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首页> 外文期刊>Geophysical Research Letters >Assessment of error in aerosol optical depth measured by AERONET due to aerosol forward scattering
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Assessment of error in aerosol optical depth measured by AERONET due to aerosol forward scattering

机译:评估由气溶胶前向散射引起的由AERONET测量的气溶胶光学深度的误差

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摘要

We present an analysis of the effect of aerosol forward scattering on the accuracy of aerosol optical depth (AOD) measured by CIMEL Sun photometers. The effect is quantified in terms of AOD and solar zenith angle using radiative transfer modeling. The analysis is based on aerosol size distributions derived from multi-year climatologies of AERONET aerosol retrievals. The study shows that the modeled error is lower than AOD calibration uncertainty (0.01) for the vast majority of AERONET level 2 observations, ~99.53%. Only ~0.47% of the AERONET database corresponding mostly to dust aerosol with high AOD and low solar elevations has larger biases. We also show that observations with extreme reductions in direct solar irradiance do not contribute to level 2 AOD due to low Sun photometer digital counts below a quality control cutoff threshold. All Rights Reserved.
机译:我们对气溶胶前向散射对CIMEL Sun光度计测量的气溶胶光学深度(AOD)精度的影响进行了分析。使用辐射转移模型根据AOD和太阳天顶角来量化效果。该分析基于源自AERONET气溶胶回收多年气候的气溶胶尺寸分布。研究表明,对于绝大多数AERONET 2级观测值,模拟误差均低于AOD校准不确定度(0.01),约为99.53%。在AERONET数据库中,只有约0.47%的偏差较大,这主要对应于AOD高,太阳高度低的粉尘气溶胶。我们还表明,由于太阳光度计的数字计数低于质量控制截止阈值,太阳直射光的极端减少的观测值不会对2级AOD有所贡献。版权所有。

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