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ICRH of JET and LHD Majority Ions at Their Fundamental Cyclotron Frequency

  • A. V. Krasilnikov
  • , D. Van Eester
  • , E. Lerche
  • , J. Ongena
  • , J. Mailloux
  • , M. Stamp
  • , S. Jachmich
  • , H. Leggate
  • , V. Vdovin
  • , A. Walden
  • , M. L. Mayoral
  • , G. Bonheure
  • , M. Santala
  • , V. Kiptily
  • , S. Popovichev
  • , T. Biewer
  • , K. Crombe
  • , B. Esposito
  • , D. Marocco
  • , M. Riva
  • Yu A. Kaschuck, V. N. Amosov, G. Ericsson, L. Giacomelli, C. Hellesen, A. Hjalmarsson, J. Kallne, M. Isobe, M. Nishiura, M. Sasao, H. Nishimura, K. Saito, T. Seki, T. Mutoh, R. Kumazawa, Y. Takeiri, M. Osakabe, M. Goto, S. Murakami, P. Goncharov
  • Troitsk Insitute of Innovating and Thermonuclear Research (TRINITI)
  • Culham Centre for Fusion Energy
  • Kurchatov Institute
  • Royal Military Academy
  • Oak Ridge National Laboratory
  • University of Ghent
  • ENEA Centro Ricerche Frascati
  • Uppsala University
  • National Institute for Fusion Science
  • Tohoku University

Publikation: Beitrag in Buch/Bericht/KonferenzbandKonferenzbeitragBegutachtung

1 Zitat (Scopus)

Abstract

Results of the experimental studies of ICRH at the fundamental cyclotron frequency of the majority deuterons in JET plasmas with near-tangential deuteron neutral beam injection (NBI) are presented. 1D, 2D and 3D ICRH modeling indicated that several ITER relevant mechanisms of heating may occur simultaneously in this heating scheme: fundamental ion cyclotron resonance heating of majority and beam D ions, impurity ion heating and electron heating due to Landau damping and TTMP. These mechanisms were studied in JET experiments with a ∼90%D, 5% H plasma including traces of Be and Ar. Up to 2MW of ICRH power was applied at 25 MHz to NBI heated plasmas. In most of the discharges the toroidal magnetic field strength was 3.3T, but in one it was equal to 3.6T. The E+ component of the electric field governs the ion cyclotron heating of not too fast particles. The Doppler shifted RF absorption of the beam deuterons away from the cold resonance at which E+ is small was exploited to enhance the RF power absorption efficiency. Fundamental ICRH experiments were also carried out in LHD hydrogen plasma with high energy hydrogen NBI. ICRH was performed at 38MHz with injected power <1MW. The effect of fundamental ICRH was clearly demonstrated in both machines.

OriginalspracheEnglisch
TitelRADIO FREQUENCY POWER IN PLASMAS
Untertitel17th Topical Conference on Radio Frequency Power in Plasmas
Seiten43-46
Seitenumfang4
DOIs
PublikationsstatusVeröffentlicht - 2007
Veranstaltung17th Topical Conference on Radio Frequency Power in Plasmas - Clearwater, FL, USA/Vereinigte Staaten
Dauer: 7 Mai 20079 Mai 2007

Publikationsreihe

NameAIP Conference Proceedings
Band933
ISSN (Print)0094-243X
ISSN (elektronisch)1551-7616

Konferenz

Konferenz17th Topical Conference on Radio Frequency Power in Plasmas
Land/GebietUSA/Vereinigte Staaten
OrtClearwater, FL
Zeitraum7/05/079/05/07

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