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VENUS-LEVIS and its spline-Fourier interpolation of 3D toroidal magnetic field representation for guiding-centre and full-orbit simulations of charged energetic particles

机译:VENUS-LEVIS及其3D环形磁场表示的样条-傅里叶插值,用于带电高能粒子的引导中心和全轨道模拟

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摘要

Curvilinear guiding-centre drift and full-orbit equations of motion are presented as implemented in the VENUS-LEVIS code. A dedicated interpolation scheme based on Fourier reconstruction in the toroidal and poloidal directions and cubic spline in the radial direction of flux coordinate systems is detailed. This interpolation method exactly preserves the order of the RK4 integrating scheme which is crucial for the investigation of fast particle trajectories in 3D magnetic structures such as helical saturated tokamak plasma states, stellarator geometry and resonant magnetic perturbations (RMP). The initialisation of particles with respect to the guiding-centre is discussed. Two approaches to implement RMPs in orbit simulations are presented, one where the vacuum field is added to the 2D equilibrium, creating islands and stochastic regions, the other considering 3D nested flux-surfaces equilibrium including the RMPs.
机译:如VENUS-LEVIS代码所示,给出了曲线引导中心漂移和全轨道运动方程。详细介绍了基于磁通坐标系在径向和极向方向上的傅立叶重构以及三次样条曲线的专用插值方案。这种插值方法精确地保留了RK4积分方案的顺序,这对于研究3D磁性结构中的快速粒子轨迹至关重要,例如螺旋饱和托卡马克等离子体状态,恒星几何和共振磁扰动(RMP)。讨论了相对于引导中心的粒子初始化。提出了两种在轨道仿真中实现RMP的方法,一种是将真空场添加到2D平衡中,创建岛和随机区域,另一种方法是考虑包括RMP的3D嵌套通量-表面平衡。

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