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Field
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structural health monitoring of structures immersed in heavy fluids, by continuing to develop the “Modal Strain Energy” and “Matched Field Processing” methods for detecting and locating a potential defect in
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flow, and a theoretical/numerical part on “fluid mechanics” focusing on transport by complex flows (e.g., turbulent flows). Depending on the profile of the person recruited, their activities will
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) benefiting from the exceptional network of academics at the University of Oxford, including the Oxford Volcanology group. About you You will hold or be close to the completion of, a relevant PhD/DPhil
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Department (DRIS), you will participate in research activities on the optimization of non-Newtonian fluid injection for the decontamination of polluted soils. Tests will be conducted, in 1D columns, in 2D
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developing the technical basis for the first fusion nuclear facility and the position will involve several disciplines, with an intended focus on design, analysis, and optimization of fluid flows in tritium
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to manage research projects and to acquisition of national and EU funding. Qualifications As a formal qualification, you must hold a PhD degree (or equivalent). Specifically, a PhD in Energy Engineering
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on their thermophysical properties and compatibility with heat transfer fluids. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen
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work on include: Lead the design and synthesis of novel materials suitable for thermal energy storage systems, focusing on their thermophysical properties and compatibility with heat transfer fluids
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Your Job: Development and optimization of high-temperature heat pipes for fusion applications Numerical simulations of heat transfer and fluid dynamics in heat pipes using COMSOL, ANSYS, or similar
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Description of the workplace Lund University, Department of Energy Sciences is a leading center for research in energy, fluid mechanics, and sustainability. The Division of Fluid Mechanics within