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Application of LHCD to sustainment and control of a reversed magnetic shear plasma in JT-60U

机译:LHCD在JT-60U中逆转磁剪切等离子体的维持和控制

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In JT-60U, it has been demonstrated experimentally that, by using lower hybrid current drive (LHCD), reversed magnetic shear can be maintained for a long period (7.5 s) and can be controlled non-inductively. The formation of a reversed magnetic shear configuration by a lower hybrid wave (LHW) injection alone was attempted an successfuly achieved. Strongly reversed magnetic shear, even stronger than that formed by a normal scenario (NBI heating at current ramp-up), with a large area of shear reversal, was formed by the LHW alone. Moreover, the attainable beta_N, the normalized plasma beta, in this discharge was found to be comparable to that of a normal reversed shear discharge. Further-more, the experimental results show that the area of good confinement can be changed, in coincidence with the reversed magnetic shear control by LHCD. In view of the recent success in improving plasma performance in reversed magnetic shear discharges with high power heating in TFTR, D-IIID and JT-60U, these results should not only affect the enhancement of performance but also the study of the physics involved. Recent results of JT-60U LHCD experiments with reversed magnetic shear plasmas are described in the paper.
机译:在JT-60U中,已经通过实验证明,通过使用较低的混合电流驱动器(LHCD),可以长期(7.5秒)保持反向磁剪切,并且可以非电感地控制。仅通过较低的杂交波(LHW)注射形成逆转磁剪切构造的成功实现了成功。强烈反转的磁剪切,甚至比通过正常情况(电流斜坡的NBI加热)形成的强烈抗磁剪切,通过单独的LHW形成大面积的剪切逆转。此外,发现该放电中可获得的β1N,归一化血浆β在该放电中的βββ与正常反转的剪切放电的ββ1N相当。此外,实验结果表明,可以将良好的限制面积与LHCD的反向磁剪切控制一致。鉴于最近在TFTR,D-IIID和JT-60U中提高逆转磁性剪切放电的逆转磁性剪切放电中的成功,这些结果不仅影响了性能的增强,还影响了所涉及的物理学的研究。纸张中描述了具有反转磁剪切等离子体的JT-60U LHCD实验的最新结果。

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