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Analysis of the WCLL European demo blanket concept in terms of activation and decay heat after exposure to neutron irradiation

机译:在暴露于中子辐射后激活和衰变热量的WCLL欧洲演示毯概念分析

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摘要

This comparative paper describes the activation and decay heat calculations for water-cooled lithium-lead performed part of the EURO fusion WPSAE programme and specifications in comparison to other European DEMO blanket concepts on the basis of using a three-dimensional neutronics calculation model. Results are provided for a range of decay times of interest for maintenance activities, safety and waste management assessments. The study revealed that water-cooled lithium-lead has the highest total decay heat at longer decay times in comparison to the helium-cooled design which has the lowest total decay heat. In addition, major nuclides were identified for water-cooled lithium-lead in W armour, Eurofer, and LiPb. In addition, great attention has been dedicated to the analysis of the decay heat and activity both from the different water-cooled lithium-lead blanket modules for the entire reactor and from each water-cooled lithium-lead blanket module separately. The neutron induced activation and decay heat at shutdown were calculated by the FISPACT code, using the neutron flux densities and spectra that were provided by the preceding MCNP neutron transport calculations.
机译:该比较本文描述了激活和水冷锂 - 铅衰变热的计算使用三维中子计算模型的基础上执行的EURO融合WPSAE程序和规范的一部分相对于其他欧洲DEMO毯概念。提供了一系列的维护活动,安全和废物管理评估兴趣衰减时间的结果。该研究显示,水冷式锂 - 铅具有更长衰变时间的最高的总衰变热相比,其具有最低的总衰变热的氦冷却设计。另外,主要的核素被确定为以W装甲,欧洲钢铁联盟,和锂铅水冷锂 - 铅。此外,非常注意一直致力于既从整个反应器中的不同的水冷锂铅包层模块,并且从每个水冷锂 - 铅包层模块分别衰变热和活性的分析。中子活化诱导并在关闭衰变热是由FISPACT码计算的,使用由前述MCNP中子输运计算被提供的中子通量密度和光谱。

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