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-timescale optimization, and integrated Power-to-X systems. You will drive the development of system-level digital-twin and optimization methodologies, integrating electrolyzer models with renewable generation
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or energy-efficient mission execution. Similarly, advanced control algorithms depend on reliable sensor integration and accurate dynamic models of the vehicle and propulsion system. The PhD project will
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hydrological or groundwater-related modelling, and you are comfortable working with numerical models of flow and transport, preferably including processes in the unsaturated zone. You have some experience with
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loading, wave–current environments (e.g., wave kinematics, high-order wave theories), and vortex-induced vibration would be highly regarded. Familiarity with contact modelling and structural degradation
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and contribute to solutions for increased public health and implementation of new health knowledge and technologies. Currently, our department has approximately 280 employees, 100 Ph.D.-students
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) is widely used to support decision-making in the sector, most current approaches rely on relative comparisons and do not adequately reflect absolute environmental limits, such as planetary boundaries
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has more than 600 students in its BSc and MSc programs, which are based on AAU's problem-based learning model. The department leverages its unique research infrastructure and lab facilities to conduct