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首页> 外文期刊>Journal of Climate >Variability and Trends in U.S. Cloud Cover: ISCCP, PATMOS-x, and CLARA-A1 Compared to Homogeneity-Adjusted Weather Observations
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Variability and Trends in U.S. Cloud Cover: ISCCP, PATMOS-x, and CLARA-A1 Compared to Homogeneity-Adjusted Weather Observations

机译:美国云量的可变性和趋势:ISCCP,PATMOS-x和CLARA-A1与均质调整后的天气观测值相比

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摘要

Variability and trends in total cloud cover for 1982-2009 across the contiguous United States from the International Satellite Cloud Climatology Project (ISCCP), AVHRR Pathfinder Atmospheres-Extended (PATMOS-x), and EUMETSAT Satellite Application Facility on Climate Monitoring Clouds, Albedo and Radiation from AVHRR Data Edition 1 (CLARA-A1) satellite datasets are assessed using homogeneity-adjusted weather station data. The station data, considered as "ground truth" in the evaluation, are generally well correlated with the ISCCP and PATMOS-x data and with the physically related variables diurnal temperature range, precipitation, and surface solar radiation. Among the satellite products, overall, the PATMOS-x data have the highest interannual correlations with the weather station cloud data and those other physically related variables. The CLARA-A1 daytime dataset generally shows the lowest correlations, even after trends are removed. For the U.S. mean, the station dataset shows a negative but not statistically significant trend of -0.40% decade(-1), and satellite products show larger downward trends ranging from -0.55% to -5.00% decade(-1) for 1984-2007. PATMOS-x 1330 local time trends for U.S. mean cloud cover are closest to those in the station data, followed by the PATMOS-x diurnally corrected dataset and ISCCP, with CLARA-A1 having a large negative trend contrasting strongly with the station data. These results tend to validate the usefulness of weather station cloud data for monitoring changes in cloud cover, and they show that the long-term stability of satellite cloud datasets can be assessed by comparison to homogeneity-adjusted station data and other physically related variables.
机译:国际卫星云气候学项目(ISCCP),AVHRR探路者大气扩展(PATMOS-x)和EUMETSAT气候监测云,反照率和反卫星卫星应用设施在整个美国附近1982-2009年的总云量变化和趋势使用均质调整后的气象站数据评估了AVHRR数据版本1(CLARA-A1)卫星数据集的辐射。台站数据在评估中被视为“地面真相”,通常与ISCCP和PATMOS-x数据以及昼夜温度范围,降水和地表太阳辐射等物理相关变量具有良好的相关性。总体而言,在卫星产品中,PATMOS-x数据与气象站云数据以及其他与物理相关的变量之间的年际相关性最高。即使删除了趋势,CLARA-A1白天数据集通常也显示出最低的相关性。就美国平均值而言,1984年的台站数据集显示负数为-0.40%十年(-1),但没有统计学上的显着趋势,而卫星产品则显示出较大的下降趋势,从-0.55%到-5.00%十年(-1)。 2007年。美国平均云层覆盖的PATMOS-x 1330当地时间趋势最接近台站数据,其次是PATMOS-x昼夜校正数据集和ISCCP,其中CLARA-A1具有较大的负趋势,与台站数据形成强烈对比。这些结果趋于验证气象站云数据对于监测云量变化的有用性,并且表明可以通过与均质调整站数据和其他物理相关变量进行比较来评估卫星云数据集的长期稳定性。

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