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Interaction of ICRF fields with the plasma boundary in AUG and JET and guidelines for antenna optimization

  • V. Bobkov
  • , R. Bilato
  • , F. Braun
  • , L. Colas
  • , R. Dux
  • , D. Van Eester
  • , L. Giannone
  • , M. Goniche
  • , A. Herrmann
  • , P. Jacquet
  • , A. Kallenbach
  • , A. Krivska
  • , E. Lerche
  • , M. L. Mayoral
  • , D. Milanesio
  • , I. Monakhov
  • , H. W. Müller
  • , R. Neu
  • , J. M. Noterdaeme
  • , Th Pütterich
  • V. Rohde
  • Max-Planck-Institut für Plasmaphysik
  • Commissariat à l'Énergie Atomique (CEA)
  • Culham Centre for Fusion Energy
  • Institute of Plasma Physics, Academy of Sciences of the Czech Republic
  • Czech Technical University of Prague
  • Politecnico di Torino
  • University of Ghent

Résultats de recherche: Chapitre dans un livre, un rapport, des actes de conférencesContribution à une conférenceRevue par des pairs

14 Citations (Scopus)

Résumé

W sputtering during ICRF on ASDEX Upgrade (AUG) and temperature rise on JET A2 antenna septa are considered in connection with plasma conditions at the antenna plasma facing components and E near-fields. Large antenna-plasma clearance, high gas puff and low light impurity content are favorable to reduce W sputtering in AUG. The spatial distribution of spectroscopically measured effective W sputtering yields clearly points to the existence of strong E fields at the antenna box ("feeder fields") which dominate over the fields in front of the antenna straps. The picture of E fields, obtained by HFSS code, corroborates the dominant role of E at the antenna box on the formation of sheath-driving RF voltages for AUG. Large antenna-plasma clearance and low gas puff are favorable to reduce septum temperature of JET A2 antennas. Assuming a linear relation between the septum temperature and the sheath driving RF voltage calculated by HFSS, the changes of the temperature with dipole phasing (00ππ, 0ππ0 or 0π0π) are well described by the related changes of the RF voltages. Similarly to the AUG antenna, the strongest E are found at the limiters of the JET A2 antenna for all used dipole phasings and at the septum for the phasings different from 0π0π. A simple general rule can be used to minimize E at the antenna: image currents can be allowed only at the surfaces which do not intersect magnetic field lines at large angles of incidence. Possible antenna modifications generally rely either on a reduction of the image currents, on their short-circuiting by introducing additional conducting surfaces or on imposing the E=0 boundary condition. On the example of AUG antenna, possible options to minimize the sheath driving voltages are presented.

langue originaleAnglais
titreRadio Frequency Power in plasmas - Proceedings of the 18th Topical Conference
Pages125-132
Nombre de pages8
Les DOIs
étatPublié - 2009
Evénement18th Topical Conference on Radio Frequency Power in plasmas - Gent, Belgique
Durée: 24 juin 200926 juin 2009

Série de publications

NomAIP Conference Proceedings
Volume1187
ISSN (imprimé)0094-243X
ISSN (Electronique)1551-7616

Une conférence

Une conférence18th Topical Conference on Radio Frequency Power in plasmas
Pays/TerritoireBelgique
La villeGent
période24/06/0926/06/09

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