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CFD ANALYSIS OF TURBULENT FLOW IN A NUCLEAR FUEL BUNDLE WITH MIXING VANE

机译:混合叶片核燃料束中湍流的CFD分析

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A computational fluid dynamics (CFD) analysis was performed to investigate the coolant mixing in a nuclear fuel bundle that is promoted by the mixing vane on the grid spacer. Single and multiple subchannels of one grid span of the fuel bundle were modeled to simulate a 5x5 rod array experiment with the mixing vane. The three-dimensional CFD models were generated by a structured multi-block method. The standard k ― ε turbulence model was used in the current CFD simulation since it is practically useful and converges well for the complex turbulent flow in a nuclear fuel bundle. The CFD predictions of axial and lateral mean flow velocities showed a somewhat large difference from the experimental results near the spacer but represented the overall characteristics of coolant mixing well in a nuclear fuel bundle with the mixing vane. Comparison of single and multiple subchannel predictions shows good agreement of the flow characteristics in the central subchannel of the rod array. The simulation of multiple subchannels shows a slightly off-centered swirl in the peripheral subchannels due to the external wall of the rod array. It also shows no significant swirl and crossflow in the wall subchannels and the comer subchannels.
机译:进行计算流体动力学(CFD)分析以研究通过在栅极隔离物上促进的核燃料束中的冷却剂混合。燃料束的一个网格跨度的单个和多个子信道被建模以模拟与混合叶片的5x5杆阵列实验。通过结构化的多块方法生成三维CFD模型。标准K-ε湍流模型用于当前的CFD仿真,因为它实际上是有用的,并且在核燃料束中的复杂湍流流量很好地收敛。轴向和横向平均流速的CFD预测与间隔件附近的实验结果表明了稍大的差异,但是用混合叶片表示在核燃料束中的冷却剂混合的总体特征。单个和多个子信道预测的比较显示了杆阵列中央子信道中的流动特性的良好一致性。由于杆阵列的外壁,多个子通道的模拟显示在外围子信道中的略微偏心涡旋。它还在墙上的子通道和C选手子信道中没有显示任何重要的旋涡和交叉流程。

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