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A Specialized Thermal-hydraulic Code with Porous Media Model and SIMPLEC Algorithm for PB-FHRs

机译:具有多孔介质模型和SIMPLEC算法的PB-FHR专用热工代码

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Pebble bed fluoride-salt cooled high temperature reactors (PB-FHRs) are Generation Ⅳ reactors which use coated particle pebble fuels and liquid fluoride-salt coolants. Thermal-hydraulics analysis of reactor core is significant for both design and safety issues. A specialized code for core thermal-hydraulics analysis is very important for this novel reactor, which is also needed in detailed transient analysis. Aim of this study is to develop a thermal-hydraulic code (named GATH) based on CFD method for PB-FHRs to analyze thermal-hydraulic phenomena in reactor core. Porous media model is applied to simplify reactor geometry. Energy equations for solid region and fluid region are constructed respectively with considering local thermal non-equilibrium effect between fuels and coolants. Macroscopic mass and momentum equations are solved to get speed distribution and pressure drop of liquid by using SIMPLEC algorithm. The thermal dispersion mechanism in the pebble bed is considered by solving modified macroscopic turbulence equations with additional source terms. Empirical correlations are used to calculate effective heat conductivity of pebble bed, resistance terms and heat transfer coefficient. A simplified PB-FHR model is analyzed by GATH. The results indicate that the resistance term of porous media has a significant influence on pressure drop. Heat transfer coefficient and effective heat conductivity has a significant influence on temperature distribution. Calculation results from GATH are compared with a commercial CFD code named FLUENT. Good agreement between the two codes indicates the adopted methods in GATH are rational. GATH can be employed for thermal-hydraulic analysis of PB-FHRs.
机译:卵石床氟化物盐冷却高温反应堆(PB-FHRs)是第四代反应堆,其使用包覆的颗粒卵石燃料和液态氟化物盐冷却剂。反应堆堆芯的热工水力分析对设计和安全问题均具有重要意义。对于这种新型反应堆,用于堆芯热工液压分析的专门代码非常重要,详细的瞬态分析也需要此代码。这项研究的目的是开发一种基于CFD方法的PB-FHRs热工代码(名为GATH),以分析反应堆堆芯中的热工现象。应用多孔介质模型来简化反应器的几何形状。分别考虑燃料和冷却剂之间的局部热非平衡效应,分别构建了固体区和流体区的能量方程。利用SIMPLEC算法求解宏观质量和动量方程,得到液体的速度分布和压降。通过求解带有附加源项的修改后的宏观湍流方程,可以考虑卵石床中的热扩散机理。经验相关用于计算卵石床的有效导热系数,电阻项和传热系数。通过GATH分析了简化的PB-FHR模型。结果表明,多孔介质的阻力项对压降有显着影响。传热系数和有效导热率对温度分布有重要影响。将GATH的计算结果与商品化的CFD代码FLUENT进行比较。这两个代码之间的良好一致性表明,GATH中采用的方法是合理的。 GATH可用于PB-FHR的热工水力分析。

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