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首页> 外文期刊>Plasma physics and controlled fusion >Integrated tokamak modelling with the fast-ion Fokker-Planck solver adapted for transient analyses
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Integrated tokamak modelling with the fast-ion Fokker-Planck solver adapted for transient analyses

机译:集成的托卡马克建模与适用于瞬态分析的快速离子Fokker-Planck求解器

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摘要

Integrated tokamak modelling that enables the simulation of an entire discharge period is indispensable for designing advanced tokamak plasmas. For this purpose, we extend the integrated code TOPICS to make it more suitable for transient analyses in the fast-ion part. The fast-ion Fokker-Planck solver is integrated into TOPICS at the same level as the bulk transport solver so that the time evolutions of the fast ion and the bulk plasma are consistent with each other as well as with the equilibrium magnetic field. The fast-ion solver simultaneously handles neutral beam-injected ions and alpha particles. Parallelisation of the fast-ion solver in addition to its computational lightness owing to a dimensional reduction in the phase space enables transient analyses for long periods in the order of tens of seconds. The fast-ion Fokker-Planck calculation is compared and confirmed to be in good agreement with an orbit following a Monte Carlo calculation. The integrated code is applied to ramp-up simulations for JT-60SA and ITER to confirm its capability and effectiveness in transient analyses. In the integrated simulations, the coupled evolution of the fast ions, plasma profiles, and equilibrium magnetic fields are presented. In addition, the electric acceleration effect on fast ions is shown and discussed.
机译:集成托卡马克模型可以模拟整个放电周期,这对于设计高级托卡马克等离子体是必不可少的。为此,我们扩展了集成代码TOPICS,使其更适合于快速离子部分中的瞬态分析。快速离子Fokker-Planck求解器以与整体传输求解器相同的级别集成到TOPICS中,因此快速离子和整体等离子体的时间演化既相互一致,又与平衡磁场一致。快速离子求解器可同时处理注入中性离子的离子和α粒子。由于相空间尺寸的减小,快速离子解算器的并行化以及计算轻巧性使其可以进行数十秒量级的长时间瞬态分析。比较快速离子福克-普朗克(Fokker-Planck)的计算结果,并确认与蒙特卡洛(Monte Carlo)计算后的轨道高度吻合。集成的代码应用于JT-60SA和ITER的加速仿真,以确认其在瞬态分析中的能力和有效性。在集成模拟中,呈现了快速离子,等离子体轮廓和平衡磁场的耦合演化。此外,还显示并讨论了对快速离子的电加速作用。

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