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 TERMINÉ 
SUPRAPOWER is a research project focused on a major innovation in offshore wind turbine technology by developing a new compact superconductor-based generator.The project aims to provide an important breakthrough in offshore wind industrial solutions by designing an innovative, lightweight, robust and reliable 10 MW class offshore wind turbine based on a superconducting (SC) generator, taking into ...
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 11

 TERMINÉ 
The power output from wind turbines has increased dramatically over the past thirty years from 50 kW to 6 MW, while 8-12 MW turbines are in the stage of design. State-of-the-art condition monitoring systems, such as vibration-based systems and temperature sensors, are able to monitor and evaluate the current condition of components of interest. Nonetheless, varying wind loads can result in the gen ...
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 13

 TERMINÉ 
Concentrated Solar Power (CSP) is the renewable energy source with the highest potential for growth. From a strict techno-economic aspect, the two CSP technologies which are currently commercially viable are those based on parabolic trough and Linear Fresnel Reflector designs. Parabolic trough concentrators are the most widely deployed type of solar thermal power plant. Most of the existing parabo ...
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 9

 TERMINÉ 

High Power, high Reliability offshore wind technology (HIPRWIND)

Date du début: 1 nov. 2010, Date de fin: 30 juin 2015,

The aim of the HiPRwind project is to develop and test new solutions for very large offshore wind turbines at an industrial scale. The project addresses critical issues of offshore WT technology such as extreme reliability, remote maintenance and grid integration with particular emphasis on floating wind turbines, where weight and size limitations of onshore designs can be overcome.HiPRWind will t ...
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