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Computational Fluid Dynamics Prediction of Heat Transfer in Rod Bundles With Water at Supercritical Pressure

机译:超临界压力下水与棒束中传热的计算流体动力学预测

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摘要

The paper further explores the application of computational fluid dynamics (CFD) codes for the study of the heat-transfer phenomena involved when working with fluids at supercritical pressure; bundle analysis is considered here in particular. As for previous simulations performed by the authors considering heat-transfer deterioration inside heated tubes, this application points out the limited capabilities of the most commonly used Reynolds-averaged Navier-Stokes models when approaching the heat-transfer deterioration phenomenon. It must be noted that some of the considered experimental conditions, which are very close to the pseudocritical temperature, represent at the same time one of the most challenging situations for the CFD codes and a very common situation if supercritical water-cooled reactors (SCWRs) will be developed. Improvements of the currently available turbulence models are then needed. The paper analyzes the most likely causes of the observed insufficient quality of the obtained predictions. In addition to comparing the measured and calculated wall temperature trends, the effect of the presence of the spacer grids on the turbulent flow is considered. Spacers are in fact very important to assure the structural stability of fuel, though they also affect the flow, generally improving the turbulence conditions in their neighborhood and slightly impairing it in the downstream region. A comparison between predictions performed including or not including the spacers is also performed.
机译:本文进一步探讨了计算流体力学(CFD)代码在研究超临界压力下流体涉及的热传递现象方面的应用。此处特别考虑捆绑分析。关于作者先前考虑加热管内部传热恶化所做的模拟,该应用指出了当接近传热恶化现象时,最常用的雷诺平均Navier-Stokes模型的功能有限。必须指出的是,某些考虑到的实验条件非常接近伪临界温度,同时代表了CFD规则最具挑战性的情况之一,而如果是超临界水冷反应堆(SCWR),则是非常常见的情况。将被开发。然后需要对当前可用的湍流模型进行改进。本文分析了所观察到的预测质量不足的最可能原因。除了比较测量和计算的壁温趋势外,还要考虑间隔栅的存在对湍流的影响。实际上,垫片对确保燃料的结构稳定性非常重要,尽管它们也会影响流量,通常会改善其附近的湍流条件,并在下游区域造成轻微破坏。还执行所执行的包括或不包括间隔物的预测之间的比较。

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