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RANS-Based CFD Calculation for Pressure Drop and Mass Flow Rate Distribution in an MTR Fuel Assembly

机译:基于RAN基于MTR燃料组件的压降和质量流量分布的RAN的CFD计算

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摘要

This work presents a Reynolds-averaged Navier Stokes-based computational fluid dynamics methodology for the calculation of pressure drop and mass flow rate distribution in a material test reactor flat-plate-type standard fuel assembly (SFA) of the IEA-R1 Brazilian research reactor to predict future improvements in newer SFA designs. The results improve the understanding of the origin of fuel plate oxidation due to high temperatures, and consequently, due to the internal flow dynamics. All numerical analyses were performed with the ANSYS-CFX® commercial code. The observed results show that the movement pin decreases the central channel mass flow due to the length of the vortex at the inlet region. However, the outlet nozzle showed greater general influence in the flow dynamics. It should have a more gradual cross-section transition being away from the fuel plates or a squarer-shaped design to get a more homogeneous mass flow distribution. Optimizing both regions could lead to a better cooling condition. The validation of the IEA-R1 numerical methodology was made by comparing the McMaster University's dummy model experiment with a numerical model that uses the same numerical methodology. The experimental data were obtained with laser Doppler velocimetry, and the comparison showed good agreement for both pressure drop and mass flow rate distribution using the Standard k-ω turbulence model.
机译:这项工作提出了一种基于雷诺平均的Navier Stokes的计算流体动力学方法,用于计算IEA-R1巴西研究反应堆的材料测试反应堆平板型标准燃料组件(SFA)中的压降和质量流量分布预测较新的SFA设计中的未来改进。结果改善了由于内部流动动态的高温引起的燃料板氧化起源的理解。使用ANSYS-CFX®商业代码进行所有数值分析。所观察结果表明,由于入口区域的涡流的长度,移动引脚降低了中心沟道质量流量。然而,出口喷嘴在流动动态中显示出更大的一般影响。它应具有更平缓的横截面过渡是从燃料板或一个平方器形设计远以获得更均匀的质量流动分布。优化两个地区可能导致更好的冷却条件。通过将McMaster大学的虚拟模型实验与使用相同数值方法的数值模型进行比较来进行IEA-R1数值方法的验证。使用激光多普勒测速获得实验数据,并且使用标准K-Ω湍流模型,对压降和质量流量分布的比较显示了良好的一致性。

著录项

  • 来源
    《Nuclear science and engineering》 |2021年第4期|349-366|共18页
  • 作者单位

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil FEI University Center Department of Mechanical Engineering Sao Bernardo do Campo Brazil;

    Mackenzie Presbyterian University Department of Mechanical Engineering Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

    University of Sao Paulo Nuclear and Energy Research Institute Nuclear Engineering Center Sao Paulo Brazil;

  • 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

    ANSYS-CFX®; computational fluid dynamics; material test reactor; IEA-R1;

    机译:ANSYS-CFX®;计算流体动力学;材料测试反应器;IEA-R1;
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