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Characterization of sodium flow over hexagonal fuel subassemblies

机译:六角形燃料组件上钠流量的表征

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Steady flow of liquid sodium over a bundle of heat generating hexagonal subassemblies has been investigated. The cross flow pressure drop and heat transfer are characterized using the general purpose CFD code STAR-CD. Analysis has been carried out for both laminar and turbulent regimes of interest to liquid metal fast reactors. Turbulence has been modeled using low Reynolds number (Re) k-s model. The estimated pressure drop and heat transfer coefficients are compared against that of a straight parallel plate channel. It is seen that in the low Reynolds number range, the pressure drop for the hexagonal path is nearly equal to that of the parallel plate channel for the same length. However, in the high Reynolds number range, the pressure drop of the hexagonal path is much higher than that in the parallel plate channel, the ratio being 2 at Re=2000 while it is 3.6 at Re=20,000. Two competing factors, viz., (I) jet impingement/flow development effect and (ii) flow separation effect are found to influence the average Nusselt number (Nu). In the laminar regime, the latter effect dominates leading to a decrease of the Nusselt number with an increase in the Reynolds number. However, in the turbulent regime, the former effect dominates leading to an increase in the Nusselt number with Reynolds number. The Nusselt number in the hexagonal path is about twice that of the parallel plate channel due to under development of velocity/temperature profiles and the recirculation associated with the hexagonal path due to the changes in flow direction. Detailed correlations for both the pressure drop and the average Nusselt number have been proposed.
机译:已经研究了液态钠在一束发热的六角形子组件上的稳定流动。使用通用CFD代码STAR-CD来表征错流压降和传热。已经对液态金属快中子反应堆感兴趣的层流和湍流态进行了分析。湍流已使用低雷诺数(Re)k-s模型建模。将估计的压降和传热系数与平直的平行板通道的压降和传热系数进行比较。可以看出,在低雷诺数范围内,对于相同的长度,六边形路径的压降几乎等于平行板通道的压降。但是,在高雷诺数范围内,六边形通道的压降远高于平行板通道中的压降,在Re​​ = 2000时该比率为2,而在Re = 20,000时为3.6。发现两个竞争因素,即(I)射流撞击/流动发展效应和(ii)流动分离效应影响平均努塞尔数(Nu)。在层流状态下,后一种作用占主导,导致努塞尔特数减少,而雷诺数增加。然而,在动荡的政权中,前者的影响占主导地位,导致努塞尔特数随雷诺数增加。由于速度/温度分布的发展以及由于流动方向的变化而引起的与六边形路径相关的再循环,六边形路径中的努塞尔数约为平行板通道的两倍。已经提出了压降和平均努塞尔数的详细相关性。

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