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Modeling sawtooth stabilization by energetic ions from neutral beam injection

机译:通过中性束注入产生的高能离子对锯齿稳定进行建模

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摘要

Recent advances in modeling the effects of anisotropic energetic ion distributions have enabled the development of a complete coherent physics explanation of sawtooth stabilization in both conventional and spherical tokamaks. As an example, a complete model has been developed to explain the asymmetric stabilization of sawteeth with respect to neutral beam injection direction in the Joint European Torus. This asymmetric sawtooth stabilization [M. Nave , Phys. Plasmas 13, 014503 (2006)] arises because of both the destabilizing contribution from the counterpassing ions and the strong modification of the stabilizing contribution of the nonadiabatic trapped ions due to flow shear. The fast particle effects including pressure anisotropy, sheared flows, and the adiabatic response to the internal kink mode have been modeled in general toroidal geometry for the first time.
机译:对各向异性高能离子分布的影响进行建模的最新进展使常规和球形托卡马克锯齿稳定的完整连贯物理解释得以发展。例如,已经开发了一个完整的模型来解释联合欧洲花托中锯齿相对于中性束注入方向的不对称稳定。这种不对称的锯齿稳定[M.中殿,物理。产生等离子13,014503(2006)]是因为反向传递离子的不稳定作用和非绝热捕获离子由于流动剪切对稳定作用的强烈影响。快速颗粒效应包括压力各向异性,剪切流和对内部扭结模式的绝热响应已首次在普通环形几何中建模。

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