Affiliation:
1. Xi’an Jiaotong University, Xi’an 710049, China
2. Sino Shaanxi Nuclear Industry Group, Xi’an 710054, China
Abstract
Optimal shielding structure design plays a guiding role in the implementation of radiation protection engineering. The achievement of the optimal arrangement and thickness ratio for the layers of materials is the key to attaining a light-weight and small-volume shield but with the best shielding effect. In this research, the optimization design method is established by the genetic algorithm combined with the Monte Carlo N-particle code, and a four-layer neutron shield composed of iron (Fe), boron carbon (B4C), lead (Pb), and polyethylene (PE) is designed. When setting the total thickness of the shield to 20 cm, different arrangements and thickness combinations of these four layers are calculated. It is shown that the arrangement Fe-PE–B4C–Pb is the most radiological optimizing arrangement, and the optimal thickness combination is also obtained. Besides, it seems that the thicker the shield, the higher the requirement for the thickness ratio of Fe and Pb. In order to prove this, an optimal 80 cm thick shield is then designed, and the optimal thickness ratio is also obtained. It is found that the thickness ratio of Fe and Pb should also be increased in order to achieve the best shielding effect.
Funder
National Natural Science Foundation of China
Foundation of Key Laboratory of Nuclear Reactor System Design Technology, Chinese Academy of Nuclear Power
General Project of Shaanxi Provincial Nature Fund
Chinese Academy of Engineering
Subject
General Physics and Astronomy
Reference14 articles.
1. V. J. Barnhart and R. T. Anderson, “Ductile iron cask with encapsulated uranium, tungsten or other dense metal shielding,” U.S. patent US4868400 (19 September 1989).
2. Support vector regression model for the estimation of γ-ray buildup factors for multi-layer shields
3. L. Van Ngoc, The Computer Code for Reactor Radiation Multilayer Shield Calculation, Internal Report (INST, Hanoi, 2000).
4. S. T. Asbury, “Multi-grid genetic algorithms for optimal radiation shield design,” Ph.D. Dissertation, The University of Michigan (ProQuest Dissertations Publishing, 2012).
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献