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Major results from the stellarator Wendelstein 7-AS

  • M. Hirsch
  • , J. Baldzuhn
  • , C. Beidler
  • , R. Brakel
  • , R. Burhenn
  • , A. Dinklage
  • , H. Ehmler
  • , M. Endler
  • , V. Erckmann
  • , Y. Feng
  • , J. Geiger
  • , L. Giannone
  • , G. Grieger
  • , P. Grigull
  • , H. J. Hartfuß
  • , D. Hartmann
  • , R. Jaenicke
  • , R. König
  • , H. P. Laqua
  • , H. Maaßberg
  • K. McCormick, F. Sardei, E. Speth, U. Stroth, F. Wagner, A. Weller, A. Werner, H. Wobig, S. Zoletnik
  • Max Planck Institute for Plasma Physics

Research output: Contribution to journalArticlepeer-review

207 Scopus citations

Abstract

Wendelstein 7-AS was the first modular stellarator device to test some basic elements of stellarator optimization: a reduced Shafranov shift and improved stability properties resulted in β-values up to 3.4% (at 0.9 T). This operational limit was determined by power balance and impurity radiation without noticeable degradation of stability or a violent collapse. The partial reduction of neoclassical transport could be verified in agreement with calculations indicating the feasibility of the concept of drift optimization. A full neoclassical optimization, in particular a minimization of the bootstrap current was beyond the scope of this project. A variety of non-ohmic heating and current drive scenarios by ICRH, NBI and in particular, ECRH were tested and compared successfully with their theoretical predictions. Besides, new heating schemes of overdense plasmas were developed such as RF mode conversion heating - Ordinary mode, Extraordinary mode, Bernstein-wave (OXB) heating - or 2nd harmonic O-mode (O2) heating. The energy confinement was about a factor of 2 above ISS95 without degradation near operational boundaries. A number of improved confinement regimes such as core electron-root confinement with central Te ≤ 7 keV and regimes with strongly sheared radial electric field at the plasma edge resulting in Ti ≤ 1.7 keV were obtained. As the first non-tokamak device, W7-AS achieved the H-mode and moreover developed a high density H-mode regime (HDH) with strongly reduced impurity confinement that allowed quasi-steady-state operation (τ ≈ 65 τE) at densities (at 2.5 T). The first island divertor was tested successfully and operated with stable partial detachment in agreement with numerical simulations. With these results W7-AS laid the physics background for operation of an optimized low-shear steady-state stellarator.

Original languageEnglish
Article number053001
JournalPlasma Physics and Controlled Fusion
Volume50
Issue number5
DOIs
StatePublished - 1 May 2008
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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