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 TO08: MFE: Disruptions and Runaway Electrons
9:30 AM–12:30 PM,
Thursday, November 11, 2021
Room: Rooms 317-318
Chair: Carl Sovinec, University of Wisconsin - Madison
Abstract: TO08.00009 : NIMROD Simulations of Multi-Injector Shattered Pellet Injection*
11:06 AM–11:18 AM
Presenter:
Charlson C Kim
(General Atomics - San Diego)
Authors:
Charlson C Kim
(General Atomics - San Diego)
Brendan C Lyons
(General Atomics - San Diego)
Joseph Mcclenaghan
(General Atomics - San Diego)
Paul B Parks
(General Atomics - San Diego)
Lang L Lao
(General Atomics - San Diego)
Collaboration:
NIMROD Team
experiments show strong peaking of the radiation and significant n=1 activity. NIMROD single injector SPI
simulations\footnote{C C Kim et al.Physics of Plasmas,26:042510,2019} reproduce these features. It is believed that multi-injector SPI scenarios may mitigate
these undesirable features. However, experimental demonstration of multi-injector SPI has proven to be challenging.
NIMROD simulations of multi-injector SPI in DIII-D have been performed. We will describe the fragment plume
representation based on the statistical fragmentation model by Parks\footnote{P Parks.GA internal report,(GA-A28325),2016}. Simulation results demonstrate
the key role of the fragment distribution in the efficacy of the dual injector scenario. For the ideal case of
synchronized dual injectors, suppression of the usual n=1 activity is observed. The more benign ideal dual injector also
results in higher radiation fractions. We map the sensitivity of this optimal result to delays between the injectors
and differing fragment plume distributions. Based on this sensitivity map, we present suggestions for the dual
injector experiments and extrapolate to ITER.
*work supported by US DOE-OFES: DE-SC0018109, DE-FG02-95ER54309, DE-FC02-04ER54698, and GA ITER Contract ITER/CT/14/4300001108
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