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The issue of Tritium in DEMO coolant and mitigation strategies

机译:演示冷却液氚问题及缓解策略

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A certain fraction of the tritium produced in DEMO blanket permeates into the primary coolant due to the high temperatures and the large metallic areas. From primary coolant, tritium can reach the working areas and the external environment via permeation and/or leaks. The mitigation of the tritium migration phenomenon can be accomplished by using appropriate anti-permeation barriers and by an opportune dimensioning of the coolant purification system.This work describes the technological status of the mitigation strategies under development for HCPB and WCLL blankets. The results of the tritium permeation analysis at system level reveal that the tritium permeation rate from blanket into primary coolant is much higher in WCLL than in HCPB. Therefore in HCPB the tritium concentration into primary coolant can be controlled exclusively with a Coolant Purification System (CPS) able to treat a by-pass of about 3 kg s(-1). Two possible Helium-CPS processes are proposed and their pre-conceptual design is presented. Instead in WCLL due to the larger tritium permeation rate into coolant and the limit in water CPS size, the presence of appropriate coatings is required. Possible solutions are proposed and discussed based on the combination of feasible permeation reduction factors and water CPS size.
机译:由于高温和大金属区域,在演示毯中产生的一定级数渗透到初级冷却剂中。从初级冷却剂,氚通过渗透和/或泄漏到达工作区域和外部环境。通过使用适当的抗渗透屏障和冷却剂净化系统的适当尺寸来实现迁移现象的减轻。本工作描述了HCPB和WCLL毯子开发的缓解策略的技术现状。系统级别的氚渗透分析结果表明,WCLL橡皮布中的氚渗透速率比HCPB在初级冷却剂中高得多。因此,在HCPB中,可以用冷却剂净化系统(CPS)来控制初级冷却剂的氚浓度,所述冷却剂纯化系统(CPS)能够治疗约3kg s(-1)的旁路。提出了两种可能的氦CPS过程,并提出了其前概念性设计。而是由于较大的氚渗透速率和水CPS尺寸的极限而在WCLL中,需要存在适当的涂层。提出和讨论可能的解决方案,并根据可行的渗透缩减因子和水CPS尺寸的组合讨论。

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