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Sensitivity Studies of the Inter-Subchannel Mixing in Subchannel Analysis

机译:子通道分析中子通道间混合的灵敏度研究

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In the PWR reactor core, the power profile is non-uniform and the inter-subchannel mixing is of great importance for flatting the temperature distribution of the coolant and for reactor core safety analysis. Subchannel codes are widely used in the reactor core safety analysis to assess the thermal hydraulic behavior of fuel assemblies. One of basic assumptions in subchannel analysis is that axial flow predominates in the channel flow [1]. Under this assumption, the lateral momentum equation in subchannel codes can be simplified without bringing in significant errors. The inter-subchannel mixing leading to the exchange of mass, energy and momentum are modeled by adding source terms to the hydrodynamic equations or by separate models, and most of source terms and models are empirical correlations. With the advancement of mixing vane grid design, the lateral mixing has becoming a critical components in the evaluation of the inter-subchannel mixing in flow field. The accuracy of the subchannel analysis is strongly dependent on the modeling of inter-subchannel interactions between adjacent subchannels. So the inter-subchannel mixing models should be well considered and developed in subchannel analysis to better reflect their influence on flow field and temperature field in rod bundle.
机译:在压水堆反应堆堆芯中,功率分布不均匀,子通道间的混合对于平整冷却液的温度分布和进行反应堆堆芯安全性分析非常重要。子通道代码广泛用于反应堆堆芯安全分析中,以评估燃料组件的热液压行为。子通道分析的基本假设之一是轴向流在通道流中占主导地位[1]。在这种假设下,可以简化子信道代码中的横向动量方程,而不会带来明显的误差。通过将源项添加到流体动力学方程中或通过单独的模型来建模导致质量,能量和动量交换的子通道间混合,并且大多数源项和模型是经验相关的。随着混合叶片格栅设计的发展,横向混合已成为流场中子通道间混合评估的关键组成部分。子通道分析的准确性在很大程度上取决于相邻子通道之间子通道间交互作用的建模。因此,在子通道分析中应充分考虑和开发子通道间混合模型,以更好地反映它们对棒束流场和温度场的影响。

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  • 来源
    《Transactions of the American nuclear society》 |2017年第2期|1373-1376|共4页
  • 作者

    Hu Mao; Bao-Wen Yang;

  • 作者单位

    Science and Technology Center for Advanced Nuclear Fuel Research, Xi 'an Jiaotong University Xianning West Rd. 28, Xi'an, Shaanxi 710049, P.R. China;

    Science and Technology Center for Advanced Nuclear Fuel Research, Xi 'an Jiaotong University Xianning West Rd. 28, Xi'an, Shaanxi 710049, P.R. China;

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