INTERNSHIP DETAILS

BNEN Design of a labyrinth seal to limit the free surface level difference in a Lead Fast Reactor

CompanySCK CEN
LocationBelgium
Work ModeOn Site
PostedSeptember 24, 2026
Internship Information
Core Responsibilities
The student will investigate and design a labyrinth seal to limit free surface level differences in a lead-cooled fast reactor. This involves conducting a literature review and performing thermal hydraulic and structural mechanical evaluations to ensure a safe and reliable design.
Internship Type
full time
Company Size
888
Visa Sponsorship
No
Language
English
Working Hours
40 hours
Apply Now →

You'll be redirected to
the company's application page

About The Company
Do not underestimate the power of atoms: nuclear applications can make a great difference for society both now and in the future. This is why as one of the biggest research centres in Belgium we continue to perform groundbreaking research. SCK CEN is a global leader in the field of nuclear research, services and education. With more than 900 employees, throughout all of our work, we are focusing on 6 research topics: • Health • Environment • Society • Materials • Technology • Safety These are our building blocks for developing innovative applications for society. In this way, we want to contribute to a world in which these and future generations can live safely and in good health.
About the Role

At SCK CEN, we currently design a lead cooled pool type fast test reactor called LEANDREA. This reactor will be the reactor to test the fuel assemblies and other components for the power LFR SMR EAGLES.

The pressure difference between plena in a pool type lead cooled reactor creates a separation between the free surface levels of the plena. The reactor core is responsible for the largest pressure drop in the coolant flow path. Typical pressure differences are in the order of 2 bar, which result in a separation of levels of about 2 meters.  This level difference compared to ‘no flow’ conditions adds up to the height of the reactor vessel.

The goal of this thesis is to investigate ways to avoid the free surface level separation by design in a lead cooled pool type reactor.  

The current LEANDREA design looks at an option to use a labyrinth or seal to create a significant pressure drop between the main vessel and the cylindrical diaphragm in combination with a back flow to limit the level separation and in such a way to reduce the height of the reactor vessel.

First a literature review should be performed to learn about experience in past reactor designs or in other industrial applications with similar challenges.

The student should analyze options based on thermal hydraulic evaluation and structural mechanical calculations to create a safe and reliable solution.

The final design proposal shall be compatible with the lead coolant, high temperature conditions and thermal gradients as also applicable to the large dimensions of the diameter of the reactor vessel.

Possible tools: CFD, Finite element simulations

Key Skills
Thermal hydraulic evaluationStructural mechanical calculationsCFDFinite element simulationsReactor designLead cooled fast reactor technologyLiterature reviewEngineering design
Categories
EngineeringScience & ResearchEnergy