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Vertical forces during vertical displacement events in an ITER plasma and the role of halo currents

机译:ITER等离子体中垂直位移事件期间的垂直力以及晕轮电流的作用

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Vertical displacement events (VDEs) can occur in elongated tokamaks causing large currents to flow in the vessel and other adjacent metallic structures. To better understand the potential magnitude of the associated forces and the role of the so called 'halo currents' on them, we have used the M3D-C-1 code to simulate potential VDEs in ITER. We used actual values for the vessel resistivity and pre-quench temperatures and, unlike most of the previous studies, the halo region is naturally formed by triggering the thermal quench with an increase in the plasma thermal conductivity. We used the 2D non-linear version of the code and vary the post-thermal quench thermal conductivity profile as well as the boundary temperature in order to generate a wide range of possible cases that could occur in the experiment. We also show that, for a similar condition, increasing the halo current does not increase the total force on the wall since it is offset by a decrease in the toroidal contribution.
机译:垂直位移事件(VDE)可能发生在细长的托卡马克中,导致大电流在容器和其他相邻的金属结构中流动。为了更好地了解相关力的潜在大小以及所谓的“晕电流”对它们的作用,我们使用了M3D-C-1代码来模拟ITER中的潜在VDE。我们使用了容器电阻率和骤冷前温度的实际值,并且与大多数以前的研究不同,晕圈区域是通过触发热猝灭并随着等离子体导热率的增加而自然形成的。我们使用了2D非线性版本的代码,并更改了热淬火后的导热系数曲线以及边界温度,以生成实验中可能发生的各种可能情况。我们还表明,对于类似的情况,增加光晕电流不会增加在壁上的总力,因为它会被环形贡献的减小所抵消。

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