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-25-0092
Thesis topic details
Category
Technological challenges
Thesis topics
Understanding and Modeling Laser Cutting Mechanisms for Dismantling
Contract
Thèse
Job description
For over 30 years, the Assembly Technologies Laboratory (LTA) at CEA Saclay has been conducting research to develop innovative tools for the dismantling of nuclear facilities, by designing laser cutting processes to work in hostile environments. This technology is suitable to cut thick materials, either in air or underwater, and has proven particularly effective for dismantling operations due to its precision and ability to limit aerosol generation. Today, this technology is considered safe and reliable, thanks to the efforts achieved through the European project 'LD-SAFE'.
However, technical challenges remain, particularly the management of residual laser energy, which, by propagating beyond the cut piece, can damage surrounding structures.
Initial studies, including a PhD thesis, have made it possible to develop numerical models to predict and control this energy, yielding significant advancements. Nevertheless, technological challenges remain, such as handling thicker materials (>10 mm), cutting multi-plate configurations, and considering the addition of oxygen to improve cutting efficiency.
The objective of the PhD is to address these challenges and to gain a better understanding of the laser cutting process and the propagation of residual laser energy. The doctoral student will refine the numerical model to predict its impact on background structures, particularly for thick materials and multi-plate configurations. The work will include the development of a multiphysics model, validated by experiments, with a particular focus on the effect of oxygen, the creation of simplified models, and adaptation for use by operators.
The PhD will be conducted in collaboration between the Assembly Technologies Laboratory (LTA) at CEA Saclay and the Dupuy de Lôme Research Institute (IRDL - UMR CNRS 6027) at the University of South Brittany (Lorient).
University / doctoral school
SCIENCES DE L'INGENIERIE ET DES SYSTEMES (SIS)
Bretagne-Sud
Thesis topic location
Site
Saclay
Requester
Position start date
01/10/2025
Person to be contacted by the applicant
DOYEN Ioana
ioana.doyen@cea.fr
CEA
DES/DRMP//LTA
DES/ISAS/DRMP/SRMA/LTA
CEA/Saclay | Bât. 611 | 91191 Gif-Sur-Yvette Cedex France
0169088634
Tutor / Responsible thesis director
COURTOIS Mickael
mickael.courtois@univ-ubs.fr
Université Bretagne Sud
IRDL - UMR CNRS 6027
Centre de Recherche C. Huygens
Rue de Saint Maudé - BP 92116
F-56321 Lorient Cedex
+33 (0)6 23 50 77 28
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