论文标题
反应器尺度平衡中的能量粒子损失机制接近准对称
Energetic particle loss mechanisms in reactor-scale equilibria close to quasisymmetry
论文作者
论文摘要
无碰撞物理学主要决定3D均衡中融合出生的α颗粒的运输。几种传输机制已与恒星构型有关,包括由于班级过渡,波纹诱捕和香蕉漂移对轨道而引起的随机扩散。鉴于在一组六个Quasihelical和Quasiaxisymmore平衡中的指导中心动力学,我们对捕获状态和运输机制进行分类。除了香蕉漂移对流和连锁传输外,我们还观察到平行绝热不变的实质性不保守,这可能通过扩散的香蕉尖端运动造成损失。此外,许多丢失的轨迹在较长的时间尺度上(具有周期性或不规则行为)之间进行过渡。我们讨论了每种相关运输机制的可能优化策略。我们对快速离子损耗和指标进行比较,以便诸如香蕉船只对流[1],过渡轨道和宽轨道宽度等机制的流行率。发现准核构型具有自然保护,以防止涟漪捕获和扩散的香蕉尖端运动,从而减少迅速损失。
Collisionless physics primarily determines the transport of fusion-born alpha particles in 3D equilibria. Several transport mechanisms have been implicated in stellarator configurations, including stochastic diffusion due to class transitions, ripple trapping, and banana drift-convective orbits. Given the guiding center dynamics in a set of six quasihelical and quasiaxisymmetric equilibria, we perform a classification of trapping states and transport mechanisms. In addition to banana drift convection and ripple transport, we observe substantial non-conservation of the parallel adiabatic invariant which can cause losses through diffusive banana tip motion. Furthermore, many lost trajectories undergo transitions between trapping classes on longer time scales, either with periodic or irregular behavior. We discuss possible optimization strategies for each of the relevant transport mechanisms. We perform a comparison between fast ion losses and metrics for the prevalence of mechanisms such as banana-drift convection [1], transitioning orbits, and wide orbit widths. Quasihelical configurations are found to have natural protection against ripple-trapping and diffusive banana tip motion leading to a reduction in prompt losses.