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Simulations of symmetric halo currents

机译:对称光晕电流的仿真

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It is proposed that halo current magnitude during vertical disruptions can be significantly affected by a number of strongly interacting processes, involving the generation of neutrals, their ionization and recombination, open-surface parallel losses, Ohmic heating due to the large back-emfs, the generation of impurities, and mixed-circuit effects. To investigate the balance of such processes we present and interpret results from one-dimensional multi-fluid transport simulations. The simulations show that, as expected, core plasma current is mainly lost due to the reduction of the core cross-sectional area rather than the thermal quench, and that large values of the safety factor tend to produce low poloidal halo current. In addition, it is seen that increasing the resistance of the external halo path suppresses halo current, as do impurities, naturally released from the divertor during the termination event. High values of the safety factor insulate the halo plasma from parallel transport effects, increasing electrical conductance and toroidal halo current. For mega ampere spherical tokamak device parameters, values of the poloidal halo current are of the order of 15% of the original plasma current.
机译:有人提出,垂直中断期间的晕电流大小会受到许多强烈相互作用的过程的显着影响,这些过程涉及中性离子的产生,它们的电离和复合,开面平行损耗,由于反电动势大而导致的欧姆加热,杂质的产生以及混合电路效应。为了研究这种过程的平衡,我们提出并解释了一维多流体传输模拟的结果。仿真表明,正如预期的那样,铁芯等离子体电流的损失主要是由于铁芯横截面积的减小而不是热淬火,并且安全系数的值较大往往会产生低倍数的晕环电流。另外,可以看出,增加外部光晕路径的电阻会抑制光晕电流,在终止事件期间,自然会从分压器释放出杂质,从而抑制了光晕电流。高安全系数值使晕圈等离子体不受平行传输效应的影响,从而增加了电导率和环形晕圈电流。对于兆安的球形托卡马克装置参数,极光晕电流的值约为原始等离子体电流的15%。

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