厚靶低中能^(9)Be(d,xn)反应加速器中子源特性研究  被引量:2

Research on the Accelerator Neutron Source Characteristics Based on^(9)Be(d,xn)Reaction with Thick Target in the Low and Medium Energy Range

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作  者:江桥月 王艺璇 彭锦秋 张时宇 白晓厚 吴康 杨旭 张行 王俊润 张宇[1,2] 韦峥[1,2] 姚泽恩[1,2] JIANG Qiaoyue;WANG Yixuan;PENG Jinqiu;ZHANG Shiyu;BAI Xiaohou;WU Kang;YANG Xu;ZHANG Hang;WANG Junrun;ZHANG Yu;WEI Zheng;YAO Zeen(School of Nuclear Science and Technology,Lanzhou University,Lanzhou 730000,China;Engineering Research Center for Neutron Application,Ministry of Education,Lanzhou University,Lanzhou 730000,China)

机构地区:[1]兰州大学核科学与技术学院,兰州730000 [2]兰州大学中子应用技术教育部工程研究中心,兰州730000

出  处:《原子核物理评论》2022年第3期396-404,共9页Nuclear Physics Review

基  金:国家自然科学基金资助项目(11875155,12075105,U2167203);兰州大学中央高校基本科研业务费专项资金资助项目(lzujbky-2022-kb09)

摘  要:利用PHITS程序评价计算了厚靶^(9)Be(d,xn)反应加速器中子源的能谱和角分布数据,重点讨论了JQMD、INCL和INCL/DWBA三种核反应物理模型计算厚靶^(9)Be(d,xn)反应中子辐射场分布的适用性。研究结果显示,基于INCL/DWBA耦合模型的PHITS程序计算所得到的厚靶^(9)Be(d,xn)反应中子能谱和角分布数据能够较好地与实验数据符合,可以为厚靶^(9)Be(d,xn)反应中子源特性研究及应用提供较为准确的中子辐射场数据。此外,设计了水冷大面积旋转铍靶的方案,并在5~25 MeV/5 mA入射氘能量下条件下,开展了靶面温度模拟研究,结果显示,靶面最高温度可控制在100℃以下。In this paper,the energy spectrum and angular distribution data of neutron source of^(9)Be(d,xn)reaction accelerator with thick target are evaluated and calculated by using PHITS program.The applicability of JQMD,INCL and INCL/DWBA nuclear reaction physical models to calculate the neutron radiation field distribution of^(9)Be(d,xn)reaction with thick target is discussed.The results show that the energy spectrum and angular distribution data of the thick target^(9)Be(d,xn)reaction calculated by the PHITS program based on the INCL/DWBA nuclear reaction physical model are in good agreement with the experimental data,and can provide more accurate neutron radiation field data for the study and application of the characteristics of^(9)Be(d,xn)reaction neutron source with thick target.In addition,the scheme of water-cooled large-area rotating beryllium target is designed,and the simulation study of target surface temperature is carried out under the condition of 5~25 MeV/5 mA incident deuterium energy.The results show that the maximum temperature of target surface can be controlled below 100℃.

关 键 词:加速器中子源 ^(9)Be(d xn)反应 金属铍靶 PHITS 能谱 角分布 

分 类 号:TL501[核科学技术—核技术及应用]

 

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