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Financement de l’UE (5 424 916 €) : Intégration des conditions climatiques climatiques réelles pour améliorer la production d’énergie des parcs éoliens et des éoliennes et augmenter la durabilité des … Hor12/11/2022 Programme de recherche et d'innovation de l'UE « Horizon »
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Texte
Intégration des conditions climatiques climatiques réelles pour améliorer la production d’énergie des parcs éoliens et des éoliennes et augmenter la durabilité des composants
To deliver the future needed renewable energy capacity, wind farm developers will have to use larger turbines, at higher altitudes, explore novel geographical regions and offshore sites. Currently, wind turbines and wind farms are designed and operated considering “just” wind conditions. Consequently, the models do not take into account the physics and aerodynamics of atmospheric wind flows at high altitudes, neither how this is affected by the location, the effect of precipitation and/or sand. This reduces the expected efficiency of wind energy production, and makes hard to estimate the energy outputs, operating costs and lifespan of blades and turbines, increasing variability and the risk to investors and project developers when designing wind farms, reducing the total potential investment. Unless new sites can be identified and designed optimally, the LCOEs will start to rise as developers have to design wind farms that cannot be well predicted with conventional models. The AIRE consortium foresees precipitation and other events (clouds, sand, shear, inflow) that wind brings into the state of play to be the new key parameters for siting of wind turbines, wind farm design, component design and O&M strategies planning. AIRE will investigate solution to assess the potential impact of REAL climate conditions in different terrains, and different altitudes both onshore and offshore, gathering information from 4 experimental sites and 4 commercial wind farms. Specially AIRE will bring together researchers, blade manufacturers and utilities to create an open access knowledge hub of experimental data, develop new numerical models, build tools to design and control wind turbines and wind farms. The effectiveness of the developed tools and models will be validated using data from commercial wind farms
| Offshore Renewable Energy Catapult | ? |
| Capital Energy Engineering SL | 423 885 € |
| Cartago Ventures SL | 298 125 € |
| Consorcio para El Diseno, Construccion, Equipamiento y Explotacion de La Plataforma Oceanica de Canarias | 237 000 € |
| Danmarks Tekniske Universitet | 1 095 625 € |
| Engie | 523 831 € |
| Fraunhofer Gesellschaft ZUR Forderung DER Angewandten Forschung e. V. | 697 898 € |
| Fundacion Cener | 1 187 040 € |
| Siemens Gamesa Renewable Energy AS | 233 750 € |
| Teknologian Tutkimuskeskus VTT Oy | 727 763 € |
| Universidad de Las Palmas de Gran Canaria | 0,00 € |
https://cordis.europa.eu/project/id/101083716
Cette annonce se réfère à une date antérieure et ne reflète pas nécessairement l’état actuel. L’état actuel est présenté à la page suivante : Offshore Renewable Energy Catapult, Blyth, Royaume Uni.