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Divertor plasma conditions and their effect on carbon migration in the ASDEX Upgrade tokamak

机译:ASDEX升级托卡马克中的分流器血浆条件及其对碳迁移的影响

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摘要

Divertors play a critical role in power and particle exhaust and plasma-material interaction in tokamaks. Of particular concern is the release of impurities from the material components, which reduces the lifetime of the vessel wall and affects the fusion performance. Furthermore, impurities with low charge number can migrate and re-deposit forming potentially tritium-rich layers in the tokamak. Sophisticated numerical simulations are required to understand how the various complex and often nonlinear processes in the plasma boundary affect the divertor performance. This thesis investigates the plasma conditions and the migration of impurities in the divertor region, using numerical code packages with the most complete available description of the relevant physical processes. It is known from earlier studies that the codes have both weaknesses and uncertainties in their models, which limits our current predictive capabilities. In this thesis work, carbon injection experiments at the ASDEX Upgrade tokamak are modelled. The work assesses the present-day boundary plasma models and elucidates impurity migration processes by comparing the simulations with experimental data. The results show that both the local migration and the net erosion of carbon are sensitive to the divertor plasma conditions. Good agreement between the modelled and measured divertor plasma parameters is obtained for a limited operational regime at low density. In this regime, the measured carbon migration is also reproduced in the simulations, and it is shown to be significantly affected by the electric field and the collisionality of the plasma in the divertor region. A significant improvement in code-experiment agreement is obtained after drifts arising from electric and magnetic fields are included in both plasma and impurity simulations. At higher plasma densities, collisionless hot electrons are a potential explanation for the deficiencies observed when benchmarking the plasma models against experiments.
机译:转向器在托卡马克的功率和颗粒排放以及等离子体与材料的相互作用中起着至关重要的作用。特别令人关注的是从材料成分中释放出杂质,这会缩短容器壁的使用寿命并影响熔融性能。此外,低电荷数的杂质会迁移并重新沉积,从而在托卡马克中形成潜在的富含rich的层。需要复杂的数值模拟来了解等离子体边界中的各种复杂且通常为非线性的过程如何影响偏滤器性能。本文使用带有相关物理过程最完整描述的数字代码包,研究了等离子体条件和偏滤器区域中杂质的迁移。从较早的研究中可以知道,这些代码在其模型中既有弱点又有不确定性,这限制了我们当前的预测能力。在本文工作中,对ASDEX升级托卡马克的碳喷射实验进行了建模。这项工作评估了当今的边界等离子体模型,并通过将模拟与实验数据进行了比较,阐明了杂质迁移过程。结果表明,碳的局部迁移和净侵蚀都对偏滤器等离子体条件敏感。对于低密度下的有限运行方案,已建模的和测得的偏滤器等离子体参数之间取得了良好的一致性。在这种情况下,在模拟中还会重现所测得的碳迁移,并且表明碳迁移显着受到电场和偏滤器区域中等离子体的碰撞性的影响。在等离子体和杂质模拟中都包含了由电场和磁场引起的漂移后,代码-实验协议得到了显着改善。在较高的等离子体密度下,无碰撞热电子是对将等离子体模型与实验进行基准比较时观察到的缺陷的潜在解释。

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    Aho-Mantila Leena;

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  • 年度 2011
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