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Sensitivity analysis of aerosol retrieval algorithms using two-channel satellite radiance data

机译:使用双通道卫星辐射数据的气溶胶检索算法敏感性分析

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We discuss the methodology of interpreting channel 1 and 2 AVHRR radiance data to retrieve tropospheric aerosol properties over the ocean and describe a detailed analysis of the sensitivity of monthly average retrievals to the assumed aerosol models. We use real AVHRR data and accurate numerical techniques for computing single and multiple scattering and spectral absorption of light in the vertically inhomogeneous atmosphere-ocean system. Our analysis shows that two-channel algorithms can provide significantly more accurate retrievals of the aerosol optical thickness than one-channel algorithms and that imperfect cloud screening is the largest source of errors in the retrieved optical thickness. Both underestimating and overestimating aerosol absorption as well as strong variability of the aerosol refractive index may lead to regional and/or seasonal biases in optical thickness retrievals. The Angstrom exponent appears to be the most invariant aerosol size characteristic and should be retrieved along with optical thickness as the second aerosol parameter.
机译:我们讨论解释通道1和2 AVHRR辐射数据的方法,以检索海洋上的对流层气溶胶特性,并描述对假定的气溶胶模型的月平均检索的敏感性的详细分析。我们使用真正的AVHRR数据和准确的数值技术来计算单一和多次散射和垂直不均匀的大气系统中光的光谱吸收。我们的分析表明,两通道算法可以提供比单通道算法的气溶胶光学厚度更准确的检索,并且不完美的云筛选是检索到的光学厚度中的最大误差源。低估和高估气溶胶吸收以及气溶胶折射率的强变化可能导致光学厚度检索中的区域和/或季节性偏差。 Angstrom指数似乎是最不变的气溶胶尺寸特性,并且应与作为第二气溶胶参数一起的光学厚度一起检索。

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