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Global Alfven eigenmode stability in thermonuclear tokamak plasmas

机译:热核托卡马克血浆中的全球Alfven本征模式稳定性

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Relying on the good agreement observed between the gyrokinetic PENN model and the low toroidal mode number n damping measurements from JET, the stability of Alfven eigenmodes (AEs) is predicted for reactor relevant conditions. Full non-local wave-particle power transfers are computed between global wavefields and alpha particles in an ITER reference equilibrium, showing that low-n eigenmodes (n ≈= 2) are strongly damped and intermediate-n eigenmodes (n ≈= 12) with a global radial extension are stable with a damping rate γ/ω≈= 0.02. Even though an excitation of alpha particle driven instabilities remains in principle possible in reactors, this study suggests that realistic operation scenarios exist where all the AEs of global character are stable.
机译:依靠陀螺动力学PENN模型与JET的低环模数n阻尼测量结果之间的良好一致性,可以预测反应堆相关条件下Alfven本征模(AEs)的稳定性。在ITER参考平衡中,在全局波场和alpha粒子之间计算了全部非局部波粒功率传递,这表明低n个本征模(n≈= 2)被强阻尼,而中n个本征模(n≈= 12)具有整体径向延伸是稳定的,阻尼率为γ/ω≈= 0.02。尽管原则上在反应堆中仍然可能激发出由α粒子驱动的不稳定性,但这项研究表明,存在现实的操作场景,其中所有具有全局特征的AE都是稳定的。

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