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activities carried out in the Hydrodynamical Laboratory at the Department of Mathematics. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/294736/phd-research-fellow-in
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method. For access to experimental data to validate mathematical models for wave motion, it will be natural to interact with ongoing experimental activities carried out in the Hydrodynamical Laboratory
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; Ultrafast Dynamics , Condensed Matter Theory , Cosmology , Crystallography , Dark Matter , Data analysis , EIC , Electron Hydrodynamics , electron-positron collisions , electron-proton collisions , Electronic
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., Pettersson, H., Behrens, A., Männik A., 2018. Comparing a 41-year model hindcast with decades of wave measurements from the Baltic Sea. Ocean Engineering, 152, 57–71. https://doi.org/10.1016/j.oceaneng
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in a wave tank under regular and irregular waves. Develop and document high-fidelity numerical models (e.g., coupled hydrodynamic–structural models and/or FEM workflows). Develop and validate
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to work on vegetation–wave interactions. Prior knowledge of mangrove or wetland ecology, hydrodynamics, or sediment processes is beneficial but not required. Experience or clear interest in experimental
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project deliverables are met. Undertake these responsibilities in the project: 1. Wave Stochastic Analysis and Hydrodynamics Conduct advanced stochastic analysis of wave environments to evaluate
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friction. Coastal Engineering, 53(2), 149–165. https://doi.org/10.1016/j.coastaleng.2005.10.005 Dean, R. G., & Walton, T. L. (2010). Wave setup. In Y. C. Kim (Ed.), Handbook of Coastal and Ocean Engineering
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team members to ensure all project deliverables are met. Undertake these responsibilities in the project: Resistance Analysis: Conduct simulations to analyze wave interactions, buoyancy, and stability