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On alpha particle effects in tokamaks with a current hole

机译:关于具有当前孔的托卡马克中的alpha粒子效果

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During operation with so-called advanced scenarios in a tokamak, current holes, characterized by a virtually current-free central region, often develop. They might also be difficult to avoid, at least transiently, in reactor plasmas. This paper is focused on how the presence of a current hole affects quantities related to fusion born alpha particles. In particular, the anisotropy in the fast ion pressure, the current they generate and the profile of the power they transfer to the thermal plasma via collisions. Possible implications for the confinement of the alpha particles and the performance of the plasma are discussed. Furthermore, the results of a comparison between simulations and gamma-ray data from recent JET trace tritium experiments with current holes are presented.
机译:在托卡马克中使用所谓的高级方案进行操作时,通常会形成以实际上没有电流的中央区域为特征的电流孔。它们可能也很难避免,至少暂时避免在反应器等离子体中。本文的重点是当前空穴的存在如何影响与聚变天生α粒子有关的量。特别是,快速离子压力的各向异性,它们产生的电流以及它们通过碰撞传递给热等离子体的功率分布。讨论了限制α粒子和等离子体性能的可能含义。此外,还给出了模拟和最近的JET痕量experiments实验的伽马射线数据之间的比较结果。

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