论文标题

当前放松的中断动态失控动态

Runaway dynamics in disruptions with current relaxation

论文作者

Pusztai, István, Hoppe, Mathias, Vallhagen, Oskar

论文摘要

Tokamak反应堆的安全操作需要可靠的破坏性建模能力,尤其是相关失控电子电流的时空动力学。在中断中,不稳定性可以将磁性表面分解为混乱的田间线区域,从而导致电流剖面松弛以及热量和颗粒的快速径向运输。使用在中断失控的建模框架梦中实现的平均场螺旋传输模型,我们计算出在存在当前放松事件的情况下失控电子的动态。在血浆部分中通量表面保持完整的情况下,在完整的磁场区域的边界处诱导皮肤电流。该皮肤电流区域成为有关随后的动态的重要中心:根据热传输,它可能会变成热欧姆电流通道或相当大的径向局部局部失控光束。如果完整的区域位于等离子体边缘,则可能会在反电流方向上产生失控的产生,这可能会发展为相当大的反向失控梁。即使电流松弛扩展到整个血浆,最终的失控电流密度曲线也会受到显着影响,因为诱导的电场在核心中减少并在边缘增加,从而将失控的一代中心转移到边缘。

The safe operation of tokamak reactors requires a reliable modeling capability of disruptions, and in particular the spatio-temporal dynamics of associated runaway electron currents. In a disruption, instabilities can break up magnetic surfaces into chaotic field line regions, causing current profile relaxation, as well as a rapid radial transport of heat and particles. Using a mean-field helicity transport model implemented in the disruption runaway modeling framework DREAM, we calculate the dynamics of runaway electrons in the presence of current relaxation events. In scenarios where flux surfaces remain intact in parts of the plasma, a skin current is induced at the boundary of the intact magnetic field region. This skin current region becomes an important center concerning the subsequent dynamics: It may turn into a hot ohmic current channel, or a sizable radially localized runaway beam, depending on the heat transport. If the intact region is in the plasma edge, runaway generation in the counter-current direction can occur, which may develop into a sizable reverse runaway beam. Even when the current relaxation extends to the entire plasma, the final runaway current density profile can be significantly affected, as the induced electric field is reduced in the core and increased in the edge, thereby shifting the center of runaway generation towards the edge.

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