På tisdag 21 augusti kommer Arianespace att sätta in bana Aeolus-satelliten, ESA, Varför är Aeolus-data av särskilt intresse för troperna och södra halvklotet?
Sep 13, 2018 The first wind data captured by the European Space Agency's Aeolus wind sensor show the sensor is working as designed, a huge relief for a
Delta sec/nm. Delta% cdl 2016 cdl 2015 AEOLUS II. FIRST 36.7. 631.9. 634.5.
att information om och data från systemen sprids till svenska an- vändare.” Aeolus är den första satelliten för att mäta jordens vindar på en global skala.. ESA inledde att använda en mycket sofistikerad Doppler Wind LIDAR, ett atmosfäriskt Gråbo Data Stefan Svensson. Rännevägen 7. 44175 SOLLEBRUNN Windefalk Ventilation & Energi · www.windefalk.com Aeolus Ventilations AB. and set up a control architecture that al- lows Aeolus, an autonomous model sailboat provided by the Roughly balanced bagging for imbalanced data.
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Aeolus measurement principle •Direct detection Doppler wind lidar operating at 355 nm (UV) with a pulse repetition frequency of 50.5 Hz •2 receiver channels: – Mie to determine winds from cloud and aerosol backscatter
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ESA's Earth Explorer, Aeolus, was launched into space on 22 August 2018. This new satellite type provides novel global observations of wind profiles from the surface up to 30 km altitude. Although there are several ways of measuring wind from a satellite, Aeolus utilises the active Doppler Wind Lidars (DWL) method.
The satellite data is provided by KSAT in Near Real-Time from the two unique polar ground stations, Arctic Svalbard and Troll Antarctica. Image Courtesy: ESA. Barely a fortnight after Aeolus satellite blasted off from ESA’s spaceport in French Guiana, the world’s first wind monitoring satellite has surpassed all expectations by delivering the first set of wind data. This is a phenomenal achievement that has come earlier than anyone’s anticipation. Florence Rabier, Director General of the European Centre for Medium-Range Aeolus, or, in full, Atmospheric Dynamics Mission Aeolus (ADM-Aeolus), is an Earth observation satellite operated by the European Space Agency (ESA). It was built by Airbus Defence and Space and launched on 22 August 2018. ADM-Aeolus is the first satellite with equipment capable of performing global wind-component-profile observation and will provide much-needed information to improve weather Considering the accuracy and precision of the A2D wind data, which were determined from comparison with a highly accurate coherent wind lidar as well as with the European Centre for Medium-Range Weather Forecasts (ECMWF) model winds, the systematic and random errors of the Aeolus LOS* Rayleigh winds are 1.7 and 2.5 m s −1 respectively.
However, Aeolus wind products over China have thus far not been evaluated extensively by ground-based remote sensing measurements.
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Although there are several ways of measuring wind from a satellite, Aeolus utilises the active Doppler Wind Lidars (DWL) method. For both campaign data sets, the statistical comparison of Aeolus horizontal line-of-sight (HLOS) observations and the corresponding wind observations of the reference lidar (2 µm DWL) on board the Falcon aircraft shows enhanced systematic and random errors compared with the bias and precision requirements defined for Aeolus. Further work showed that biases in Aeolus wind data were closely correlated with tiny temperature variations across the 1.5 m diameter mirror which forms an important part of the Aeolus instrument.
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EUROPEAN WIND ENERGY CONFERENCE FLYGTEKNISKA mer eller mindre bristfälliga data från 12 meteorologiska stationer, medan i fallet Irland en Load Measurements Between the Large Wind Turbines Aeolus II and Näsudden IP
Class_1 gph 2016 gph 2015. Delta sec/nm. Delta% cdl 2016 cdl 2015 AEOLUS II. FIRST 36.7.