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The effects of main-ion dilution on turbulence in low q[subscript 95] C-Mod ohmic plasmas, and comparisons with nonlinear GYRO

Authors :
Matthew Reinke
J.C. Rost
J. E. Rice
G. M. Staebler
Jeff Candy
Miklos Porkolab
Paul Ennever
D.R. Ernst
Jerry Hughes
Alcator C-Mod Team
S. G. Baek
Massachusetts Institute of Technology. Department of Physics
Massachusetts Institute of Technology. Plasma Science and Fusion Center
Ennever, Paul Chappell
Porkolab, Miklos
Rice, John E
Rost, Jon C
Ernst, Darin R
Hughes Jr, Jerry
Baek, Seung Gyou
Source :
MIT Web Domain
Publication Year :
2016
Publisher :
American Institute of Physics (AIP), 2016.

Abstract

Recent experiments on C-mod seeding nitrogen into ohmic plasmas with [subscript q]95 = 3.4 found that the seeding greatly reduced long-wavelength (ITG-scale) turbulence. The long-wavelength turbulence that was reduced by the nitrogen seeding was localized to the region of r/a≈0.85, where the turbulence is well above marginal stability (as evidenced by Q[subscript i]/Q[subscript GB]≫1). The nonlinear gyrokinetic code GYRO was used to simulate the expected turbulence in these plasmas, and the simulated turbulent density fluctuations and turbulent energy fluxes quantitatively agreed with the experimental measurements both before and after the nitrogen seeding. Unexpectedly, the intrinsic rotation of the plasma was also found to be affected by the nitrogen seeding, in a manner apparently unrelated to a change in the electron-ion collisionality that was proposed by other experiments.<br />United States. Dept. of Energy. Office of Fusion Energy Sciences (Award E-FG02-94-ER54235)

Details

Language :
English
Database :
OpenAIRE
Journal :
MIT Web Domain
Accession number :
edsair.doi.dedup.....6be4c819482dc3f63d6650da495f398f