| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 6758717 | Nuclear Engineering and Design | 2018 | 12 Pages | 
Abstract
												The tool is demonstrated to be able to predict the radial propagation of the molten zone in the fuel pin, the pin failure mechanism and void front propagation with a discrepancy of less than 10%. In the future, this physical tool, associated with a point kinetic neutronic model, will be used to simulate the global core behavior under an UTOP transient following a ramp excursion.
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											Authors
												K. Herbreteau, N. Marie, F. Bertrand, J-M. Seiler, P. Rubiolo, 
											