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model to describe intra-wave cross-shore sand transport and morphodynamics (e.g. OpenFoam). The model will be validated using lab and field data. Finally, the research model will be used to inform
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simulation platform OpenFOAM. The main supervisor of the candidate will be Prof. Ann Mari Svensson (IMA), NTNU. Co-supervisors will be Senior researcher Kristian E. Einarsrud (SINTEF) and Researcher Kurian J
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, or OpenFOAM). You must have a two-year master's degree (120 ECTS points) or a similar degree with an academic level equivalent to a two-year master's degree. Approval and Enrolment The scholarship for the PhD
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Physical Sciences or a related discipline, with expertise in fluid mechanics and heat transfer. Experience with Computational Fluid Dynamics software, preferably OpenFOAM. Programming skills with software
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in the use of Fluent and openFoam software (punctuation: 35) Item 04: Personal interview (punctuation: 15) Additional Information Benefits 1600 € (including the apportionments of extra payments
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methods. Familiarity with open-source solvers such as OpenFOAM is desirable. The PhD student will interact with researchers in several laboratories: in Germany (Department of Mechanical Engineering, TU
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analysis using StarCCM+/OpenFoam, conduct the experimental test using our cavitation tunnel, the combined wind, wave and current tank and the research vessel, and develop a novel maritime system for clean
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COMSOL, Ansys Fluent, or OpenFOAM Excellent knowledge of thermodynamics, fluid mechanics, and heat & mass transfer Strong programming skills in Python, C++, or similar languages Familiarity with machine
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, process engineering, chemical engineering, energy technology, or a related field Proven expertise in modeling and simulation; familiarity with CFD tools such as COMSOL, Ansys Fluent, or OpenFOAM Excellent