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Analysis of the influence of the different impurity seeding on the burn-up fraction and plasma confinement in the EU DEMO reactor

机译:不同杂质种子对欧盟演示反应器燃烧分数和等离子体约束的影响分析

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This work describes integrated numerical modelling applied to DEMO discharges with tungsten wall and divertor, using the COREDIV code, which self-consistently solves 1D radial transport equations of plasma and impurities in the core region and 2D multi-fluid transport in the SOL. The model is self-consistent with respect to both the effects of impurities on the alpha-power level and the interaction between seeded (Ar, Kr and Xe) and intrinsic impurities (tungsten, helium). This work is to analyse the influence of the impurity seeding on the burn-up fraction and plasma confinement in EU DEMO reactor. For the simulation with constant electron density at the separatrix, it is found that impurity seeding has a small influence on the burn-up fraction, which remains around 6 - 7%., but fuelling source is reduced from 2.7 to 2 x 10(22) 1/sec when moving from lowest to highest seeding level. The degradation of confinement for high Z seeding impurity, which is correlated to radiation in the core (due to seeded Kr and Xe) is observed. Better confinement for Ar at middle and high seeding level is observed in comparison to the case without seeding, because Ar radiation is small in the core (about 40-55 MW).
机译:该工作描述了使用COREDIV码,使用COREDIV码应用于用钨壁和偏移器的演示放电,其自始终解决了芯区域中的等离子体和杂质的径向传输方程和溶胶中的2D多流体输送。该模型是关于杂质对α-功率水平的影响以及种子(Ar,Kr和Xe)和固有杂质(钨,氦气)之间的相互作用的自重。这项工作是分析杂质种子对欧盟演示反应器中燃烧分数和血浆约束的影响。对于在分离器处具有恒定电子密度的模拟,发现杂质种子对燃烧级分具有较小的影响,该燃烧级分保持在6-7%约6-7%。但加油源从2.7降至2×10(22从最低到最高播种水平移动时,1 /秒。观察到高Z种子杂质的限制,其与芯中的辐射相关(由于种子KR和XE)相关。与无需播种的情况相比,观察到在中间和高播种水平时对中高播种水平进行更好的限制,因为核心辐射较小(约40-55mW)。

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