Bulletin of the American Physical Society
66th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 7–11, 2024; Atlanta, Georgia
Session TP12: Poster Session VII:
Turbulence and transport in fusion plasmas
ITER
MFE Heating and Energetic Particles
Self-organized configuration FRC, RFP, Spheromak
9:30 AM - 12:30 PM
Thursday, October 10, 2024
Hyatt Regency
Room: Grand Hall West
Abstract: TP12.00128 : Theory, control, and use of a fast ion axial bounce mode on C-2W
Presenter:
Erik M Granstedt
(TAE Technologies, Inc.)
Authors:
Erik M Granstedt
(TAE Technologies, Inc.)
Scott G Karbashewski
(TAE Technologies)
Jessica L MacFarlane
(TAE Technologies, Inc.)
Shuji Kamio
(University of California, Irvine)
Gabriel Player
(University of California, Irvine)
and the TAE Team
(TAE Technologies, Inc.)
To test this hypothesis, a model using a clumped distribution of current rings which bounce axially in a background magnetic field was developed. This model reproduces the main features observed in the experiment including harmonics with alternating axial parity and decreasing amplitude outside the turning point. The ratio of the axial and radial perturbation observed on magnetic probes near the wall is approximately matched after accounting for vessel image currents.
The drive for this mode is sensitive to the fast ion axial bounce period distribution. Staggering the voltages of the 8 neutral beam injectors reduced the mode amplitude by about 75% in an FRC plasma. Energy confinement time was not improved, indicating this mode does not adversely affect plasma performance.
The internal field in high-beta plasmas deviates substantially from the vacuum field, and C-2W lacks an internal field measurement. The frequency of this mode may serve as an additional constraint on reconstructed equilibria enabling the plasma state to be determined with greater fidelity.
[1] H. Gota et al., Nucl. Fusion 61, 106039 (2021)
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