Tungsten (W) melting due to transient power loads, for example those delivered by edge localised modes (ELMs), is a major concern for next step fusion devices. A series of experiments has been performed on JET to investigate the dynamics of Type-I ELM-induced transient melting. Following initial exposures in 2013 of a W-lamella with sharp leading edge in the bulk W outer divertor, new experiments have been performed in 2016-2017 on a protruding W-lamella with a 15 degrees slope, allowing direct and spatially resolved (0.85 mm/pixel) observation of the top surface using the IR thermography system viewing from the top of the poloidal cross-section. Thermal and IR analysis have already been conducted assuming the geometrical projection of the ...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...
Tungsten (W) melting due to transient power loads, for example those delivered by edge localised mod...
International audienceTungsten (W) melting due to transient power loads, for example those delivered...
Tungsten (W) melting is a major concern for next step fusion devices. Two ELM induced tungsten melti...
Équipe 107 : Physique des plasmas chaudsInternational audienceA series of experiments has been perfo...
Melting is one of the major risks associated with tungsten (W) plasma-facing components (PFCs) in to...
In the recent melt experiments with the JET tungsten divertor, we observe that the heat flux impacti...
Équipe 107 : Physique des plasmas chaudsInternational audienceIn JET-ILW dedicated melt exposures we...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe original goals of the JET ITER-lik...
Repetitive melting of tungsten by power transients originating from edge localized modes (ELMs) has ...
One of the outstanding problems for a next step fusion device is the handling of the power fluxes in...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...
Tungsten (W) melting due to transient power loads, for example those delivered by edge localised mod...
International audienceTungsten (W) melting due to transient power loads, for example those delivered...
Tungsten (W) melting is a major concern for next step fusion devices. Two ELM induced tungsten melti...
Équipe 107 : Physique des plasmas chaudsInternational audienceA series of experiments has been perfo...
Melting is one of the major risks associated with tungsten (W) plasma-facing components (PFCs) in to...
In the recent melt experiments with the JET tungsten divertor, we observe that the heat flux impacti...
Équipe 107 : Physique des plasmas chaudsInternational audienceIn JET-ILW dedicated melt exposures we...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe original goals of the JET ITER-lik...
Repetitive melting of tungsten by power transients originating from edge localized modes (ELMs) has ...
One of the outstanding problems for a next step fusion device is the handling of the power fluxes in...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Tungsten samples were exposed to combined steady state and edge localised mode transient replication...
Équipe 107 : Physique des plasmas chaudsInternational audienceThe ITER baseline scenario, with 500 M...