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首页> 外文期刊>Atmospheric chemistry and physics >Clouds over the summertime Sahara: an evaluation of Met Office retrievals from Meteosat Second Generation using airborne remote sensing
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Clouds over the summertime Sahara: an evaluation of Met Office retrievals from Meteosat Second Generation using airborne remote sensing

机译:夏季撒哈拉沙漠上的云:使用机载遥感对Meteosat Second Generation的Met Office检索进行评估

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摘要

Novel methods of cloud detection are applied to airborne remote sensing observations from the unique Fennec aircraft dataset, to evaluate the Met Office-derived products on cloud properties over the Sahara based on the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) on-board the Meteosat Second Generation (MSG) satellite. Two cloud mask configurations are considered, as well as the retrievals of cloud-top height (CTH), and these products are compared to airborne cloud remote sensing products acquired during the Fennec campaign in June 2011 and June 2012. Most detected clouds (67?% of the total) have a horizontal extent that is smaller than a SEVIRI pixel (3?km??×??3?km). We show that, when partially cloud-contaminated pixels are included, a match between the SEVIRI and aircraft datasets is found in 80?±?8?% of the pixels. Moreover, under clear skies the datasets are shown to agree for more than 90?% of the pixels. The mean cloud field, derived from the satellite cloud mask acquired during the Fennec flights, shows that areas of high surface albedo and orography are preferred sites for Saharan cloud cover, consistent with published theories. Cloud-top height retrievals however show large discrepancies over the region, which are ascribed to limiting factors such as the cloud horizontal extent, the derived effective cloud amount, and the absorption by mineral dust. The results of the CTH analysis presented here may also have further-reaching implications for the techniques employed by other satellite applications facilities across the world.
机译:云探测的新方法被应用于来自独特的Fennec飞机数据集的机载遥感观测,以基于气象卫星上的旋转增强型可见光和红外成像仪(SEVIRI)评估气象局衍生产品在撒哈拉沙漠上的云特性第二代(MSG)卫星。考虑了两种云罩配置以及对云顶高度(CTH)的检索,并将这些产品与2011年6月和2012年6月的Fennec运动期间获得的机载云遥感产品进行了比较。检测到的云最多(67?占总百分比的百分比)的水平范围小于SEVIRI像素(3?km ??×?3?km)。我们表明,当包括部分受云污染的像素时,SEVIRI和飞机数据集之间的匹配在像素的80?±?8?%中找到。而且,在晴朗的天空下,数据集显示出超过90%的像素一致。从Fennec飞行期间获得的卫星云面罩得出的平均云场表明,高表面反照率和地形是撒哈拉云层覆盖的首选地点,与已发表的理论一致。但是,云顶高度反演结果显示该区域存在较大差异,这归因于限制因素,例如云的水平范围,导出的有效云量以及矿物粉尘的吸收。本文介绍的CTH分析结果也可能对全球其他卫星应用设施所采用的技术产生更深远的影响。

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