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Field
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objectives As offshore wind deployment expands farther from shore, HVDC transmission is increasingly used for efficient long-distance power transfer, where offshore corrective operations can be costly and
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of DAC facilities with existing gas infrastructure Feasibility of connecting Nybro to offshore CO2 storage The postdoc will collaborate with several involved industrial partners. The location at Nybro
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for predicting sand and particle transport struggle with the cross-shore processes (perpendicular to the beach), and they even have difficulties predicting the sign right (offshore transport vs. onshore transport
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tasks The position is based on strong collaboration with highly involved industrial partners and is offered in relation to the Offshore Renewable Energy Systems research group. The Postdoc will be
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modelling efforts carried out by two PhD researchers. The role includes substantial fieldwork: at least two month long campaigns and 1–3 maintenance visits over 18 months. Experience in (Southern) Africa is a
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to the Offshore Renewable Energy Systems research group. The Postdoc will be positioned in the Esbjerg Energy Section. Research areas will focus on AI-driven control systems, grid-forming inverter technologies, and
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otolith-based method and relate FMR to oceanographic and ecological conditions along north-south and fjord-offshore gradients in East Greenland. Experience with isotope analyses and arctic field work
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-dependent parameterizations of air–sea fluxes. Minimum Education and Experience Ph.D in a related field. Preferred Education and Experience PhD in Mechanical Engineering, Physical Oceanography, or related