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Neutronics analyses for the bio-shield and liners of the IFMIF-DONES test cell

机译:Neutronics对IFMIF-DONES测试池的生物防护罩和衬里进行分析

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摘要

IFMIF-DONES (International Fusion Material Irradiation Facility- DEMO Oriented NEutron Source) is an accelerator based irradiation facility which is aimed to provide the irradiation data needed for the construction of DEMO. The Test Cell (TC) is the central room of IFMIF-DONES enclosing the target and the test module. This work presents the neutronics analyses conducted to provide the relevant nuclear responses for the bio-shield of the TC, including heating, radiation damage and helium production. The results for the TC steel liners covering the inner TC surface have been obtained with an unstructured mesh based interpolation approach. The results show that the softening of the neutron spectrum at the thin layer of the inner wall increases the nuclear heating as well as the helium production in SS316 L. The helium production might be of major concern if re-welding of the liner is required during the lifetime. The impact of a reduced beam footprint size on the TC nuclear responses has been analyzed and found to be insignificant comparing with the normal footprint.
机译:IFMIF-DONES(国际融合材料辐照设施-面向DEMO的NEutron源)是一种基于加速器的辐照设施,旨在提供DEMO构造所需的辐照数据。测试单元(TC)是IFMIF-DONES的中央空间,其中包含目标和测试模块。这项工作介绍了中子学分析,以提供TC生物屏蔽的相关核响应,包括加热,辐射损伤和氦气产生。使用基于非结构网格的插值方法获得了覆盖内部TC表面的TC钢衬的结果。结果表明,内壁薄层中子谱的软化增加了核加热以及SS316 L中的氦气产生。如果在焊接过程中需要对衬套进行重新焊接,则氦气产生可能是主要问题一生。已经分析了减小的电子束足迹尺寸对TC核响应的影响,发现与正常足迹相比微不足道。

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