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首页> 外文期刊>Geophysical Research Letters >On reflectance ratios and aerosol optical depth retrieval in the presence of cumulus clouds
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On reflectance ratios and aerosol optical depth retrieval in the presence of cumulus clouds

机译:积云存在下的反射率和气溶胶光学深度反演

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摘要

The traditional conversion of satellite-observed reflectances to the aerosol optical depth (AOD) is highly conjectural in the vicinity of clouds due to the 3D cloud-induces enhancement of the apparent reflectance. This study uses 3D Monte Carlo radiative transfer calculations and simulated cloud and aerosol fields to illustrate that for clear pixels the reflectance ratios for two pairs of wavelengths (660, 470 nm and 870, 470 nm) are less sensitive to the 3D cloud effects than the reflectances themselves. We develop a new algorithm for converting these two ratios to three spectral values of AOD and show that it is accurate to within 10% for the majority of clear pixels in our model-inverse problem. This preliminary study suggests that the proposed approach can be used to significantly improve the accuracy of the AOD retrieved from spectral satellite observations under partly cloudy conditions.
机译:由于3D云导致视在反射率的增强,因此传统的卫星观测反射率到气溶胶光学深度(AOD)的转换在云附近是高度推测的。这项研究使用3D蒙特卡洛辐射传输计算以及模拟的云和气溶胶场来说明,对于清晰像素,两对波长(660、470 nm和870、470 nm)的反射率比3D云效应敏感。反思自己。我们开发了一种将这两个比率转换为AOD的三个光谱值的新算法,并表明在模型逆问题中,对于大多数清晰像素而言,其精确度都在10%以内。这项初步研究表明,所提出的方法可用于显着提高在部分多云的条件下从频谱卫星观测中检索到的AOD的准确性。

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