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Study of non-axisymmetric divertor footprints using 2-D IR and visible cameras and a 3-D heat conduction solver in NSTX
J. W. Ahn
, K. F. Gan
, F. Scotti
, J. D. Lore
,
R. Maingi
, J. M. Canik
, T. K. Gray
, A. G. McLean
, A. L. Roquemore
, V. A. Soukhanovskii
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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Dive into the research topics of 'Study of non-axisymmetric divertor footprints using 2-D IR and visible cameras and a 3-D heat conduction solver in NSTX'. Together they form a unique fingerprint.
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Keyphrases
Non-axisymmetric
100%
Divertor
100%
IR Camera
100%
Heat Conduction
100%
Peak Heat Flux
100%
Visible Camera
100%
Divertor Footprint
100%
Vacuum Field
50%
Toroidal Asymmetry
50%
Heat Deposition
50%
Heat Flux
50%
Point Pattern
50%
Heat Flux Width
50%
Camera Data
50%
Wide-angle
50%
Strike Point
50%
Simultaneous Observation
50%
Phase Locking
50%
Divertor Heat Flux
50%
Positive Dependence
50%
Degree of Asymmetry
50%
Heat Flux Distribution
50%
Field Line Tracing
50%
Wide-angle Camera
50%
Engineering
Axisymmetric
100%
Heat Flux
100%
Field Line
16%
Application Field
16%
Chemical Engineering
Heat Flux
100%
Heat Conduction
100%