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MHD stability of negative triangularity DIII-D plasmas

W. Boyes, F. Turco, J. Hanson, A. Marinoni, A. Turnbull, M. Austin, G. Navratil2023年Nuclear FusionIF 3出版社

Negative triangularity (NT) experiments in DIII-D point to an emergent reactor scenario free of sawteeth, endowed with benign, nondisruptive n = 2 tearing modes, which experience qmin 1 similar to the positive triangularity hybrid scenario. Plasmas exhibiting this behavior attain , high enough to reconsider long held views of NT stability. Ideal MHD and tearing stability analysis of well-diagnosed equilibrium reconstructions of experimental hybrid-like plasmas predict that among shape parameters, MHD stability limits are only sensitive to average triangularity. Operation is predicted to be possible at relevant to upcoming tokamaks and commercial NT reactors.

日本語訳

DIII-D における負三角形度(NT)実験は、鋸歯状振動がなく、無害で非破壊的な n = 2 テアリングモードを伴う、新たな炉心シナリオを示唆している。これは、正三角形度ハイブリッドシナリオと同様の qmin 1 を経験する。この挙動を示すプラズマは、 に達し、NT 安定性に関する長年の見解を再考するのに十分高い。実験的なハイブリッド様プラズマの十分に診断された平衡再構成の理想 MHD およびテアリング安定性解析は、形状パラメータの中で、MHD 安定性限界が平均三角形度にのみ敏感であることを予測する。運転は、今後のトカマクおよび商業用 NT 炉に関連する で可能であると予測される。

装置

diii-d高精度(タイトル一致)

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MagnetohydrodynamicsDIII-DTriangularityMHD stabilityNegative triangularity
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