How is turbulence intensity determined by macroscopic variables in a toroidal plasma?
- S. Inagaki
- T. Tokuzawa
- N. Tamura
- S.‐I. Itoh
- TKT. Kobayashi
- K. Ida
- Τ. Shimozuma
- S. Kubo
- K. Tanaka
- T. Ido
- A. Shimizu
- H. Tsuchiya
- Naohiro KASUYA
- Y. Nagayama
- K. Kawahata
- S. Sudo
- H. Yamada
- A. Fujisawa
- K. Itoh
- the LHD Experiment Group
- TKT. Kobayashi
- TKT. Kobayashi
Nuclear Fusion · 2013 · IOP Publishing
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Abstract
We report observations of the dynamic response of micro-fluctuations and turbulent flux to a low-frequency heating power modulation in the Large Helical Device. The responses of heat flux and micro-fluctuation intensity differ from that of the change in temperature gradient. This result violates the local transport model, where turbulence is determined by the local temperature gradient. A new relationship between flux, gradient and turbulence is found. In addition to the temperature gradient, the heating rate is proposed as a new, direct controlling parameter of turbulence to explain the fast response of turbulence against periodic modulation of heating power.
