Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session PP11: Poster Session VI: Relativistic Laser Plasma Interaction and Beam Physics; Boundary; MHD and Stability, Transients; FRC; Dusty Plasmas; Basic Studies; Computational and Diagnostic Methods (2:00pm-5:00pm)
Wednesday, November 7, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.PP11.95
Abstract: PP11.00095 : Initial Results of Multi-pulse Compact Toroid Refueling in the C-2W Field-Reversed Configuration
Presenter:
Ian A Allfrey
(TAE Technologies, Inc.)
Authors:
Ian A Allfrey
(TAE Technologies, Inc.)
Tadafumi Matsumoto
(Univ of California - Irvine, TAE Technologies, Inc.)
Thomas Roche
(TAE Technologies)
Hiroshi Gota
(TAE Technologies, Inc.)
Tomohiko Asai
(Nihon Univ - Tokyo)
fumiyuki Tanaka
(Nihon Univ - Tokyo)
and the TAE Team
(TAE Technologies, Inc.)
One of the limiting factors in the lifetime of a field-reversed configuration (FRC) is particle loss. To refuel the long-lived FRC plasma in the C-2W experiment a multi-pulse compact toroid injector (CTI) has been developed. Refueling is accomplished with two radially oriented magnetized coaxial plasma guns (MCPG), diametrically opposed on the mid-plane of the confinement vessel. The MCPG consists of puff valves, a quasi-DC iron-core magnet providing the compact toroid’s (CT) stuffing flux, a pre-ionizer system to improve breakdown and decrease jitter, in addition to coaxial electrodes where the CT is formed and accelerated. These systems allow for the creation of a relatively hot spheromak-like CT, while limiting excess neutral gas. The multi-pulse capability is achieved with individual pulsed power supplies for each CT for a total of 5 CT’s from each of the two injectors at a repetition rate up to 1kHz. Initial results, including CT parameters and effects on the FRC will be presented.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.PP11.95
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