中子
中子温度
衰减
材料科学
中子散射
吸收(声学)
核工程
中子俘获
中子毒
中子探测
核物理学
光学
物理
复合材料
工程类
作者
Jae Hyun Kim,Song Hyun Kim,Chang Ho Shin,Jung Hun Choe,In-Hak Cho,Hwan Seo Park,Hyun Seo Park,Jung Ho Kim,Yoon Ho Kim
出处
期刊:방사선방어학회지
[Korean Association for Radiation Protection]
日期:2016-12-31
卷期号:41 (4): 384-388
被引量:2
标识
DOI:10.14407/jrpr.2016.41.4.384
摘要
Background For a verification of newly-developed neutron absorbers, one of guidelines on the qualification and acceptance of neutron absorbers is the neutron attenuation test. However, this approach can cause a problem for the qualifications that it cannot distinguish how the neutron attenuates from materials. Materials and Methods In this study, an estimation method of neutron absorption performances for materials is proposed to detect both direct penetration and back-scattering neutrons. For the verification of the proposed method, MCNP simulations with the experimental system designed in this study were pursued using the polyethylene, iron, normal glass and the vitrified form. Results and Discussion The results show that it can easily test neutron absorption ability using single absorber model. Also, from simulation results of single absorber and double absorbers model, it is verified that the proposed method can evaluate not only the direct thermal neutrons passing through materials, but also the scattered neutrons reflected to the materials. Therefore, the neutron absorption performances can be accurately estimated using the proposed method comparing with the conventional neutron attenuation test. Conclusion It is expected that the proposed method can contribute to increase the reliability of the performance of neutron absorbers. Keywords: Neutron absorber, MCNP, Criticality control, Vitrified form, Neutron absorption ability, Neutron attenuation test
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