A Review on DPA for computing radiation damage simulation

H. Qadr, D. Mamand
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引用次数: 3

Abstract

A Monte Carlo code is developed for the radiation damage in the metals which results from nuclear collisions that create energetic recoil atoms of the host material. The development of the simulation codes for the radiation damage method by neutrons and protons can be highly useful in technology of advanced nuclear systems and nuclear fusion reactors. The aim of this review is to investigate the impact of the radiation damage in the materials by the neutron and proton energy irradiation. The damage parameter used in the evaluation is displacement per atom (DPA) in material as a function of neutron and proton energy. For this purpose, there are some software codes used which are related to radiation damage because radiation damage can be measured as a function of DPA, which is one of the critical issues for high intensity beams, particularly, for protons and neutrons.
辐射损伤模拟计算的DPA研究进展
提出了一种蒙特卡罗代码,用于计算由核碰撞引起的金属辐射损伤,这种碰撞产生了宿主材料的高能反冲原子。中子和质子辐射损伤方法仿真代码的开发在先进核系统和核聚变反应堆技术中具有重要的应用价值。本文综述了中子和质子能量辐照对材料辐射损伤的影响。评估中使用的损伤参数是材料中每原子位移(DPA)作为中子和质子能量的函数。为此目的,使用了一些与辐射损伤有关的软件代码,因为辐射损伤可以作为DPA的函数来测量,这是高强度光束,特别是质子和中子的关键问题之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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