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Contenuto archiviato il 2024-05-28

Development of an intelligent condition monitoring system for application on critical rotating components of industrial-scale wind turbines

Obiettivo

"Wind energy currently provides approximately 3% of the overall European electricity production. However, with the current growth trends exhibited the wind energy industry is capable of delivering 12% of the overall European power production by 2020 and more than 20% by 2030.

Operation and maintenance costs (O&M) constitute a sizeable share of the total annual costs of a wind turbine. For a new machine, operation and maintenance costs might easily have an average share over the lifetime of a turbine of more than 30% of the total levellised cost per kWh produced. Therefore, operation and maintenance costs are increasingly attracting the attention of manufacturers seeking to develop new designs requiring fewer regular service visits and less out-time. In order for the wind energy industry to achieve the growth targets set by the EU for the forthcoming years, wind turbine numbers have to increase substantially, while at the same time their operation and maintenance costs will need to be reduced by a noticeable factor to permit the European wind energy industry to retain its advantage over growing overseas competition. Therefore, one of the highest priorities for the European wind energy industry is currently the significant improvement of the reliability of wind turbines, involving a solid reduction in current inspection and maintenance costs mainly associated with unpredicted failures of critical rotating components.

INTELWIND seeks to largely decrease the number of failures of critical rotating components in wind turbines and minimise the need for corrective maintenance by developing and successfully implementing an intelligent condition monitoring system based on the integration of acoustic emission, vibration analysis, torque sensing and oil analysis techniques. Although the INTELWIND consortium will aim to incorporate the developed system on newly manufactured wind turbines, its installation in older wind turbines will also be possible as well as affordable."

Invito a presentare proposte

FP7-SME-2011
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Meccanismo di finanziamento

BSG-SME - Research for SMEs

Coordinatore

INNOVATIVE TECHNOLOGY AND SCIENCE LIMITED - INNOTECUK
Contributo UE
€ 219 141,00
Indirizzo
HILDERSHAM ROAD NORTH WING THE OLD LIVERY
CB21 6DR CAMBRIDGE
Regno Unito

Mostra sulla mappa

Regione
East of England East Anglia Cambridgeshire CC
Tipo di attività
Private for-profit entities (excluding Higher or Secondary Education Establishments)
Contatto amministrativo
Hassam Miabhoy (Mr.)
Collegamenti
Costo totale
Nessun dato

Partecipanti (8)