Among the six advanced reactor systems identified by the Generation IV International Forum, the lead fast reactor (LFR) has been considered as one of the most promising future nuclear power plants. Among the LFR designs, Ansaldo Nucleare, as coordinator of the Lead-cooled European Advanced DEmonstration Reactor project, proposes Advanced Lead Fast Reactor European Demonstrator (ALFRED) as LFR demonstrator, which is the study object of the present paper. A multiphysics model for the ALFRED core is developed and presented in this paper, which couples neutronics and thermal hydraulics. The first physics is solved with neutron transport Monte Carlo simulations, while temperatures and the lead density are updated with coarse-mesh-based finite vo...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
The LEADER project goal is to improve and develop a scaled demonstrator of the LFR technology, ALFRE...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
The LEADER project goal is to improve and develop a scaled demonstrator of the LFR technology, ALFRE...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Among the six advanced reactor systems identified by the Generation IV International Forum, the lead...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
Lead Fast Reactor (LFR) is considered as one of the most promising future nuclear power plants in th...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
A new method of Serpent–OpenFOAM coupling is developed as a multi-physics model for Advanced Lead Fa...
The LEADER project goal is to improve and develop a scaled demonstrator of the LFR technology, ALFRE...