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Increasing demand for sustainable energy production is leading to rising numbers of offshore structures for renewable energy production. At the same time, the demand for sustainable animal proteins from
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we may have the perfect opportunity for you! Scientific context Increasing demand for sustainable energy production is leading to rising numbers of offshore structures for renewable energy production
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possible if radical innovations are made in the way we develop and deploy offshore renewables: floating wind energy structures. The HybridLabs project aims to accelerate the deployment of offshore renewable
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– Improve offshore infrastructure resilience against geohazards towards a changing climate (www.poseidon-dn.eu ). The overarching objective of POSEIDON is to develop, solutions to improve the resilience
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Doctoral Network POSEIDON – Improve offshore infrastructure resilience against geohazards towards a changing climate (www.poseidon-dn.eu ). The overarching objective of POSEIDON is to develop, solutions
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Are you curious about the challenges of securing offshore floating wind turbines to the sea bed? We are seeking a PhD candidate for the research project TAILWIND-Sustainable station keeping systems
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funded Marie Curie Doctoral Network POSEIDON – Improve offshore infrastructure resilience against geohazards towards a changing climate (www.poseidon-dn.eu ). The overarching objective of POSEIDON is to
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interdisciplinary research, you will collaborate with fellow scientists in other sections and departments (railway, pavement, physics of structures, offshore engineering), as well as with leading industry partners
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metallic materials, and degrade their mechanical properties, leading to a pre-mature failure. To support the upcoming hydrogen economy, understanding the hydrogen embrittlement (HE) in structural metals is
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landslides . This project is part of the EU funded Marie Curie Doctoral Network POSEIDON – Improve offshore infrastructure resilience against geohazards towards a changing climate (www.poseidon-dn.eu