MHD and confinement during pellet injection on FTU

  • F. Alladio
  • , M. L. Apicella
  • , G. Apruzzese
  • , R. Bartiromo
  • , F. Bombarda
  • , G. Bracco
  • , G. Buceti
  • , P. Burati
  • , R. Cesario
  • , V. Cocilovo
  • , I. Condrea
  • , F. Crisanti
  • , R. De Angelis
  • , F. De Marco
  • , B. Esposito
  • , A. Frattolillo
  • , D. Frigione
  • , L. Gabellieri
  • , E. Giovannozzi
  • , M. Grolli
  • A. Imparato, H. Kroegler, M. Leigheb, L. Lovisetto, G. Maddaluno, A. Mancuso, M. Marinucci, G. Mazzitelli, P. Micozzi, S. Migliori, A. Moleti, F. Orsitto, L. Panaccione, M. Panella, V. Pericoli, L. Pieroni, S. Podda, G. B. Righetti, D. Santi, F. Scaramuzzi, S. E. Segre, J. A. Snipes, E. Sternini, G. Tonini, A. A. Tuccillo, O. Tudisco, F. Valente, V. Vitale, V. Zanza, M. Zerbini

Research output: Contribution to journalArticlepeer-review

Abstract

The study sets out to investigate the parts of the FTU operating space over which pellet injection effects performance improvement and to elucidate the phenomena which hinder it. In this respect the behaviour of the q=1 resonance is found to play the most relevant role.

Original languageEnglish (US)
Article number020
Pages (from-to)B241-B251
JournalPlasma Physics and Controlled Fusion
Volume35
Issue numberSB
DOIs
StatePublished - 1993

All Science Journal Classification (ASJC) codes

  • Nuclear Energy and Engineering
  • Condensed Matter Physics

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