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X-ray deposition in inertial fusion graphite and silicon-carbide first walls

机译:惯性融合石墨和碳化硅第一墙中的X射线沉积

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First wall protection against X-rays and debris coming from the pellet explosion is a critical design issue in inertial confinement fusion reactors. In the present communication, energy deposition of typical target X-ray in silicon-carbide and graphite is shown to occur over distances of the order of the first wall thickness for hard X-ray (/spl gamma/-ray) target spectra, and the resulting maximum instantaneous temperature rise is negligible. It is also shown that, for photons with energies above 1 keV, large fraction of the target photon yield is deposited behind the first wall. Based on these results, it is concluded that target X-ray (/spl gamma/-ray), which represent serious design constraint with metallic first walls, may be of less concern with first walls made of silicon-carbide or graphite. Consequently, the first wall protection scheme, based on silicon-carbide or graphite, needs to deal with potential first wall damage due to target debris only.
机译:第一墙保护来自颗粒爆炸的X射线和碎屑是惯性限制融合反应堆中的关键设计问题。在本通信中,示出了在碳化硅和石墨中的典型目标X射线的能量沉积,以发生硬X射线(/ SPLγ/ -Ray)目标光谱的第一壁厚度的距离和由此产生的最大瞬时温度升高可忽略不计。还表明,对于具有高于1keV的能量的光子,在第一壁后面沉积大部分的目标光子产率。基于这些结果,得出结论,目标X射线(/ SPL Gamma / -Ray),其代表金属第一壁的严重设计约束,可以对由碳化硅或石墨制成的第一壁不太关注。因此,基于碳化硅或石墨的第一壁保护方案需要处理由于目标碎片引起的潜在的第一壁损伤。

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