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Lithium surface operating under steady-state power load

机译:锂表面在稳态功率负载下运行

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A liquid lithium surface is considered for application in divertor of a fusion tokamak-reactor. Lithium surface has been realized in experimental mock-ups and its operation has been demonstrated under high power load at reactor relevant heat fluxes. Lithium targets have been developed on the basis of capillary pore structures. A vertical working surface was investigated under steady-state electron beam. The range of power loads 1―50 MW/m~2 was covered by the studies. Long-duration experiments were performed on thermally stabilized targets at 1―10 MW/m~2. Evaporation was shown to be efficient mechanism of power removal and a high lithium mass loss rate was measured. Operation of the facility with plasma at 0.2 g/s of lithium flow was shown. The problem of lithium balance in divertor and SOL is discussed. Pumping of lithium is possible by solid and liquid metal wall structures in reactor conditions in the divertor channel.
机译:液态锂表面被认为可用于熔融托卡马克反应器的分流器中。锂表面已通过实验模型实现,并且已在反应堆相关热通量的高功率负载下证明了其运行。锂靶材是根据毛细孔结构开发的。在稳态电子束下研究了垂直的工作表面。研究涵盖了1〜50 MW / m〜2的电力负荷范围。在热稳定目标上以1-10 MW / m〜2进行了长期实验。蒸发被证明是去除功率的有效机制,并且测量到高的锂质量损失率。显示了在锂流量为0.2 g / s的条件下使用等离子体的设备的运行情况。讨论了分流器和SOL中锂平衡的问题。在分流器通道中的反应堆条件下,固态和液态金属壁结构可泵送锂。

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