Skip to content
Prime Scholarship Alerts logo Prime Scholarship Alerts
Open menu
Swansea University logo
Open Studentship

PhD Studentship: Mechanical Engineering, Fusion, Digital: An AI Enhanced Modelling of Tokamak-type Fusion Power Generator

Swansea University

A fusion power plant is an exceptionally complex multidisciplinary system comprising highly coupled components and interacting physical processes, including magnets, breeder blankets, divertors, plasma systems, and structural materials. The underlying physics spans electromagnetics, thermo-mechanics, plasma dynamics, neutronics, material degradation, and heat transfer. In addition, the manufacturing, construction, and operational challenges associated with tokamak-based systems are substantial. For sustainable f...

Share this scholarship

A fusion power plant is an exceptionally complex multidisciplinary system comprising highly coupled components and interacting physical processes, including magnets, breeder blankets, divertors, plasma systems, and structural materials. The underlying physics spans electromagnetics, thermo-mechanics, plasma dynamics, neutronics, material degradation, and heat transfer. In addition, the manufacturing, construction, and operational challenges associated with tokamak-based systems are substantial. For sustainable f...

Opportunity details

A fusion power plant is an exceptionally complex multidisciplinary system comprising highly coupled components and interacting physical processes, including magnets, breeder blankets, divertors, plasma systems, and structural materials. The underlying physics spans electromagnetics, thermo-mechanics, plasma dynamics, neutronics, material degradation, and heat transfer. In addition, the manufacturing, construction, and operational challenges associated with tokamak-based systems are substantial. For sustainable fusion power generation, these tightly coupled systems must operate seamlessly, reliably, and predictably under extreme conditions. This represents not only a major design challenge but also a large-scale optimisation problem due to the strong interdependence between components, materials, and physical processes. At the current stage of fusion development, there is a pressing need for integrated whole-plant modelling frameworks capable of incorporating emerging experimental data, operational knowledge, and multiphysics interactions. This project will undertake a comprehensive systems-level analysis, starting with two interdependent disciplines, before adding additional disciplines. A hierarchy of computational approaches, including lumped-parameter, reduced-order, and high-fidelity multiphysics models, will be explored. Particular emphasis will be placed on uncovering the relationship between high- and low-fidelity models to uncover, for example, loss of accuracy, speed and/or robustness. Additionally, optimisation and uncertainty quantification techniques with the potential to be applied across the fidelity spectrum will be investigated. The project will also integrate state-of-the-art machine learning and AI methodologies to accelerate design optimisation, un...

Eligibility and requirements: Review the official provider page for the current applicant conditions and required documents.

Funding and benefits

Funding eligibility: UK Students. Funding amount: £21,805. Covers full tuition, £21,805 stipend (2026/27), plus up to £1,000 yearly for research costs.

How to apply

Applications may be submitted in Welsh and any application submitted in Welsh will be treated no less favourably than an application submitted in English.

Open the official application information

Verify the deadline and final conditions on the official provider page before submitting an application.

Host country/countriesUnited Kingdom
Eligible countries/nationalitiesUnited Kingdom
Study levelPhD / Doctorate
Field of studyEngineering, Physics
Funding typeFully funded
DeadlineSep 7, 2026
Academic year/intakeNot stated
Application feeCheck provider details.

Source and verification

Check the current official call before applying

This independent listing was last checked on September 1, 2026. We compare the named provider, deadline status, eligibility, funding claims and application destination where those details are available. The live provider page is the final authority.

Open source: www.jobs.ac.uk

Benefits

Funding eligibility: UK Students. Funding amount: £21,805. Covers full tuition, £21,805 stipend (2026/27), plus up to £1,000 yearly for research costs.

Eligibility summary

Not stated. Verify with the provider.

Requirements

Not stated. Verify with the provider.

Documents required

Not stated. Verify with the provider.

Language/test requirements

Check provider requirements for language or test requirements.

Listing-board disclaimer

Prime Scholarship Alerts is an independent listing board, not the scholarship provider, university or funder. We do not select applicants, collect provider application fees or guarantee an award. Verify requirements, deadlines, funding, fees and application instructions through the current provider page before applying.

Report suspicious scholarship

Similar scholarships

University of Technology Eindhoven, Nederl logo
Featured Deadline not specified

536 Doktorandtjänster at University of Technology Eindhoven, Nederl, United Kingdom

University of Technology Eindhoven, Nederl

Hitta lediga doktorandtjänster och forskarutbildningsplatser här. Du kan skapa en jobbevakning för att få information direkt när nya annonser dyker upp.

HostUnited Kingdom
EligibleAll nationalities
LevelPhD / Doctorate, Postdoctoral
DeadlineNo deadline specified
Fully funded Computer Science Artificial Intelligence Climate Change
Open notification options
Notifications

Choose browser push, email alerts, or both.

Browser push

Quick alerts when new scholarships are published.

Click enable, then allow notifications in your browser.

Email alerts

Get emails for new scholarships you want to follow.

Open detailed email filters