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Achievement of Reactor-Relevant Performance in Negative Triangularity Shape in the DIII-D Tokamak

机译:DIII-D托卡马克中负三角形形状的反应堆相关性能的实现

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Plasma discharges with a negative triangularity (delta = -0.4) shape have been created in the DIII-D tokamak with a significant normalized beta (beta(N) = 2.7) and confinement characteristic of the high confinement mode (H-98y2 = 1.2) despite the absence of an edge pressure pedestal and no edge localized modes (ELMs). These inner-wall-limited plasmas have a similar global performance as a positive triangularity (delta = +0.4) ELMing H-mode discharge with the same plasma current, elongation and cross sectional area. For cases both of dominant electron cyclotron heating with T-e/T-i 1 and dominant neutral beam injection heating with T-e/T-i = 1, turbulent fluctuations over radii 0.5 rho 0.9 were reduced by 10-50% in the negative triangularity shape compared to the matching positive triangularity shape, depending on the radius and conditions.
机译:在DIII-D托卡马克中已创建具有负三角形(δ= -0.4)形状的等离子放电,具有显着标准化的beta(beta(N)= 2.7)和高限制模式的限制特征(H-98y2 = 1.2)尽管没有边缘压力基座,也没有边缘局部模式(ELM)。这些内壁受限的等离子体具有与正三角形(δ= +0.4)ELMing H模式放电相似的整体性能,且等离子体电流,伸长率和横截面积相同。对于Te / Ti> 1的优势电子回旋加速器加热和Te / Ti = 1的优势中性束注入加热,与负三角形相比,半径0.5

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