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Investigation of MHD phenomena on Tore Supra by localised eccd perturbation experiments

机译:通过局部eccd扰动实验研究Tore Supra上的MHD现象

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摘要

Electron cyclotron current drive ( ECCD) at a low power level has been used on Tore Supra to induce local perturbations of the current density profile. Regimes with strong MHD activity have been analysed, and compared with similar stable discharges, in order to investigate the possible causes of their instability and relate the evolution of the discharge to the localization of EC power deposition. Both co- and counter-current drive pulses have been applied to dominantly or fully non-inductive discharges, sustained by a lower hybrid current drive. Detailed reconstructions by current diffusion calculations have been performed and the error bars evaluated. This method has proved valuable for shedding light on the complex interplay between the evolutions of temperature and safety factor profiles in steady-state tokamak plasmas. The crucial role of the dynamic evolution of rational surfaces has been identified. Moreover, we demonstrate that the operational domain in which ECCD can be employed must cope with the overall current profile characteristics, in particular the position where the safety factor has a minimum.
机译:低功率水平的电子回旋电流驱动器(ECCD)已在Tore Supra上使用,以引起电流密度曲线的局部扰动。分析了具有强MHD活性的区域,并与类似的稳定放电进行了比较,以研究其不稳定的可能原因,并将放电的演变与EC功率沉积的局部性联系起来。并流和逆流驱动脉冲都已被施加到显性或完全非感应放电,并由较低的混合电流驱动维持。通过电流扩散计算进行了详细的重建,并评估了误差线。事实证明,该方法对于揭示稳态托卡马克等离子体中温度与安全系数曲线的演变之间的复杂相互作用非常有价值。已经确定了有理曲面的动态演化的关键作用。此外,我们证明了可以在其中使用ECCD的操作领域必须应对总体电流分布特征,特别是安全系数最小的位置。

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