Engineered Textile Blade with Actively Controlled surface/profile
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Description
This project seeks to develop, test and verify in simulated environments a prototype of the innovative ACT
Blade. It follows on from an Early Stage Catalyst project that successfully validated the potential energy
production gains (+9.7%) in wind power generation and the reduction in the levelised cost of energy (-8.7%)
associated with the innovative blade design.
SMAR Azure owns the full intellectual property; a patent application has been filed (Application No. 1518041.7)
covering the design and construction method of the ACT Blade. A further patent will be filed to cover the active
shape control system before completion of the project.
The project team, SMAR Azure (SA), ORE Catapult (CA) and University of Glasgow (UG), has the technical skills,
engineering/experimental tools, commercial expertise and management experience to successfully deliver the
project.
ACT BLADE LIMITED | LEAD_ORG |
ACT BLADE LIMITED | PARTICIPANT_ORG |
SMAR-AZURE LIMITED | PARTICIPANT_ORG |
UNIVERSITY OF GLASGOW | PARTICIPANT_ORG |
OFFSHORE RENEWABLE ENERGY CATAPULT | PARTICIPANT_ORG |
UNIVERSITY OF GLASGOW | PARTICIPANT_ORG |
Sabrina Malpede | PM_PER |
Subjects by relevance
- Projects
- Patents
- Innovations
- Simulation
Extracted key phrases
- Textile Blade
- Early stage Catalyst project
- ACT Blade
- Project team
- Shape control system
- Innovative blade design
- Innovative ACT
- Profile
- Surface
- Patent application
- Potential energy
- Wind power generation
- Simulated environment
- Experimental tool
- Commercial expertise