Offshore Energy
  • Fossil Energy
  • Subsea
  • Alternative Fuels
  • Hydrogen
  • Marine Energy
  • More news
JobsNewsletter
Offshore Energy logo
Topics
  • Fossil Energy
  • Subsea
  • Alternative Fuels
  • Hydrogen
  • Marine Energy
Network
  • Offshore Energy
  • Offshore Wind
  • NavalToday
  • Dredging Today
Company
  • Advertising
  • Newsletter
  • Jobs
  • Report your news
  • Privacy

© 2026 Navingo. All rights reserved.

Home›Marine Energy›Project dedicated to novel composite materials for tidal turbine blades backed with €500k
Marine Energy

April 11, 2024 · about 2 years ago

Project dedicated to novel composite materials for tidal turbine blades backed with €500k

The Sustainable Energy Authority of Ireland (SEAI) has allocated just under €500,000 in funding for a project that aims to generate test data on novel composite materials used in tidal turbine blades. The consortium behind the Detailed Material Performance Characterisation and Data Generation for Ti

2 minutes read
  • LinkedIn
  • X
  • Email
Project dedicated to novel composite materials for tidal turbine blades backed with €500k
Source: SEAI

The Sustainable Energy Authority of Ireland (SEAI) has allocated just under €500,000 in funding for a project that aims to generate test data on novel composite materials used in tidal turbine blades.

The consortium behind the De tail e d Material P erformance C haracterisation and Data Generation for Tidal Energy (DeepCData) project consists of Galway-based CTL Composites Testing Laboratory, the University of Galway and ORPC Ireland .

The funding was awarded under SEAI’s Research, Development and Demonstration program.

The project aims to generate comprehensive test data on novel composite materials for use in tidal turbine blades. The kick-off meeting was held in March, and the project expects to run for 24 months, until 2026.

The information compiled throughout the work is expected to lead to a number of developments in tidal energy: higher loadings will be uncovered for blades, which will increase energy capture; a deeper insight into material performance towards its end-of-life will feed into an improved design life for turbines; and a test campaign is planned to evaluate the use of more sustainable composite options in tidal technology.

Ultimately, an overall impact of the above benefits is a reduction in the cost of energy for European citizens, CTL said.

Earlier this year, the University of Galway completed testing of a next-generation marine hydrokinetic turbine foil for renewable energy said to have shown potential for a next-generation marine turbine.

The test foil was designed by ORPC and manufactured from a high-performance carbon fiber-reinforced polymer by ÉireComposites.

Reach the Offshore Energy industry in one go!

Offshore Energy is read by thousands of professionals every day.

Increase your visibility with banners, tell your story with a branded article, and showcase your expertise with a full-page company profile in our business directory.

CONTACT

Follow Offshore Energy on:

Filed under

Marine EnergyTidal & Wave EnergyBusiness & FinanceBusiness Developments & ProjectsInnovationOutlook & StrategyProject & TendersResearch & DevelopmentTransitionVision

Home of Energy Transition

Join thousands of industry professionals who start their day with our newsletter.

Trending Now

  1. 1SED Energy Holdings and Ventura Offshore to unite into one
  2. 2New Boskalis rock installation vessel starts work offshore Poland
  3. 321 companies apply for Norway’s new oil & gas exploration areas
  4. 4Spanish shipyard launches its largest-ever vessel, built for Østensjø Rederi

Home of Energy Transition

Join thousands of industry professionals who start their day with our newsletter.

Subscribe free