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carbon emissions reduction targets set out by the UK- and Irish governments up to 2050, Floating Offshore Wind energy will likely play a significant role. Construction of concrete floaters is attractive
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. The proposed scale of offshore development poses a significant threat to the marine environment in the form of physical disturbance. This has the potential to alter the structure and function of seabed
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, meteorological and physical conditions they operate under. Such data can inform structural health monitoring for offshore wind turbines or help plan new offshore sites, via estimation of power yield in relation
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Mathematics & Statistics Project description This project aims to advance sea-surface parameterisations of atmospheric offshore wind farm wakes for use in oceanographic models. Delivering a functional
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& Environmental Science Mathematics & Statistics Project description Offshore wind is a core component of global solutions to net-zero. The increasing demand for renewable energy is driving the installation
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Enquiries email: S.Rasciute@lboro.ac.uk Funding for: UK students Subject areas Economics Physical & Environmental Sciences Project description Offshore wind farms are a key driver in the transition to clean
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corrosive environmental conditions, corrosion is the main root cause of offshore structure failure. The cost of corrosion repair can reach £1k/m2 depending on the distance from shore and water depth. The
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students Subject areas Computer Sciences Engineering Mathematics & Statistics Physics & Astronomy Project description Inspections of offshore wind turbines, such as identifying damage or ice on turbine
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to uneven settlement, which poses risks to the integrity of offshore structures. Therefore, this project aims to investigate the settlement mechanisms of calcareous sand foundations, focusing on how
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offshore renewable energy sources. As part of this vision, ambitious targets aim for 50GW offshore wind capacity by 2030, with 5GW from floating offshore wind (FOW). However, a critical challenge lies in