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 GI02: MFE I: Plasma-Material Interactions and Stellerators
9:30 AM–12:30 PM,
Tuesday, November 9, 2021
Room: Ballroom C
Chair: Aaron Bader, University of Wisconsin - Madison
Abstract: GI02.00001 : Mitigation of plasma-material interactions with low-Z powders in DIII-D H-mode discharges*
9:30 AM–10:00 AM
Presenter:
Florian Effenberg
(Princeton Plasma Physics Laboratory)
Author:
Florian Effenberg
(Princeton Plasma Physics Laboratory)
Collaboration:
DIII-D
Lithium (Li), boron (B), and boron nitride (BN) powders (5-100 μm) were injected in upper-single-null H‑mode plasmas (Ip~1 MA, Bt=2 T, PNB~6 MW, ne~3.6-5.0x1019 m-3) in 2-s intervals at rates of 1-50 mg/s. Data reveal that the low Z powder injection increased line emission in the plasma boundary and near the divertor. EMC3-EIRENE modeling was used to resolve the species-dependent magnitude and spatial distribution of the radiative power losses. It is found that Li radiates more from the separatrix region and thus has a more substantial cooling effect on the core-edge. On the other hand, B and BN radiation is more concentrated in the divertor. Lithium powder injection at a rate of 3.3 mg/s causes an increase of divertor pressure by a factor of 3, while it was increased by only 1.5 in the case of B despite a higher rate of 35 mg/s1.
Synergistic use of boron and nitrogen in the form of BN powder at a rate of 81 mg/s showed the most substantial increase in divertor neutral pressure by one order of magnitude and lasting detachment without a significant change in core density and energy confinement.
The concomitant increase in fueling rates to maintain density and the reduction of O, C, and neutral D line emission in the plasma edge and divertor suggest additional wall conditioning effects from the cumulative injection of low-Z non-recycling materials2.
*Work supported by US DOE under DE-AC02-09CH11466, DE-FC02-04ER54698, DE-AC52-07NA27344, DE-SC0020357, and DE-AC05-00OR22725.
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