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Modelling of carbon migration during JET ~(13)C injection experiments

机译:JET〜(13)C注入实验过程中碳迁移的建模

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JET has performed two dedicated carbon migration experiments on the final run day of separate campaigns (2001 and 2004) using ~(13)CH_4 methane injected into repeated discharges. The EDGE2D/NIMBUS code modelled the carbon migration in both experiments. This paper describes this modelling and identifies a number of important migration pathways: (1) deposition and erosion near the injection location, (2) migration through the main chamber SOL, (3) migration through the private flux region (PFR) aided by E × B drifts and (4) neutral migration originating near the strike points. In H-Mode, type I ELMs are calculated to influence the migration by enhancing erosion during the ELM peak and increasing the long-range migration immediately following the ELM. The erosion/re-deposition cycle along the outer target leads to a multistep migration of ~(13)C towards the separatrix which is called 'walking'. This walking created carbon neutrals at the outer strike point and led to ~(13)C deposition in the PFR. Although several migration pathways have been identified, quantitative analyses are hindered by experimental uncertainty in divertor leakage, and the lack of measurements at locations such as gaps and shadowed regions.
机译:JET在分别进行的活动(2001年和2004年)的最后一天进行了两次专门的碳迁移实验,使用的是〜(13)CH_4甲烷注入重复排放的过程。 EDGE2D / NIMBUS代码模拟了两个实验中的碳迁移。本文描述了该模型并确定了许多重要的迁移途径:(1)注入位置附近的沉积和侵蚀,(2)通过主室SOL迁移,(3)在E辅助下通过私有通量区域(PFR)迁移×B漂移和(4)来自罢工点附近的中性迁移。在H模式下,计算I型ELM可以通过增强ELM峰值期间的腐蚀并增加紧随ELM之后的远距离迁移来影响迁移。沿外部靶材的腐蚀/再沉积循环导致〜(13)C向分离线的多步迁移,这被称为“行走”。这种行走在外部撞击点产生了碳中性,并导致PFR中的〜(13)C沉积。尽管已经确定了几种迁移途径,但是由于偏滤器泄漏的实验不确定性以及在间隙和阴影区域等位置缺乏测量结果,定量分析受到了阻碍。

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