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Assessment of an entrainment model in annular-mist flow for a three-field TRAC-M

机译:评估三场TRAC-M环流中的夹带模型

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摘要

A three-field model for annular-mist flow regime was developed and directly implemented into the one-dimensional components of TRAC-M/F90. The three-field model implemented in the present study was firstly developed based on the physical models of COBRA-TF. In the development of the present three-field model, the empirical correlations including entrainment and de-entrainment models in the literature were investigated and tested with the three-field model implemented in TRAC-M/F90. The entrainment model was assessed using Kataoka and Ishii's and Wuertz's models. The use of Wuertz's entrainment model shows excellent agreement with high pressure, steam/water experiments, while considerable scattering was observed in low pressure, steam/water and low pressure, air/water experiments. Kataoka and Ishii's model was found to be the best application in air/water, porous-sinter cases. Because of the narrowness of the applicability of Kataoka and Ishii's model, Wuertz's model was selected as the base model for entrainment rate. The final combination of the empirical correlations is suggested and validated against steam-water experiments of various conditions. The agreements with experimental data were at 25.0% RMS error.
机译:开发了环形雾流状态的三场模型,并将其直接实现到TRAC-M / F90的一维组件中。本研究中实现的三场模型是首先基于COBRA-TF的物理模型而开发的。在目前的三场模型的开发中,利用TRAC-M / F90中实现的三场模型研究和检验了文献中包括夹带模型和去夹带模型的经验相关性。使用Kataoka,Ishii和Wuertz的模型评估了夹带模型。 Wuertz夹带模型的使用显示了与高压蒸汽/水实验的极佳一致性,而在低压,蒸汽/水和低压空气/水实验中观察到了相当大的散射。 Kataoka和Ishii的模型被发现是空气/水,多孔烧结箱中的最佳应用。由于Kataoka和Ishii模型适用性的狭窄,选择了Wuertz模型作为夹带率的基础模型。建议了经验相关性的最终组合,并针对各种条件的蒸汽-水实验进行了验证。与实验数据的一致性为RMS误差25.0%。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2007年第4期|p.441-450|共10页
  • 作者

    Sang Ik Lee; Hee Cheon No;

  • 作者单位

    Nuclear Safety Analysis Department, Korea Nuclear Fuel Co., Ltd., 493 Deokjin-dong, Yuseong-gu, Daejon 305-353, Republic of Korea;

  • 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 原子能技术;
  • 关键词

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