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Numerical analyses of baseline JT-60SA design concepts with the COREDIV code
R. Zagórski
, K. Gałazka
, I. Ivanova-Stanik
, W. Stȩpniewski
, L. Garzotti
, G. Giruzzi
,
R. Neu
, M. Romanelli
Associate Professorship of Plasma-Material-Wechselwirkung
Institute of Plasma Physics and Laser Microfusion
Culham Centre for Fusion Energy
IRFM
Max Planck Institute for Plasma Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
Overview
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Keyphrases
Design Concept
100%
Numerical Analysis
100%
Divertor
100%
JT-60SA
100%
COREDIV
100%
High Power
66%
Low Density
66%
Radiation Loss
66%
Plasma Dilution
66%
Power Scenario
66%
High Density
33%
Loss Factor
33%
Plasma Parameters
33%
Average Density
33%
Power Load
33%
Design Scenarios
33%
W Divertor
33%
Edge Density
33%
Divertor Plate
33%
Impurity Radiation
33%
Seeding Operation
33%
Wide Operating Window
33%
Influence of Impurities
33%
Engineering
Design Concept
100%
Radiation Loss
100%
Dilution
100%
Simulation Result
50%
Load Power
50%
Earth and Planetary Sciences
Seeding
100%
Dilution
33%