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: TP12.00003 : A comparison of Gkeyll and SOLPS-ITER radiation for long leg fusion pilot plant
Presenter:
Jonathan Roeltgen
(University of Texas at Austin)
Authors:
Jonathan Roeltgen
(University of Texas at Austin)
Akash Shukla
(The University of Texas at Austin)
Michael T Kotschenreuther
(ExoFusion)
James L. Juno
(Princeton Plasma Physics Laboratory)
Manaure Francisquez
(Princeton Plasma Physics Laboratory)
Tess Bernard
(General Atomics - San Diego)
Gregory W Hammett
(Princeton Plasma Physics Laboratory)
Ammar Hakim
(Princeton Plasma Physics Laboratory)
David R Hatch
(Institute for Fusion Studies, University of Texas at Austin)
Swadesh Mitter Mahajan
(University of Texas at Austin)
The effect of the impurity mass on the impurity's heating is examined to study the difference in impurity entrainment from the potential. This can be a substantial effect especially when the impurity ion temperature is low. Lower impurity temperatures are more likely in the long mean free path regimes expected in the SOL of burning plasmas as they have have less collisional heating. We find that since the heating scales as the impurity mass and low temperature ions do not have the energy necessary to overcome the potential, the heavier impurities are confined to the divertor better. Further, since SOLPS-ITER uses only a single ion temperature, SOLPS-ITER simulations of the same impurity transport do not observe this improved confinement. Additionally, using the kinetic formulation of line radiation in Gkeyll (applicable to continuum kinetic codes), we analyze non-Maxwellian effects on the radiation and how this kinetic radiation varies with element and charge state.
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