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ZPPR Benchmarks for Large LMFBR Core Physics from JUPITER Cooperative Program Between United States and Japan

机译:美日JUPITER合作计划中大型LMFBR核心物理的ZPPR基准

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摘要

Under the International Reactor Physics Experiment Evaluation Project (IRPhEP) framework, in the cooperative JUPITER program between the United States and Japan, benchmarks are established to study large fast breeder reactor (FBR) core physics utilizing nine Zero Power Plutonium Reactor (ZPPR) critical experimental cores. These benchmarks cover a wide variety of core concepts including homogeneous and heterogeneous configurations, clean and engineering mock-up cores of 600- to 1000-MW(electric)-class sizes, and various core parameters such as criticality, reaction rate, and reactivity. Recently, detailed experimental information from original documents from Argonne National Laboratory has been scrutinized very carefully to establish the benchmark model and to evaluate quantitatively the experimental uncertainty. The benchmarks supply users with heterogeneous cell models and three-dimensional (3-D) core configurations, which are simplified to a degree that preserves the important physical features of the ZPPR cores such as plate heterogeneity, different drawer types, and 3-D core arrangement. Further, the benchmark handbook includes as-built information of the ZPPR cores as a complete set of electronic form; therefore, a user can develop his or her own benchmark model if necessary. The analysis of the benchmark with the deterministic or Monte Carlo method demonstrates its usefulness both for improving analytical methods and for validating nuclear data.
机译:在国际反应堆物理实验评估项目(IRPhEP)框架下,在美国和日本之间的合作JUPITER计划中,建立了基准,以利用九个零功率P反应堆(ZPPR)关键实验研究大型快中子增殖堆(FBR)核心物理。核心。这些基准涵盖了广泛的核心概念,包括同构和异构配置,600到1000兆瓦(电)级大小的清洁和工程模型核心,以及各种核心参数,例如临界度,反应速率和反应性。最近,对来自阿贡国家实验室(Argonne National Laboratory)原始文件的详细实验信息进行了仔细的审查,以建立基准模型并定量评估实验的不确定性。该基准为用户提供了异类单元模型和三维(3-D)核心配置,这些配置在某种程度上被简化以保留ZPPR核心的重要物理特征,例如板的异质性,不同的抽屉类型和3-D核心安排。此外,基准手册还包括ZPPR核心的建成信息,作为一整套电子表格;因此,如有必要,用户可以开发自己的基准模型。用确定性或蒙特卡洛方法对基准进行的分析表明,它既可用于改进分析方法,又可用于验证核数据。

著录项

  • 来源
    《Nuclear science and engineering》 |2014年第3期|335-349|共15页
  • 作者单位

    Japan Atomic Energy Agency, Nuclear Science and Engineering Directorate 2-4, Shirakata, Tokai-mura, Naka-gun, Ibaraki, 319-1195, Japan;

    Japan Atomic Energy Agency, Nuclear Science and Engineering Directorate 2-4, Shirakata, Tokai-mura, Naka-gun, Ibaraki, 319-1195, Japan, 3848-109 Nagaoka, Ibaraki-machi, Ibaraki, 311-3116, Japan;

    Japan Atomic Energy Agency, Nuclear Science and Engineering Directorate 2-4, Shirakata, Tokai-mura, Naka-gun, Ibaraki, 319-1195, Japan, 6118, Sugaya, Naka-shi, Ibaraki, 311-0105, Japan;

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

  • 入库时间 2022-08-18 00:42:56

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