北欧地区MODIS和AERONET衍生气溶胶光学厚度的趋势

P. Glantz, E. Freud, C. Johansson, K. Noone, M. Tesche
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引用次数: 13

摘要

摘要将Aqua和Terra的MODIS(中分辨率成像光谱仪)5.1和6.1(分别为c051和c061)的长期气溶胶数据与AERONET(气溶胶机器人网络)地基太阳光度计观测相结合,研究了4月至9月北欧气溶胶光学厚度(AOT, 550 nm)的趋势。对于c051和c061分别获得的1927和1559个每日一致测量值,MODIS AOT在陆地反演一个标准差的预测不确定性范围内分别变化了86%和90% (ΔAOT =±0.05±0.15·AOT)。对于瑞典Gustav Dalen Tower (GDT)沿海AERONET站点,MODIS c051和c061的偏差较大(在预测不确定性范围内分别为79%和75%)。波罗的海提供了比周围陆地地区更好的AOT统计代表性,因此有利于调查该地区AOT的趋势。根据MODIS c051和c061的日平均,波罗的海西南部的AOT分别为每年1.5%和1.2%的负趋势。这与汉堡AERONET站AOT每年减少1.2%一致。在瑞典哥特兰盆地西部地区,MODIS c051、MODIS c061和AERONET GDT的AOT分别为每年1.5%、1.1%和1.6%的负趋势。波兰贝尔斯克AERONET地区AOT的最强趋势为每年-1.8%,相比之下,波兰中部地区MODIS c051的AOT趋势为每天-1.5%。在95%的置信水平上,MODIS和AERONET AOT的趋势几乎都具有统计学意义。最强的气溶胶源位于调查区域的西南、南部和东南部,尽管污染事件的发生率最高与来自西南的气团运输有关。
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Trends in MODIS and AERONET derived aerosol optical thickness over Northern Europe
Abstract Long-term Aqua and Terra MODIS (MODerate resolution Imaging Spectroradiometer) Collections 5.1 and 6.1 (c051 and c061, respectively) aerosol data have been combined with AERONET (AERosol RObotic NETwork) ground-based sun photometer observations to examine trends in aerosol optical thickness (AOT, at 550 nm) over Northern Europe for the months April to September. For the 1927 and 1559 daily coincident measurements that were obtained for c051 and c061, respectively, MODIS AOT varied by 86 and 90%, respectively, within the predicted uncertainty of one standard deviation of the retrieval over land (ΔAOT = ±0.05 ± 0.15·AOT). For the coastal AERONET site Gustav Dalen Tower (GDT), Sweden, larger deviations were found for MODIS c051 and c061 (79% and 75%, respectively, within predicted uncertainty). The Baltic Sea provides substantially better statistical representation of AOT than the surrounding land areas and therefore favours the investigations of trends in AOT over the region. Negative trends of 1.5% and 1.2% per year in AOT, based on daily averaging, were found for the southwestern Baltic Sea from MODIS c051 and c061, respectively. This is in line with a decrease of 1.2% per year in AOT at the AERONET station Hamburg. For the western Gotland Basin area, Sweden, negative trends of 1.5%, 1.1% and 1.6% per year in AOT have been found for MODIS c051, MODIS c061 and AERONET GDT, respectively. The strongest trend of –1.8% per year in AOT was found for AERONET Belsk, Poland, which can be compared to –1.5% per day obtained from MODIS c051 over central Poland. The trends in MODIS and AERONET AOT are nearly all statistically significant at the 95% confidence level. The strongest aerosol sources are suggested to be located southwest, south and southeast of the investigation area, although the highest prevalence of pollution events is associated with air mass transport from southwest.
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