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 BP12: Poster Session I:
DIII-D and Conventional Tokamaks 1
HBT-EP and TCV
Space Plasmas
ICF1: Analytical and Computational Techniques; Machine learning and data science techniques in inertially confined plasmas; Z-pinch, X-pinch, exploding wire plasma, and dense plasma focus; Compression and burn; Magneto-inertial fusion
High Energy Density Physics
9:30 AM - 12:30 PM
Monday, October 7, 2024
Hyatt Regency
Room: Grand Hall West
Abstract: BP12.00023 : Density Fluctuation Statistics and Turbulence Spreading Dynamics at the Edge-SOL Interface on DIII-D*
Presenter:
Filipp O Khabanov
(University of Wisconsin - Madison)
Authors:
Filipp O Khabanov
(University of Wisconsin - Madison)
Rongjie Hong
(University of California, Los Angeles)
Zheng Yan
(University of Wisconsin - Madison)
Patrick H. Diamond
(University of California, San Diego)
George R Tynan
(University of California, San Diego)
George R McKee
(University of Wisconsin-Madison)
Colin Chrystal
(General Atomics - San Diego)
Filippo Scotti
(Lawrence Livermore Natl Lab)
Guanying Yu
(University of California, Davis)
Collaboration:
DIII-D team
Turbulence spreading from the plasma edge to the SOL is of great interest because this can increase the SOL width, hence lowering the heat flux to the divertor. Handling divertor heat loads is crucial for the safe operation of plasma-facing components in future devices like ITER.
In L-mode plasmas significantly weaker inward spreading is observed with co-Ip neutral beam torque. During the torque scan, a strong correlation is observed between the power scrape-off length λq, injected torque Tinj and turbulence amplitude δn/n(ρ= 0.97), showing that edge turbulence plays a material role in determining the SOL conditions and heat flux width.
*Work supported by the US-DOE under DE-FC02-04ER54698, DE-FG02-08ER54999, DE-SC0019352, DE-FG02-99ER54531, DE-AC52-07NA27344
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