用蒙特卡罗程序分析蛇形混凝土作为中子源设施屏蔽材料的有效性

IF 1 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY Science and Technology of Nuclear Installations Pub Date : 2023-02-18 DOI:10.1155/2023/8986638
R. Abrefah, K. Tuffour-Achampong, P. Amoah
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引用次数: 1

摘要

近年来,人们一直致力于寻找减少暴露剂量的技术。这项工作以国家核研究所(NNRI)的241Am-Be中子源设施为例研究了使用蛇形混凝土屏蔽中子源的有效性。中子和伽马的结果表明,与普通混凝土相比,蛇形混凝土提供了更好的屏蔽。距离100 距离Am-Be源厘米,当用蛇形混凝土屏蔽时,发现人员将接受4.395.395的平均伽马剂量 ± 0.122 μSv/h,剂量为10.399 ± 0.083 μSv/h将用于普通混凝土屏蔽。100时的平均中子剂量当量 cm,对于普通混凝土和蛇形混凝土为32.189 ± 0.277和9.276 ± 分别为0.505。获得的所有剂量当量也在国际公认的限度内。
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Effectiveness of Serpentine Concrete as Shielding Material for Neutron Source Facility Using Monte Carlo Code
In recent years, much attention has been dedicated to finding techniques to reduce exposure doses. This work examines the effectiveness of using serpentine concrete to shield a neutron source using a 241Am-Be neutron source facility at the National Nuclear Research Institute (NNRI) as a case study. The results obtained for both neutrons and gamma indicate that serpentine concrete provides better shielding as compared to ordinary concrete. At a distance of 100 cm from the Am-Be source, when shielded with serpentine concrete, it was found that personnel will receive an average gamma dose of 4.395.395 ± 0.122 μSv/h while a dose of 10.399 ± 0.083 μSv/h will be received for ordinary concrete shield. The average neutron dose equivalent at 100 cm, for ordinary concrete and serpentine concrete were 32.189 ± 0.277 and 9.276 ± 0.505, respectively. All dose equivalents obtained were also within internationally accepted limits.
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来源期刊
Science and Technology of Nuclear Installations
Science and Technology of Nuclear Installations NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.30
自引率
9.10%
发文量
51
审稿时长
4-8 weeks
期刊介绍: Science and Technology of Nuclear Installations is an international scientific journal that aims to make available knowledge on issues related to the nuclear industry and to promote development in the area of nuclear sciences and technologies. The endeavor associated with the establishment and the growth of the journal is expected to lend support to the renaissance of nuclear technology in the world and especially in those countries where nuclear programs have not yet been developed.
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