Current research degree projects

Explore our current postgraduate research degree and PhD opportunities.
Explore our current postgraduate research degree and PhD opportunities.
You will develop a novel predictive model for the 'silent' installation of open-ended piles for offshore wind turbine foundations, through advanced physical and numerical modelling. You will improve the fundamental understanding of pile installation, while developing practical tools for the offshore industry, accelerating the path to a carbon-neutral world.
Are you interested in exploring cardiovascular biomechanics and machine learning in biomedical applications? Be part of a research that merges AI-based medical image processing and multiphysics cardiovascular modelling towards a better understanding of heart diseases and developing patient-specific treatment options.
This project will use computational modelling in combination with 3D multiscale multimodal imaging to improve our understanding of placental evolution, in close collaboration between Engineering and Medicine.
This PhD project explores an eco-friendly “flash carbide” coating for extreme wear environments in aircraft landing gear. Through advanced tribological testing and materials damage modeling, it will benchmark this new High Velocity Air Fuel-deposited coating against conventional High Velocity Oxy Fuel alternatives. The findings would benefit the aerospace industry with cost-effective, sustainable, and high-performance coating solutions.
Efficient anchor design methods are urgently needed for upscaling offshore renewable energy infrastructure and unlocking farm-scale floating wind developments. During this PhD project, you will learn about whole-life anchor design and seabed response, to then lead the way in developing these into new design approaches for anchoring systems.
This PhD project is about pushing the boundaries in manufacturing, and making lasers become autonomous decision-makers, guiding us into a future of faster, cleaner, and more precise production processes.
In this project you will explore novel wave energy harvesting systems for maritime robotic systems, such as Autonomous Surface and Underwater Vehicles (ASVs and AUVs).
In this project you will be working with a large research team in BOB体育登录网址_欧宝体育官网平台-APP|下载 and with our colleagues from the University of Texas, USA on heterogeneous integration of silicon photonics devices with barium titanate (BaTiO3 or BTO), a material that has one of the largest modulation effects, using mass manufacturable techniques and new design ideas.
In this PhD study you will develop and test novel Hardware in the loop (HIL) experimental methods to derive and evaluate the unsteady hydrodynamic characteristics and manoeuvres of smart ships and energy saving devices.
In this project you will be working on the design and fabrication of silicon photonics circuits that operate in the mid-infrared wavelength region where the drugs have distinct absorption fingerprints.