Investigation of Turbulence Properties in Negative Triangularity Plasmas on DIII-D using Beam Emission Spectroscopy
ORAL
Abstract
Negative triangularity (NT) shaped plasmas demonstrate ELM-free plasmas with H98 > 1, βN ≥ 2.5, and fGW >1. Turbulence characteristics are measured with localized (kyρs <1), high speed (1 MS/s), 2D (64 channels) density fluctuation measurements using Beam Emission Spectroscopy (BES). Turbulence amplitudes in NT plasmas peak just inside the separatrix, similar to positive triangularity L-mode, but with low core turbulence amplitudes of ñ/n~0.5%, similar to positive triangularity H-modes. Scanning triangularity from -0.01 to -0.12 at fixed power input induces an H-mode to ELM-free NT-edge transition, however turbulence amplitudes decrease from ñ/n of 13% to 7% in the edge and from 0.8% to <0.2% inside ρ≈0.85. Increasing co-beam injected power tends to induce a radially broadened turbulence amplitude profile with lower peak values. Poloidal correlation lengths, decorrelation times and poloidal velocities indicate an electron diamagnetic directed mode with exceptionally broad wavenumber spectrum from kyρs<0.05 to kyρs>0.5 peaked near ρ≈0.95. 2D BES velocimetry is used to assess poloidal flow spectrum and particle flux <Ṽrñ>. H-mode like confinement in negative triangularity is achieved by effective turbulence reduction in the core while facilitating an ELM-free edge.
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Presenters
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Samuel Stewart
University of Wisconsin - Madison, University of Wisconsin-Madison
Authors
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Samuel Stewart
University of Wisconsin - Madison, University of Wisconsin-Madison
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George McKee
University of Wisconsin-Madison
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Filipp Khabanov
Wisconsin-Madison, University of Wisconsin-Madison, University of Wisconsin–Madison, University of Wisconsin- Madison, UWM
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Xijie Qin
University of Wisconsin-Madison
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Zheng Yan
University of Wisconsin - Madison
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Benedikt Geiger
University of Wisconsin - Madison
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Andrew O Nelson
Columbia University
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Carlos A Paz-Soldan
Columbia University
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Lothar Schmitz
University of California, Los Angeles
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Colin Chrystal
General Atomics - San Diego
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Kathreen E Thome
General Atomics