轴对称非中性等离子体平衡的数值计算

R. Spencer, S. N. Rasband, R. Vanfleet
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引用次数: 36

摘要

描述了计算轴对称非中性等离子体平衡的有效技术。这些平衡可以通过要求整体热平衡,通过指定中层径向密度分布,或通过指定∫n dz的径向分布来获得。样条和有限差分都被使用,并通过使用热平衡密度剖面的新特征来比较两者的精度,该特征给出了估算热平衡径向和轴向梯度尺度长度的简单公式。对于全局热平衡,如果相邻样条之间的距离约为两个德拜长度,则样条可以达到1%的精度,而有限差分需要大约一半德拜长度的网格间距才能达到相同的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical calculation of axisymmetric non‐neutral plasma equilibria
Efficient techniques for computing axisymmetric non‐neutral plasma equilibria are described. These equilibria may be obtained either by requiring global thermal equilibrium, by specifying the midplane radial density profile, or by specifying the radial profile of ∫n dz. Both splines and finite‐differences are used, and the accuracy of the two is compared by using a new characterization of the thermal equilibrium density profile which gives a simple formula for estimating the radial and axial gradient scale lengths of thermal equilibria. It is found that for global thermal equilibrium 1% accuracy is achieved with splines if the distance between neighboring splines is about two Debye lengths while finite differences require a grid spacing of about one‐half Debye length to achieve the same accuracy.
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