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WindFloat is a floating foundation for offshore wind turbines designed and patented by Principle Power. A full-scale prototype was constructed in 2011 by Windplus, a joint-venture between EDP, Repsol, Principle Power, A. Silva Matos, Inovcapital, and FAI. [120] The complete system was assembled and commissioned onshore including the turbine.
Hywind Tampen is a floating offshore wind farm 140 km off the Norwegian coast in the North Sea owned by the Norwegian state-owned energy company, Equinor.The turbines are mounted on cylindrical concrete spar-buoy foundations.
IEC 61400 is a set of design requirements made to ensure that wind turbines are appropriately engineered against damage from hazards within the planned lifetime. The standard concerns most aspects of the turbine life from site conditions before construction, to turbine components being tested, [ 1 ] assembled and operated.
University of Maine's VolturnUS 1:8 was the first grid-connected offshore wind turbine in the Americas. The VolturnUS design utilizes a concrete semisubmersible floating hull and a composite materials tower designed to reduce both capital and Operation & Maintenance costs, and to allow local manufacturing.
Floating deepwater wind farms placed ten or more nautical miles (nmi) offshore can play a critical role in reaching the Department of Energy's 20% windpower goal by 2030. Deepwater offshore wind is the dominant U.S. ocean energy resource, representing a potential of nearly 3,100 TW-h/year.
The turbine utilized a tension-leg platform design and a two-bladed turbine. [8] Seawind Ocean Technology B.V., which was established by Martin Jakubowski and Silvestro Caruso (the founders of Blue H Technologies), acquired the proprietary rights to the two-bladed floating turbine technology developed by Blue H Technologies. [6] [9] [10]
As a general rule, fixed foundation offshore wind turbines are considered technically viable in areas with water depth less than 50 metres (160 ft) and average wind speeds over 7 metres per second (23 ft/s). [68] Floating offshore wind turbines are considered technically viable with water depths from 50 to 1,000 metres (160 to 3,280 ft).
The company intends to use the design to enable the use of cheaper and heavier materials to lower the cost below conventional turbines and generate energy even when the wind is not blowing. [2] [3] [6] [1] [12] If the design is scaled to 430 m long, the company claims that it could provide 4.5 MW of electricity and store 25 MWh of energy. [5]
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