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Density compensation and stored energy recovery in resonant magnetic perturbation suppressed edge-localized mode H-mode plasmas using pellet fueling on EAST

机译:在EAST上使用颗粒燃料在共振磁扰动抑制的边缘局限模式H型等离子体中进行密度补偿和存储的能量回收

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The fueling of plasmas using frozen pellets in steady-state quiescent H-mode plasmas with edge-localized modes (ELMs) suppressed by external magnetic perturbations (RMPs) was successfully demonstrated on the EAST tokamak in plasmas with similar shapes to those in ITER with q(95) similar to 3.8, and triangularity delta similar to 0.45. During the fully suppressed-ELM phase using RMPs, the plasmas were refueled by deuteritun pellets with a frequency of 5 Hz from similar to 40cm above the mid-plane on the low field side. The results show that the pellet fueling would partially compensate density, which decreased due to the effect of pump-out induced by RMPs. It was interesting to discover that the stored energy of the plasma could be raised to the value from before RMP application using pellet injection, which is rarely reported in other tokamalcs. As for ELMs, they reappeared with a size smaller than the ELMs before RMP application accompanied with a magnetic coherent mode termination, however, the ELMs were still mitigated to a certain extent. Meanwhile, a similar experiment using supersonic molecular beam injection fueling was also carried out, which confirmed that pellet fueling is better for raising plasma stored energy. This investigation on the synergistic effect of pellet fueling and RMPs would be useful for simultaneous control of plasma density and ELMs in high performance H-mode plasmas in future devices, such as ITER.
机译:在EAST托卡马克上成功地证明了在稳态静态H模式等离子体中使用冷冻的小球为等离子体加油,该等离子体具有通过外部磁扰(RMP)抑制的边缘局限模式(ELM),其等离子体形状与ITER中具有类似q (95)近似于3.8,而三角形增量近似于0.45。在使用RMP完全抑制ELM的过程中,血浆以5 Hz的氘核弹丸补充燃料,频率类似于低场侧中平面上方40 cm。结果表明,颗粒燃料的添加将部分补偿密度,该密度由于RMP引起的抽出效应而降低。有趣的是,发现等离子体的存储能量可以提高到使用小球注射进行RMP之前的值,这在其他托卡马克剂中很少报道。至于ELM,其出现的尺寸要小于应用RMP之前的尺寸,并伴有磁相干模式终止,但ELM仍在一定程度上得到了缓解。同时,还进行了使用超音速分子束注入燃料的类似实验,证实了颗粒燃料对提高血浆储存能量更好。颗粒燃料和RMP协同效应的研究对于在未来的设备(例如ITER)中高性能H模式等离子体中的等离子体密度和ELM的同时控制将是有用的。

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