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作 者:郑征[1] 李翔 梅其良[1] 黎辉[1] 王梦琪[1] Zheng Zheng;Li Xiang;Mei Qiliang;Li Hui;Wang Mengqi(Shanghai Nuclear Engineering Research and Design Institute Co.,Ltd.,Shanghai,200233,China)
机构地区:[1]上海核工程研究设计院股份有限公司,上海200233
出 处:《核动力工程》2025年第1期36-40,共5页Nuclear Power Engineering
基 金:国家重点研发计划项目(2022YFB1902800)。
摘 要:本研究旨在探讨通过蒙特卡罗(MC)方法计算多次碰撞源分布,以减轻离散纵标(SN)方法中的射线效应,尤其是在处理包含局部源、低密度或真空区域的模型时。采用MC方法计算多次碰撞源分布,并利用Kobayashi基准题对多次碰撞源和首次碰撞源的射线效应减弱方法进行了初步验证和分析。通过混合并行技术(消息传递接口MPI+开放式多处理器OpenMP)提高计算效率,减少负载不平衡问题。研究表明,MC多次碰撞源方法在抑制SN方法中局部源问题的射线效应方面表现优异,能够显著减少计算中的非物理震荡,提高计算精度。当碰撞次数达到3次以上时,计算偏差降低至10%以下。此外,采用混合并行技术后,120个线程的并行计算效率达到80%以上。尽管在计算时间上略有不足,该方法在处理复杂几何和物理条件下展现了较大的潜力,是一种有前景的射线效应减弱方法。This study aims to explore the use of the Monte Carlo(MC)method to calculate multi-collision source distributions,so as to mitigate the ray effect in the discrete ordinates(SN)method,particularly in models with localized sources,low-density regions,or vacuum areas.The distribution of multiple collision sources is calculated by MC method,and the method of reducing the ray effect of multiple collision sources and first collision sources is preliminarily verified and analyzed by Kobayashi benchmark problem.Through hybrid parallel technique(message passing interface MPI+open multiprocessor OpenMP),the computational efficiency is improved and the load imbalance problem is reduced.The study shows that the MC multi-collision source method effectively suppresses the ray effect in localized source problems within the SN method,significantly reducing non-physical oscillations and improving computational accuracy.When the number of collisions exceeds three,the computational deviation is reduced to below 10%.Furthermore,the use of hybrid parallel computing resulted in a parallel efficiency exceeding 80%with 120 threads.Although this method has a slight drawback in terms of computational time,it shows great potential for addressing complex geometries and physical conditions,making it a promising approach for reducing the ray effect.
关 键 词:蒙特卡罗 离散纵标 多次碰撞源 首次碰撞源 射线效应 混合并行
分 类 号:TL328[核科学技术—核技术及应用]
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