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Finite element analysis of hydrogen retention in ITER plasma facing components using FESTIM

机译:使用FESTIM进行ITER等离子体处理的组件中氢保留的有限元分析

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The behaviour of hydrogen isotopes in ITER monoblocks was studied using the code FESTIM (Finite Element Simulation of Tritium In Materials) which is introduced in this publication. FESTIM has been validated by reproducing experimental data and the Method of Manufactured Solutions was used for analytical verification. Following relevant plasma scenarios, both transient heat transfer and hydrogen isotopes (HIs) diffusion have been simulated in order to assess HIs retention in monoblocks. Relevant materials properties have been used. Each plasma cycle is composed of a current ramp up, a current plateau, a current ramp down and a resting phase before the following shot. 100 cycles are simulated. The total HIs inventory in the tokamak during resting phases reaches1.8×10?3mgwhereas during the implantation phases it keeps increasing as a power law of time. Particle flux on the cooling channel of the monoblock is also computed. The breakthrough time is estimated to bet=1×105swhich corresponds to 24 cycles. Relevance of 2D modelling has been demonstrated by comparing the total HIs inventory obtained by 2D and 1D simulations. Using 1D simulations, a relative error is observed compared to 2D simulations which can reach -25% during the resting phase. The error during implantation phases keeps increasing.
机译:使用该出版物中引入的代码FESTIM(材料中Tri的有限元模拟)研究了ITER单体中氢同位素的行为。 FESTIM已通过复制实验数据进行了验证,并且使用制造溶液的方法进行了分析验证。遵循相关的等离子体方案,已经模拟了瞬态传热和氢同位素(HIs)扩散,以评估HIs在单体中的保留。已经使用了相关的材料特性。每个等离子循环由电流上升,电流平稳,电流下降和休止阶段组成。模拟了100个循环。托卡马克在静止阶段的总HIs存量达到1.8×10?3mg,而在植入阶段,它随时间的幂定律而不断增加。还计算了单体冷却通道上的颗粒通量。突破时间估计为bet = 1×105s,对应于24个周期。通过比较2D和1D模拟获得的HI总量,已证明了2D建模的相关性。与一维模拟相比,使用一维模拟可观察到相对误差,在静止阶段可达到-25%。植入阶段的误差不断增加。

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