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Field
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to extend the operational lifespan and reduce the overall weight of wind turbines. By innovating ways to lower mechanical loads on critical components and optimizing material usage, we aim to pave the way
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the operational lifespan and reduce the overall weight of wind turbines. By innovating ways to lower mechanical loads on critical components and optimizing material usage, we aim to pave the way for a truly
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. The position will encompass the ethnographic study of wind energy infrastructure development in Norway. The postdoc is part of the Sapere Aude research project Tensions in Arctic Infrastructures (in short
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31 May 2026 through the provided button, which should include: transcript of your MSc course grades – executive summary of your PhD thesis and DOI CV, including publication list motivation letter
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testing methodologies for physical modelling of deep-water offshore wind turbines. You should hold a relevant PhD (or be near completion) and have a strong publication history. A strong background in
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-called switchbacks (SBs), in the solar wind. Because of their ubiquity in the inner heliosphere, and relative absence close to the Earth orbit and beyond, SBs are considered as a key ingredient to
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Key takeaways Rain erosion of wind turbine blades is one of the main causes for maintenance of (offshore) wind turbines. In order to increase lifetimes, leading edge coatings are developed
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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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education. DTU Wind and Energy Systems has approximately 90 PhD students. The department's cross-disciplinary research is organized through strategic research programmes that collaborate with Danish and