THE SIMULATION OD DISRUPTIONS IN TOKAMAK DEVICES BY ELECTRON BEAMS HAS BECOME A FREQUENTLY USED TECHNIQUE. SOME OF THE PHYSICAL PHENOMENA WHICH OCCUR IN THESE EXPERIMENTS HAVE BEEN STUDIED ON SPECIMENS OF STAINLESS STEEL AISI 316L BY OPTICAL MICROSCOPY, SCANNING ELECTRON MICROSCOPY (SEM) AND ELECTRON MICROPROBE ANALYSIS (EMPA). THE DISTRIBUTION OF HELIUM BUBBLES, VOLATILE ALLOYING ELEMENTS AND THE COATING MATERIAL AFTER DISRUP- TIONS, INDICATE THAT SUBSTANTIAL CONVECTION TAKES PLACE IN THE MELT LAYER FORMED DURING THE HEAT DISCHARGE. THIS CONVECTION LIKELY ORIGINATES FROM THE MOMENTUM TRANSFER FROM THE ELECTRON BEAM TO THE LIQUID. FOR HIGH ENERGY DENSITIES THE FORMATION...
Plasma facing components in tokamak type fusion reactors are subjected to intense heat load during p...
Laboratory experiments to simulate plasma disruptions have contributed significantly in many aspects...
In the initial phase of severe accident in a metal fueled SFR, fuel melts and is ejected into the co...
IT IS EXPECTED THAT DURING PLASMA DISRUPTIONS THE FIRST WALL OF A TOKAMAK REACTOR WILL BE EXPO...
IT IS EXPECTED THAT DURING PLASMA DISRUPTIONS THE FIRST WALL OF A TOKAMAK REACTOR WILL BE EXPO...
THE EFFECTS OF TOKAMAK DISRUPTION DISCHARGES AND REPETITIVE PULSE HEATING ON THE...
Understanding and utilizing the intriguing phenomena created by the short-duration interaction of a ...
A postulated severe loss of coolant accident in a nuclear reactor can lead to significant core damag...
PLASMA DISRUPTION PHENOMENON OBSERVED IN ALL TOKAMAK FUSION REACTORS IS A MAJOR MATERIALS RELA...
To investigate the performance of stainless steel under transient thermal events, such as photon pul...
A two-stage model is presented to describe alloy element evaporation rates from molten metal due to ...
Accidental melting of metallic plasma-facing materials in future fusion devices poses serious issues...
Metallic materials such as tungsten and beryllium are candidates for the design of the plasma facing...
Intense energy deposition on first wall materials and other components as a result of plasma disrupt...
Melting of the surface of tungsten exposed to a pulsed electron beam has been simulated numerically....
Plasma facing components in tokamak type fusion reactors are subjected to intense heat load during p...
Laboratory experiments to simulate plasma disruptions have contributed significantly in many aspects...
In the initial phase of severe accident in a metal fueled SFR, fuel melts and is ejected into the co...
IT IS EXPECTED THAT DURING PLASMA DISRUPTIONS THE FIRST WALL OF A TOKAMAK REACTOR WILL BE EXPO...
IT IS EXPECTED THAT DURING PLASMA DISRUPTIONS THE FIRST WALL OF A TOKAMAK REACTOR WILL BE EXPO...
THE EFFECTS OF TOKAMAK DISRUPTION DISCHARGES AND REPETITIVE PULSE HEATING ON THE...
Understanding and utilizing the intriguing phenomena created by the short-duration interaction of a ...
A postulated severe loss of coolant accident in a nuclear reactor can lead to significant core damag...
PLASMA DISRUPTION PHENOMENON OBSERVED IN ALL TOKAMAK FUSION REACTORS IS A MAJOR MATERIALS RELA...
To investigate the performance of stainless steel under transient thermal events, such as photon pul...
A two-stage model is presented to describe alloy element evaporation rates from molten metal due to ...
Accidental melting of metallic plasma-facing materials in future fusion devices poses serious issues...
Metallic materials such as tungsten and beryllium are candidates for the design of the plasma facing...
Intense energy deposition on first wall materials and other components as a result of plasma disrupt...
Melting of the surface of tungsten exposed to a pulsed electron beam has been simulated numerically....
Plasma facing components in tokamak type fusion reactors are subjected to intense heat load during p...
Laboratory experiments to simulate plasma disruptions have contributed significantly in many aspects...
In the initial phase of severe accident in a metal fueled SFR, fuel melts and is ejected into the co...