[HTML][HTML] Numerical modelling, manufacture and structural testing of a full-scale 1 MW tidal turbine blade

W Finnegan, Y Jiang, P Meier, E Fagan, F Wallace… - Ocean …, 2022 - Elsevier
Renewable energy is now accepted as the preferred alternative for electricity generation
and as the replacement for fossil fuels. In recent years, tidal energy has shown promise as it …

Manufacture of high-performance tidal turbine blades using advanced composite manufacturing technologies

W Finnegan, R Allen, C Glennon, J Maguire… - Applied Composite …, 2021 - Springer
After wind and solar energy, tidal energy presents the most prominent opportunity for
generating energy from renewable sources. However, due to the harsh environment that …

Fatigue life analysis of hybrid E-glass/carbon fibre powder epoxy materials for wind turbine blades

EJ Pappa, JJ Murray, M Walls, P Alam… - 18th European …, 2019 - research.ed.ac.uk
Email: e. pappa@ ed. ac. uk, Web Page: www. eng. ed. ac. uk 2ÉireComposites Teo, An
Choill Rua, Indreabhán Co. Galway H91Y923 Ireland Email: a. doyle@ eirecomposites …

[PDF][PDF] EXPERIMENTAL VALIDATION OF PROCESS SIMULATIONS FOR VACUUM-BAG-ONLY PREPREGS IN THICK-SECTION STRUCTURES

J Maguire, K Nayak, C Glennon, C Robert… - researchgate.net
Manufacturing thick-section structures from thermoset-based composites can be challenging
due to the exothermic curing reaction. With a low thermal conductivity through the thickness …

[引用][C] Fatigue Analysis of Hybrid E-glass/Carbon Fibre Powder Epoxy Materials for Wind Turbine Blades

E Pappa, J Murray, M Walls, P Alam, T Flanagan…