Bulletin of the American Physical Society
63rd Annual Meeting of the APS Division of Plasma Physics
Volume 66, Number 13
Monday–Friday, November 8–12, 2021; Pittsburgh, PA
Session BP11: Poster Session I:
BEAMS - Coherent radiation and intense laser-driven x-ray sources; Laser-plasma ion accelerators; Relativistic high-energy-density physics and high field physics
MFE - Low Aspect Ratio Tokamaks
9:30 AM - 12:30 PM
Monday, November 8, 2021
Room: Hall A
Abstract: BP11.00013 : Initial Transport Studies in the Spherical Tokamak Pi3 at General Fusion Inc
Presenter:
Celso Ribeiro
(General Fusion Inc)
Authors:
Celso Ribeiro
(General Fusion Inc)
Rouslan Ivanov
(General Fusion Inc)
Carl Dunela
(General Fusion Inc)
Filiberto Braglia
(General Fusion Inc)
Ivan Khalzov
(General Fusion Inc)
William Young
(General Fusion Inc)
Patrick Carle
(General Fusion Inc)
Akbar Rohollahi
(General Fusion Inc)
Kelly Epp
(General Fusion Inc)
Adrian Wong
(General Fusion Inc)
Aaron Froese
(General Fusion Inc)
Ryan Zindler
(General Fusion Inc)
Daymon Krotez
(General Fusion Inc)
Alex Mossman
(General Fusion Inc)
Michel Laberge
(General Fusion Inc)
General Fusion Team
(General Fusion)
The Pi3 plasmas are formed exclusively via coaxial-helicity injection (CHI) and last ~20ms. The plasma is close-fitted to an Al spherical vacuum vessel of 1.00m inner radius and 50mm thickness, acting as a flux-conserver. The wall is regularly coated by lithium using 4 heated evaporators.
Typical of Pi3 plasmas in early phases of discharge (~3ms) are: Ro=0.67m, a=0.37m, A=1.8, k=1.7, δ~0.4, BT(Ro)=0.23T, Ip =300kA, ne(bar)=4.3x1019m-3, Te(0)=170eV and Ti(bar)=230eV.
Equilibrium reconstruction is performed by Corsica code using constraints from poloidal pickup coils inside of the vessel and polarimeter signals.
Results of the thermal energy confinement time tauE and the thermal diffusivity Chi will be presented. The former is calculated (with corrections of dWth/dt) from kinetics and power balance associated with the Monte Carlo method. Initial results from kinetics in medium plasma densities (NG=0.6) show tauE=3.8ms, close to the expected from the ITER97-L-mode scaling: 5.2ms.
[1] M. Laberge et al., in this conference
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