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High density, high performance high-confinement-mode plasmas in the Joint European Torus (JET)

机译:欧洲联合圆环(JET)中的高密度,高性能,高约束模式等离子体

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摘要

Recent experiments at the Joint European Torus [Rebut , Fusion Eng. Des. 22, 7 (1993)] aim to improve confinement quality in high-confinement-mode (H-mode) plasmas at high densities. Energy confinement time as predicted by the International Thermonuclear Experimental Reactor ITER-H98(y,2) scaling at densities near or in excess of 85% of the Greenwald density limit scaling has been obtained by (i) strong plasma shaping (triangularity 0.35<δ<0.5), or (ii) impurity seeding, or (iii) high-field side pellet injection. Slow peaking of central density without confinement degradation is observed. Loss of sawteeth and core impurity accumulation is prevented by central ion cyclotron resonance heating. In high triangularity and impurity seeded plasmas, reduction of average power loss associated with type I edge localized modes (ELMs) is found which is attributed to the occurrence of additional losses in between ELMs. Broad band magnetic fluctuations are seen which are reminiscent of regimes with small ELMs in other tokamaks. Plasma configurations have been varied to find best combinations of edge pedestal parameters and small ELM losses. (C) 2002 American Institute of Physics. [References: 44]
机译:欧洲联合圆环的最新实验[Rebut,Fusion Eng。德斯22,7(1993)]旨在提高高密度模式下高浓度模式(H模式)等离子体的限制质量。通过(i)强等离子体整形(三角形度0.35 <δ)获得了国际热核实验堆ITER-H98(y,2)在接近或超过格林瓦尔德密度极限标度的85%密度时预测的能量限制时间。 <0.5),或(ii)杂质注入,或(iii)高场侧颗粒注入。观察到中心密度的峰值缓慢而没有限制降解。中央离子回旋共振加热可防止锯齿损失和芯杂质积累。在高三角形度和杂质注入的等离子体中,发现与I型边缘局部模式(ELM)相关的平均功率损耗降低,这归因于ELM之间出现了额外的损耗。可以看到宽带磁起伏,这让人想起其他托卡马克中使用小型ELM的情况。等离子体配置已发生变化,以找到边缘基座参数和较小ELM损耗的最佳组合。 (C)2002美国物理研究所。 [参考:44]

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