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Analysis of linear long-term trend of aerosol optical thickness derived from SeaWiFS using BAER over Europe and South China

机译:欧洲和南方海盗苏联源极光光学厚度线性长期趋势分析

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The main purposes of the present paper are not only to investigate linear long-term trends of Aerosol Optical Thickness (AOT) at 443 and 555 nm over regions in Europe and South China, but also to show the uncertainty caused by cloud disturbance in the trend analysis of cloud-free aerosol. These research areas are the densely urbanised and often highly polluted regions. The study uses the Bremen AErosol Retrieval (BAER) and Sea-viewing Wide Field-of-view Sensor (SeaWiFS) data for AOT retrievals in the specified regions from October 1997 to May 2008. In order to validate the individually retrieved AOTs and the corresponding trends, AErosol RObotic NETwork (AERONET) level 2.0 data have been used. The retrieved AOTs were in good agreement with those of AERONET (0.79 ≤ R ≤ 0.88, 0.08 ≤ RMSD ≤ 0.13). The contamination of the aerosol retrievals and/or AERONET observations by thin clouds can significantly degrade the AOT and lead to statistically non-representative monthly-means, especially during cloudy seasons. Therefore an inter-correction method has been developed and applied. The "corrected" trends for both BAER SeaWiFS and AERONET AOT were similar and showed in average a relative difference of 25.19%. In general terms, negative trends (decrease of aerosol loading) were mainly observed over European regions, with magnitudes up to ?0.00453 and ?0.00484 yr?1 at 443 and 555 nm, respectively. In contrast, the trend in Pearl River Delta was positive, most likely attributed to rapid urbanization and industrialization. The magnitudes of AOT increased by +0.00761 and +0.00625 yr?1 respectively at 443 and 555 nm.
机译:本文的主要目的不仅可以在欧南和华南地区的443和555纳米处调查气溶胶光学厚度(AOT)的线性长期趋势,而且还展示了趋势中云扰动引起的不确定性分析无云气溶胶。这些研究领域是浓密的城市化和经常受到高度污染的地区。该研究使用了不来梅气雾剂检索(BAER)和海洋观测宽视场的视图传感器(SeaWiFS的),用于在从1997年10月至2008年5月的特定区域AOT检索数据为了验证单独检索AOTS和相应的趋势,气溶胶机器人网络(AERONET)级别2.0数据已被使用。检索到的AOTs与AEQONET(0.79≤r≤0.88,0.08≤rmsd≤0.13)吻合良好。通过薄云的气溶胶检索和/或机动气概观测的污染可能会显着降低AOT,并导致统计上非代表性的月手段,尤其是在多云季节期间。因此,已经开发和应用了校正互连方法。 Baer Seawifs和AeroNet AOT的“纠正”趋势相似,平均显示为25.19%的相对差异。一般而言,在欧洲地区主要观察到负趋势(气溶胶载量减少),其响起为0.00453且Δ10.00484,分别为443和555nm。相比之下,珠江三角洲的趋势是积极的,最有可能归功于迅速的城市化和工业化。 AOT的大小分别在443和555nm处增加+0.00761和+ 0.00625 YR?1。

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