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to a doctoral degree. The focus of this position is research on hydrodynamic loads and performance of tidal turbines under realistic flow and clearance conditions. Tidal-stream energy offers a
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12th October 2025 Languages English English English The Department of Marine Technology has a 3-year vacancy for a PhD Candidate in Marine Hydrodynamics Apply for this job See advertisement This is
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collaborative team engaged in a range of research projects in marine hydrodynamics, both computational and experimental. This is a fully on-site role, with work taking place in the office and laboratory. We
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This is NTNU NTNU is a broad-based university with a technical-scientific profile and a focus in professional education. The university is located in three cities with headquarters in Trondheim. At NTNU, 9,000 employees and 43,000 students work to create knowledge for a better world. You will...
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analysis framework that supports flood-resilient urban design by combining multi-sensor Earth observation (EO) data, hydrological–hydrodynamic models, urban digital twins, and advanced AI methodologies
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background. Knowledge of ship system and marine hydrodynamics is essential. Research field: Maritime studies Offered by: Estonian Maritime Academy DescriptionThe research Green technological solutions (e.g
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effects within the DG framework Hydrodynamic drag for discrete elements Irregular Bathymetry Modeling Develop seabed interaction capabilities: Contact detection algorithms for irregular seabed profiles
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understand the EUV-emitting plasma through radiation-hydrodynamics simulations Large amount of (image) data and a wide range of existing data analysis tools, allowing you to apply and develop your data
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support system of senior scientists, supporting their work. Your primary responsibilities will include: Apply and adapt a high-resolution coupled hydrodynamic (GETM) - biogeochemical (ERGOM) model to assess
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 24 days ago
in beach sediments as a function of overlying hydrodynamic and morphodynamic conditions. The work involves close collaboration with 12 other PhD projects. For further information, please visit: https