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Hyper fast radiative transfer for the physical retrieval of surface parameters from SEVIRI observations

机译:Seviri观察中表面参数物理检索的超快速辐射转移

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This paper describes the theoretical aspects of a fast scheme for the physical retrieval of surface temperature and emissivity from SEVIRI data, their implementation and some sample results obtained. The scheme is based on a Kalman Filter approach, which effectively exploits the temporal continuity in the observations of the geostationary Meteosat Second Generation (MSG) platform, on which SEVIRI (Spinning Enhanced Visible and InfraRed Imager) operates. Such scheme embodies in its core a physical retrieval algorithm, which employs an hyper fast radiative transfer code highly customized for this retrieval task. Radiative transfer and its customizations are described in detail. Fastness, accuracy and stability of the code are fully documented for a variety of surface features, showing a peculiar application to the massive Greek forest fires in August 2007.
机译:本文介绍了Seviri数据的物理检索表面温度和发射率的快速方案的理论方面,其实现和获得的一些样品结果。该方案基于卡尔曼滤波器方法,其有效地利用了地球静止的Meteosat第二代(MSG)平台的观察中的时间连续性,在该观察中,塞维利(纺丝增强的可见和红外成像器)操作。这种方案体现在其核心的物理检索算法中,该算法采用高度自定义的超快速辐射传输代码,用于该检索任务。详细描述了辐射转移及其自定义。代码的牢度,准确性和稳定性完全记录了各种表面特征,显示了2007年8月的大型希腊森林火灾的特殊应用。

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