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Suppression and excitation of MHD activity with an electrically polarized electrode at the TCABR tokamak plasma edge

机译:用TCABR托卡马克等离子体边缘的电极化电极抑制和激发MHD活性

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Two reproducible regimes of tokamak operation, with excitation or suppression of MHD activity can be obtained using a voltage-biased electrode inside the edge of the TCABR tokamak. The experiment was carried out adjusting the tokamak parameters to obtain two types of discharges: with strong or weak MHD activity, without biasing in both cases. The plasma current was adjusted to cover a range of safety factor from 2.9 up to 3.5, so that when biasing was applied the magnetic island (3,1) could interact with the edge barrier. The application of biasing in subsequent discharges of each type resulted in excitation or suppression of the MHD activity. The results show that the dominant modes are m = 2, n = 1 and m = 3, n = 1 for excitation and partial suppression, respectively. In both regimes a strong decrease in the radial electric field is detected with destruction of the transport barrier and of the improved confinement caused by different mechanisms. The measurements include temporal behaviour of edge transport, turbulence, poloidal electric and magnetic fields, edge density, radial electric fields and radial profile of H_α line intensity. The explanation of the excitation and suppression processes is discussed in the paper.
机译:可以使用TCABR托卡马克边缘内部的电压偏置电极来获得两种可重现的托卡马克操作方式,并激发或抑制MHD活性。实验进行了调整托卡马克参数以获得两种类型的放电:MHD活性强或弱,两种情况均无偏差。调节等离子电流以覆盖从2.9到3.5的安全系数范围,以便在施加偏置时磁岛(3,1)可以与边缘势垒相互作用。在每种类型的后续放电​​中施加偏压会导致MHD活性的激发或抑制。结果表明,激励和部分抑制的主要模式分别为m = 2,n = 1和m = 3,n = 1。在这两种情况下,都可以检测到径向电场的强烈下降,这是由于运输屏障的破坏和由不同机制引起的改善的限制。这些测量包括边缘传输,湍流,极向电场和磁场,边缘密度,径向电场和H_α线强度的径向轮廓的时间行为。本文讨论了对激励和抑制过程的解释。

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