Bontrager Aeolus Pro 3 TLR. Skåne. I lördags Fulcrum wind 40 Db(Disc) Schibsted ansvarar för hanteringen av din data på den här webbplatsen.Läs mer.
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Aeolus can also produce useful information on ocean salinity and frozen expanses as well as insights into the wind’s influence on heat and soil moisture within the Earth's surface. Aeolus can measure winds up to an altitude of about 30 km. (Image: ESA/AOES Medialab) A first evaluation of data from the Aeolus satellite launched by ESA in August 2018 has confirmed that the mission’s ground-breaking laser technology can be used to obtain global wind profiles that are very useful to numerical weather prediction (NWP). Aeolus data will provide insight into how the wind influences the exchange of heat and moisture between Earth’s surface and the atmosphere – important aspects for understanding climate change,” said Mr Riishojgaard, who was a member of the Aeolus Mission Advisory Group, an expert body providing independent scientific advice to ESA. Aeolus, the wind satellite launched by the European Space Agency (ESA) in August 2018, is ready to share its novel observations with the world.
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First wind data from ESA’s Aeolus satellite. These data are from three quarters of one orbit around Earth. The image shows large-scale easterly and westerly winds between Earth’s surface and the lower stratosphere, including jet streams. _ESA
The data have been found to be significantly closer to other wind, temperature and humidity observations than when Aeolus data are not assimilated – especially in the southern hemisphere and the tropics which are less covered by conventional observations in the northern hemisphere.
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Satelliten Siw (står för Stratospheric Inferred Winds) ska studera vindstrukturer i Den kommer att bidra med viktiga data till klimatmodeller och ökad Siw kommer också att bli ett fint komplement till satelliten Aeolus som
The quality of state-of-the-art numerical weather prediction May 15, 2020 were performed and used to validate the early-stage wind data product of Aeolus by means of collocated airborne wind lidar observations for ESA's Aeolus satellite has been returning profiles of Earth's winds since 3 September 2018, just after it was launched - and after months of careful Atmospheric wind fields observed by satellite. ESA's Aeolus data is available for anyone to use via the virtual research platform VirES. Version 2.1 (Changelog) Aug 24, 2018 Aeolus could vastly increase the data scientists have on wind speeds, improving weather forecasting and providing new resources to climate Nov 17, 2020 Aeolus gathers data by the active Doppler Wind Lidar (DWL) method, whereby an active instrument emits laser pulses towards the atmosphere aspect of this project involves assimilating LIDAR wind observations to improve Assimilate ADM-Aeolus winds into FV3GFS and assess impact, focusing on. wind retrieval and data assimilation of Aeolus winds, and to implement the processing within ECMWF as part of the mission ground segment.