International audienceITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface area of about 620 m. Given the importance of beryllium erosion and co-deposition for tritium retention in ITER, significant efforts have been made to understand the behaviour of beryllium under fusion-relevant conditions with high particle and heat loads. This paper provides a comprehensive report on the state of knowledge of beryllium behaviour under fusion-relevant conditions: the erosion mechanisms and their consequences, beryllium migration in JET, fuel retention and dust generation. The paper reviews basic laboratory studies, advanced computer simulations and experience from laboratory plasma experiments in linear sim...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
AbstractThe JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasma...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
The Monte-Carlo code ERO2.0 was used to simulate steady-state erosion and transport of beryllium (Be...
JET is used as a test bed for ITER, to investigate beryllium migration which connects the lifetime o...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
AbstractThe JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasma...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
International audienceITER will use beryllium as a plasma-facing material in the main chamber, cover...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
The Monte-Carlo code ERO2.0 was used to simulate steady-state erosion and transport of beryllium (Be...
JET is used as a test bed for ITER, to investigate beryllium migration which connects the lifetime o...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
Abstract The JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasm...
AbstractThe JET ITER-Like Wall experiment (JET-ILW) provides an ideal test bed to investigate plasma...