•38,000 m2 swept area
•One Haliade-X 13 MW can save up to 52,000 metric tons of CO2, which is the equivalent of the emissions generated by 11,000 vehicles in one year.
•One GE Haliade-X 13 MW spin could power a UK household for more than two days
GE Renewable Energy will establish its marshaling harbor activities at Able Seaton Port in Hartlepool, serving as the base for turbine service equipment, installation, and commissioning activities for Dogger Bank A and B.
The port will see the delivery of component parts for each of GE’s Haliade-X 13MW wind, including the nacelle, three tower sections, and three 107m long blades, for pre-assembly on-site at Able Seaton prior to transport out to the North Sea for installation.
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IMAGE: Materials researchers at Saarland University and mechanical engineers at RWTH Aachen University working to further develop monopile production for offshore wind farms. view more
Credit: Steelwind Nordenham
With an output of around ten megawatts, today s wind turbines on the open sea have enormous dimensions. Their gigantic nacelles - with a generator, rotor and rotor blades spanning more than 100 meters - stand atop a steel tower. This tower, in turn, rests in the sea on colossal steel pipes known as monopiles, currently measuring up to ten meters in diameter and weighing 1,500 tons. To ensure that these can withstand storms, waves and aggressive saltwater over many years and still be produced economically, materials researchers at Saarland University and mechanical engineers at RWTH Aachen University want to work together with steel specialist Dillinger and other companies to develop new, customized steel grades. The research project is being supported
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