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作 者:李文瀚 张宏越 应栋川[1] 田超[1] 温兴坚 王霜 唐诗涵 Li Wenhan;Zhang Hongyue;Ying Dongchuan;Tian Chao;Wen Xingjian;Wang Shuang;Tang Shihan(Science and Technology on Reactor System Design Technology Laboratory,Nuclear Power Institute of China,Chengdu,610213,China)
机构地区:[1]中国核动力研究设计院核反应堆系统设计技术重点实验室,成都610213
出 处:《核动力工程》2023年第S02期23-28,共6页Nuclear Power Engineering
摘 要:为解决传统输运计算方法无法兼顾快速性和精确性的不足,实现辐射防护最优化和屏蔽优化设计的快速迭代,开展了基于响应矩阵的高精度辐射场快速计算方法研究。研究采用基于响应矩阵的生物屏蔽深穿透快速计算方法和基于SOURCE源抽样的面源接续计算方法,将生物屏蔽入射源到生物屏蔽外空间辐射场计算过程拆分为生物屏蔽结构内的粒子输运计算和生物屏蔽外空间的粒子输运计算过程,实现反应堆装置复杂动态场景下的快速高精度剂量辐射场分析,计算效率相比蒙特卡罗(MC)直算方法提高100倍。本研究成果可为复杂辐照条件下人员辐射剂量最优化设计和屏蔽结构优化迭代提供有效、可靠的设计方法和工具。To solve the problem that traditional transport calculation methods cannot take into account both rapidity and accuracy,and to realize the rapid iteration of radiation protection optimization and shielding optimization design,a fast calculation method of high-accuracy radiation field based on response matrix is developed.The biological shielding deep penetration fast calculation method based on response matrix and the surface source continuous calculation method based on SOURCE sampling technique are adopted.The calculation process of radiation field from the incident source of the biological shield to the outer space of the biological shield is divided into the calculation process of particle transport in the biological shield structure and the calculation process of particle transport in the outer space of the biological shield,so as to realize the rapid and high-precision dose radiation field analysis in the complex dynamic scene of the reactor unit.The calculation efficiency is 100 times higher than that of Monte Carlo(MC)direct calculation method.The results of this study can provide effective and reliable design methods and tools for personnel radiation dose optimization design and shielding structure optimization iteration under complex irradiation conditions.
分 类 号:TL375.7[核科学技术—核技术及应用]
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