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Verification and Validation of a Natural Circulation Loop Model for FHRs

机译:FHRS自然循环循环模型的验证和验证

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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 forced/natural 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:美国加州大学伯克利分校是为热工水力代码验证,用积分作用的实验中,作为项目开发设计的技术基础的一部分,氟化盐冷却,高温反应堆(FHRS)的许可。作为初始验证的情况下,已使用的紧凑型积分影响测试(CIET)测试湾进行用于单相被迫/自然循环实验。该实验环已使用FHR先进自然循环分析(FANCY)1.0码建模,并且计算结果已经与RELAP5-3D,Flownex,和实验数据进行比较。在本文中,在FANCY 1.0中使用的模型进行说明,而验证和确认的努力被呈现。由于代码和模型验证努力的一部分,稳态自然循环计算结果进行比较,以用于与沿管道无热和形式损失的简化情况下分析计算,并且,示出了从FANCY 1.0结果与分析,RELAP5吻合-3D和Flownex解决方案一定的出入。此外,验证使用从CIET测试湾的实验数据进行的。用于验证所述第一数据集是从自然循环的稳态运行在一系列的功率输入。由于热损失,损失的形式和效果从气体夹带在循环流体在理想FANCY 1.0不被认为是,RELAP5-3D和Flownex模型,这些结果与作为动力输入增加的实验数据的增加之间的差异。设置用于验证的第二个实验数据是从温条件泵空转降瞬态和自然循环的启动。

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