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will consider the impacts of stressors to marine systems, such as climate change impacts, eutrophication, hypoxia, aquaculture, fishery, offshore platforms, invasive species and pollution and are often
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Technology, and the PhD student will be positioned in the Esbjerg Energy section. The position is part of the internally funded research project SURGE: Speed-optimized USVs for Robust Guidance and Offshore
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that advances the science of emerging threats to ocean ecosystems by integrating climate change research, offshore scientific expeditions, ecological observations, and high-resolution hydrodynamic and agent-based
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SPARK project, starting in September 2026 or soon hereafter. The 3-year project is funded by the EU’s Horizon Europe flagship programme to develop and pilot Stillstrom’s Offshore Power Zone infrastructure
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fluid processes, electrical engineering, power electronics, renewable-energy control, offshore energy systems, and Power-to-X. The research environment is being further strengthened through the C-TECH
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sustainable energy systems. At Campus Esbjerg, these include facilities for thermal and fluid processes, electrical engineering, power electronics, renewable-energy control, offshore energy systems, and Power