The study of the physical mechanisms that influence the tearing mode (TM) rotation is of interest because, while in present day devices, a significant TM rotation can be induced by Neutral Beam Injection, future reactors, ITER included, are not expected to provide enough induced momentum. We present a study of tearing mode dynamics in the RFX-mod device, a Reserved Field Pinch in Padua (Italy) that can be run as low-current, circular tokamak. Magnetic, flow and kinetic measurements are integrated to characterize the (2,1) and (3,2) TMs fast rotation. We are especially interested to study the role played by the diamagnetic electron drift on the TM rotation, including the slowing down and the wall-locking phases. When the latter occurs, the radial magnetic field penetrates the shell and the TM amplitude increases at a rate given by the wall resistive time constant. This phenomenon can lead to a rapid discharge termination via a disruption. A comparison of experimental data with a two-fluid MHD cylindrical model [Nucl. Fusion 54 (2014) 122001] has been used to interpret the observed TM fast rotation frequencies.

Tearing mode dynamics in the RFX-mod tokamak

Zuin M;Martines E;De Masi G;Spagnolo S;Spolaore M;Vianello N
2017

Abstract

The study of the physical mechanisms that influence the tearing mode (TM) rotation is of interest because, while in present day devices, a significant TM rotation can be induced by Neutral Beam Injection, future reactors, ITER included, are not expected to provide enough induced momentum. We present a study of tearing mode dynamics in the RFX-mod device, a Reserved Field Pinch in Padua (Italy) that can be run as low-current, circular tokamak. Magnetic, flow and kinetic measurements are integrated to characterize the (2,1) and (3,2) TMs fast rotation. We are especially interested to study the role played by the diamagnetic electron drift on the TM rotation, including the slowing down and the wall-locking phases. When the latter occurs, the radial magnetic field penetrates the shell and the TM amplitude increases at a rate given by the wall resistive time constant. This phenomenon can lead to a rapid discharge termination via a disruption. A comparison of experimental data with a two-fluid MHD cylindrical model [Nucl. Fusion 54 (2014) 122001] has been used to interpret the observed TM fast rotation frequencies.
2017
Istituto gas ionizzati - IGI - Sede Padova
Inglese
APS Division of Plasma Physics 2017
59th Annual Meeting of the APS Division of Plasma Physics
http://meetings.aps.org/Meeting/DPP17/Session/CP11.120
October 23-27, 2017
Milwaukee, Wisconsin, USA
RFX-mod
RFX-mod tokamak
Abstract: CP11.00120
15
info:eu-repo/semantics/conferenceObject
none
274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
Cordaro, L; Zanca, P; Zuin, M; Auriemma, F; Martines, E; Zaniol, B; Pucella, G; Cavazzana, R; De Masi, G; Fassina, A; Grenfell, G; Momo, B; Spagnolo, ...espandi
   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/339941
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