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Field
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experimental techniques, especially laser diagnostics and combustion or fluid-flow experiments, would be highly relevant experience in designing novel burners and setting up complex experimental combustion rigs
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has the potential to provide a long-term, sustainable source of low-carbon heat. However, the long-term performance can depend on complex interactions between geology, fluid flow and water–rock
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complex interactions between geology, fluid flow and water–rock reactions. Changes in pressure, temperature and fluid chemistry during production and reinjection can promote mineral dissolution and
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. Fundamental understanding — Deepen the physical understanding of coupled mechanisms between flexible structures and complex flows, identifying key parameters governing aeroelastic stability, passive shape
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Are you excited about the future of wearable healthcare? Join us to merge microfluidics and contact lens technology, developing smart lenses that enable controlled tear fluid collection and analysis
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of particle transport and fluid–soil interaction in dikes. A key scientific challenge is to represent the complex interaction between soil particles and flowing water across different spatial and temporal
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Despite significant advances in numerical techniques and computing hardware, the high computational cost of large-scale 3D computational fluid dynamics (CFD) modelling remains a major challenge. A
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that may not fully reflect the complex flow conditions present in individual patients. This project aims to improve the assessment of aortic valve disease through the development of patient-specific
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numerical simulations of complex fluid flows. Direct interaction with industrial partners and the opportunity to translate fundamental physics into contamination-mitigation strategies. A highly
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skills Demonstrated self-motivation and creativity Preferred Qualifications: Extensive research experience in computational fluids, advanced grid generation and unstructured gridding of complex geometries