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Status and prospect of the development of liquid lithium limiters for stellarotor TJ-II

机译:恒星TJ-II液态锂限制器的发展现状与展望

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Stellarator concept is considered as a promising approach for power fusion reactor development because it basically free from disruptions and other extreme thermal load events. However, the potential problem of impurity accumulation in stellarator plasma should be taken into account. Very promising results in density control, plasma reproducibility and confinement characteristics have been obtained with application of "lithiation" technology. The next step in the improvement of TJ-II Heliac plasma performance is the development and creation of two poloidal liquid lithium limiters (LL). Experimental possibilities, design, structural materials and main parameters of LL based on capillary-pore structure (CPS) filled with liquid lithium are considered. Understanding in hydrogen isotope interaction with liquid lithium surface is an important aspect of lithium technology development for fusion reactor application. Therefore study of deuterium sorption/desorption process on a lithium surface of LL is stipulated. The development of lithium CPS based devices decreasing intensity of plasma-wall interaction on a central "groove" of TJ-II vacuum camera is proposed as the further step in plasma performance improvement owing to decrease in impurity flux from the wall.
机译:恒星器概念被认为是动力聚变反应堆开发的一种有前途的方法,因为它基本上不受干扰和其他极端热负荷事件的影响。但是,应考虑到潜在的问题,即在恒星器等离子体中积累杂质。通过使用“锂化”技术,在密度控制,等离子体再现性和限制特性方面取得了非常有希望的结果。改善TJ-II Heliac等离子体性能的下一步是开发和创建两个多倍体液态锂限制剂(LL)。考虑了基于液态锂填充的毛细孔结构(CPS)的LL的实验可能性,设计,结构材料和主要参数。理解氢同位素与液态锂表面的相互作用是聚变反应堆应用锂技术发展的重要方面。因此,规定了对LL的锂表面上的氘吸附/解吸过程的研究。由于降低了来自壁的杂质通量,因此提出了开发基于锂CPS的器件以降低TJ-II真空照相机的中央“凹槽”上的等离子体-壁相互作用的强度的方法,作为等离子体性能改进的进一步步骤。

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