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Physics of non-diffusive turbulent transport of momentum and the origins of spontaneous rotation in tokamaks

  • P. H. Diamond
  • , C. J. McDevitt
  • , D. Gürcan
  • , T. S. Hahm
  • , W. X. Wang
  • , E. S. Yoon
  • , I. Holod
  • , Z. Lin
  • , V. Naulin
  • , R. Singh
  • University of California at San Diego
  • Princeton Plasma Physics Laboratory
  • Long Beach VA and University of California
  • Technical University of Denmark
  • Institute for Plasma Research

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Recent results in the theory of turbulent momentum transport and the origins of intrinsic rotation are summarized. Special attention is focused on aspects of momentum transport critical to intrinsic rotation, namely the residual stress and the edge toroidal flow velocity pinch. Novel results include a systematic decomposition of the physical processes which drive intrinsic rotation, a calculation of the critical external torque necessary to hold the plasma stationary against the intrinsic residual stress, a simple model of net velocity scaling which recovers the salient features of the experimental trends and the elucidation of the impact of the particle flux on the net toroidal velocity pinch. Specific suggestions for future experiments are offered.

langue originaleAnglais
Numéro d'article045002
journalNuclear Fusion
Volume49
Numéro de publication4
Les DOIs
étatPublié - 2 juil. 2009
Modification externeOui

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