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首页> 外文期刊>Atmospheric research >Validation and homogenization of cloud optical depth and cloud fraction retrievals for GERB/SEVIRI scene identification using Meteosat-7 data
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Validation and homogenization of cloud optical depth and cloud fraction retrievals for GERB/SEVIRI scene identification using Meteosat-7 data

机译:使用Meteosat-7数据对用于GERB / SEVIRI场景识别的云光学深度和云分数检索进行验证和均质化

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The Geostationary Earth Radiation Budget (GERB) instrument was launched during the 2002 summer together with the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) on board of the Meteosat Second Generation (MSG) satellite. This broadband radiometer will aim to deliver near real-time estimates of the top of the atmosphere (TOA) radiative fluxes at high temporal resolution thanks to the geostationary orbit. To infer these fluxes, a radiance-to-flux conversion needs to be performed on measured radiances. Since we plan to carry out such a conversion by using the angular dependency models (ADMs) developed from the Clouds and the Earth's Radiant Energy System (CERES) experiment, the GERB ground segment will have to rely on some scene identification on SEVIRI data which mimic as close as possible the one from CERES in order to select the proper ADM. In this paper, we briefly present the method we used to retrieve cloud optical depth and cloud fraction on footprints made of several imager pixels. We then compare the retrieval of both features on the same targets using nearly time-simultaneous Meteosat-7 imager and CERES Single Satellite Footprint data. The targets are defined as CERES radiometer footprints. We investigate the possible discrepancies between the two datasets according to surface type and cloud phase and, if they exist, suggest some strategies to homogenize GERB retrievals based on CERES ones.
机译:对地静止地球辐射预算(GERB)仪器与Meteosat第二代(MSG)卫星上的自旋增强型可见光和红外成像仪(SEVIRI)一起发射。由于地球静止轨道,这种宽带辐射计将旨在以高时间分辨率提供近实时的大气层顶部(TOA)辐射通量估计值。为了推断这些通量,需要对测得的辐射进行辐射到通量的转换。由于我们计划通过使用从云和地球辐射能系统(CERES)实验开发的角度相关模型(ADM)进行这种转换,因此GERB地面部分将不得不依赖SEVIRI数据的某些场景识别,该场景模仿为了选择合适的ADM,请尽可能靠近CERES。在本文中,我们简要介绍了用于检索由多个成像器像素构成的足迹上的云光学深度和云分数的方法。然后,我们使用接近时间同步的Meteosat-7成像仪和CERES单卫星足迹数据比较在同一目标上的两个特征的检索。目标定义为CERES辐射计足迹。我们根据地表类型和云相调查了两个数据集之间的可能差异,如果存在差异,则提出一些基于CERES的GERB检索均质化的策略。

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