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Computational analysis of ion orbital loss in diverted positive- and negative-triangularity tokamaks

机译:转向正面和负三角形托卡马克分流的离子轨道损失的计算分析

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摘要

The mechanism of ion orbital loss in diverted negative-triangularity (NT) tokamaks is significantly different from that of positive-triangularity (PT) tokamaks. The orbital loss from the edge of NT tokamaks can be quite large, because the separatrix X-point is located on the outboard side, meaning that trapped ions crossing the separatrix are lost to the inboard divertor plate after a mirror reflection on the side of the strong magnetic field. NT tokamaks have difficulties in building up steep pressure gradients in the edge regions. In contrast, the majority of trapped ions crossing the separatrix in PT tokamaks survive (through complete banana motions) without reaching the X-point region. For NT tokamaks, topological changes in the trapped ion trajectories can be achieved in the presence of the radial electric field, thus reducing the orbital loss, whereas for PT tokamaks, the orbital loss is relatively insensitive to the radial electric field.
机译:转移的阴性三角形(NT)Tokamaks的离子轨道损失机制与正 - 三角形(PT)托卡马克显着不同。 NT Tokamak的边缘的轨道损失可能相当大,因为分离器X点位于舷外侧,这意味着在镜面反射在镜面反射后丢失到舷内的离子板上的捕集离子在镜面反射 强磁场。 NT Tokamaks难以在边缘区域构建陡峭的压力梯度。 相比之下,在PT Tokamaks中穿过分离器的大多数捕获的离子在不达到X点区域的情况下存活(通过完整的香蕉运动)。 对于NT Tokamaks,可以在径向电场的存在下实现捕获的离子轨迹的拓扑变化,从而降低了轨道损失,而对于Pt tokamaks,轨道损失对径向电场相对不敏感。

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