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  4. Modeling of neoclassical tearing mode stabilization by electron cyclotron heating and current drive in tokamak plasmas
 
research article

Modeling of neoclassical tearing mode stabilization by electron cyclotron heating and current drive in tokamak plasmas

Kim, Kyungjin
•
Na, Yong-Su
•
Kim, Hyun-Seok
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2016
Current Applied Physics

An integrated numerical system is established to model time-dependent behavior of the neoclassical tearing mode (NTM) in a tokamak which solves the modified Rutherford equation (MRE) by coupling with plasma transport, equilibrium, heating and current drive. The MRE is formulated in a simple form to be well-suited for time-dependent simulations including a predictive purpose for the feedback controller design by coupling the electron cyclotron effect self-consistently. In particular the electron cyclotron heating (ECH) effect is newly included to the MRE in addition to the electron cyclotron current drive (ECCD) effect to investigate their impact to stabilize the NTM. The integrated numerical system is applied to experiments for benchmarking in which NTMs are stabilized by ECCD and by ECH at ASDEX Upgrade and TCV, respectively. The impact of ECCD and ECH on stabilizing NTMs is identified in the simulations. (C) 2016 Elsevier B.V. All rights reserved.

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Type
research article
DOI
10.1016/j.cap.2016.04.015
Web of Science ID

WOS:000377410600009

Author(s)
Kim, Kyungjin
Na, Yong-Su
Kim, Hyun-Seok
Maraschek, M.
Poli, E.
Stober, J.
Zohm, H.
Felici, F.
Sauter, O.
Park, Y. S.
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Corporate authors
ASDEX Upgrade team
•
TCV Team
Date Issued

2016

Published in
Current Applied Physics
Volume

16

Issue

8

Start page

867

End page

875

Subjects

Neoclassical tearing mode

•

Time-dependent simulation

•

Modified Rutherford equation

•

ECH/CD

•

Tokamak

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SPC  
Available on Infoscience
July 19, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/127516
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