![]() The improved performances of FCI are expected to provide high-quality observations of land properties such as surface albedo, which is the ratio of outgoing to incoming shortwave radiation and was defined as an essential climate variable by the Global Climate Observing System from the World Meteorological Organization. The Flexible Combined Imager ( FCI, ) on MTG-I will acquire advanced images from the Earth at a resolution of 1 km (3 times that of the Spinning Enhanced Visible and Infrared Imager, SEVIRI, on MSG), in 16 spectral channels (5 more compared to SEVIRI), and every 10 minutes (instead of 15 for SEVIRI). ![]() This meteorological mission will take the place of the Meteosat Second Generation ( MSG) satellites, which have operated from the geostationary orbit at 0° of longitude since 2002. The European organization for the exploitation of meteorological satellites ( EUMETSAT) launched on 13 December 2022 the first of the Meteosat Third Generation-Imager ( MTG-I) series. This unique feature compared to traditional low Earth orbit satellites enables the monitoring of atmospheric and surface processes at high temporal resolution. Host laboratory: CNRM (Météo-France/CNRS) – UMR 3589, Toulouse, Franceĭuration: 3 years - starting date between October 2023 and February 2024įunding: CNRS/EUMETSAT - no need of applying for fellowshipsĪdvisors: Xavier CEAMANOS, researcher at CNRM/GMME, 0561079643, - Jérôme VIDOT, researcher ( HDR) at CNRM/CEMS, 0296056766, operating from the geostationary orbit are pivotal for meteorology thanks to their observation of the Earth several times per day. PhD Title: Atmospheric correction of shortwave observations from the Flexible Combined Imager on Meteosat Third Generation-Imager satellite for land surface retrieval
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