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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A Color Ratio Method for Simultaneous Retrieval of Aerosol and Cloud Optical Thickness of Above-Cloud Absorbing Aerosols From Passive Sensors: Application to MODIS Measurements
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A Color Ratio Method for Simultaneous Retrieval of Aerosol and Cloud Optical Thickness of Above-Cloud Absorbing Aerosols From Passive Sensors: Application to MODIS Measurements

机译:同时检索被动传感器的云层上方吸收云的气溶胶和云光学厚度的色比法:在MODIS测量中的应用

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The presence of absorbing aerosols above cloud decks reduces the amount of upwelling ultraviolet (UV), visible (VIS), and shortwave infrared radiation reaching the top of atmosphere. This effect is often referred to as “cloud darkening,” which can be seen by eye in images and quantitatively in the spectral reflectance measurements made by passive sensors such as the Moderate Resolution Imaging Spectroradiometer (MODIS) in the regions where light-absorbing carbonaceous and dust aerosols overlay low-level clouds. Radiative transfer simulations support the observational evidence and further reveal that the reduction in the spectral reflectance and color ratio between a pair of wavelengths is a function of both aerosol and cloud optical thickness (AOT and COT). For a prescribed set of aerosol and cloud properties and their vertical profiles, thus, the measured reflectance can be associated with a pair of AOT and COT. Based on these results, a retrieval technique has been developed, which is named as the “color ratio method,” which utilizes the measurements at a shorter (470 nm) and a longer (860 nm) wavelength for the simultaneous derivation of AOT and COT. The retrieval technique has been applied to the MODIS 1-km reflectance measurements for the two distinct above-cloud smoke and dust aerosols events. This study is an extension of the previously developed near-UV method to the VIS spectral region. However, it constitutes the first attempt to use non-UV wavelengths to retrieve above-cloud AOT by a passive nonpolarized sensor. An uncertainty analysis has been presented, which estimates the expected error associated with these retrievals.
机译:云层上方吸收气溶胶的存在减少了到达大气层的上升紫外线(UV),可见光(VIS)和短波红外辐射的数量。这种效应通常称为“云变暗”,在图像中以及肉眼中可以看到,并且在无源传感器(如中分辨率成像分光光度计(MODIS))在光吸收性碳质和可见光区域的光谱反射率测量中可以定量看到。尘埃气溶胶覆盖低空云层。辐射转移模拟为观测证据提供了支持,并进一步揭示了一对波长之间的光谱反射率和色比的降低是气溶胶和云光学厚度(AOT和COT)的函数。因此,对于一组规定的气溶胶和云特性及其垂直轮廓,可以将测得的反射率与一对AOT和COT关联。基于这些结果,开发了一种检索技术,称为“色比法”,该技术利用较短(470 nm)和较长(860 nm)波长下的测量值来同时推导AOT和COT 。该检索技术已应用于MODIS 1公里反射率测量,用于两个明显的云雾和粉尘气溶胶事件。这项研究是对先前开发的近紫外线方法到VIS光谱区域的扩展。但是,这是通过无源非偏振传感器使用非紫外线波长来获取高于云层的AOT的首次尝试。提出了不确定性分析,该分析估计了与这些检索相关的预期误差。

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