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Optimisation of operating parameters for plasma facing components detritiation

机译:优化面向等离子体处理的部件的操作参数

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Within the framework of management of waste produced by fusion facility, the presence of high tritium content in large pieces is very specific. This question is very sensitive in the case of maintenance of plasma facing components (PFC). In order to reach several goals (tritium recovery, limitation of tritium content in the waste), several treatment methods have been analysed and thermal detritiation is selected as a reference process. In the case of ITER facility a tritium recovery station based on this technique is foreseen.rnIn order to better understand which parameters have important influence on the efficiency of the treatment (detritiation factor), a recall of the process principle and of the main data concerning tritium behaviour in different materials is done. For example, low tritium diffusion coefficient in Be which is the material of the first layer on some components can limit drastically the process performance.rnIn this paper a recall of the different process parameters is presented. Some important parameters are selected in order to lead a sensitivity study on adequate variation domains. It allows studying several scenarios of treatment and analysing the consequences of them. The main parameters of this study are the level of temperature, the duration of treatment, the renewal rate of the furnace atmosphere, the presence of Be or not. The main response to this sensitivity analysis is the detritiation factor, however some other consequences such as tritiated water flow rate and also tritium concentration in water are evaluated. Then the consequences of change of operating parameters are compared in order to identify what could be the most appropriate operating domain.
机译:在聚变设施产生的废物的管理框架内,大块中高high含量的存在是非常具体的。在维护面向等离子体的组件(PFC)的情况下,这个问题非常敏感。为了达到几个目标(recovery的回收,废物中of含量的限制),已经分析了几种处理方法,并选择了热降解作为参考过程。对于ITER设施,可以预见基于此技术的a回收站。为了更好地了解哪些参数对处理效率(损耗因子)有重要影响,请回顾一下处理原理和有关的主要数据完成了materials在不同材料中的行为。例如,低Be扩散系数(Be)是某些部件上第一层的材料,会大大限制工艺性能。本文提出了对不同工艺参数的回忆。选择一些重要的参数,以便对足够的变异域进行敏感性研究。它允许研究几种治疗方案并分析其后果。这项研究的主要参数是温度水平,处理时间,炉内气氛的更新速率,是否存在Be。对这种敏感性分析的主要反应是破坏因素,但是评估了其他一些后果,例如tri水流速以及水中的tri浓度。然后,比较运行参数更改的后果,以便确定最合适的运行域。

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