首页> 外文会议>Proceedings of the Fifth Australia-Japan Workshop on Plasma Diagnostics December 15-17, 1999, Naka, Japan >Recent Results on Steady State and confinement Improvement Research on JT-60U
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Recent Results on Steady State and confinement Improvement Research on JT-60U

机译:JT-60U的稳态与约束改进研究的最新结果

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On the JT-60U tokamak, fusion plasma research for realization of a steady state tokamak reactor has been pursued. Towards that goal, confinement improved plasmas such as H-mode, high #beta#_p, reversed magnetic shear (RS) and latter two combined with H-mode edge pedestal have been developed and investigated intensively. A key issue to achieve non-inductive current drive relevant to a steady state fusion reactor is to increase the fraction of the bootstrap current and match the spatial profile to the otpimum. In 1999, as the result of the optimization, the equivalent deuterium-tritium (D-T) fusion gain (Q_DT~eq) of 0.5 was sustained for 0.8 s, which is roughly equal to the energy confinement time, in a RS plasma. In order to achieve a RS plasma in steady state two approach have been explored. One is to use external current driver such as lower hybrid current drive (LHCD), and by optimizing LHCD a quasi-steady RS discharge was obtaine.d The other approach is to utilize bootstrap current as much as possible, and with highly increased fraction of hte bootstrap current, a confinement enhancement factor of 3.6 was maintained for 2.7 s in a RS plasma with H-mode edge. A heating and current drive system in the electron cyclotron range of frequency for localized heating and current drive has been installed on JT-60U, and in initial experiments a clear increase of the central electron temperature in a RS high density central region was confirmed only with injected power of 0.75 MW.
机译:在JT-60U托卡马克上,已经进行了用于实现稳态托卡马克反应堆的聚变等离子体研究。为了实现该目标,已经开发并深入研究了封闭改进的等离子体,例如H模式,高#beta#_p,反向磁剪切(RS)以及后两种与H模式边缘基座结合的等离子体。实现与稳态聚变反应堆相关的无感电流驱动的关键问题是增加自举电流的比例,并使空间分布与双峰相匹配。作为优化的结果,在1999年,RS等离子体中的等效氘-融合增益(Q_DT〜eq)为0.5 s,大致等于能量约束时间。为了在稳态下获得RS等离子体,已经探索了两种方法。一种方法是使用外部电流驱动器,例如较低的混合电流驱动器(LHCD),然后通过优化LHCD获得准稳定的RS放电。d另一种方法是尽可能多地利用自举电流,并且自举电流的分数会大大增加。在具有自举电流的情况下,在具有H型边缘的RS等离子体中,限制增强因子3.6保持了2.7 s。在JT-60U上已安装了电子回旋加速器频率范围内的用于局部加热和电流驱动的加热和电流驱动系统,在最初的实验中,仅通过以下方法确认了RS高密度中心区域中中心电子温度的明显升高。注入功率为0.75兆瓦。

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