。请注意,此处的“趋势”仅表示在上述空间尺度上对各种参数的异常(相对于平均季节性周期)时间序列的线性拟合,我们在此给出这些数据以说明持续进行基于AIRS的气候观测的有用性。在年际变化与其他可用卫星数据分析结果之间的比较方面,还将进行初步的验证工作。例如,我们表明,从可用的最新CERES测量结果和AIRS计算结果来看,出射长波辐射(OLR)的年际空间变异性非常好。 AIRS检索方案的第6版(当前正在开发中)有望通过为OLR计算实现更精确的辐射传输模型并改善表面发射率检索,来进一步改善绝对值的偏差一致性。

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