Modeling of Thermal Hydraulic Characteristics for a LBE-Cooled Fast Reactor Helical Coiled Type Steam Generator

Xue Ding, Q. Wen, Zhiqiang Chen, Shenhui Ruan, Cheng Cheng
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Abstract

Lead and Bismuth Eutectic (LBE) cooled fast reactor is attracting attention due to its advantages in safety. A thermal hydraulic analysis model is developed for an LBE cooled fast reactor helical coiled type steam generator, which could be used for predicting thermal hydraulic parameters distribution along the length of the tube. Based on two fluid model, the mathematical heat transfer model includes six regions: single water and vapor, subcooled boiling, saturated boiling, transition boiling and film boiling. In order to describe the heat and mass transfer between phases, the interphase model is presented. The steam generator is simplified with single tube concept and all the flow variables are evaluated at each point of the grid in which the domain is discretized. Full load condition and a postulated scenario, such a flow rate step changed in secondary side, is calculated in this study. The results showed that the changing process of the thermal hydraulic parameters of helically coiled steam generator conforms to the qualitative mechanism analysis results of thermal hydraulic analysis.
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lbe冷却快堆螺旋盘管式蒸汽发生器热水力特性建模
铅铋共晶(LBE)冷却快堆因其在安全性方面的优势而备受关注。建立了LBE冷却快堆螺旋盘管式蒸汽发生器的热工水力分析模型,该模型可用于预测热工水力参数沿管道长度的分布。在双流体模型的基础上,数学传热模型包括单一水蒸汽、过冷沸腾、饱和沸腾、过渡沸腾和膜沸腾六个区域。为了描述相间的传热传质,提出了相间模型。将蒸汽发生器简化为单管概念,并在网格离散域的每一点上求出所有的流量变量。本文计算了满载工况和二次侧流量阶跃变化的假设情景。结果表明,螺旋盘管蒸汽发生器热水力参数的变化过程符合热水力分析的定性机理分析结果。
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