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ANALYSIS ON THERMAL-HYDRAULICS OF UTSG BY STAF CODE

机译:用STAF代码分析UTSG的热力学

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Structural integrity of steam generator should be maintained during operation, since it performs as the pressure boundary of primary side coolant. Localized thermal-hydraulic parameters of secondary side are essential for the analysis of tube wastage, fatigue and failure. In this paper, a three-dimensional thermohydraulics analysis code, named STAF, is developed based on FLUENT. With STAF code, three-dimensional thermohydraulics of secondary side of AP1000 steam generator are generated. This code is developed based on the porous media theory. In this code, the drift flux two-phase model coupled with a simplified flow boiling model is utilized to present two-phase flow among the U-tube bundle. Downcomer, tube bundle, support plates and primary separators in steam generator are considered in STAF code. The calculated results are compared with a general steam generator thermohydraulic analysis code ATHOS, which is developed by the Westinghouse. The comparison indicates that STAF code performs well in evaluating thermal-hydraulic parameters in steam generator. The results show that the flow field varies significantly at different position in AP1000 steam generator. Flow vapor quality at the inlet of primary separators varies significantly, which is a severe challenge to the capacity design of separators.
机译:蒸汽发生器在运行过程中应保持其结构完整性,因为它作为一次侧冷却剂的压力边界起作用。次级侧的局部热工液压参数对于分析管子的损耗,疲劳和失效至关重要。在本文中,基于FLUENT开发了三维热工液压分析代码,称为STAF。使用STAF代码生成AP1000蒸汽发生器次级侧的三维热工水力。该代码是根据多孔介质理论开发的。在此代码中,漂移通量两相模型与简化的流动沸腾模型相结合,用于显示U型管束之间的两相流。 STAF规范考虑了蒸汽发生器中的降液管,管束,支撑板和主分离器。将计算结果与西屋公司开发的通用蒸汽发生器热工水力分析代码ATHOS进行比较。比较表明,STAF代码在评估蒸汽发生器中的热工参数方面表现良好。结果表明,AP1000蒸汽发生器在不同位置的流场变化很大。主分离器入口处的流动蒸汽质量变化很大,这对分离器的容量设计提出了严峻的挑战。

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