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Physical Engineering Test and First Divertor Plasma Configuration in EAST

机译:EAST中的物理工程测试和第一个分流器等离子体配置

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摘要

Physical engineering capability on the superconducting magnetic system of EAST was tested and first divertor plasma configuration in EAST was obtained.The extrapolation of the safety limit has verified the reliability of the system for long pulse operation.A stably controlled diverted plasmas configuration with an elongation κ in excess of 1.8 and plasma current of up to 500 kA,by using the (copper) internal coils to control the vertical displacement instability was obtained by an optimized plasma control algorithm.Highly shaped plasma at various configura-tions,which almost covers all designed configurations for EAST,was generated stably.A number of operational issues,such as plasma initiation,ramp up and configuration control with constraints of superconducting coils,were successfully investigated.All of the results obtained proved both the capability of the superconducting poloidal magnets for operation under steady-state condition and effectiveness of the plasma control algorithm for EAST.
机译:测试了EAST超导磁系统的物理工程能力,并获得了EAST中的第一个偏滤器等离子体配置。安全极限的外推法验证了该系统在长脉冲操作下的可靠性。具有κ伸长率的稳定控制的偏向等离子体配置通过优化的等离子控制算法,通过使用(铜)内部线圈控制垂直位移的不稳定性,可实现超过1.8的等离子电流和高达500 kA的等离子电流。各种配置的高度成形的等离子几乎涵盖了所有设计成功地研究了EAST的配置。成功地研究了许多操作问题,例如等离子体引发,加速和具有超导线圈约束的配置控制。所获得的所有结果都证明了超导电极磁体的运行能力稳态条件下等离子体控制算法f的有效性或EAST。

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