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Main Directions and Recent Test Modeling Results of Lithium Capillary-Pore Systems as Plasma Facing Components

机译:面向等离子体组件的锂毛细管毛孔系统的主要方向和最新测试建模结果

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At present the most promising principal solution of the divertor problem appears to be the use of liquid metals and primarily of lithium Capillary-Pore Systems (CPS) as of plasma facing materials. A solid CPS filled with liquid lithium will have a high resistance to surface and volume damage because of neutron radiation effects, melting, splashing and thermal stressinduced cracking in steady state and during plasma transitions to provide the normal operation of divertor target plates and first-wall protecting elements. These materials will not be the sources of impurities inducing an increase of Zeff and they will not be collected as dust in the divertor area and in ducts.Experiments with lithium CPS under simulating conditions of plasma disruption on a hydrogenplasma accelerator MK-200 [~ (10 - 15) MJ/m2, ~ 50 μs] have been performed. The formation of a shielding layer of lithium plasma and the high stability of these systems have been shown.The new lithium limiter tests on an up-graded T-11M tokamak (plasma current up to 100 kA,pulse length ~0.3 s) have been performed. Sorption and desorption of plasma-forming gas, lithium emission into discharge, lithium erosion, deposited power of the limiter are investigated in these experiments. The first results of experiments are presented.
机译:目前,最有希望解决偏滤器问题的主要方法似乎是使用液态金属,以及主要使用锂毛细管-孔系统(CPS)作为面向等离子体的材料。填充液态锂的固态CPS在稳态和等离子转变过程中会因中子辐射效应,熔化,飞溅和热应力引起的开裂而对表面和体积造成高破坏,从而提供分流器靶板和第一壁的正常运行保护元素。这些材料将不会成为导致Zeff升高的杂质来源,也不会在偏​​滤器区域和管道中被收集为粉尘。在模拟等离子体破坏条件下,在氢等离子加速器MK-200上使用锂CPS进行的实验[〜( 10-15)MJ / m2,〜50μs]。已经证明了锂等离子体屏蔽层的形成和这些系统的高稳定性。已经对升级的T-11M托卡马克(等离子体电流高达100 kA,脉冲长度〜0.3 s)进行了新的锂限制器测试。执行。在这些实验中,研究了等离子体形成气体的吸附和解吸,锂向放电的排放,锂的侵蚀,限幅器的沉积功率。介绍了实验的第一个结果。

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