Bulletin of the American Physical Society
60th Annual Meeting of the APS Division of Plasma Physics
Volume 63, Number 11
Monday–Friday, November 5–9, 2018; Portland, Oregon
Session NP11: Poster Session V: Laser-plasma Particle Acceleration; HEDP; Turbulence and Transport; DIII-D Tokamak; Machine Learning, Data Science (9:30am-12:30pm)
Wednesday, November 7, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.NP11.93
Abstract: NP11.00093 : Pedestal-to-SOL Transport by Intermittent Fluctuations During RMP ELM-Suppressed Plasmas*
Presenter:
George McKee
(Univ of Wisconsin, Madison)
Authors:
George McKee
(Univ of Wisconsin, Madison)
Zheng Yan
(Univ of Wisconsin, Madison)
Carlos Paz-Soldan
(General Atomics - San Diego)
Max E Austin
(Univ of Texas, Austin)
Terry L Rhodes
(University of California, Los Angeles)
Low-wavenumber fluctuation measurements in the outer core (~0.75<rho<0.92) and pedestal (0.95<rho<1) demonstrate that different processes take place in these regions in response to application of Resonant Magnetic Perturbations (RMPs). Inboard of the steep-gradient pedestal region, turbulence is significantly and rapidly (few ms times scale) increased in response to initial application of RMPs, and then further changes (can increase or decrease) when ELMs are fully suppressed. In the pedestal and SOL region, a different phenomenon is observed: “Bursty Wiggles” begin as soon as ELMs are fully suppressed. These intermittent but large amplitude (ñ/n~10%) fluctuation events have a <100 microsecond lifetime and occur at approximately 1 kHz; their frequency band extends to 200 kHz. These events peak in amplitude in the steep gradient pedestal region, and have a poloidal wavenumber k_perp*rho_s=0.05-0.1. These events correlate with bursts of increased density in the near SOL region and have positive skewness. The mechanisms behind this increased particle transport during RMP ELM-suppressed plasmas need to be characterized to accurately predict their impact on confinement.
*Supported by USDOE under DE-FG02-08ER54999, DE-FC02-04ER54698, DE-FG02-97ER54415, and DE-FG02-08ER54984.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.NP11.93
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