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Analyses of the influence of the recycling coefficient on He confinement in DEMO reactor

机译:循环系数对DEMO反应堆氦气限制的影响分析

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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 mull-fluid transport in the SOL. The model is self-consistent with respect to both the effects of impurities on the a-power level and the interaction between seeded (Ar) and intrinsic impurities (tungsten, helium). This work is to analyse the influence of the helium and hydrogen recycling on the He confinement time in DEMO reactor. Simulations have been done for argon seeding puff 5.0 x 10(21)1/s. It is found that recycling coefficient of helium have strong influence on the He confinement time, which increases from 7.25 s to 26.9 s going from lowest to highest recycling coefficient, but it has small influence on the effective charge state and radiation in the SOL. Alpha power decreases only by about 20%, which is the effect of main plasma dilution.
机译:这项工作使用COREDIV代码描述了应用于带有钨壁和偏滤器的DEMO放电的集成数值模型,该代码可自洽地求解核心区域中等离子体和杂质的一维径向传输方程以及SOL中的二维渗流传输。该模型在杂质对a功率水平的影响以及晶种(Ar)与固有杂质(钨,氦)之间的相互作用方面都是自洽的。这项工作是要分析氦气和氢气循环对DEMO反应器中He限制时间的影响。已对5.0 x 10(21)1 / s的氩气播种进行了模拟。研究发现,氦的循环系数对氦气的束缚时间有很大的影响,从最低循环系数到最高循环系数,氦气的束缚时间从7.25 s增加到26.9 s,但对SOL中有效电荷态和辐射的影响较小。 α功率仅降低约20%,这是主要血浆稀释的影响。

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