Fuel performance codes are an essential tool for ensuring the safe and economic opera-tion of nuclear reactors. Traditionally, these codes have been developed following a simple 1.5-D modelling approach, where the fuel behavior is simplified by assuming axisymmetric and plain strain conditions and where phenomenological correlations are largely privileged over the use of accurate physical and mathematical models. However, in recent decades the advent of modern high-performance computing has awakened a growing interest towards higher-fidelity tools with multi-dimensional and multi-physics capabilities. The main development efforts have been carried out employing the popular finite element method, while the alternative approach offered by the...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Advanced Multi-Physics (AMP) Nuclear Fuel Performance code (AMPFuel) is focused on predicting th...
The OpenFOAM Fuel BEhavior Analysis Tool, or OFFBEAT, is a multi-dimensional fuel performance code u...
In order to ensure the safe and economic operation of fuel rods, it is necessary to be able to predi...
The aim of this thesis is to develop and implement a code for solving the coupled multiphysics of PW...
Accurate evaluations of fuel behavior is a crucial part in the determination of fuel operation limit...
A new 3D fuel behavior solver is currently under collaborative development at the Laboratory for Rea...
Over the last decades the importance of fuel-specific processes for safety analysis has grown, due t...
Developing new fuels and qualifying them for large-scale deployment in power reactors is a lengthy a...
The analysis of nuclear reactors for performance and safety assessment benefits from the use of comp...
The nuclear industry must address the issues faced by the current new-built plants in the west- ern ...
Accurately predicting the behavior of nuclear fuel performance is essential for the safe and economi...
Since 2008, the Idaho National Laboratory (INL) has been developing a next-generation nuclear fuel p...
The FRED code is an in-house tool developed at the Paul Scherrer Institut for the so-called 1.5-D nu...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Advanced Multi-Physics (AMP) Nuclear Fuel Performance code (AMPFuel) is focused on predicting th...
The OpenFOAM Fuel BEhavior Analysis Tool, or OFFBEAT, is a multi-dimensional fuel performance code u...
In order to ensure the safe and economic operation of fuel rods, it is necessary to be able to predi...
The aim of this thesis is to develop and implement a code for solving the coupled multiphysics of PW...
Accurate evaluations of fuel behavior is a crucial part in the determination of fuel operation limit...
A new 3D fuel behavior solver is currently under collaborative development at the Laboratory for Rea...
Over the last decades the importance of fuel-specific processes for safety analysis has grown, due t...
Developing new fuels and qualifying them for large-scale deployment in power reactors is a lengthy a...
The analysis of nuclear reactors for performance and safety assessment benefits from the use of comp...
The nuclear industry must address the issues faced by the current new-built plants in the west- ern ...
Accurately predicting the behavior of nuclear fuel performance is essential for the safe and economi...
Since 2008, the Idaho National Laboratory (INL) has been developing a next-generation nuclear fuel p...
The FRED code is an in-house tool developed at the Paul Scherrer Institut for the so-called 1.5-D nu...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Molten Salt Reactor (MSR) is one of the six Generation-IV nuclear reactor designs. It presents v...
The Advanced Multi-Physics (AMP) Nuclear Fuel Performance code (AMPFuel) is focused on predicting th...