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On the signature of the cirrus twilight zone

机译:卷云暮光区的签名

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Cirrus clouds are known to play a key role in the climate system, but their overall effect on Earth's radiation budget is not yet fully quantified. The uncertainties are, in part, due to ambiguities in cirrus extent or coverage. Here we show that despite careful filtering of cloudy pixels, cirrus clouds have a clear statistical signature. This signature can be estimated by the proximity to detectable cirrus clouds. Such a residual signature can affect retrievals that rely on a cloud-free atmosphere, such as aerosol optical depth (AOD) or sea surface temperature. Analyzing MODIS raw-data and products, we show a clear increase in the reflectance when approaching detectable cirrus clouds. We estimated a mean increase in AOD of 0.03?±?0.01 and a decrease in the Angstrom-exponent of ?0.22?±?0.20 in the first kilometer around detectable cirrus. The effect decays tenfold at a typical distance of 5.5?±?1.8 km. Such trends confirm the contribution of large particles that are likely to be ice crystals to the so-called cloud-free atmosphere near detectable cirrus clouds.
机译:卷云在气候系统中起着关键作用,但它们对地球辐射预算的总体影响尚未完全量化。不确定性部分是由于卷云范围或覆盖范围不明确。在这里,我们显示,尽管对阴暗像素进行了仔细过滤,卷云仍具有清晰的统计特征。可以通过与可探测的卷云的接近程度来估计该签名。这样的残留特征可能会影响依赖于无云大气的检索,例如气溶胶光学深度(AOD)或海面温度。分析MODIS原始数据和产品,当接近可探测的卷云时,反射率会明显增加。我们估计在可探测的卷云附近的第一公里,AOD的平均增加为0.03?±?0.01,埃指数的降低为?0.22?±?0.20。在5.5?±?1.8 km的典型距离处,效果衰减了十倍。这种趋势证实了可能是冰晶的大颗粒对可探测的卷云附近所谓的无云大气的贡献。

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