reservedThis thesis falls within the research field of nuclear fusion and tokamaks, representing a contribution to the exploration of a crucial issue for these fusion devices. This thesis deals with the characterization of the tungsten sputtering from the tokamak walls in a particular operational scenario, called baseline scenario, realized at JET, the largest magnetic fusion device in the world located Culham Centre for Fusion Energy in Oxfordshire, UK. This scenario was realized in preparation for the last experimental campaign in deuterium-tritium conducted at JET in 2021. Sputtering is one of the physical phenomena through which tungsten contaminates the plasma and disperses its energy. Tungsten has been selected as one of the materials...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...
The erosion, transport and deposition of tungsten in the outer divertor of JET-ILW has been studied ...
Abstract Tungsten erosion in the outer divertor of the JET ITER like wall was quantified by spectros...
International audienceThe ITER baseline scenario, with 500 MW of DT fusion power and Q = 10, will re...
The erosion of tungsten (W), induced by the bombardment of plasma and impurity particles, determines...
Tungsten contamination can significantly impact the performance of future fusion reactors via fuel d...
Experiments in the JET tokamak equipped with the ITER-like wall (ILW) revealed that the inner and ou...
The 2D edge plasma transport code EDGE2D-EIRENE has been upgraded to account for the actual material...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...
The erosion, transport and deposition of tungsten in the outer divertor of JET-ILW has been studied ...
Abstract Tungsten erosion in the outer divertor of the JET ITER like wall was quantified by spectros...
International audienceThe ITER baseline scenario, with 500 MW of DT fusion power and Q = 10, will re...
The erosion of tungsten (W), induced by the bombardment of plasma and impurity particles, determines...
Tungsten contamination can significantly impact the performance of future fusion reactors via fuel d...
Experiments in the JET tokamak equipped with the ITER-like wall (ILW) revealed that the inner and ou...
The 2D edge plasma transport code EDGE2D-EIRENE has been upgraded to account for the actual material...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...
The erosion, transport and deposition of tungsten in the outer divertor of JET-ILW has been studied ...
Abstract Tungsten erosion in the outer divertor of the JET ITER like wall was quantified by spectros...