首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >ROLE OF RADIATION IN VAPOR SHIELDING OF FIRST WALL DURING DISRUPTION
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ROLE OF RADIATION IN VAPOR SHIELDING OF FIRST WALL DURING DISRUPTION

机译:辐射在变形过程中对第一道墙的蒸汽屏蔽中的作用

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An initially ablated vapor may provide an important radiation shield to reduce the heat load and the further ablation of the Be divertor strike plate during an ITER disruption. Thus, we investigate the role of line emission in Be at relevant temperatures and densities. For an ion density of 10(18) cm(-3) (10(24) m(-3)), We calculate that there is significant line emission and re-absorption in the temperature range from 3 to 10 eV. The re-absorption limits the line emission that strikes the plate. Line transfer calculations coupled with detailed atomic modeling predict that lines contribute 10-50% of the impinging plate radiation. We note that because of this effect, previous calculations using multi-group radiation transfer may under-estimate the vapor shielding for these ITER-relevant parameters. [References: 7]
机译:初始烧蚀的蒸气可提供重要的辐射屏蔽,以减少热负荷,并在ITER破裂期间进一步烧蚀Be偏滤器打击板。因此,我们研究了在相关温度和密度下线发射在Be中的作用。对于10(18)cm(-3)(10(24)m(-3))的离子密度,我们计算出在3到10 eV的温度范围内存在明显的线发射和重新吸收。重新吸收限制了撞击板的线发射。线传输计算与详细的原子建模相结合,可以预测线占撞击板辐射的10-50%。我们注意到,由于这种影响,以前使用多组辐射传输进行的计算可能会低估这些与ITER相关的参数的蒸气屏蔽。 [参考:7]

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