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Hydrogen isotope retention and recycling in fusion reactor plasma-facing components [Review]

机译:聚变反应堆等离子体组件中氢同位素的保留和循环[综述]

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The proper design of a fusion reactor is not possible unless there is an understanding of the hydrogen isotope retention and recycling for the plasma-facing components. From the tritium inventory point of view, it is absolutely necessary to understand the short-term and long-term hydrogen isotopes retention characteristics of the individual materials used for the first wall and divertor. From the plasma density and fueling point of view, it is necessary to understand the recycling characteristics of these materials. This report is an overview of the available data on hydrogen isotope retention and recycling for beryllium, tungsten, carbon, and selected liquid metals. For each material discussed, recommendations are made as to the most appropriate values to use for parameters such as diffusivity, solubility, recombination rate coefficient, and trapping. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 161]
机译:除非对氢同位素的保留和面向等离子体的组件的再循环有所了解,否则聚变反应堆的正确设计是不可能的。从the的库存角度来看,绝对有必要了解用于第一壁和分流器的单个材料的短期和长期氢同位素保留特性。从等离子体密度和燃料供给的观点来看,有必要了解这些材料的再循环特性。该报告概述了有关铍,钨,碳和某些液态金属的氢同位素保留和再循环的可用数据。对于所讨论的每种材料,都建议使用最合适的值作为参数,例如扩散率,溶解度,重组率系数和捕集率。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:161]

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