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首页> 外文期刊>Remote Sensing >Validation of Long-Term Global Aerosol Climatology Project Optical Thickness Retrievals Using AERONET and MODIS Data
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Validation of Long-Term Global Aerosol Climatology Project Optical Thickness Retrievals Using AERONET and MODIS Data

机译:使用AERONET和MODIS数据验证长期全球气溶胶气候学项目光学厚度反演

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A comprehensive set of monthly mean aerosol optical thickness (AOT) data from coastal and island AErosol RObotic NETwork (AERONET) stations is used to evaluate Global Aerosol Climatology Project (GACP) retrievals for the period 1995–2009 during which contemporaneous GACP and AERONET data were available. To put the GACP performance in broader perspective, we also compare AERONET and MODerate resolution Imaging Spectroradiometer (MODIS) Aqua level-2 data for 2003–2009 using the same methodology. We find that a large mismatch in geographic coverage exists between the satellite and ground-based datasets, with very limited AERONET coverage of open-ocean areas. This is especially true of GACP because of the smaller number of AERONET stations at the early stages of the network development. Monthly mean AOTs from the two over-the-ocean satellite datasets are well-correlated with the ground-based values, the correlation coefficients being 0.81–0.85 for GACP and 0.74–0.79 for MODIS. Regression analyses demonstrate that the GACP mean AOTs are approximately 17%–27% lower than the AERONET values on average, while the MODIS mean AOTs are 5%–25% higher. The regression coefficients are highly dependent on the weighting assumptions (e.g., on the measure of aerosol variability) as well as on the set of AERONET stations used for comparison. Comparison of over-the-land and over-the-ocean MODIS monthly mean AOTs in the vicinity of coastal AERONET stations reveals a significant bias. This may indicate that aerosol amounts in coastal locations can differ significantly from those in adjacent open-ocean areas. Furthermore, the color of coastal waters and peculiarities of coastline meteorological conditions may introduce biases in the GACP AOT retrievals. We conclude that the GACP and MODIS over-the-ocean retrieval algorithms show similar ranges of discrepancy when compared to available coastal and island AERONET stations. The factors mentioned above may limit the performance of the validation procedure and cause us to caution against a direct extrapolation of the presented validation results to the entirety of the GACP dataset.
机译:使用来自沿海和海岛AErosol机器人网络(AERONET)台站的每月月平均气溶胶光学厚度(AOT)数据的全面集合,来评估1995-2009年期间全球气溶胶气候学项目(GACP)检索,在此期间同时获得了GACP和AERONET数据可用。为了更全面地了解GACP性能,我们还使用相同的方法比较了2003-2009年的AERONET和中等分辨率成像光谱仪(MODIS)Aqua 2级数据。我们发现,卫星数据和地面数据集之间的地理覆盖范围存在很大的不匹配,开放海洋区域的AERONET覆盖范围非常有限。对于GACP尤其如此,因为在网络开发的初期,AERONET站的数量较少。来自两个海洋卫星数据集的月平均AOT与地面值具有良好的相关性,GACP的相关系数为0.81-0.85,MODIS的相关系数为0.74-0.79。回归分析表明,GACP平均AOT比平均AERONET值低约17%–27%,而MODIS平均AOT则高出5%–25%。回归系数高度取决于权重假设(例如,取决于气溶胶变异性的度量)以及用于比较的AERONET站集。比较沿海AERONET站附近的陆上和海洋MODIS月平均AOT,发现存在显着偏差。这可能表明沿海地区的气溶胶数量可能与邻近的开放海洋地区的气溶胶数量明显不同。此外,沿海水域的颜色和海岸线气象条件的特殊性可能在GACP AOT检索中引入偏差。我们得出的结论是,与可用的沿海和海岛AERONET站相比,GACP和MODIS的海洋检索算法显示出相似的差异范围。上述因素可能会限制验证程序的性能,并导致我们告诫不要将给出的验证结果直接外推到整个GACP数据集。

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