Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ITER and DEMO). In the present work, a spatially dependent cluster dynamics model is developed to investigate and understand the microstructure evolution of tungsten under low energy helium implantation and neutron irradiation varying over bulk length scales of millimetres and irradiation time scales of hours. The diffusion of helium, helium clusters and their trapping at neutron induced defects is simulated along the tungsten monoblock depth. The temperature gradient resulting from a steady state heat load of 10 MWm-2 along the monoblock depth is considered and its influence on the evolution of defects is discussed. The trapping of helium at...
Tungsten is the front-runner material for armour components in future fusion reactors. In-service, ...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
In fusion reactors, tungsten suffers severe constraints such as an intense neutron irradiation which...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
Tungsten, one of the most important divertor materials in nuclear fusion devices, will be subject to...
Dans les réacteurs à fusion, le tungstène subira des contraintes sévères dont, l’irradiation neutron...
Tungsten has been chosen as the divertor armour material in ITER and is the main candidate material ...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten has been chosen as the divertor armour material in ITER and is the main candidate material ...
Tungsten is the front-runner material for armour components in future fusion reactors. In-service, ...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
In fusion reactors, tungsten suffers severe constraints such as an intense neutron irradiation which...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
Tungsten, one of the most important divertor materials in nuclear fusion devices, will be subject to...
Dans les réacteurs à fusion, le tungstène subira des contraintes sévères dont, l’irradiation neutron...
Tungsten has been chosen as the divertor armour material in ITER and is the main candidate material ...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten has been chosen as the divertor armour material in ITER and is the main candidate material ...
Tungsten is the front-runner material for armour components in future fusion reactors. In-service, ...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...
Recently, tungsten has been found to form a highly underdense nanostructured morphology ("W fuzz") w...