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Simulation of the scrape-off layer region of tokamak devices

机译:托卡马克装置的刮除层区域的仿真

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Understanding the key processes occurring in the tokamak scrape-off layer (SOL) is becoming of the outmost importance while we enter the ITER era and we move towards the conception of future fusion reactors. By controlling the heat exhaust, by playing an important role in determining the overall plasma confinement, and by regulating the impurity level in tokamak core, the dynamics of the fusion fuel in the SOL is, in fact, related to some of the most crucial issues that the fusion program is facing today. Because of the limited diagnostic access and in view of predicting the SOL dynamics in future devices, simulations are becoming crucial to address the physics of this region. The present paper, which summarizes the lecture on SOL simulations that was given during the 7th ITER international school (August 25-29, 2014, Aix-en-Provence, France), provides a brief overview of the simulation approaches to the SOL dynamics. First, disentangling the complexity of the system, the key physics processes occurring in the SOL are described. Then, the different simulation approaches to the SOL dynamics are presented, from first-principles kinetic and fluid models, to the phenomenological analysis.
机译:当我们进入ITER时代并迈向未来聚变反应堆的概念时,了解托卡马克刮除层(SOL)中发生的关键过程变得至关重要。通过控制排热,在确定总体等离子体约束方面起重要作用以及调节托卡马克堆芯中的杂质含量,SOL中聚变燃料的动力学实际上与一些最关键的问题有关融合计划今天面临的问题。由于有限的诊断访问权限以及为了预测将来设备中的SOL动态,模拟对于解决该区域的物理问题变得至关重要。本论文总结了在第七届ITER国际学校(2014年8月25日至29日,法国艾克斯普罗旺斯)上进行的SOL模拟讲座,简要概述了SOL动力学模拟方法。首先,解开系统的复杂性,描述了SOL中发生的关键物理过程。然后,提出了不同的SOL动力学模拟方法,从第一性原理的动力学模型和流体模型到现象学分析。

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