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Experiments at the T-11M device in support of the tokamak concept with closed Li cycle

机译:在T-11M设备上进行的实验,以支持具有封闭锂循环的托卡马克概念

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The lithium emitter-collector concept, supposed the creation of steady state lithium circulation loop close the first wall and plasma periphery, seems as a solution of tokamak reactor first wall problem. This concept of renewable PFC (plasma facing components) has four characteristically steps: Li emission from PFC into the plasma (emitter), the boundary plasma cooling by non-coronal Li radiation, Li ions capture by collector before their deposit on a tokamak vessel wall and Li return from collector and first wall into emitter again. The main subject of the lastT-11M experiments was investigations of the lithium collection by limiters. The lithium behavior in shadow of lithium limiter, based on the lithium filled CPS (capillary porous systems), was studied by the analysis of the witness-samples, and by use a mobile graphite probe. It was showed: (1) lithium deposit on the Li-limiter sides is proportional to the total Li emission from the lithium rail limiter (emitter). (2) Lithium deposit on the ion-drift side of Li-limiter to 3-5 times more as on electron side. (3) The total efficiency of Li collection by T-l 1M limiters can be 70 ± 20% of lithium integral emission from the lithium emitter during plasma operations while the theoretically limit can be 90%.
机译:锂发射极-收集极的概念(假设在第一壁和等离子体外围附近形成稳定状态的锂循环回路)似乎是托卡马克反应器第一壁问题的解决方案。可再生PFC(面对等离子体的组件)的概念具有四个特征步骤:从PFC向等离子体(发射极)的Li发射,非冠状Li辐射的边界等离子体冷却,Li离子在沉积到托卡马克容器壁上之前被收集器捕获李从收集器和第一壁再次回到发射器。 lastT-11M实验的主要主题是限制器收集锂的研究。通过对见证样品进行分析并使用移动式石墨探针,研究了基于锂填充的CPS(毛细管多孔体系)的锂限制器阴影下的锂行为。结果表明:(1)锂限制器侧面的锂沉积与锂轨道限制器(发射极)的总锂释放量成正比。 (2)锂沉积在Li限流子的离子漂移侧,是电子侧的3-5倍。 (3)在等离子体操作期间,T-1 M限制器收集锂的总效率可以是锂发射器发出的锂积分发射的70±20%,而理论上可以达到90%。

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