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Simulation of a gas jet entering the secondary side of a steam generator during a SGTR sequence: Validation of a FLUENT 6.2 Model

机译:在SGTR序列中模拟进入蒸汽发生器次级侧的气体射流:FLUENT 6.2模型的验证

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摘要

This paper summarizes the major insights gained as a result of gas jets entering a tube bundle from either a guillotine or a fish-mouth breach of a steam generator tube. This scenario is highly relevant in nuclear safety since it determines the potential retention of radioactive particles during risk-dominant sequences, the so-called Steam Generator Tube Rupture (SGTR) sequences. The scenario has been modeled with the FLUENT 6.2 code and its predictions have been proven to be grid independent and consistent with the experimental data available. The topology of the jets and the influence of the inlet mass flow rate (from 75 to 250 kg/h) have been studied in terms of velocity profiles.rnThe results show that the breach shape heavily determines the jet topology. Both jets initially describe a quasi-parabolic trajectory, which is affected by the presence of the tubes. A guillotine breach generates a jet with azimuthal symmetry, which vanishes for the fish-mouth breach configuration. In this case, jet expands azimuthally in a pseudo-triangular way with a small angle. This fact diminishes the momentum loss across the bundle, so that for the same inlet mass flow rate the fish-mouth jet penetration is higher than the guillotine one. The normalized maximum radial and axial velocities of the jet from the guillotine breach are found to be self-similar with respect to inlet mass flow rate along the tube row position and axial distance to the breach, respectively. However, in absolute terms higher penetrations are found at higher mass flow rates.
机译:本文总结了气体喷射从断头台或蒸汽发生器管的鱼嘴破裂处进入管束所获得的主要见解。该场景与核安全高度相关,因为它确定了在风险主导的序列(即所谓的蒸汽发生器爆裂(SGTR)序列)中放射性粒子的潜在保留。该场景已使用FLUENT 6.2代码建模,并且其预测已证明是独立于网格的,并且与可用的实验数据一致。从速度分布的角度研究了射流的拓扑结构和入口质量流量(从75到250 kg / h)的影响。结果表明,缺口形状在很大程度上决定了射流的拓扑结构。两种射流最初都描述了准抛物线轨迹,该轨迹受管的存在影响。断头台断裂会产生具有方位角对称性的射流,对于鱼嘴断裂构造,该射流将消失。在这种情况下,射流以伪三角形的小角度方位角扩展。这一事实减少了整个管束的动量损失,因此,对于相同的入口质量流速,鱼嘴喷射流的穿透力要大于断头台的穿透力。发现断头台裂口的射流的归一化最大径向和轴向速度分别相对于沿管排位置的入口质量流速和至裂口的轴向距离是自相似的。但是,从绝对意义上讲,在较高的质量流量下会发现较高的穿透力。

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  • 来源
    《Nuclear Engineering and Design》 |2010年第9期|P.2206-2214|共9页
  • 作者单位

    Unit of Nuclear Safety Research, CIEMAT, Madrid, Spain;

    rnUnit of Nuclear Safety Research, CIEMAT, Madrid, Spain;

    rnUnit of Nuclear Safety Research, CIEMAT, Madrid, Spain;

  • 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
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  • 入库时间 2022-08-18 00:44:56

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