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An overview: multiscale simulation in understanding the radiation damage accumulation of reactor materials

机译:概述:多尺度模拟了解反应器材料的辐射损伤积累

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摘要

The reactor is an extreme environment of high temperature, high pressure, and high radiation dose. Damage accumulates in structural materials over service time. It will eventually lead to material failure, such as hardening, embrittlement, and swelling. The radiation damage accumulation is an inherent, complex, and multiscale process, which has been studied extensively with multiscale modeling and simulation methods. The rapid development of high-performance computing makes it possible to accurately operate multiscale simulation for the microstructure evolution of irradiated reactor materials. The European Union, the USA, and China have put great effort into this, and many related works have been carried out. This paper first outlines the basic application of multiscale modeling and simulation technology in understanding the effects of radiation on reactor structural materials. Then, some relevant projects carried out by the USA, the European Union, and China in recent years are summarized. Next, the paper focuses on three widely used simulation techniques at different scales: molecular dynamics, kinetic Monte Carlo, and cluster dynamics. For each method, some key developments in algorithms and computer implementations are reviewed. Finally, the comparison between them is discussed.
机译:反应器是高温,高压和高辐射剂量的极端环境。损坏在服务时间内存在结构材料中。它最终会导致材料失败,如硬化,脆化和肿胀。辐射损伤累积是一种固有的复杂和多尺度过程,其已经通过多尺度建模和仿真方法进行了广泛的研究。高性能计算的快速发展使得可以精确地操作照射反应器材料的微观结构演变的多尺度模拟。欧洲联盟,美国和中国已经投入了很大努力,并进行了许多相关的作品。本文首先概述了多尺度建模和仿真技术了解辐射对反应堆结构材料的影响。然后,总结了美国,欧洲联盟和中国近年来开展的一些相关项目。接下来,本文侧重于不同尺度的三种广泛使用的仿真技术:分子动力学,动力学蒙特卡罗和群集动力学。对于每种方法,综述了算法和计算机实现中的一些关键开发。最后,讨论了它们之间的比较。

著录项

  • 来源
    《Simulation》 |2021年第10期|659-675|共17页
  • 作者单位

    Department of Computer Science and Technology University of Science and Technology Beijing;

    China Institute of Atomic Energy;

    Department of Computer Science and Technology University of Science and Technology Beijing;

    Department of Computer Science and Technology University of Science and Technology Beijing;

    China Institute of Atomic Energy;

    Department of Computer Science and Technology University of Science and Technology Beijing;

    China Institute of Atomic Energy;

    Department of Computer Science and Technology University of Science and Technology Beijing;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multiscale simulation; high-performance computing; molecular dynamics; kinetic Monte Carlo; cluster dynamics;

    机译:多尺度模拟;高性能计算;分子动力学;动态蒙特卡罗;簇动态;

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