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Lithium technologies for edge plasma control

机译:用于边缘等离子体控制的锂技术

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We have investigated two new modes of operation been in T-10 limiter tokamak experiments with a novel rotary feeder of lithium dust. Quasi steady-state mode I and pulse mode II of dust delivery were realized in both OH and OH + ECRH disruption free plasmas at the lithium flow rate up to 2 x 10~(21) atoms/s. Ahigher flow rate in mode II with injection rate of ~5 x 10~(21) atoms/s caused a series of minor disruptions, which was completed by discharge termination after the major disruption. The observed decreases of bolometer and D_β signals, with increase of the electron density during the lithium dust injection, reveal the effects of the first wall conditioning. The lithium technology may provide inherent safety pathway for major disruption mitigation in a tokamak reactor, which requires demonstration in contemporary tokamak experiments.
机译:我们研究了T-10限制器托卡马克实验中使用新型锂粉旋转进料器的两种新操作模式。在OH和OH + ECRH不受干扰的等离子体中,以高达2 x 10〜(21)atoms / s的锂流量实现了准稳态模式I和脉冲模式II的粉尘输送。模式II中较高的流速(约5 x 10〜(21)原子/ s的注入速度)引起一系列较小的破坏,这些破坏在重大破坏后通过放电终止而完成。观察到的辐射热计和D_β信号的减少,以及在注入锂尘期间电子密度的增加,揭示了第一壁调节的影响。锂技术可能为缓解托卡马克反应堆中的重大破坏提供固有的安全途径,这需要在当代托卡马克实验中进行证明。

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