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首页> 外文期刊>Nature Communications >Oscillatory vapour shielding of liquid metal walls in nuclear fusion devices
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Oscillatory vapour shielding of liquid metal walls in nuclear fusion devices

机译:核聚变装置中液态金属壁的振荡蒸气屏蔽

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Providing an efficacious plasma facing surface between the extreme plasma heat exhaust and the structural materials of nuclear fusion devices is a major challenge on the road to electricity production by fusion power plants. The performance of solid plasma facing surfaces may become critically reduced over time due to progressing damage accumulation. Liquid metals, however, are now gaining interest in solving the challenge of extreme heat flux hitting the reactor walls. A key advantage of liquid metals is the use of vapour shielding to reduce the plasma exhaust. Here we demonstrate that this phenomenon is oscillatory by nature. The dynamics of a Sn vapour cloud are investigated by exposing liquid Sn targets to H and He plasmas at heat fluxes greater than 5?MW?m?2. The observations indicate the presence of a dynamic equilibrium between the plasma and liquid target ruled by recombinatory processes in the plasma, leading to an approximately stable surface temperature.
机译:在极端等离子体放热和核聚变设备的结构材料之间提供有效的等离子体面对表面是聚变电站发电道路上的主要挑战。随着时间的推移,由于不断累积的损伤,固态等离子体表面的性能可能会严重下降。然而,液态金属现在对解决极端热通量撞击反应器壁的挑战引起了兴趣。液态金属的主要优点是使用蒸汽屏蔽来减少等离子废气。在这里,我们证明该现象本质上是振荡的。通过以大于5?MW?m?2的热通量将液态锡靶暴露于H和He等离子体,研究Sn蒸气云的动力学。观察结果表明血浆和液体靶之间存在动态平衡,该动态平衡由血浆中的重组过程控制,从而导致近似稳定的表面温度。

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