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Experimental investigation of the confinement of d( 3He,p)α and d(d,p)t fusion reaction products in JET

  • Georges Bonheure
  • , M. Hult
  • , R. González De Orduña
  • , D. Arnold
  • , H. Dombrowski
  • , M. Laubenstein
  • , E. Wieslander
  • , T. Vidmar
  • , P. Vermaercke
  • , Christian Perez Von Thun
  • , M. Reich
  • , S. Jachmich
  • , A. Murari
  • , S. Popovichev
  • , J. Mlynar
  • , A. Salmi
  • , O. Asunta
  • , M. Garcia-Munoz
  • , S. Pinches
  • , R. Koslowski
  • S. Kragh Nielsen
  • Inst. for Syst., Info., and Safely
  • Physikalisch Technische Bundesanstalt (PTB)
  • Laboratori Nazionali del Gran Sasso
  • STUDIECENTRUM VOOR KERNENERGIE / CENTRE D'ETUDE DE L'ENERGIE NUCLEAIRE
  • Max-Planck-Institut für Plasmaphysik
  • Consorzio Rfx
  • Culham Centre for Fusion Energy
  • Institute of Plasma Physics, Academy of Sciences of the Czech Republic
  • Aalto University
  • FORSCHUNGSZENTRUM JULICH GMBH
  • Technical University of Denmark

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10 Citations (Scopus)

Résumé

In ITER, magnetic fusion will explore the burning plasma regime. Because such burning plasma is sustained by its own fusion reactions, alpha particles need to be confined (Hazeltine 2010 Fusion Eng. Des. 7-9 85). New experiments using d( 3He,p)α and d(d,p)t fusion reaction products were performed in JET. Fusion product loss was measured from MHD-quiescent plasmas with a charged particle activation probe installed at a position opposite to the magnetic field ion gradient drift (see figure 1) - 1.77m above mid-plane - in the ceiling of JET tokamak. This new kind of escaping ion detector (Bonheure et al 2008 Fusion Sci. Technol. 53 806) provides for absolutely calibrated measurements. Both the mechanism and the magnitude of the loss are dealt with by this research. Careful analysis shows measured loss is in quantitative agreement with predictions from the classical orbit loss model. However, the comparison with simulated loss radial profile, although improved compared with previous studies in TFTR, Princeton, US (Zweben et al 2000 Nucl. Fusion 40 91), is not fully satisfactory and potential explanations for this discrepancy are examined.

langue originaleAnglais
Numéro d'article083004
journalNuclear Fusion
Volume52
Numéro de publication8
Les DOIs
étatPublié - août 2012

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