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Empiricial scaling of inter-ELM power widths in ASDEX Upgrade and JET

  • T. Eich
  • , B. Sieglin
  • , A. Scarabosio
  • , A. Herrmann
  • , A. Kallenbach
  • , G. F. Matthews
  • , S. Jachmich
  • , S. Brezinsek
  • , M. Rack
  • , R. J. Goldston
  • Max-Planck-Institut für Plasmaphysik
  • Culham Centre for Fusion Energy
  • FORSCHUNGSZENTRUM JULICH GMBH
  • Princeton Plasma Physics Laboratory

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

80 Zitate (Scopus)

Abstract

The SOL power decay length (λq) deduced from analysis of fully attached divertor heat load profiles from two tokamaks, JET and ASDEX Upgrade with carbon plasma facing components, are presented. Interpretation of the target heat load profiles is performed by using a 1D-fit function which disentangles the upstream λq and an effective diffusion in the divertor (S), the latter essentially acting as a power spreading parameter in the divertor volume. It is shown that the so called integral decay length λint is approximately given by λint ≈ 1q +1:64 × S. An empirical scaling reveals parametric dependency λq/mm ≃ 0:9 · BT -0.7qcy1.2lP0 SOLR0geo for type-I ELMy H-modes. Extrapolation to ITER gives λq ≃1 mm. Recent measurements in JET-ILW and from ASDEX Upgrade full-W confirm the results. It is shown that a regression for the divertor power spreading parameter S is not yet possible due to the large effect of different divertor geometries of JET and ASDEX Upgrade Divertor-I and Divertor-IIb.

OriginalspracheEnglisch
Seiten (von - bis)S72-S77
FachzeitschriftJournal of Nuclear Materials
Jahrgang438
AusgabenummerSUPPL
DOIs
PublikationsstatusVeröffentlicht - 2013

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