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Computational Fluid Dynamics Evaluation of Heat Transfer Correlations for Sodium Flows in a Heat Exchanger

机译:换热器中钠流传热相关性的计算流体动力学评估

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A numerical study for the evaluation of heat transfer correlations for sodium flows in a heat exchanger of a fast breeder nuclear reactor is performed. Three different types of flows such as parallel flow, cross flow, and two inclined flows are considered. Calculations are performed for these three typical flows in a heat exchanger changing turbulence models. The tested turbulence models are the shear stress transport (SST) model and the SSG-Reynolds stress turbulence model by Speziale, Sarkar, and Gaski (1991, "Modelling the Pressure-Strain Correlation of Turbulence: An Invariant Dynamical System Approach, " J. Fluid Mech., 227, pp. 245-272). The computational model for parallel flow is a flow past tubes inside a circular cylinder and those for the cross flow and inclined flows are flows past the perpendicular and inclined tube banks enclosed by a rectangular duct. The computational results show that the SST model produces the most reliable results that can distinguish the best heat transfer correlation from other correlations for the three different flows. It was also shown that the SSG-RSTM high-Reynolds number turbulence model does not deal with the low-Prandtl number effect properly when the Peclet number is small. According to the present calculations for a parallel flow, all the old correlations do not match with the present numerical solutions and a new correlation is proposed. The correlations by Dwyer (1966, "Recent Developments in Liquid-Metal Heat Transfer, " At. Energy Rev., 4, pp. 3-92) for a cross flow and its modified correlation that takes into account of flow inclination for inclined flows work best and are accurate enough to be used for the design of the heat exchanger.
机译:进行了数值研究,以评估快速增殖核反应堆热交换器中钠流的传热相关性。考虑了三种不同类型的流,例如平行流,交叉流和两个倾斜流。在换热器湍流模型中针对这三种典型流量进行计算。被测试的湍流模型是由Speziale,Sarkar和Gaski(1991年,“对湍流的压力-应变相关性进行建模:不变的动力系统方法”,J.J。Chemie,1991年)的剪切应力传输(SST)模型和SSG-雷诺应力湍流模型。流体力学,227,第245-272页)。平行流的计算模型是流过圆柱体内的管子,而交叉流和倾斜流的模型是流过矩形管包围的垂直管和倾斜管的流。计算结果表明,SST模型产生的最可靠结果可以区分三种不同流的最佳传热相关性与其他相关性。还表明,当Peclet数小时,SSG-RSTM高雷诺数湍流模型不能正确处理低普朗特数效应。根据目前对平行流的计算,所有旧的相关性都与当前的数值解不匹配,并提出了新的相关性。 Dwyer(1966年,“液态金属传热的最新发展”,《能源评论》,第4卷,第3-92页)的相关性及其修正的相关性,其中考虑了倾斜流的倾斜度效果最好,并且足够准确,可用于热交换器的设计。

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