Published August 1, 2013 | Version v1
Journal article

Spatial structures and interaction of multiple sheared flow populations in tokamak edge turbulence

  • 1. WCI Center for Fusion Theory, NFRI, Gwahangno 113, Yusung-gu, Daejeon 305-806 (Korea, Republic of)
  • 2. Southwestern Institute of Physics, PO Box 432, Chengdu (China)
  • 3. Center for Momentum Transport and Flow Organization, University of California at San Diego, CA 92093 (United States)
  • 4. National Institute for Fusion Science, Toki 509-5292 (Japan)
  • 5. Research Institute for Applied Mechanics, Kyushu University, Kasuga, Kasuga koen 6-1, 816-8580 (Japan)
  • 6. School of Physics and Optoelectronic Technology, Dalian University of Technology, Dalian 116024 (China)

Description

The radial structures of multiple sheared flow populations and fluctuations are simultaneously measured using combinations of Langmuir probe arrays in the edge plasmas of the HL-2A tokamak with ohmic and electron cyclotron resonance heating (ECRH). The maximum of geodesic acoustic mode (GAM) amplitude locates at ∼2–3 cm inside the last close flux surface (LCFS). The low-frequency zonal flow (LFZF) and GAM tend to coexist in the inner region. The dependences of the amplitudes of the multiple sheared flows and turbulence on ECRH heating power are also investigated. The measured turbulent Reynolds stresses are shown to be strongly correlated with the sheared flows, as predicted by theory. The turbulence is modulated at the each frequency of the multiple sheared flows simultaneously, and the particle fluxes induced by the turbulence are significantly reduced near the LCFS and in the GAM peaking region. The analyses also show that the spatial structures of the turbulent envelopes at the LFZF and GAM frequencies are similar to those observed in LFZF and GAM. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/0029-5515/53/8/083011

Additional details

Publishing Information

Journal Title
Nuclear Fusion
Journal Volume
53
Journal Issue
8
Journal Page Range
[8 p.]
ISSN
0029-5515
CODEN
NUFUAU

Optional Information

Collaborations
HL-2A Team