K Pender, K Bacharoudis, F Romoli, P Greaves… - Sustainability, 2024 - mdpi.com
There are two key areas of development across wind turbine blade lifecycles with the potential to reduce the impact of wind energy generation:(1) deploying lower-impact …
S Scott, P Greaves, T Macquart… - Journal of Physics …, 2022 - iopscience.iop.org
Reference wind turbine models are crucial for enabling the research community to advance technology and meet the challenges associated with upscaling. The IEA 15 MW is one such …
This paper presents, through the structural design of a 20 MW wind turbine blade, a selection of novel analysis and optimisation methods for wind turbines. These methods are …
The design of morphing structures requires attaining concurrently light-weight, load-carrying and shape adaptable systems that minimize complexity, actuation requirements and part …
TR Wainwright, DJ Poole, CB Allen, J Appa… - AIAA Scitech 2021 …, 2021 - arc.aiaa.org
View Video Presentation: https://doi. org/10.2514/6.2021-0950. vid Acoupled, high-fidelity simulation framework on GPUs is presented, and is used to perform an aero-structural …
View Video Presentation: https://doi. org/10.2514/6.2021-1412. vid This paper presents the results from the first IEA Wind Task 37 aerodynamic optimization case study. 8 participants …
Wind energy is a vital resource for meeting international climate change targets. A key industry challenge is integrating wind power plants within the electrical grid, especially as …
CURRENT aircraft wings and wind turbine blades are lighter, slender, and more flexible than their predecessors. Due to the increasing slenderness and compliance, wings and …
The development of software and methodologies able to efficiently and accurately predict the aeroelastic performance of wind turbines at low computational cost—enabling the rapid …