Alessia Pucciarini
Feasibility Study of LS-DYNA for FSI Analysis: Integration into the FRM II Fuel Conversion Programme Workflow.
Rel. Roberto Bonifetto. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Energetica E Nucleare, 2026
Abstract
The conversion of research reactor fuel from highly enriched uranium (HEU) to low enriched uranium (LEU) is a global nonproliferation objective coordinated by the IAEA and the U.S. Department of Energy. The Forschungs-Neutronenquelle Heinz Maier-Leibnitz (FRM II) is among the reactors pursuing this transition, which requires a redesigned core geometry and a comprehensive reassessment of its neutronic, thermal-hydraulic, and thermomechanical behaviour. In this context, accurate prediction of the structural response of the fuel plates under nominal and accidental conditions is essential. This thesis investigates the integration of LS-DYNA into an existing one-way Fluid–Structure Interaction (FSI) workflow, extending its use to both implicit quasi-static and explicit transient structural analysis.
Thermal-hydraulic pressure and temperature fields of the current HEU core (from Ansys CFX) are applied as boundary conditions
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