This article presents a synthesis of the investigations at the atomic scale of the transport properties of defects and fission gases in uranium dioxide, as well as of the transfer of results from the atomic scale to models at the mesoscopic scale, performed during the F-BRIDGE European project (2008–2012). We first present the mesoscale models used to investigate uranium oxide fuel under irradiation, and in particular the cluster dynamics and kinetic Monte Carlo methods employed to model the behaviour of defects and fission gases in UO2, as well as the parameters of these models. Second, we describe briefly the atomic scale methods employed, i.e. electronic structure calculations and empirical potential methods. Then, we show the results of...
The models of the mechanistic code MFPR (Module for Fission Product Release) developed by IBRAE in c...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
Le dioxyde d'uranium UO2 est le combustible nucléaire standard des réacteurs à eau pressurisée. Dura...
This article presents a synthesis of the investigations at the atomic scale of the transport propert...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
Le dioxyde d'uranium (UO2) est le combustible nucléaire le plus largement répandu dans le monde pour...
The models of the mechanistic code MFPR (Module for Fission Product Release) developed by IBRAE in c...
The models of the mechanistic code MFPR (Module for Fission Product Release) developed by IBRAE in c...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
Le dioxyde d'uranium UO2 est le combustible nucléaire standard des réacteurs à eau pressurisée. Dura...
This article presents a synthesis of the investigations at the atomic scale of the transport propert...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceThis article presents a synthesis of the investigations at the atomic scale of...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
International audienceFuel behaviour under irradiation is extremely complex due to the combined effe...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
The models of the mechanistic code MFPR developed in collaboration between IBRAE (Moscow, Russia) an...
Le dioxyde d'uranium (UO2) est le combustible nucléaire le plus largement répandu dans le monde pour...
The models of the mechanistic code MFPR (Module for Fission Product Release) developed by IBRAE in c...
The models of the mechanistic code MFPR (Module for Fission Product Release) developed by IBRAE in c...
Fundamental understanding of the behaviour of nuclear fuel has been of great importance. Enhancing t...
Le dioxyde d'uranium UO2 est le combustible nucléaire standard des réacteurs à eau pressurisée. Dura...