Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MOX) nuclear fuel is a strategic option for fast reactor concepts of Generation IV, especially considering the current interest in the ultimate radioactive waste management and sustainability improvement by better use of natural resources. Among the fuel properties, thermal conductivity and melting temperature are pivotal since they determine, respectively, the fuel temperature profile and the fundamental safety limit on the margin to fuel melting, hence impacting on the overall fuel performance under irradiation and allowing the safe irradiation of the fuel pin. Nevert...
The current modelling of thermal properties (thermal conductivity, melting temperature) of mixed- ox...
This document focuses on the TRANSURANUS modelling of the melting temperature of MOX fuel for fast b...
The paper is focused on the modelling of the melting temperature of MOX fuel for fast breeder reacto...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Thermal conductivity and melting temperature of nuclear fuel are essential for its performance under...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
The current modelling of thermal properties (thermal conductivity, melting temperature) of mixed- ox...
This document focuses on the TRANSURANUS modelling of the melting temperature of MOX fuel for fast b...
The paper is focused on the modelling of the melting temperature of MOX fuel for fast breeder reacto...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Recycling and burning minor actinides (MA, e.g., americium, neptunium) in mixed-oxide (MO...
Thermal conductivity and melting temperature of nuclear fuel are essential for its performance under...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
Thermal conductivity and melting temperature of nuclear fuel are essential for analysing its perform...
The current modelling of thermal properties (thermal conductivity, melting temperature) of mixed- ox...
This document focuses on the TRANSURANUS modelling of the melting temperature of MOX fuel for fast b...
The paper is focused on the modelling of the melting temperature of MOX fuel for fast breeder reacto...