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Spontaneous shift of divertor plasma footprints during a discharge in a helical-axis heliotron device

机译:螺旋轴日光加速器装置放电过程中偏滤器等离子体足迹的自发移动

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A spontaneous shift of diverted plasma position during a discharge was investigated in a helical-axis heliotron device, Heliotron J. The shift of a few cm was observed for discharges with a non-inductive plasma current < 3 kA and the plasma stored energy < 3 kJ. The time dependence of the observed shift was related to that in the plasma current more closely than that in the stored energy. The most plausible mechanism for the observed shift is the change in the edge field topology caused by the plasma current. The three-dimensional finite-β equilibrium calculations assuming profiles of plasma pressure and plasma current density indicate that the effect of the plasma current on the field topology depends not only on the current flow direction but also on the current density profile. This experiment points out not only the importance of current control in fixing the divertor plasma position in a low-shear helical device but also the possibility of 'divertor swing' for the reduction of the divertor particle/heat load by controlling a small amount of plasma current within a tolerable influence on the plasma performance.
机译:在螺旋轴Heliotron设备Heliotron J中研究了放电过程中转移的等离子体位置的自发移动。对于无感等离子体电流<3 kA和等离子体存储能量<3的放电,观察到了几厘米的偏移。千焦耳观察到的位移的时间相关性与等离子电流中的相关性比与存储能量中的时间相关性更紧密。观察到的偏移的最合理的机制是由等离子体电流引起的边缘场拓扑的变化。假设等离子体压力和等离子体电流密度分布的三维有限β平衡计算表明,等离子体电流对场拓扑的影响不仅取决于电流流动方向,而且还取决于电流密度分布。该实验不仅指出了电流控制在固定低剪切力螺旋装置中的偏滤器等离子体位置中的重要性,而且指出了通过控制少量等离子体来降低偏滤器颗粒/热负荷的“偏滤器摆动”的可能性电流在可容忍范围内对等离子体性能的影响。

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