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generation and flow separation. Advanced computational fluid dynamics and structure analysis software will be employed with supplementary experimental investigations. Funding Notes 1st or 2:1 degree in
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aims to improve the current understanding of the oxyfuel combustion processes through performing detailed computational fluid dynamics modelling of the oxy-coal combustion and experimental investigations
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Ava Shahrokhi Application Deadline: Applications accepted all year round Details Computational Wind Engineering has been developing rapidly over the last couple of decades. Among the numerical
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Low cost, energy efficient biomethane production from landfill gas or biogas School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Prof Mohamed Pourkashanian, Prof W Nimmo, Prof Lin Ma Application Deadline: Applications accepted all year...
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High speed photography to investigate surface wear and fatigue in railway rail and wheel steels School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Prof D Fletcher Application Deadline: Applications accepted all year round Details A novel high speed photography...
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Fatigue and Fracture of Fibre Composites School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Dr C Pinna Application Deadline: Applications accepted all year round Details Aircraft manufacturers are now competing based on their aircraft’s fuel efficiency due to...
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Experimental and Modelling Study of Amine Degradation in the Post-Combustion CO2 Capture Process School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Prof Mohamed Pourkashanian, Prof Lin Ma, Dr Kevin Hughes Application Deadline: Applications accepted all year...
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to Computational Fluid Dynamics (CFD) for the prediction of ash deposition inside power plant equipment under bio-CCS conditions. Funding Notes 1st or 2:1 degree in Engineering, Materials Science, Physics, Chemistry
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the wind farm to reduce the turbine wake effects and maximize the wind farm power output. Advanced mathematical and computational fluid dynamics modeling techniques will be employed with supplementary
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of the aerodynamics of the turbine blades which have a significant impact on the efficiency of power generation, the level of noise produced and the durability of the wind turbine. Advanced computational fluid dynamics