Rain erosion-resistant coatings for wind turbine blades: A review

Author:

Dashtkar Arash1,Hadavinia Homayoun1,Sahinkaya M Necip1,Williams Neil A2,Vahid Samireh1,Ismail Fanya3,Turner Matthew4

Affiliation:

1. School of Engineering & Environment, Kingston University London, London, UK

2. School of Life Sciences, Pharmacy and Chemistry, Kingston University London, London, UK

3. LYN Coatings Ltd, Gillingham, UK

4. Haydale Composite Solutions Ltd, Leicestershire, UK

Abstract

Wind blades are the most expensive parts of wind turbines made from fibre-reinforced polymer composites. The blades play a critical role on the energy production, but they are prone to damage like any other composite components. Leading edge (LE) erosion of the wind turbine blades is one of the common damages, causing a reduction in the annual energy production especially in offshore wind turbine farms. This erosion can be caused by rain, sand and flying solid particles. Coating the blade against erosion using appropriate materials can drastically reduce these losses and hence is of great interest. The sol–gel technique is a convenient method to manufacture thin film coatings, which can protect the blades against the rain erosion, while having negligible effect on the weight of the blades. This article provides an extensive review of the liquid erosion mechanism, water erosion testing procedures and the contributing factors to the erosion of the LE of wind turbine blades. Techniques for improving the erosion resistance of the LE using carbon nanotubes and graphene nano-additives are also discussed.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Ceramics and Composites

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