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New mechanism for fast quench propagation in coated conductors
H. Kinder
, A. Price, A. Hiebl
Department of Physics
Theva Dünnschichttechnik GmbH
Technical University of Munich
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
Overview
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Keyphrases
Coated Conductor
100%
Quench Propagation
100%
Current Flow
66%
Numerical Simulation
33%
Stabilizer
33%
Critical Current Density
33%
Switch-off
33%
Propagation Mechanism
33%
Superconductor
33%
Heat Diffusion
33%
Resistive State
33%
Flow Pattern
33%
Self-protection
33%
Bunching
33%
Typical Materials
33%
Heat Diffusivity
33%
Fault Current Limiter
33%
Resistive Fault
33%
Engineering
Resistive
100%
Stabilizer
50%
Millisecond
50%
Limiters
50%
Diffusivity
50%
Current Flow
50%
Flow Pattern
50%
Superconductor
50%
Material Science
Conductor
100%
Density
16%
Diffusivity
16%
Superconducting Material
16%
Stabilizer (Agent)
16%