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Verification and Validation of a Natural Circulation Loop Model for FHRs

机译:FHRs自然循环回路模型的验证与验证

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摘要

The University of California, Berkeley is performing integral effects experiments for thermal hydraulics code validation, as part of a project to develop the technical basis for design and licensing of fluoride-salt-cooled, high-temperature reactors (FHRs). As an initial validation case, experiments for single-phase forcedatural circulation have been performed using the Compact Integral Effects Test (CIET) Test Bay. This experimental loop has been modeled using the FHR advanced natural circulation analysis (FANCY) 1.0 code, and computational results have been compared with RELAP5-3D, Flownex, and experimental data. In this paper, the models used in FANCY 1.0 are described, and verification and validation efforts are presented. As part of code and model verification efforts, steady-state natural circulation computational results are compared to analytical calculations for a simplified case with no heat and form losses along the piping, and it is shown that results from FANCY 1.0 agree well with analytical, RELAP5-3D and Flownex solutions with certain discrepancy. Additionally, validation is performed using experimental data from the CIET Test Bay. The first data set used for validation is from natural circulation steady-state runs across a range of power inputs. Since heat losses, form losses and effects from gas entrainment in the circulating fluid are not considered in the ideal FANCY 1.0, RELAP5-3D and Flownex models, the discrepancy between these results and experimental data increases as the power input increases. The second experimental data set used for validation is for a pump coast-down transient and startup of natural circulation from isothermal conditions.
机译:加利福尼亚大学伯克利分校正在进行热效应代码验证的整体效果实验,这是开发氟化物盐冷却的高温反应堆(FHR)设计和许可技术基础的项目的一部分。作为最初的验证案例,已经使用紧凑积分效应测试(CIET)测试台进行了单相强制/自然循环实验。该实验循环已使用FHR高级自然循环分析(FANCY)1.0代码进行了建模,并将计算结果与RELAP5-3D,Flownex和实验数据进行了比较。在本文中,描述了在FANCY 1.0中使用的模型,并提出了验证和确认工作。作为代码和模型验证工作的一部分,将稳态自然循环计算结果与分析计算进行了比较,以简化情况下沿管道不产生热量和形式损失,并且表明FANCY 1.0的结果与解析RELAP5非常吻合-3D和Flownex解决方案存在一定差异。此外,使用来自CIET Test Bay的实验数据进行验证。用于验证的第一个数据集来自一系列电源输入中的自然循环稳态运行。由于在理想的FANCY 1.0,RELAP5-3D和Flownex模型中未考虑热量损失,形式损失以及气体夹带在循环流体中的影响,因此这些结果与实验数据之间的差异会随着输入功率的增加而增加。用于验证的第二个实验数据集是针对泵滑行瞬变和从等温条件开始自然循环的。

著录项

  • 来源
  • 会议地点 Reno NV(US)
  • 作者单位

    Department of Nuclear Engineering, University of California, Berkeley, United States,Department of Nuclear Science and Technology, Xi'an Jiaotong University, China;

    Department of Nuclear Engineering, University of California, Berkeley, United States;

    Department of Nuclear Engineering, University of California, Berkeley, United States;

    Department of Nuclear Engineering, University of California, Berkeley, United States;

    Department of Nuclear Engineering, University of California, Berkeley, United States;

    Department of Nuclear Science and Technology, Xi'an Jiaotong University, China;

    Department of Nuclear Science and Technology, Xi'an Jiaotong University, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FHR; Natural circulation; Code verification validation;

    机译:胎心率;自然循环;代码验证与确认;
  • 入库时间 2022-08-26 13:47:38

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