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STABILIZATION OF NEOCLASSICAL TEARING MODES BY LOCALIZED ECCD IN DIII-D

机译:DIII-D中使用局部ECCD稳定新古典撕裂模式

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Neoclassical tearing modes (NTMs) are MHD modes which can become destabilized in a tokamak by a helical pressure perturbation. The NTM is particularly well suited to control since the mode is linearly stable although nonlinearly unstable, so if the island amplitude can be decreased below a threshold size the mode will decay and vanish. One means of shrinking the island is the replacement of the "missing" bootstrap current by a localized current generated by electron cyclotron current drive (ECCD). This method has been applied to the m=3=2 and the 2/1 tearing modes in DIII―D, in H―mode plasmas with ongoing ELMs and sawteeth, both of which generate seed islands periodically. In the case of the 3/2 mode, full suppression was obtained robustly by applying about 1.5 MW of ECCD very near the flux surface of maximum mode amplitude. When the mode first appears in the plasma the stored energy decreases by 30%, but when the mode is stabilized by the ECCD the beta may be raised above the initial threshold pressure by 20% by additional neutral beam heating, thereby effecting an improvement in the limiting beta of nearly a factor 2. An innovative automated search algorithm was implemented to find and retain the optimum location for the ECCD in the presence of the mode. Only partial success has been obtained in stabilizing the 2/1 mode by ECCD, but calculations indicate that ECCD power near 3 MW should be adequate for complete suppression of this mode.
机译:新古典撕裂模式(NTM)是MHD模式,由于螺旋压力扰动,它在托卡马克中可能变得不稳定。 NTM特别适合于控制,因为该模式虽然非线性不稳定,但线性稳定,因此,如果孤岛振幅可以减小到阈值以下,则该模式将衰减并消失。缩小岛的一种方法是用电子回旋加速器电流驱动(ECCD)产生的局部电流代替“缺失”的自举电流。该方法已应用于DIII-D中的m = 3 / n = 2和2/1撕裂模式,在具有持续ELM和锯齿的H-模式等离子体中,两者均定期生成种子岛。在3/2模式的情况下,通过在最大模式振幅的通量表面附近非常近地施加约1.5 MW的ECCD,可以稳健地获得完全抑制。当该模式首次出现在等离子体中时,存储的能量减少30%,但是当通过ECCD使该模式稳定时,可以通过额外的中性束加热将β值提高到初始阈值压力之上20%,从而提高限制将近一个因子的beta2。实施了一种创新的自动搜索算法,以在存在该模式的情况下找到并保留ECCD的最佳位置。通过ECCD在稳定2/1模式方面仅获得了部分成功,但是计算表明,接近3 MW的ECCD功率应足以完全抑制该模式。

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