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A multi-machine scaling of halo current rotation
C. E. Myers
, N. W. Eidietis
, S. N. Gerasimov
,
S. P. Gerhardt
, R. S. Granetz
, T. C. Hender
, G. Pautasso
PPPL NSTX
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Scopus citations
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Keyphrases
Halo Current
100%
Multi-machine
100%
Metal Wall
28%
Empirical Scaling
28%
Resonant Frequency
14%
DIII-D
14%
Minimal Impact
14%
Mechanical Stress
14%
Rotation Frequency
14%
ASDEX Upgrade
14%
C-Mod
14%
Rotation Velocity
14%
Asymmetric Feature
14%
Tokamak Disruptions
14%
Machine-to-machine
14%
Minimum Current
14%
Machine Analysis
14%
Current Quench Time
14%
Physics
Tokamak Device
100%
Resonant Frequency
100%
Mechanical Stress
100%
Engineering
Disruptions
100%
Mechanical Stress
50%
Tokamak Device
50%
Resonant Frequency
50%