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Response of internal transport barriers to central electron heating and current drive on ASDEX Upgrade

机译:ASDEX升级上内部传输壁垒对中央电子加热和电流驱动的响应

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Internal transport barriers with the central electron temperature as large as the central ion temperature both in excess of 10 keV have been achieved in the Axi-symmetric divertor experiment (ASDEX Upgrade) [H. Vernickel et al., J. Nucl. Mater. 128, 71 (1984)]. By applying central electron cyclotron heating and current drive to negative central shear discharges, established by neutral beam heating in the current ramp, the core electron temperatures could be raised by more than a factor of 2. Despite the fivefold increase of the central electron heat flux, the ion and electron energy and also angular momentum transport did not deteriorate. For neutral beam injection alone and also with additional central electron cyclotron counter-current drive, a double tearing mode and the associated detrimental effect on the plasma confinement is destabilized only transiently, when the minimum of the safety factor (q(min)) passes through 2. For co-current drive, however, the confinement does not recover after q(min) has dropped below 2, as the (2,1) mode persists due to the influence of the current profile modification in the very plasma center. (C) 2000 American Institute of Physics. [S1070-664X(00)92105-0]. [References: 17]
机译:在轴对称偏滤器实验(ASDEX升级版)中已经达到了中心电子温度和中心离子温度都超过10 keV的内部传输势垒[H. Vernickel等人,J.Nucl.Chem.Soc。母校128,71(1984)]。通过将中央电子回旋加速器加热和电流驱动应用于负的中心剪切放电(由电流斜坡中的中性束加热建立),可以将核心电子温度提高2倍以上,尽管中心电子热通量增加了五倍。 ,离子和电子能量以及角动量传输都没有恶化。仅对于中性束注入,以及附加的中央电子回旋加速器逆流驱动,当最小安全系数(q(min))通过时,双撕裂模式以及对等离子体限制的相关有害作用仅会暂时不稳定。 2.但是,对于并流驱动,由于q(min)降到2以下,所以限制无法恢复,因为(2,1)模式由于在等离子体中心的电流分布修改的影响而持续存在。 (C)2000美国物理研究所。 [S1070-664X(00)92105-0]。 [参考:17]

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