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We have 31 Energy Technologies (numerical) PhD Projects, Programmes & Scholarships

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Energy Technologies (numerical) PhD Projects, Programmes & Scholarships

We have 31 Energy Technologies (numerical) PhD Projects, Programmes & Scholarships

Numerical models for a new combustion era

Hydrogen will be, among the synthetic fuels, the preferable energy carrier able to address the spatial and temporal separation between energy production (renewable source) and consumption. Read more
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Numerical modelling of multiphase flow and reactive transport in porous materials

Understanding reactive transport in porous materials is of utmost importance for a wide range of engineering applications, including subsurface energy storage, low-carbon building materials and fuel cells. Read more

Development of ignition systems for energy systems

There have been consistent efforts in developing more fast and efficient combustion. Microwave discharges are widely used for plasma-assisted ignition of air/fuel mixtures. Read more

Droplet Impacts with Functional Surfaces

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

Electromagnetic control schemes for the enhancement of plasma-driven water electrolysis

The University of Aberdeen is an internationally recognised centre for excellence for research addressing the global challenges of energy transition, environment and biodiversity, social inclusion and cultural diversity, health, nutrition and wellbeing, and data and artificial intelligence. Read more

Propagation of RF/microwave signals in plasma

The project will contribute to a major Ministry of Defence (MoD) research programme intended to develop generation after next technologies for applications in defence and security. Read more

Modelling of microbial induced hydrogen loss for underground hydrogen storage

Hydrogen is identified to play a key role in the UK’s goal of achieving net zero emissions by 2050. To meet this target, the UK needs hydrogen storage capacity of at least 15 TWh (~ 450k tonnes) meet short-term and seasonal supply and demand variability. Read more

Sideband Suppression on High Power Microwave Antenna

The project will contribute to a major Ministry of Defence (MoD) research programme intended to develop generation after next technologies for applications in defence and security, and this project will be co-funded by Teledyne e2v. Read more

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