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Utilizing the MODIS 1.38 μm channel for cirrus cloud optical thickness retrievals: Algorithm and retrieval uncertainties

机译:利用MODIS 1.38μm通道卷云云光学厚度检索:算法和检索不确定性

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摘要

The cloud products from the Moderate Resolution Imaging Spectroradiometers (MODIS) on Terra and Aqua have been widely used within the atmospheric research community. The retrieval algorithms, however, oftentimes have difficulty detecting and retrieving thin cirrus, due to sensitivities to surface reflectance. Conversely, the 1.38 μm channel, located within a strong water vapor absorption band, is quite useful for detecting thin cirrus clouds since the signal from the surface can be blocked or substantially attenuated by the absorption of atmospheric water vapor below cirrus. This channel, however, suffers from nonnegligible attenuation due to the water vapor located above and within the cloud layer. Here we provide details of a new technique pairing the 1.38 μm and 1.24 μm channels to estimate the above/in-cloud water vapor attenuation and to subsequently retrieve thin cirrus optical thickness (τ) from attenuation-corrected 1.38 μm reflectance measurements. In selected oceanic cases, this approach is found to increase cirrus retrievals by up to 38% over MOD06. For these cases, baseline 1.38 μm retrieval uncertainties are estimated to be between 15 and 20% for moderately thick cirrus (τ > 1), with the largest error source being the unknown cloud effective particle radius, which is not retrieved with the described technique. Uncertainties increase to around 90% for the thinnest clouds (τ < 0.5) where instrument and surface uncertainties dominate.
机译:中分辨率的云产品在Terra和成像光谱仪(MODIS)Aqua大气中已经广泛使用研究社区。然而,通常很难检测和检索薄卷云,由于敏感性表面反射。通道,位于一个强大的水蒸气吸收带,对于检测非常有用薄卷云的信号表面可以被阻塞或显著减毒的大气水的吸收蒸汽下面卷云。患有不可忽视的衰减造成的水蒸气上方,在云端层。配对1.38μm和1.24μm通道估计上面/在云的水蒸气衰减,并随后检索薄卷云光学厚度(τ)attenuation-corrected 1.38μm反射测量。方法是增加卷的检索在MOD06至多38%。基线1.38μm检索不确定性估计是适度的15 - 20%厚卷(τ> 1),最大的错误源被未知的云粒子有效半径,而不是描述的检索技术。最薄的云(τ< 0.5)仪器和表面不确定因素占主导地位。

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