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Multiphysical modeling of a dual-frequency induction-heated metallothermic reactor


Thesis topic details

General information

Organisation

The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.

Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.

The CEA is established in ten centers spread throughout France
  

Reference

SL-DES-25-0049  

Thesis topic details

Category

Technological challenges

Thesis topics

Multiphysical modeling of a dual-frequency induction-heated metallothermic reactor

Contract

Thèse

Job description

The recycling of uranium extracted from spent fuel (reprocessed uranium or URT) is of major strategic interest as regards both closure and economics of the cycle as well as for national sovereignty. France has initiated the development of a reprocessing route for this URT, involving an entire production chain relying on SILVA laser enrichment technology.
In this context, the CEA is in charge of developing all the processes in this chain, in particular the steps involved in the conversion of uranium oxide into uranium metal required for laser enrichment. For this purpose, the “Laboratoire d'étude des technologies Numériques et des Procédés Avancés” (LNPA) is studying the transposition of the historical metallothermy process to a cold crucible type reactor. This dual-frequency inductive furnace is designed to melt a two-phase charge consisting of a fluorinated slag and a metal produced in situ by the metallothermic reaction.
Alongside a multi-year technology development program on reduced-scale inactive pilot plants, numerical modeling studies of the reactor are undertaken in order to consolidate the change in working scale and enable system parameters to be optimized before deployment of the technology in active operation on depleted uranium for validation tests. The aim of the proposed thesis work is to develop the magneto-thermo-hydraulic (MTH) multiphysical model of the cold crucible metallothermic furnace.

University / doctoral school

Ingénierie - Matériaux - Environnement - Energétique - Procédés - Production (IMEP2)
Grenoble INP

Thesis topic location

Site

Marcoule

Requester

Position start date

01/09/2025

Person to be contacted by the applicant

QUINTAS ARNAUD arnaud.quintas@cea.fr
CEA
DES/DE2D//LPTI
DES/ISEC/DPME/SEIP/LNPA
Centre de Marcoule - Bât. 208
BP17171 - 30207 Bagnols sur Cèze
04 66 39 74 88

Tutor / Responsible thesis director

BUDENKOVA Olga olga.budenkova@simap.grenoble-inp.fr
Simap
EPM
1130, rue de la piscine
Domaine universitaire
38402 Saint-Martin d'Hères
04 76 82 65 17

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