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Design of a permeator against vacuum for tritium extraction from eutectic lithium-lead in a DCLL DEMO

机译:在DCLL DEMO中从共晶锂铅中抽提against的渗透器设计

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One of the most important issues in future fusion power plants is the extraction of tritium generated in the breeders in order to achieve self-sufficiency. When the breeder is a liquid metal one of the most promising techniques is the Permeation Against Vacuum, whose principle is based on tritium diffusion through a permeable membrane in contact with the liquid metal carrier and its further extraction by a vacuum pump. A conceptual design of permeator has been developed, taking into account the features of a DEMO reactor with a Dual Coolant Lithium Lead (DCLL) breeder blanket. The study is based on the analysis of different membranes and geometries aiming at the overall efficiency (extraction capability) of the device, as well as its compatibility with the breeder material. The permeator is based on a rectangular section multi-channel distribution where the liquid metal channels and vacuum channels are alternated in order to maximize the contact area and therefore to promote tritium transport from the bulk to the walls. The resulting permeator design has an excellent estimated extraction efficiency, of 80%, in a relatively compact device. (C) 2016 EURATOM. Published by Elsevier B.V. All rights reserved.
机译:未来聚变电站最重要的问题之一是提取种鸡中产生的tri,以实现自给自足。当育种者是液态金属时,最有前途的技术之一就是抗真空渗透,其原理是基于tri通过与液态金属载体接触的可渗透膜扩散并通过真空泵进一步抽提。考虑到具有双冷却液锂铅(DCLL)增殖层的DEMO反应器的特性,已经开发了渗透器的概念设计。这项研究基于对不同膜和几何形状的分析,目的是针对设备的整体效率(提取能力)及其与种鸡材料的相容性。渗透器基于矩形截面的多通道分布,其中液态金属通道和真空通道交替排列,以使接触面积最大化,从而促进tri从主体向壁的传输。在相对紧凑的设备中,所得的渗透器设计具有极好的估计提取效率,可达80%。 (C)2016年欧元。由Elsevier B.V.发布。保留所有权利。

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