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for a two-year postdoc, ideally starting August 1st, 2026. The position will encompass the ethnographic study of wind energy infrastructure development in Norway. The postdoc is part of the Sapere Aude
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and tools such as ANSYS for electric motor design. You will do research on loss minimization of electric machine. You will do research on winding structure to reduce harmonics due to current in
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central to Denmark’s green energy strategy, enabling conversion of renewable energy – mainly from offshore wind – into green hydrogen for hard-to-electrify sectors. However, up to 40% of the input
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productivity and food web. The work will consider the impacts of stressors to marine systems, especially related to offshore wind farms, and how they propagate through and disrupt the food web. You will be a
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productivity and food web. The work will consider the impacts of stressors to marine systems, especially related to offshore wind farms, and how they propagate through and disrupt the food web. You will be a
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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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, the developed models will be deployed in realistic scenarios, including turbulent flows over complex terrain, within built environments, and in wind farms. The project integrates fundamental applied mathematics
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Ørsted’s initial discovery, magnets have become omni-present in our daily life, and they are essential in the green transition as the main components in wind turbines and electric motors in e.g. electric
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work on development of wave energy and offshore wind. Most of our research is focused around work in our wave flume and basin. Further description of the group may be found here: https://vbn.aau.dk/en
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, the developed models will be deployed in realistic scenarios, including turbulent flows over complex terrain, within built environments, and in wind farms. The project integrates fundamental applied mathematics