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Influence of Spacer Grid Outer Strap on Fuel Assembly Thermal Hydraulic Performance

机译:隔板栅外带对燃料组件热工水力性能的影响

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The outer strap as a typical structure of a spacer grid enhances the mechanical strength, decreases hang-up susceptibility, and also influences thermal hydraulic performance, for example, pressure loss, mixing performance, and flow distribution. In the present study, a typical grid spacer with different outer strap designs is adopted to investigate the influence of outer strap design on fuel assembly thermal hydraulic performance by using a commercial computational fluid dynamics (CFD) code, ANSYS CFX, and a subchannel analysis code, FLICA. To simulate the outer straps’ influence between fuel assemblies downstream, four quarter-bundles from neighboring fuel assemblies are constructed to form the computational domain. The results show that the outer strap design has a major impact on cross-flow between fuel assemblies and temperature distribution within the fuel assembly.
机译:外隔板作为隔离栅的典型结构,可以提高机械强度,降低悬垂敏感性,并影响热液压性能,例如压力损失,混合性能和流量分布。在本研究中,通过使用商业计算流体力学(CFD)代码,ANSYS CFX和子通道分析代码,采用具有不同外带设计的典型格栅隔板来研究外带设计对燃料组件热液压性能的影响。 ,FLICA。为了模拟外部皮带在下游燃料组件之间的影响,构造了来自相邻燃料组件的四个四分之一束以形成计算域。结果表明,外带设计对燃料组件之间的横流和燃料组件内的温度分布有重大影响。

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