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degradation rates of synthetic micropollutants. The research programme to be completed in this project will be undertaken as part of the EPSRC Centre for Doctoral Training in Water Infrastructure and Resilience
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newly developed atmospheric pressure plasma rig to polymerise different chemistries and coat non-metallic surfaces with a variety of enhancement materials (i.e. PTFE, EPDM, nitriles, etc). The student
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capture technologies. In this project, you will: Develop a 3D Digital Model: Create an advanced computational model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas
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Heffernan Application Deadline: Applications accepted all year round Details The EPSRC National Epitaxy Facility has a funded PhD studentship available for research and development in the epitaxy
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the Future of Clean Energy: Develop next-generation mechanical seals for high-pressure hydrogen systems—key to the renewable energy revolution. Work with Industry Leaders: Collaborate with John Crane, a
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and heat transfer in geothermal systems under high-pressure and high-temperature conditions relevant to AGS. • Developing high-fidelity direct numerical simulation (DNS) models to map
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at the forefront of novel healthcare technology, contributing to a balanced future. World-class environment: Develop your research expertise in a world-class research group. Interdisciplinary experience: Gain
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wells under high-pressure and high-temperature conditions relevant to AGS. • Developing high-fidelity direct numerical simulation (DNS) models to map flow regimes and explore buoyancy-driven flow