Hydraulic and statistical study of metastable phenomena in PWR rod bundles

IF 0.9 Q3 NUCLEAR SCIENCE & TECHNOLOGY EPJ Nuclear Sciences & Technologies Pub Date : 2020-11-01 DOI:10.1051/epjn/2019057
F. Muller
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Abstract

The analysis of fuel rod bundle flows constitutes a key element of Pressurized-Water Reactors (PWR) safety studies. The present work aims at improving our understanding of nefarious reorganisation phenomena observed by numerous studies in the flow large-scale structures. 3D simulations allowed identifying two distinct reorganisations consisting in a sign change for either a transverse velocity in rod-to-rod gaps or for a subchannel vortex. A Taylor “frozen turbulence” hypothesis was adopted to model the evolution of large-scale 3D structures as transported-2D. A statistical method was applied to the 2D field to determine its thermodynamically stable states through an optimization problem. Similarities were obtained between the PWR coherent structures and the stable states in a simplified 2D geometry. Further, 2D simulations allowed identifying two possible flow bifurcations, each related to one of the reorganisations observed in 3D simulations, laying the foundations for a physical explanation of this phenomenon.
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压水堆棒束亚稳现象的水力学和统计研究
燃料棒束流动分析是压水堆安全性研究的一个重要内容。目前的工作旨在提高我们对流动大尺度结构中大量研究观察到的恶性重组现象的理解。3D模拟可以识别出两种不同的重组,包括在杆到杆间隙的横向速度或子通道涡旋的符号变化。采用Taylor“冻结湍流”假说,将大尺度三维结构的演化建模为传输-二维。将统计方法应用于二维场,通过优化问题确定其热力学稳定状态。在简化的二维几何结构中,得到了压水堆相干结构与稳定状态的相似性。此外,2D模拟可以识别出两种可能的流动分支,每种分支都与3D模拟中观察到的一种重组有关,为这种现象的物理解释奠定了基础。
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来源期刊
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
20.00%
发文量
18
审稿时长
10 weeks
期刊最新文献
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