1. Accueil
  2. EN
  3. Studying at ULB
  4. Find your course
  5. UE
PHYS-H528

Nuclear fuel cycles and reactor technologies

academic year
2025-2026

Course teacher(s)

Pierre-Etienne LABEAU (Coordinator), Arnaud MEERT and Matteo Zanetti

ECTS credits

5

Language(s) of instruction

english

Course content

The course aims at providing a full overview of the life-cycle of nuclear fuel, from its fabrication to its disposal, with two main focuses: the fuel-cycle approaches concerning resource utilisation and waste production and management - including the aspects of waste disposal -; and the behaviour of oxide fuel during irradiation with a particular attention on the physical phenomena involved.

Concerning the latter part, the physical phenomena that will be discussed concern oxide nuclear fuel either in the form of uranium oxide or mixed oxides. Some of these phenomena will be more or less evident depending on the type of reactor in which the fuel is irradiated; the link between these phenomena and the design choices for specific reactor technologies will be also considered.

The course can be schematically divided, trying to follow the historical moments in the fuel lifetime, as:

  1.  Introduction (fuel-cycle concepts; cycles based on uranium, and uranium-plutonium; the problems with radioactive waste)
  2. Uranium fuel cycle (resources; extraction and treatment; enrichment processes; oxide fuels and fuel fabrication process)
  3.  Irradiation in a nuclear reactor:
    1.  Macroscopic considerations (depletion and in-reactor management; residual heat and source term; thermal properties of Oxide Fuels and fuel thermal performance)
    2.  Microscopic Considerations – Evolution of the fuel Matrix (oxygen potential and stoichiometry; fuel restructuring; behaviour of solid and gaseous fission products; swelling; and fission gas release)
    3. Evolution of the fuel-cladding gap (thermal considerations; mechanical considerations; corrosion considerations)
    4. Evolution of fuel-cladding materials (typical materials; irradiation effects on the materials; Evolution of mechanical properties and state due to irradiation)
  4. Post-irradiation stage (Possible spent fuel management strategies: Fuel Cycle Back End; Reprocessing approaches)
  5.  Management of radioactive waste, with a focus on spent nuclear fuel (Inventory and classification of nuclear waste; treatment and conditioning; Management options and disposal concepts; Overview of repository designs; Assessment of the safety of geological disposal)
  6. Strategies for waste reduction (Considerations on plutonium recycling and thorium-uranium fuel cycle; Partition & Transmuting)

Objectives (and/or specific learning outcomes)

  • Understanding of the life-cycle of nuclear fuel and the processes involved
  • Understanding of the problematics concerning radioactive waste and possible solutions
  • Acquire the fundamentals and physical insights concerning the behaviour of nuclear fuel under irradiation and its performance

Prerequisites and Corequisites

Required and Corequired knowledge and skills

Bachelor in engineering + basics of nuclear reactor physics

Teaching methods and learning activities

Oral lectures, exercises.

The course will be complemented, in particular to strengthen the knowledge on the waste-related aspects, with field trips to Belgoprocess and the Euridice underground laboratory. The students will report in writing about these visits. This report will be part of the assessment.

References, bibliography, and recommended reading

See UV

Course notes

  • Université virtuelle

Contribution to the teaching profile

Contribution to a more sustainable application of nuclear reactor physics in the fuel cycle management and in future reactor designs.

Other information

Contacts

Pierre-Etienne LABEAU, pierre.etienne.labeau@ulb.be

Campus

Solbosch

Evaluation

Method(s) of evaluation

  • Oral examination

Oral examination

Mark calculation method (including weighting of intermediary marks)

75% for the oral exam, 25% for the reports on the technical visits

Language(s) of evaluation

  • english

Programmes