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the atmosphere, and the interactions between wind farms. This project represents an opportunity for us to advance our collective knowledge of fluid and atmospheric dynamics relevant to wind energy. Join us in
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to push the boundaries of fundamental fluid and atmospheric dynamics, enhance wind farm efficiency, and deepen our understanding of their interaction with the atmosphere. Join us in pushing the boundaries
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industrial innovators and will provide a dynamic and stimulating environment for your development as a research scientist. As part of the PhD program, you would have the opportunity to receive further
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, mechatronics, engineering physics, applied or computational mechanics, or related disciplines. Prior experience on working with dedicated seakeeping (e.g.HyrdoMax), computational fluid dynamics (e.g. StarCCM