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.NP11.85
Abstract: NP11.00085 : Transport Variations in High qmin>1.5 Plasmas with Heating and Current Drive Actuators*
Presenter:
K.E. Thome
(GA)
Authors:
K.E. Thome
(GA)
J.R. Ferron
(GA)
C.C. Petty
(GA)
B.S. Victor
(LLNL)
C.T. Holcomb
(LLNL)
E. Schuster
(Lehigh U)
W Wehner
(Lehigh U)
J.M. Park
(ORNL)
B.A. Grierson
(PPPL)
F.M. Poli
(PPPL)
‘Predict-first’ methodology was employed to develop an experimental plan on DIII-D to study the effect of heating and current drive actuators on the current and pressure profiles of high-qmin>1.5, βN>3 plasmas, with the goal of achieving stable unchanging Vloop profiles as early in the discharge as possible to avoid the appearance of deleterious tearing modes. Predictive transport modeling conducted with TGLF in TRANSP indicated how varying the Ip ramp rate, ECCD timing, and NBI timing would change these profiles. During the experiment, qmin>2 discharges were sustained and their tearing instability, qmin, and performance was altered by these actuators. Changing the Ip ramp rate had little effect on the discharge but applying ECCD and/or NBI earlier increased qmin and improved n=2 tearing stability. TGLF predicted the effect of ECCD but not the other results. Increased fast-ion transport was also observed. Comparison of pre-experiment modeling, experimental results including turbulence data, and post-experiment simulations will be discussed in detail. These results will be used to validate transport models in this regime and to prepare for the upcoming 2019 campaign when increased off-axis co-Ip NBI power will be available.
*Supported by US DOE under DE-FC02-04ER54698.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.NP11.85
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