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Parametric dependences of momentum pinch and Prandtl number in JET
JET-EFDA contributors
Aalto University
Max-Planck-Institut für Plasmaphysik (IPP)
Instituto de Plasmas e Fusão Nuclear (IPFN)
National Research Council (CNR)
Technical University of Denmark (DTU)
University of Bayreuth
Princeton University
Dutch Research Council
Culham Science Centre
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
35
Citations (Scopus)
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Keyphrases
Prandtl number
100%
Parametric Dependence
100%
Gyrokinetic Simulation
66%
Momentum Transport
66%
Collisionality
66%
Experimental Values
33%
L-mode
33%
Neutral Beam Injection
33%
Plasma Edge
33%
Absolute Value
33%
Core Rotation
33%
Edge Rotations
33%
Density Gradient
33%
Modulation Techniques
33%
3D Effects
33%
Experimental Scaling
33%
Q Profile
33%
Convective Momentum Transport
33%
Transport Term
33%
Braking
33%
Rotational Profile
33%
INIS
jets
100%
rotation
100%
prandtl number
100%
simulation
80%
transport
60%
values
40%
plasma
40%
kinetics
40%
extrapolation
40%
density
20%
devices
20%
length
20%
increasing
20%
modulation
20%
scaling
20%
iter tokamak
20%
torque
20%
l-mode plasma confinement
20%
beam injection
20%
Engineering
Momentum Transport
100%
Prandtl Number
100%
Convective
33%
Modulation Technique
33%
Experimental Value
33%
Diffusive
33%
Density Gradient
33%
Illustrates
33%
Core Rotation
33%
Absolute Value
33%
Earth and Planetary Sciences
Prandtl Number
100%
Gyroscope
66%
Braking
33%
Neutral Beams
33%
Beam Injection
33%
Physics
Prandtl Number
100%
Modulation Technique
33%
Neutral Beams
33%
Beam Injection
33%
Chemical Engineering
Prandtl Number
100%