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Development of Monte Carlo Neutron Transport Method-Based Supercritical Transient Code with Time-Dependent Feedback Capability

机译:基于Monte Carlo中子传输方法的超临界瞬态码,具有时间依赖反馈能力

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摘要

A multiregion integral kinetic (MIK) code based on the integral kinetic model and a Monte Carlo neutron transport method has been developed with a new time-dependent feedback modeling capability. The current MIK code is applicable to the supercritical power transient following reactivity insertion in a fissile system of arbitrary geometry and composition, taking its feedback mechanisms into account. The new time-dependent feedback modeling capability allows a more direct and accurate treatment of complicated and nonlinear feedback mechanisms in a given system. The purpose of this study is to verify the MIK code and its time-dependent feedback modeling capability through various supercritical transient experiments conducted at the Godiva, TRACY, and SILENE facilities. Specifically, four supercritical experiments were selected and simulated using the MIK code. The various complicated feedback mechanisms-thermal expansion in Godiva, and Doppler broadening, thermal expansion, and radiolytic gas creation in TRACY and SILENE-provide a good benchmark for verifying the MIK code and its time-dependent feedback model. The obtained results show generally good, albeit occasionally poor, agreement with experimental results depending on the specific experiment. When the reasons for the poor agreement are considered, however, it may be concluded that the simulated results show promising agreement with the experiments, verifying the MIK code and its time-dependent feedback modeling capability.
机译:基于整体式动力学模型和蒙特卡罗中子传输方法的多限组成动力学(MIK)代码具有新的时间依赖性反馈建模能力。目前的MIK代码适用于在任意几何和组成的裂变系统中的反应性插入的超临界电力瞬态,以其反馈机制考虑。新的时间依赖反馈建模能力允许更直接和准确地处理给定系统中的复杂和非线性反馈机制。本研究的目的是通过在Godiva,Tracy和Silene设施中进行的各种超临界瞬态实验来验证MIK代码及其时间依赖的反馈建模功能。具体地,使用MIK码选择并模拟四个超临界实验。 TRACE和SILENE中的神导体和多普勒扩大,热膨胀和辐射性膨胀和辐射性膨胀和辐射性膨胀气体的各种复杂反馈机制 - 提供了一种良好的基准,用于验证MIK代码及其时间依赖反馈模型。获得的结果通常良好,虽然偶尔,偶尔,与实验结果一致,具体取决于具体实验。然而,当考虑糟糕协议的原因时,可以得出结论,模拟结果表明,希望与实验一致,验证MIK代码及其时间相关的反馈建模功能。

著录项

  • 来源
    《Nuclear science and engineering》 |2019年第5期|481-494|共14页
  • 作者

    Tuya Delgersaikhan; Obara Toru;

  • 作者单位

    Tokyo Inst Technol Inst Innovat Res Lab Adv Nucl Energy Meguro Ku Ookayama 2-12-1-N1-19 Tokyo 1528550 Japan;

    Tokyo Inst Technol Inst Innovat Res Lab Adv Nucl Energy Meguro Ku Ookayama 2-12-1-N1-19 Tokyo 1528550 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

    MIK code; supercritical transient; Godiva; TRACY; SILENE;

    机译:MIK代码;超临界短暂;GODIVA;TRACE;SILONE;
  • 入库时间 2022-08-18 21:23:41

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