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CFD investigation of a JAEA 7-pin fuel assembly experiment with local blockage for SFR

机译:SFR局部堵塞JAEA 7针燃料组件试验的CFD调查

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Three-dimensional structures of a vortical flow field and heat transfer characteristics in a partially blocked 7-pin fuel assembly mock-up of sodium-cooled fast reactor have been investigated through a numerical analysis using a commercial computational fluid dynamics code, ANSYS CFX. The simulation with the SST turbulence model agrees well with the experimental data of outlet and cladding wall temperatures. From the analysis on the limiting streamline at the wall, multi-scale vortexes developed in axial direction were found around the blockage. The vortex core has a high cladding wall temperature, and the attachment line has a low cladding wall temperature. The small-scale vortex structures significantly enhance the convective heat transfer because it increases the turbulent mixing and the turbulence kinetic energy. The large-scale vortex structures supply thermal energy near the heated cladding wall surface. It is expected that control of the vortex structures in the fuel assembly plays a significant role in the convective heat transfer enhancement. Furthermore, the blockage plate and grid spacer increase the pressure drop to about 36% compared to the bare case.
机译:通过使用商业计算流体动力学代码,ANSYS CFX,通过数值分析研究了部分封闭的7针燃料组件中的涡旋7针燃料组件中的升降的7针燃料组件的传热特性的三维结构。 SST湍流模型的仿真与出口和包层壁温的实验数据吻合良好。从墙壁上限制流线的分析,在堵塞周围发现轴向发展的多尺度涡旋。涡旋芯具有高包层壁温,附接线具有低熔覆壁温。小规模的涡旋结构显着提高了对流热传递,因为它增加了湍流混合和湍流动能。大规模涡旋结构在加热的包层壁表面附近提供热能。预计燃料组件中的涡旋结构的控制在对流传热增强中起着重要作用。此外,与裸壳相比,堵塞板和栅格间隔件将压力降至约36%。

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