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In my research I look at different circularity scenarios such as lifetime extension, resource efficiency and re-purposing. We want to use of circular materials which enable modular design for wind turbine blades, and the most optimal and optimised manufacturing technologies for the different sections of the blades, including minimal waste. My research approach is based on both experimental data and predictive simulations (analytical, numerical and stochastic models) to fully understand the phenomena at play.
My current research portfolio is structured to realise this vision through four main topic areas:
Optimisation methodologies of the manufacturing process of composite parts.
Understanding of the intimate contact development in laser assisted, automated fibre placement of thermoplastic composites.
Understanding of interphase formation between thermoset-thermoplastic resins for advanced joining processes or toughening of resin systems.
Understanding of erosion behaviour of the leading edge of wind turbine blades.
研究兴趣
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RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2023): 113261
RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021): 110886
Volume 9: Ocean Renewable Energy (2021)
Materials (Basel, Switzerland)no. 21 (2021): 6620-6620
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