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首页> 外文期刊>Geophysical Research Letters >Influence of the aerosol vertical distribution on the retrievals of aerosol optical depth from satellite radiance measurements.
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Influence of the aerosol vertical distribution on the retrievals of aerosol optical depth from satellite radiance measurements.

机译:气溶胶垂直分布对卫星辐射测量中气溶胶光学深度反演的影响。

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摘要

We investigate the importance of the layered vertical distribution of absorbing and non-absorbing tropospheric aerosols for the retrieval of the aerosol optical depth from satellite radiances measured at visible wavelengths at a single viewing angle We employ lidar and in-situ measurements of aerosol extinction coefficients and optical depths to model radiances which would have been observed by a satellite. Then, we determine the aerosol optical depth that would produce the observed radiance under various sets of assumptions which are often used in current retrieval algorithms. We demonstrate that, in the presence of dust or other absorbing aerosols, the retrieved aerosol optical depth can underestimate or overestimate the observed optical depth by a factor of two or more depending on the choice of an aerosol optical model and the relative position of different aerosol layers. The presence of undetected clouds provides a further complication. [References: 11]
机译:我们研究了对流层和非对流层气溶胶垂直分层分布对于从在单个视角下在可见波长处测得的卫星辐射中获取气溶胶光学深度的重要性,我们采用激光雷达和就地测量气溶胶消光系数,以及光学深度来模拟卫星会观测到的辐射。然后,我们确定在各种假设集(通常在当前检索算法中使用)下将产生观测辐射的气溶胶光学深度。我们证明,在存在灰尘或其他吸收性气溶胶的情况下,根据气溶胶光学模型的选择以及不同气溶胶的相对位置,检索到的气溶胶光学深度可能会低估或高估观察到的光学深度两个或更多倍。层。未检测到的云的存在提供了进一步的复杂性。 [参考:11]

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