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of flexible trailing edge with both hydrodynamics and acoustics. The simulation results will be analyzed and compared with analytical models, and then inform a refined low-order taking flow-structure-acoustics
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may include site visits and data collection. Experience in numerical modelling, GIS, or hydrodynamics is desirable, but not essential and training will be provided. Prior research experience and
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the Baltic Sea over two climatic normals 1961–1990 and 1991–2020 using wave model SWAN forced with ERA5 wind data. The research The Baltic Sea wave climate is generally mild but exceedingly intermittent. Long
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. The research will combine hydrodynamical modelling of stellar winds and planet–wind interactions with radiative transfer and atmospheric chemistry, and will be closely connected to current and upcoming
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combining wave modelling, field observations, remote sensing, advanced mathematical methods and AI, the research will quantify spatial patterns of wave set-up, its statistical distributions and co-occurrence
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-level data, aerial imagery, and field measurements Sediment transport modeling; improvement of the sediment-transport model using field data Participation in regular fieldwork at chosen test sites
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the fields of nanoelectrochemistry, electrochemical imaging, kinetics and mechanisms, hydrodynamic techniques, spectroscopy, microscopy (AFM and STEM), programming, data analysis, and multiphysics modelling