NEWS: We are launching a participative financing campaign on the Wiseed platform!
We are making progress on the industrialization of the NH1 project, and to meet our objectives, we are organizing a fund-raising campaign, to be carried out in 12% convertible bonds, with a maturity of 18 months. If you would like to take part in this excellent project and don't want to miss this opportunity, click here: https://www.wiseed.com/projet/74991875
Tidal turbines project developer, NORMANDIE HYDROLIENNES aims to make affordable marine energy more accessible, efficient and sustainable, by exploiting a proven market-leading tidal turbine system.
By promoting the deployment of the tidal turbine industry, NORMANDIE HYDROLIENNES is not only contributing to the energy transition, but also to the country's economic growth and sustainable development.
Our commitment
Vision
Supply the world
of today and tomorrow with
clean, affordable and
sustainable energy.
Mission
Deploy marine turbines commercially to enrich the energy mix and contribute to the transition to a sustainable, carbon-neutral energy future.
Objective
To be the benchmark in tidal turbine development, by commercially developing an affordable tidal turbine industry with a proven, high-performance, innovative system.
Our exceptional NH1 project
Winner of the 'Programme d'Investissements d'avenir' in 2015, this project of common interest has now received all the necessary approvals. When the NH1 pilot farm of 4 tidal turbines with an installed capacity of 12 MW goes into service in 2028, it will supply 33.9 GWh of electricity to the French grid each year, meeting the needs of 15,000 inhabitants for 100% predictable, renewable electricity.
PROTEUS - AR3000 3 MW turbine
Our system leads the market in efficiency, innovation and competitiveness
The new AR3000 3MW turbine will be the world's most powerful and efficient in commercial operation, and the most cost-competitive in the tidal turbine market to date. Our system offers a solid blueprint for significantly reduced electricity costs for industrial-scale tidal turbine development.