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Three-Dimensional Numerical Analysis of Ion Diamagnetic Effects on Interchange Mode in Heliotron Plasmas

机译:电离等离子体中离子反磁性效应对交换模式的三维数值分析

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The influence of the ion diamagnetic flow on the resistive interchange mode including dissipation in the Large Helical Device (LHD) plasmas is investigated with three-dimensional (3D) magnetohydrodynamic (MHD) codes. The contribution on the interchange mode stability depends on the difference between the ideal growth rate γ I and the single fluid growth rate including resistivity and dissipation γ D. When γ D is close to γ I, the ion diamagnetic effects are stabilizing. In this case the stabilization can be approximated by an analytic formula by analogy with the case without dissipation. When γ D is far from γ I the ion diamagnetic effects are destabilizing.
机译:使用三维(3D)磁流体动力学(MHD)代码研究了离子反磁流对电阻交换模式的影响,包括大螺旋器件(LHD)等离子体中的耗散。交换模式稳定性的贡献取决于理想增长率γ I 与包括电阻率和耗散γ D 的单一流体增长率之间的差。当γ D 接近γ I 时,离子抗磁效应趋于稳定。在这种情况下,可以与没有耗散的情况类似地通过解析公式来近似稳定化。当γ D 远离γ I 时,离子抗磁作用不稳定。

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