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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Remote sensing of surface solar irradiance with corrections for 3-D cloud effects
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Remote sensing of surface solar irradiance with corrections for 3-D cloud effects

机译:遥测表面太阳辐照度并修正3-D云效应

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Surface solar irradiance (I{sub}(SFC)) can be inferred from satellite-observed radiance with retrieval algorithms based on the independent pixel approximation (IPA). As the spatial resolution of satellite sensors increases, the effects from spatially inhomogeneous cloud fields become more important. Clouds affect the distribution of radiation in a region larger than the resolution of an individual pixel and IPA is no longer justified. The objective of this study is to identify effects of clouds and find corrections for IPA to compensate for these effects. For this purpose, cloud fields are generated with the mesoscale model MM5 at high resolution. A shallow and a convective cloud field are then used as input for a 3-D Monte Carlo radiation model that computes the radiance distribution at the top of the atmosphere and at the surface. Surface irradiance is computed from the upwelling radiance with a method that simulates IPA retrieval. The retrieved irradiance is compared against the one computed with the 3-D model. Two effects of clouds are related to the solar and viewing geometry, noted as a shift of the apparent position of clouds and their shadows. Another cloud effect is the diffusion of radiation: Scattering removes part of the radiation from an atmospheric column and distributes it to neighboring columns. Corrections for these effects are suggested, which can improve the IPA-based retrieval of I{sub}(SFC). All corrections depend upon the cloud altitude, which may be difficult to obtain in operational applications. A sensitivity analysis suggests that a coarse estimate of the cloud top altitude is sufficient for the corrections.
机译:可以使用基于独立像素近似(IPA)的检索算法从卫星观测的辐射度推断出表面太阳辐照度(I {sub}(SFC))。随着卫星传感器的空间分辨率提高,来自空间不均匀云场的影响变得更加重要。在大于单个像素分辨率的区域中,云影响辐射的分布,并且IPA不再合理。这项研究的目的是识别云的影响并找到IPA的校正方法以补偿这些影响。为此,使用中尺度模型MM5以高分辨率生成云场。然后,将浅云场和对流云场用作3-D蒙特卡洛辐射模型的输入,该模型计算大气顶部和地表的辐射分布。表面辐照度是使用模拟IPA检索的方法从上升流辐照度计算得出的。将检索到的辐照度与使用3-D模型计算出的辐照度进行比较。云的两种影响与太阳和观看的几何形状有关,称为云及其阴影的视在位置的偏移。另一个云效应是辐射的扩散:散射从大气柱中除去了一部分辐射,并将其分布到相邻的柱中。建议对这些影响进行更正,以改善基于IPA的I {sub}(SFC)检索。所有校正均取决于云的高度,这在操作应用中可能很难获得。敏感性分析表明,对云顶高度的粗略估计足以进行校正。

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