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An optimization study for shielding design of D-D and D-T neutron generators

机译:D-D和D-T中子发生器屏蔽设计的优化研究

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摘要

Neutron generators (NG) are being increasingly used in various industrial and research areas such as neutron activation analysis, neutron radiography, and neutron capture therapy. In such applications of neutron generators, compactness is one of the most important issues. Since a neutron source is generated by deuterium-deuterium (D-D) or deuterium-tritium (D-T) fusion reaction, a relatively thick shield for both fast neutrons and related photons is usually required. In this study, optimization of shielding designs for D-D and D-T neutron generators were investigated by adopting appropriate moderator and shielding materials. Based on the optimized moderator and shield thicknesses, the final dimensions of neutron generators were derived for various source strengths of D-D and D-T neutron conditions. Considering conventional condition of a container, we concluded that a 10(10) n/sec D-D source and a 10(8) n/sec D-T source could be a portable NG.
机译:中子发生器(NG)越来越多地用于各种工业和研究领域,例如中子活化分析,中子射线照相术和中子俘获疗法。在中子发生器的这种应用中,紧凑性是最重要的问题之一。由于中子源是通过氘-氘(D-D)或氘-tri(D-T)聚变反应生成的,因此通常需要相对较厚的屏蔽层来保护快中子和相关的光子。在这项研究中,通过采用适当的减速剂和屏蔽材料,对D-D和D-T中子发生器的屏蔽设计进行了优化。根据优化的减速器和屏蔽层厚度,得出D-D和D-T中子条件的各种源强度的中子发生器的最终尺寸。考虑到容器的常规条件,我们得出的结论是10(10)n / sec D-D源和10(8)n / sec D-T源可以是便携式NG。

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