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首页> 外文期刊>Plasma physics and controlled fusion >Characterization of edge profiles and fluctuations in discharges with type-II and nitrogen-mitigated edge localized modes in ASDEX Upgrade
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Characterization of edge profiles and fluctuations in discharges with type-II and nitrogen-mitigated edge localized modes in ASDEX Upgrade

机译:在ASDEX升级版中使用II型和氮缓和的边缘局部化模式表征边缘轮廓和放电波动

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摘要

Edge localized modes (ELMs) with high frequency and low power loss (type-II ELMs) occur in high triangularity, near double null configurations in ASDEX Upgrade with full tungsten plasma facing components. The transition from type-I to type-II ELMs is shown to occur above a collisionality threshold. For the first time the characteristic MHD fluctuations around 40 kHz have been localized. The fluctuations are observed in a wide region extending from the pedestal inward to normalized poloidal radius ρ_(pol) = 0.7. Their amplitudes on the low-field side of the plasma exhibit maxima above and below the mid-plane. The fluctuations move in the electron drift direction and lead to a reduced edge electron temperature gradient. The reduction in the edge pressure gradient is connected with these MHD fluctuations, which affect the electron temperature but not the electron density profiles. A comparison with nitrogen-mitigated type-I ELMs in the same plasma shape shows that core profiles are also affected. The electron temperature profile is self-similar for type-I and nitrogen-mitigated type-I ELMs but is not self-similar in the case of type-II ELMs.
机译:具有高频率和低功率损耗的边缘定位模式(ELM)(II型ELM)出现在ASDEX升级版中具有高三角形性,接近双零位配置的情况下,带有面向钨的全等离子体组件。从I型ELM过渡到II型ELM发生在碰撞阈值之上。首次首次确定了40 kHz附近的特征MHD波动。在从基座向内延伸到归一化的极坐标半径ρ_(pol)= 0.7的宽范围内都观察到了波动。它们在等离子体低场侧的振幅在中平面上方和下方显示出最大值。波动沿电子漂移方向移动并导致边缘电子温度梯度减小。边缘压力梯度的减小与这些MHD波动有关,这些波动影响电子温度,但不影响电子密度分布。与具有相同等离子体形状的氮缓解的I型ELM的比较表明,核心轮廓也受到影响。对于I型和氮缓和的I型ELM,电子温度分布是自相似的,但对于II型ELM,电子温度分布不是自相似的。

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