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cardiovascular digital twin. Of particular interest are methods that support the clinical decision-making process so that patient outcomes can be improved. In collaboration with clinicians, the new knowledge model
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PhD in Modifying Surfaces of Non-Metallics to Improve their Longevity or Functionality by Atmospheric Plasma Processing The Fusion Engineering Centre for Doctoral Training (CDT) PhD Research Project
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Programme: Hybrid CFD and process simulation for process intensification of post-combustion CO2 capture School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Prof
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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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process It is anticipated that the selection process will take place on 8th July. This will consist of an interview, test and tour. We plan to let candidates know if they have progressed to the selection
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contact Davide Costanzo, Professor of Particle Physics: on d.costanzo@sheffield.ac.uk Next steps in the recruitment process It is anticipated that the selection process will take place before 31th March
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the ability to sustain themselves at unpredictable conditions - that is, to autonomously prevent faults and restore lost function, and thus allow the machine’s continuing operation. In this project we will
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established wastewater treatment processes, which to a large extent rely on microbial activity within biofilms to biodegrade these pollutants. Biofilms are communities of microorganisms attached to each other
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programming and/or CFD are desirable but not essential. The student is expected to present their research outcomes to the project team/sponsors on a regular basis in both written and oral formats. How to apply
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engineering, physics, applied mathematics or a related field. A solid foundation in fluid dynamics and heat transfer, and experience with computer programming and/or CFD, preferably involving turbulent heat