论文标题

Wendelstein 7-X等离子体中的湍流杂质传输模拟

Turbulent impurity transport simulations in Wendelstein 7-X plasmas

论文作者

García-Regaña, J. M., Barnes, M., Calvo, I., Parra, F. I., Alcusón, J., Davies, R., González-Jerez, A., Mollén, A., Sánchez, E., Velasco, J. L., Zocco, A.

论文摘要

Wendelstein 7-X(W7-X)提出了通过准线性和非线性陀螺仪模拟对湍流杂质转运的研究。该计算是通过最近开发的陀螺仪代码Stella进行的。在存在各种类型的背景不稳定性的情况下,考虑了不同的杂质物种:QuasilIarear部分的ITG,TEM和ETG模式;非线性结果的ITG和TEM。虽然准线性方法允许人们得出有关各种贡献对通量的符号或相对重要性的定性结论,但非线性模拟定量确定湍流的大小,并检查准线​​性结论的程度。尽管大部分非线性模拟是在痕量杂质浓度下进行的,但也以现实的有效电荷值进行了非线性模拟,以了解基于对痕量杂质执行的模拟的结论在多大程度上,可以将其外推到现实的杂质浓度。提出的结果得出的结论是,W7-X中的湍流径向杂质转运主要由普通扩散统治,普通扩散接近了最近的W7-X实验运动中测得的。还可以证实,热扩散增加了较弱的内向通量贡献,并且在没有杂质温度和密度梯度的情况下,ITG和TEM驱动的湍流分别将杂质向内和向外推动。

A study of turbulent impurity transport by means of quasilinear and nonlinear gyrokinetic simulations is presented for Wendelstein 7-X (W7-X). The calculations have been carried out with the recently developed gyrokinetic code stella. Different impurity species are considered in the presence of various types of background instabilities: ITG, TEM and ETG modes for the quasilinear part of the work; ITG and TEM for the nonlinear results. While the quasilinear approach allows one to draw qualitative conclusions about the sign or relative importance of the various contributions to the flux, the nonlinear simulations quantitatively determine the size of the turbulent flux and check the extent to which the quasilinear conclusions hold. Although the bulk of the nonlinear simulations are performed at trace impurity concentration, nonlinear simulations are also carried out at realistic effective charge values, in order to know to what degree the conclusions based on the simulations performed for trace impurities can be extrapolated to realistic impurity concentrations. The presented results conclude that the turbulent radial impurity transport in W7-X is mainly dominated by ordinary diffusion, which is close to that measured during the recent W7-X experimental campaigns. It is also confirmed that thermo-diffusion adds a weak inward flux contribution and that, in the absence of impurity temperature and density gradients, ITG- and TEM-driven turbulence push the impurities inwards and outwards, respectively.

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