Vertical displacements close to ideal-MHD marginal stability in tokamak plasmas

F. Porcelli , T. Barberis , A. Yolbarsop
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Abstract

Elongated tokamak plasmas are prone to instability, initiated by vertical displacement perturbations, which can be suppressed if a perfectly conductive wall is placed near the plasma boundary, providing passive feedback stabilization. For the more realistic case of a resistive wall, the vertical mode can still grow on the relatively slow resistive wall time scale. Active feedback control is then required for complete stabilization. However, the slow growth is far from ideal-MHD marginal stability on the stable side, i.e., provided that the wall is sufficiently close to the plasma. It is shown that the resistive growth rate can be significantly faster, scaling with fractional powers of wall resistivity, if the wall position satisfies the criterion for ideal-MHD marginal stability, thus posing more stringent conditions for active feedback stabilization.

托卡马克等离子体中接近理想MHD边缘稳定性的垂直位移
细长的托卡马克等离子体容易发生由垂直位移扰动引起的不稳定性,如果在等离子体边界附近放置一个完全导电的壁,提供被动反馈稳定,则可以抑制这种不稳定性。对于电阻墙的更现实的情况,垂直模式仍然可以在相对较慢的电阻墙时间尺度上增长。然后需要主动反馈控制以实现完全稳定。然而,缓慢的生长在稳定侧远远不是理想的MHD边缘稳定性,即,假设壁足够靠近等离子体。结果表明,如果壁位置满足理想MHD边缘稳定性的标准,则电阻增长率可以显著更快,并随壁电阻率的分数幂缩放,从而为主动反馈稳定提出了更严格的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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