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LH-transition initiation and dynamics in a conventional tokamak

Authors :
S. V. Krikunov
S. V. Lebedev
A. S. Tukachinsky
D. V. Kouprienko
Alexander Belokurov
L. Chôné
Alexander Yashin
V. A. Kornev
L. G. Askinazi
E. Z. Gusakov
A. A. Petrov
Susan Leerink
Victor Bulanin
P. Niskala
A. D. Gurchenko
Nikolai Zhubr
Timo Kiviniemi
Gulnara Abdullina
S. I. Lashkul
Tendler, Michael
Rozhansky, Vladimir
Goncharov, Pavel
Kravchuk, Anna
Ioffe Institute
Peter the Great St. Petersburg Polytechnic University
Department of Applied Physics
Fusion and Plasma Physics
Aalto-yliopisto
Aalto University
Source :
AIP Conference Proceedings.
Publication Year :
2019
Publisher :
AIP Publishing, 2019.

Abstract

Radial electric field shear is crucial for turbulence suppression and transition to the H-mode, although the high shear value alone may not be sufficient for the LH-transition initiation. Temporal and spatial parameters of shear perturbation, particle source and turbulence parameters are the main factors responsible for LH-transition initiation. Different plasma discharge scenarios in two Ioffe Institute conventional tokamaks are analyzed using the model of plasma density and ion temperature evolution to clear up the role of aforementioned factors.Radial electric field shear is crucial for turbulence suppression and transition to the H-mode, although the high shear value alone may not be sufficient for the LH-transition initiation. Temporal and spatial parameters of shear perturbation, particle source and turbulence parameters are the main factors responsible for LH-transition initiation. Different plasma discharge scenarios in two Ioffe Institute conventional tokamaks are analyzed using the model of plasma density and ion temperature evolution to clear up the role of aforementioned factors.

Details

ISSN :
0094243X
Database :
OpenAIRE
Journal :
AIP Conference Proceedings
Accession number :
edsair.doi.dedup.....c2eda1710dfbdcc96707a843ecb15d60