An overview of the iter in-vessel coil systems

P. Heitzenroeder, A. Brooks, J. Chrzanowski, F. Dahlgren, R. Hawryluk, G. Loesser, C. Neumeyer, C. Mansfield, J. Cordier, D. Campbell, G. Johnson, A. Martin, P. Rebut, J. Tao, J.P. Smith, M. Schaffer, D. Humphreys, P. Fogarty, B. Nelson, R. Reed
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引用次数: 25

Abstract

ELM mitigation is of particular importance in ITER in order to prevent rapid erosion or melting of the divertor surface, with the consequent risk of water leaks, increased plasma impurity content and disruptivity. Exploitable “natural” small or no ELM regimes might yet be found which extrapolate to ITER but this cannot be depended upon. Resonant Magnetic Perturbation has been added to pellet pacing as a tool for ITER to mitigate ELMs. Both are required, since neither method is fully developed and much work remains to be done. In addition, in-vessel coils enable vertical stabilization and RWM control. For these reasons, in-vessel coils (IVCs) are being designed for ITER to provide control of Edge Localized Modes (ELMs) in addition to providing control of moderately unstable resistive wall modes (RWMs) and the vertical stability (VS) of the plasma.
iter容器内盘管系统概述
减缓ELM在ITER中特别重要,以防止转向器表面迅速侵蚀或熔化,从而有漏水、等离子体杂质含量增加和干扰的风险。可以利用的“自然的”小型或没有ELM的体制可能会被发现来推断ITER,但这不能依赖。共振磁扰动被添加到颗粒起搏中,作为ITER减轻elm的工具。这两种方法都是必需的,因为这两种方法都没有得到充分发展,还有许多工作要做。此外,容器内线圈可以实现垂直稳定和RWM控制。由于这些原因,除了控制中等不稳定的电阻壁模式(RWMs)和等离子体的垂直稳定性(VS)外,ITER还设计了容器内线圈(IVCs)来控制边缘局域模式(ELMs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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