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Investigation on Velocity Distribution around the Wrapping Wire in an Inner Subchannel of Fuel Pin Bundle

机译:燃料销束内部子信道周围包装丝速度分布的研究

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A sodium cooled fast reactor is designed to attain a high burn-up core in commercialized fast reactor cycle systems. In high burn-up fuel subassemblies, deformation of fuel pin due to the swelling and thermal bowing may decrease local flow velocity via change of flow area in the subassembly and influence the heat removal capability. Therefore, it is important to obtain the flow velocity distribution in a wire wrapped pin bundle. In this study, water experiments were carried out to investigate the detailed velocity distribution in inner subchannel of the pin bundle geometry. These basic data are not only useful for understanding of pin bundle thermal hydraulics but also code validation. A wire-wrapped 3-pin bundle water model was applied to investigate the detailed velocity distribution in an inner subchannel surrounded by 3 pins with the wrapping wire. The test section consists of an irregular hexagonal acrylic duct tube and fluorinated resin pins which have nearly the same refractive index with that of water and a high light transmission rate. This refractive index matching enables to visualize the inner subchannel through the outer pins. The velocity distribution in the inner subchannel with the wrapping wire was measured by PIV (Particle Image Velocimetry) through two sides of the duct tube. Typical flow velocity conditions in the pin bundle were 1.6m/s (Re = 13,500) and 0.36m/s (Re =2,700). Feature of stream regime in the subchannel existing wrapping wire was visualized in vertical and horizontal plane. The time averaged velocity field in the horizontal plane was reconstructed from the two vertical plane data in different directions. A detailed simulation code based on FEM was applied to the experimental analysis. The calculated velocity distributions were consistent with the experimental data.
机译:钠冷却的快速反应器设计用于在商业化的快速反应堆循环系统中获得高燃烧芯。在高燃烧的燃料子组件中,由于膨胀和热弯曲引起的燃料销的变形可能通过子组件中的流量区域的变化来降低局部流速,并影响散热能力。因此,重要的是在缠绕销束中获得流速分布。在该研究中,进行了水实验,以研究销束几何形状的内部子信道中的详细速度分布。这些基本数据不仅用于了解PIN束热液压,而且是代码验证。涂有电线包装的3引脚束水模型以研究与包装线包围3个引脚围绕的内部子信道中的详细速度分布。试验部分由不规则的六方丙烯酸管道和氟化树脂引脚组成,其具有与水的几乎相同的折射率和高透射率。该折射率匹配使能通过外引脚可视化内部子信道。通过PIV(颗粒图像速度)通过管道的两侧测量与包裹线的内部子信道中的速度分布。销束中的典型流速条件为1.6M / s(RE = 13,500)和0.36m / s(RE = 2,700)。在垂直和水平平面中可视化子信道现有包装线中的流制度的特征。从两个垂直平面数据以不同方向重建水平平面中的时间平均速度场。基于FEM的详细仿真码应用于实验分析。计算的速度分布与实验数据一致。

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