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(PBs) offer a promising alternative, reducing wave energy through dissipation and controlled overtopping, potentially mitigating flood risk while minimising environmental impact (Nimma & Srineash 2025
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for Technological Research (VITO), project coordinator, Flanders Marine Institute (VLIZ), the Environmental Toxicology Unit of the University of Ghent and the Ecosystem Management Research Group of the University
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, environmental, and system integration challenges. This PhD project aims to develop a robust, physics-based modelling framework tailored to offshore FPV systems, to help developers, investors, and policy-makers
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environmentally viable at scale. The project is part funded by MetZero and will involve close collaboration with them. Research Aims: Process Intensification & Scale-Up Design and evaluate scalable MEC
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pathways can be combined to make MECs economically and environmentally viable at scale. Research Aims: Process Intensification & Scale-Up Design and evaluate scalable MEC architectures (cassette and
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otherwise be lost to landfilling and incineration, which are resource-intensive and environmentally damaging end-of-life pathways. Where recycled fibres are used, they are often downcycled as fillers and low