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 TP11: Poster Session VII: Basic Plasma Physics: Pure Electron Plasma, Strongly Coupled Plasmas, Self-Organization, Elementary Processes, Dusty Plasmas, Sheaths, Shocks, and Sources; Mini-conference on Nonlinear Waves and Processes in Space Plasmas - Posters; MHD and Stability, Transients (2), Runaway Electrons; NSTX-U; Spherical Tokamaks; Analytical and Computational Techniques; Diagnostics (9:30am-12:30pm)
Thursday, November 8, 2018
OCC
Room: Exhibit Hall A1&A
Abstract ID: BAPS.2018.DPP.TP11.104
Abstract: TP11.00104 : Analysis of the Updated ITPA Global H-Mode Confinement Database*
Presenter:
Stanley Martin Kaye
(Princeton Plasma Phys Lab, Princeton University, USA)
Authors:
Stanley Martin Kaye
(Princeton Plasma Phys Lab, Princeton University, USA)
Clemente Angioni
(Max Planck Inst, Garching, Germany)
Otto Kardaun
(Max Planck Inst, Garching, Germany)
Mikhail Maslov
(UKAEA, Culham Science Center, UK)
Michele Romanelli
(UKAEA, Culham Science Center, UK)
Francois Ryter
(Max Planck Inst, Garching, Germany)
Knud Thomsen
(Max Planck Inst, Garching, Germany)
Geert Verdoolaege
(Univ. of Ghent, Belgium)
ASDEX Upgrade Team
(Max Planck Inst, Garching, Germany)
MST1 Team
(See the author list of “H. Meyer et al 2017 Nucl. Fusion 57 102014")
JET Contributors
(See the author list of “X. Litaudon et al 2017 Nucl. Fusion 57 102001”, See the author list of “X. Litaudon et al 2017 Nucl. Fusion 57 102001”)
We report on the initial analysis of the ITPA global H-mode database, which has been updated with data closer to ITER baseline and hybrid conditions, including discharges from high-Z wall devices, specifically from ASDEX Upgrade W-wall and JET ILW operation. New and revised data has led to a reduction in the linear correlations among predictor variables relative to those that existed in developing the IPB98y2 scaling. Using standard constraints, individual device scalings suggest that the relatively strong density dependence observed in IPB98y2 arises primarily from the older, more circular devices and JET carbon-wall discharges. The data from higher- shaped and high-Z wall discharges exhibit a more modest density dependence. High-Z wall data also exhibit power degradations less severe than IPB98y,2, although on average IPB98y,2 slightly overpredicts their confinement by 5 to 10%. Regression analysis of the collection of this standard set confirm the more modest density and power degradation dependences. Results of this analysis, along with those of subsets of the data that reside close to the ITER operating range in q95, a/R, elongation, and Zeff will be presented.
*This work was supported in part by U.S. DOE Contract No. DE-AC02-09CH11466
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DPP.TP11.104
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