利用 EAST 托卡马克上的 BOUT++ 六场模型,比较共振磁扰动引起密度抽空前后的传输系数

Chengcheng Deng, Zixi Liu, Tianyang Xia, Yanjun Liu, Pengcheng Li, F. Long, Xiang Gao, Shouxin Wang, Guoqiang Li, Haiqing Liu, Qing Zang, Jiuying Li, Xiaoyu Yin, Kangning Yang, A. Liu, Jinlin Xie, Tao Lan, Hong Li, W. Mao, Chu Zhou, Zhuang Ge, Weixing Ding, Wandong Liu
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摘要

许多实验证明,共振磁扰动(RMP)会影响托卡马克边缘的湍流输运。通过 SMBI 的先进超导托卡马克(EAST)密度调制实验,利用实验数据计算了粒子输运系数,结果表明粒子输运系数随 RMP 的增加而增加。本文使用 BOUT++ 中的六场双流体模型模拟了 RMP 诱导密度抽空前后的输运情况,分别称为无 RMP 和有 RMP 的情况。在线性模拟中,有 RMP 的情况下不稳定性普遍降低。此外,还对粒子传输系数进行了分析,结果表明,有 RMP 的情况下,粒子传输系数变大,这与实验结论一致。而且,其大小与实验数据计算出的结果相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of transport coefficients before and after density pump-out induced by resonant magnetic perturbation using a BOUT++ six-field model on the EAST tokamak
Many experiments have demonstrated that resonant magnetic perturbation (RMP) can affect the turbulent transport at the edge of the tokamak. Through the Experimental Advanced Superconducting Tokamak (EAST) density modulation experiment by SMBI, the particle transport coefficients were calculated using the experimental data, and the result shows that the particle transport coefficients increase with RMP. In this paper, the six-field two-fluid model in BOUT++ is used to simulate the transport before and after density pump-out induced by RMP, respectively referred as the case without RMP and the case with RMP. In the linear simulations, the instabilities generally decreases for cases with RMP.In the nonlinear simulation, ELM only appears in the case without RMP. Additionally, the particle transport coefficient was analyzed, and the result shows that the particle transport coefficient becomes larger for the case with RMP, which is consistent with the experimental conclusion. Moreover, its magnitude is comparable to the results calculated from experimental data.
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