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The effect of toroidal field on the rotating magnetic field current drive in rotamak plasmas

机译:环形场对rotamak等离子体中旋转磁场电流驱动的影响

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摘要

A rotamak is one kind of compact spherically shaped magnetic-confinement device. In a rotamak the plasma current is driven by means of rotating magnetic field (RMF). The driven current can reverse the original equilibrium field and generate a field-reversed-configuration. In a conventional rotamak, a toroidal field (TF) is not necessary for the RMF to drive plasma current, but it was found that the present of an additional TF can influence the RMF current drive. In this paper the effect of TF on the RMF current drive in a rotamak are investigated in some detail. The experimental results show that addition of TF increases the RMF driven current greatly and enhances the RMF penetration dramatically. Without TF, the RMF can only penetrate into plasma in the edge region. When a TF is added, the RMF can reach almost the whole plasma region. This is an optimal strength of toroidal magnetic field for getting maximum plasma current when B_v and radio frequency generator power are fixed. Besides driving current, the RMF generates high harmonic fields in rotamak plasma. The effect of TF on the harmonic field spectra are also reported.
机译:rotamak是一种紧凑的球形磁约束装置。在rotamak中,等离子体电流通过旋转磁场(RMF)驱动。驱动电流可以使原始平衡场反向,并产生反向的场配置。在常规的rotamak中,对于RMF来驱动等离子体电流并不需要环形场(TF),但是发现附加TF的存在会影响RMF电流驱动。本文详细研究了TF对rotamak中RMF电流驱动的影响。实验结果表明,添加TF大大增加了RMF驱动电流,并显着提高了RMF的穿透能力。没有TF,RMF只能渗透到边缘区域的等离子体中。添加TF时,RMF几乎可以到达整个血浆区域。当B_v和射频发生器功率固定时,这是获得最大等离子体电流的环形磁场的最佳强度。除驱动电流外,RMF在rotamak等离子体中产生高谐波场。还报道了TF对谐波场谱的影响。

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