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Active control of divertor asymmetry on EAST by localized D~2 and Ar puffing

机译:通过局部D〜2和Ar吹气主动控制EAST上的偏滤器不对称性

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摘要

The divertor asymmetry in particle and power fluxes has been investigated on the EAST superconducting tokamak [S. Wu and EAST Team, Fusion Eng. Des. 82, 463 (2007)] for both single null (SN) and double null (DN) divertor configurations. D~2 and Ar puffing at various divertor locations has also been explored as an active means to reduce peak target heat load and control divertor asymmetry. For SN, peak heat load on the outer divertor target is 2-3 times that on the inner divertor target under typical ohmic plasma conditions. DN operation leads to a stronger in-out asymmetry favoring the outer divertor. D~2 and Ar puffing promotes partial detachment near the strike points, greatly reducing peak target heat load (over 50%), while the far-SOL divertor plasma remains attached. What is remarkable is that the particle flux is even increased away from the strike points when the B×?B drift is directed toward the divertor target, thus facilitating particle removal.
机译:在EAST超导托卡马克上研究了粒子通量和功率通量的偏移不对称性。 Wu和FAST EAST团队。德斯[82,463(2007)]中同时包含单个零(SN)和双零(DN)分流器配置。还探索了在各个偏滤器位置处的D〜2和Ar膨化作为减少峰值目标热负荷和控制偏滤器不对称性的有效手段。对于SN,在典型的欧姆等离子体条件下,外分流器靶上的峰值热负荷是内分流器靶上的峰值热负荷的2-3倍。 DN操作导致更强的进出不对称性,有利于外部分流器。 D〜2和Ar膨化促进在触击点附近部分脱离,从而大大降低了峰值目标热负荷(超过50%),而远SOL偏滤器等离子体仍保持附着状态。值得注意的是,当B×ΔB漂移指向偏滤器目标时,粒子流甚至从撞击点增加,从而促进了粒子的去除。

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