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Floatgen demonstrator ideol

Floatgen demonstrator

France's first offshore wind turbine and Ideol's first demonstrator

IN OPERATION SINCE 2018

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  • Capacity: 2 MW(Vestas V80)
  • Installation site: SEM-REV test site at Le Croisic (France)
  • Water depth: 33 metres

NEDO floater japan ideol

Hibiki

Ideol's second demonstrator

INSTALLED SINCE 2018

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  • Capacity: 3 MW
  • Installation site: Kitakuyshu
  • Water depth: 55 meters

Eolmed Ideol

EOLMED Project

A pre-commercial project of 4 units

Construction : 2020-2021

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  • Capacity: 24 MW
  • Installation site: Occitanie (France)
  • Water depth: 55 metres

Ideol floating wind farm

Pre-commercial & commercial-scale projects

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  • Capacity: Multi-GW
  • Installation site: Across the globe
  • Water depth: 50 to 100 meters

Floating the future

Leadfloat

LEADING THE FLOATING WIND MARKET DEVELOPMENT Explore

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Floatgen floating wind

Ideol and Kerogen Capital Collaborate to Jointly Assess Offshore Wind Power to Oil & Gas Platform Opportunities

Ideol SA (“Ideol”) is pleased to announce that it has entered into a Memorandum of Understanding with Kerogen Capital (“Kerogen”), a private equity fund manager specialising in the international oil & gas sector to assess the benefits of using offshore wind to power oil & gas platforms.

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floating offshore wind

Record monthly production for Floatgen in February

Confirming the outstanding production and availability numbers recorded throughout 2019, the 2 MW Floatgen floating offshore wind turbine, equipped with Ideol’s patented floating foundation and installed on the Sem-Rev test site (Atlantic Coast of France), achieved a new record monthly production in February.

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Ideol floating wind

Ideol is part of VAMOS/FLOATEOLE, launched to further reduce the cost of floating offshore wind

A good understanding of floating offshore wind turbines is essential to decrease the uncertainties and risks – and thus the costs – of this very promising technology. The project “Validation, Measurement and Optimization of Floating Wind Energy” (VAMOS) addresses this challenge with a large-scale measurement campaign and a validation study. The knowledge gained will be used directly for the design of an improved turbine controller to enhance the dynamic behavior and reduce loads. In the long term, this will allow for lighter weight and cheaper turbine designs.

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