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Beryllium global erosion and deposition at JET-ILW simulated with ERO2.0

机译:用ERO2.0模拟JET-ILW处的铍整体腐蚀和沉积

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The recently developed Monte-Carlo code ERO2.0 is applied to the modelling of limited and diverted discharges at JET with the ITER-like wall (ILW). The global beryllium (Be) erosion and deposition is simulated and compared to experimental results from passive spectroscopy. For the limiter configuration, it is demonstrated that Be self-sputtering is an important contributor (at least 35%) to the Be erosion. Taking this contribution into account, the ERO2.0 modelling confirms previous evidence that high deuterium (D) surface concentrations of up to ?~?50% atomic fraction provide a reasonable estimate of Be erosion in plasma-wetted areas. For the divertor configuration, it is shown that drifts can have a high impact on the scrape-off layer plasma flows, which in turn affect global Be transport by entrainment and lead to increased migration into the inner divertor. The modelling of the effective erosion yield for different operational phases (ohmic, L- and H-mode) agrees with experimental values within a factor of two, and confirms that the effective erosion yield decreases with increasing heating power and confinement.
机译:最近开发的蒙特卡洛代码ERO2.0用于模拟ITER墙(ILW)的JET有限和转向排放的建模。模拟了全球铍(Be)的腐蚀和沉积,并与被动光谱法的实验结果进行了比较。对于限幅器配置,表明Be的自溅射是Be腐蚀的重要因素(至少35%)。考虑到这一贡献,ERO2.0模型证实了先前的证据,即高达d ~~ 50%原子分数的高氘(D)表面浓度提供了对等离子体润湿区域中Be腐蚀的合理估计。对于偏滤器配置,已表明漂移可能对刮除层等离子体流产生很大影响,这反过来又会通过夹带影响整体Be传输,并导致向内部偏滤器的迁移增加。不同工作阶段(欧姆模式,L模式和H模式)的有效腐蚀产量的模型与实验值在2倍之内相吻合,并证实有效腐蚀产量随着加热功率和密闭度的增加而降低。

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