论文标题

鱼骨引起的α运输的非线性动力学

Nonlinear dynamics of the fishbone-induced alpha transport on ITER

论文作者

Brochard, G., Dumont, R., Lütjens, H., Garbet, X., Nicolas, T., Maget, P.

论文摘要

使用非线性混合动力学MHD代码XTOR-K计算了针对ITER 15 MA基线场景计算鱼骨诱导的α颗粒的运输。为了分析鱼骨不稳定性的特征状态:动力学驱动极限和强动力驱动极限。在这两个方案中,恢复了N = M = 1鱼骨不稳定性的特征特征,例如模式频率的强上/向下拨动,与被困和通过Alpha颗粒的共振转运相关。在模拟中考虑了N = M = 0剪切的螺栓和环形等离子体旋转的效果。剪切不可忽略,这意味着鱼骨模式频率具有径向依赖性,从而影响了波粒的共振条件。相位空间孔和团块结构均在两个非线性方案中观察到,围绕进取和传递的共振。随着不同模式频率上下冲击,这些结构仍附着在共振上。在非线性阶段,单个共振捕获颗粒的传输被确定为与模式粒子同步相关。在此基础上,提出了粒子传输和模式显性下隔间之间非线性耦合的部分机制。 alpha颗粒内部的总体运输Q = 1表面是模拟之间初始种群的2-5%。发现α功率的损失直接等于α颗粒的损失。

The fishbone-induced transport of alpha particles is computed for the ITER 15 MA baseline scenario, using the nonlinear hybrid Kinetic-MHD code XTOR-K. Two limit cases have been studied, in order to analyse the characteristic regimes of the fishbone instability : the weak kinetic drive limit and the strong kinetic drive limit. In both those regimes, characteristic features of the n = m = 1 fishbone instability are recovered, such as a strong up/down-chirping of the mode frequency, associated with a resonant transport of trapped and passing alpha particles. The effects of the n = m = 0 sheared poloidal and toroidal plasma rotation are taken into account in the simulations. The shear is not negligible, which implies that the fishbone mode frequency has a radial dependency, impacting the wave-particle resonance condition. Phase space hole and clump structures are observed in both nonlinear regimes, centered around the precessional and passing resonances. These structures remains attached to the resonances as the different mode frequencies chirp up and down. In the nonlinear phase, the transport of individual resonant trapped particles is identified to be linked to mode-particle synchronization. On this basis, a partial mechanism for the nonlinear coupling between particle transport and mode dominant down-chirping is proposed. The overall transport of alpha particles inside out the q = 1 surface is of order 2-5% of the initial population between the simulations. The loss of alpha power is found to be directly equal to the loss of alpha particles.

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