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Measurements of Plasma Termination in ICRF Heated Long Pulse Discharges with Fast Framing Cameras in the Large Helical Device

机译:大型螺旋装置中用快速取景相机对ICRF加热的长脉冲放电中的等离子体终止进行测量

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The termination process of long pulse plasma discharges in the Large Helical Device (LHD) have been observed with fast framing cameras, which shows that the reason for the termination of the discharged has been changed with increased plasma heating power, improvements of plasma heating systems and change of the divertor configuration, etc. For long pulse discharges in FYs2010-2012, the main reason triggering the plasma termination was reduction of ICRF heating power with rise of iron ion emission due to electric breakdown in an ICRF antenna. In the experimental campaign in FY2013, the duration time of ICRF heated long pulse plasma discharges has been extended to about 48 minutes with a plasma heating power of ~1.2 MW and a line-averaged electron density of ~1.2×1019 m?3. The termination of the discharges was triggered by release of large amounts of carbon dusts from closed divertor regions, indicating that the control of dust formation in the divertor regions is indispensable for extending the duration time of long pulse discharges.
机译:使用快速成帧相机观察到大型螺旋设备(LHD)中长脉冲等离子体放电的终止过程,这表明放电终止的原因已随着等离子体加热功率的增加,等离子体加热系统的改进以及对于FYs2010-2012的长脉冲放电,触发等离子体终止的主要原因是由于ICRF天线的电击穿导致ICRF加热功率的降低以及铁离子发射的增加。在2013财政年度的实验活动中,ICRF加热的长脉冲等离子体放电的持续时间已延长至约48分钟,等离子体加热功率约为1.2 MW,线平均电子密度约为1.2×10 19 < / sup> m ?3 。放电的终止是由封闭的分流器区域释放出大量的碳尘触发的,这表明控制分流器区域中灰尘形成对于延长长脉冲放电的持续时间是必不可少的。

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