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Assessment of the Moderate-Resolution Imaging Spectroradiometer algorithm for retrieval of aerosol parameters over the ocean

机译:评估中分辨率成像分光辐射计算法以检索海洋上的气溶胶参数

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摘要

The Moderate Resolution Imaging Spectroradiometer aerosol algorithm over the ocean derives spectral aerosol optical depth and aerosol size parameters from satellite measured radiances at the top of the atmosphere (TOA). It is based on the adding of apparent optical properties (AOPs): TOA reflectance is approximated as a linear combination of reflectances resulting from a small particle mode and a large particle mode. The weighting parameter eta is defined as the fraction of the optical depth at 550 nm due to the small mode. The AOP approach is correct only in the single scattering limit. For a physically correct TOA reflectance simulation, we create linear combinations of the inherent optical properties (IOPs) of small and large particle modes, in which the weighting parameter f is defined as the fraction of the number density attributed to the small particle mode. We use these IOPs as inputs to an accurate multiple scattering radiative transfer model. We find that reflectance errors incurred with the AOP method are as high as 30percent for an aerosol optical depth of 2 at 550 nm. The retrieved optical depth has a relative error of up to 8percent, and the retrieved fraction eta has an absolute error of approx6percent. We show that the use of accurate radiative transfer simulations and a bimodal fraction f yields accurate values for the retrieved optical depth and the fraction f.
机译:海洋上的中等分辨率成像光谱辐射计气溶胶算法从大气层顶部(TOA)的卫星测量辐射度得出频谱气溶胶光学深度和气溶胶尺寸参数。它基于表观光学特性(AOP)的添加:TOA反射率近似为由小颗粒模式和大颗粒模式产生的反射率的线性组合。加权参数η定义为由于小模式而在550nm处的光学深度的分数。 AOP方法仅在单个散射极限中是正确的。为了获得物理上正确的TOA反射率模拟,我们创建了小颗粒模式和大颗粒模式的固有光学特性(IOP)的线性组合,其中加权参数f定义为归因于小颗粒模式的数密度的分数。我们将这些IOP用作精确的多重散射辐射传输模型的输入。我们发现,对于550 nm处的2气溶胶光学深度,AOP方法引起的反射误差高达30%。检索到的光学深度具有高达8%的相对误差,并且检索到的分数eta的绝对误差约为6%。我们表明,使用精确的辐射传递模拟和双峰分数f会为检索到的光学深度和分数f产生准确的值。

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