INIS
simulation
100%
power
100%
scaling
100%
iter tokamak
100%
divertors
100%
radiations
83%
concentration
66%
impurities
66%
argon
66%
space
50%
transport
33%
volume
33%
prediction
33%
thermal conduction
33%
solutions
16%
comparative evaluations
16%
efficiency
16%
applications
16%
plasma
16%
heating load
16%
configuration
16%
investigations
16%
thermal conductivity
16%
margins
16%
heat dissipation
16%
Keyphrases
Power Exhaust
100%
EU DEMO
100%
Alternative Divertor
100%
SOLPS-ITER
100%
Divertor Simulation
100%
Argon
50%
Operational Space
50%
Impurity Concentration
33%
Heat Conduction
33%
Cross-field Transport
33%
Low Temperature
16%
Impurities
16%
Thermal Conductivity
16%
Model Prediction
16%
Divertor Detachment
16%
Efficiency Increase
16%
Impurity Radiation
16%
Numerical Code
16%
Prediction Method
16%
Divertor Heat Load
16%
Scaling Relations
16%
Simulation Database
16%
Exhaust Characteristics
16%
Large Margin
16%
Alternative Divertor Configuration
16%
Argon Concentration
16%
Heat Dissipation Mechanism
16%
Radiative Efficiency
16%
Overconfidence
16%
Relative Scale
16%
Engineering
Low-Temperature
100%
Simple Model
100%
Heat Losses
100%
Model Prediction
100%
Thermal Conductivity
100%
Thermal Load
100%
Physics
Conductive Heat Transfer
100%
Thermal Conductivity
50%
Blood Plasma
50%
Chilling
50%
Earth and Planetary Sciences
Conductive Heat Transfer
100%
Thermal Conductivity
50%
Chilling
50%
Material Science
Thermal Conductivity
100%
Thermal Loads
100%