A new multi-physics simulation tool – FRENETIC (Fast REactor NEutronics/Thermal-hydraulICs) – is presented for the quasi-3D analysis of a lead-cooled fast reactor core with the hexagonal fuel element configuration, as currently proposed within the framework of the European project LEADER. The tool implements coupled neutronic (NE) and thermal-hydraulic (TH) models. In the NE module, a 2D + 1D full-core multi-group diffusion solver has been developed based on a coarse-mesh nodal scheme and adapted to cope with the hexagonal geometry. In the TH module, the hexagonal elements, described by 1D (axial) transient advection and conduction in the coolant coupled to conduction in the fuel pins, are thermally coupled to each other in the transverse d...
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 multi-physics simulation tool - FRENETIC (Fast REactor NEutronics/Thermal-hydraulICs) - is pre...
Generation IV reactors, including lead-cooled fast systems, are characterized by physical features t...
During the last decade the European activities in the field of nuclear fission research include the ...
Both nuclear fusion and fission devices have to face the issue of the cooling of some critical compo...
The development of an innovative coupled neutronic/thermo-hydraulic tool is reported hereafter. The ...
In this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at the pin ce...
Both nuclear fusion and fission devices have to face the issue of the cooling of some critical compo...
This paper investigates the feasibility of developing a fine mesh coupled neutronic/thermal–hydrauli...
This paper presents the first qualification of the thermal-hydraulic module of the recently develope...
AbstractIn this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at th...
This report deals with the demonstration of an innovative coupled neutronic/themo-hydraulic tool, fo...
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 multi-physics simulation tool - FRENETIC (Fast REactor NEutronics/Thermal-hydraulICs) - is pre...
Generation IV reactors, including lead-cooled fast systems, are characterized by physical features t...
During the last decade the European activities in the field of nuclear fission research include the ...
Both nuclear fusion and fission devices have to face the issue of the cooling of some critical compo...
The development of an innovative coupled neutronic/thermo-hydraulic tool is reported hereafter. The ...
In this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at the pin ce...
Both nuclear fusion and fission devices have to face the issue of the cooling of some critical compo...
This paper investigates the feasibility of developing a fine mesh coupled neutronic/thermal–hydrauli...
This paper presents the first qualification of the thermal-hydraulic module of the recently develope...
AbstractIn this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at th...
This report deals with the demonstration of an innovative coupled neutronic/themo-hydraulic tool, fo...
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...