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Integrating nature-based and engineered solutions for debris flow hazard mitigation School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Dr Alessandro Leonardi, Dr Elisabeth Bowman Application Deadline: Applications accepted all year round Details The...
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Rural, grid-independent vehicle charging microgrids. School of Electrical and Electronic Engineering PhD Research Project Directly Funded UK Students Prof David Stone Application Deadline: Applications accepted all year round Details The push towards net zero is leading to the increased...
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strategies to develop a new generation of digesters, which can perform a faster and more compact conversion of biowastes. There are different approaches that will need to be explored and evaluated, which may
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portion of the total emissions to the atmosphere. However, due to the ever increasing demand for electricity, coal will continue to play a key part in meeting this future demand. Therefore, developing
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valorisation, biogas upgrading to biomethane and reduced water use. This project will develop knowledge in the integration of these two technologies using a multi-disciplinary approach involving process
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This projects builds on another recent project to model human hand interactions with packaging. The use of finite element techniques will be used to further develop a human hand model with key features to show
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membranes for improved CCS applications. The developed pre-pilot membrane modules will be evaluated under a range of different industrially relevant conditions, with a number of different process relevant
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Method. The basic idea is that the direction into which stiffness recovery under compression takes place is altered for a crack that develops under compression. Only one layer of elements per ply might be
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of their high energy efficiency and low pollutant emission. However, fuel cell technology is still in its early stage of development. Many scientifically challenging problems have to be solved in order to make it
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of AD process kinetics, mass balance and operational strategies and links with industry through our collaborative work with micro-AD development sites in the UK. Funding Notes 1st or 2:1 degree in