The Institute for Neutron Physics and Reactor Technology (INR) at the Karlsruhe Institute of Technology (KIT) is investigating the application of the meso- and microscale analysis for the prediction of local safety parameters for light water reactors (LWR). By applying codes like CFD (computational fluid dynamics) and SP3 (simplified transport) reactor dynamics it is possible to describe the underlying phenomena in a more accurate manner than by the nodal/coarse 1D thermal hydraulic coupled codes. By coupling the transport (SP3) based neutron kinetics (NK) code DYN3D with NEPTUNE-CFD, within a parallel MPI-environment, the NHESDYN platform is created. The newly developed system will allow high fidelity simulations of LWR fuel assemblies and...
The development of a lead-cooled fast reactor (LFR) demonstrator was proposed, mainly in EU, to inve...
The Numerical Nuclear Reactor (NNR) was developed to provide a high-fidelity tool for light water r...
AbstractIn this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at th...
The Institute for Neutron Physics and Reactor Technology (INR) at the Karlsruhe Institute of Technol...
The Institute for Neutron Physics and Reactor Technology (INR) at the Karlsruhe Institute of Technol...
This dissertation contributes to the development of high-fidelity coupled neutron kinetic and therma...
Issues connected with the thermal-hydraulics and neutronics of nuclear plants still challenge the de...
Predictive modelling capabilities have long represented one of the pillars of reactor safety. In thi...
The development of an innovative coupled neutronic/thermo-hydraulic tool is reported hereafter. The ...
This thesis presents fine-mesh multiphysics methodologies and algorithms for <br />numerical predict...
The aim of this thesis is to develop and implement a code for solving the coupled multiphysics of PW...
[EN] A computational code system called Coupled Solver ANSYS CFX/PARCS (CSAP) based on coupling the...
The development of a three-dimensional coupled neutronics/thermalhydraulics code for LWR safety anal...
In this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at the pin ce...
International audienceMolten salt nuclear reactors (MSRs) constitute a promising technology to produ...
The development of a lead-cooled fast reactor (LFR) demonstrator was proposed, mainly in EU, to inve...
The Numerical Nuclear Reactor (NNR) was developed to provide a high-fidelity tool for light water r...
AbstractIn this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at th...
The Institute for Neutron Physics and Reactor Technology (INR) at the Karlsruhe Institute of Technol...
The Institute for Neutron Physics and Reactor Technology (INR) at the Karlsruhe Institute of Technol...
This dissertation contributes to the development of high-fidelity coupled neutron kinetic and therma...
Issues connected with the thermal-hydraulics and neutronics of nuclear plants still challenge the de...
Predictive modelling capabilities have long represented one of the pillars of reactor safety. In thi...
The development of an innovative coupled neutronic/thermo-hydraulic tool is reported hereafter. The ...
This thesis presents fine-mesh multiphysics methodologies and algorithms for <br />numerical predict...
The aim of this thesis is to develop and implement a code for solving the coupled multiphysics of PW...
[EN] A computational code system called Coupled Solver ANSYS CFX/PARCS (CSAP) based on coupling the...
The development of a three-dimensional coupled neutronics/thermalhydraulics code for LWR safety anal...
In this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at the pin ce...
International audienceMolten salt nuclear reactors (MSRs) constitute a promising technology to produ...
The development of a lead-cooled fast reactor (LFR) demonstrator was proposed, mainly in EU, to inve...
The Numerical Nuclear Reactor (NNR) was developed to provide a high-fidelity tool for light water r...
AbstractIn this paper we present a fine-mesh solver aimed at resolving in a coupled manner and at th...