CFD Preliminary Assessment of the ALFRED FA Thermal-Hydraulics

R. Marinari, I. Piazza, M. Tarantino, G. Grasso, M. Frignani
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Abstract

In the context of GEN-IV heavy liquid metal-cooled reactors safety studies, the coolability of the Fuel Assembly in nominal condition is of central interest. The Advanced Lead-cooled Fast Reactor European Demonstrator (ALFRED) is a 300 MWth pool-type reactor aimed at demonstrating the safe deployment of the Generation IV LFR technology. The ALFRED design, currently being developed by the Fostering ALFRED Construction international consortium, is based on prototypical solutions intended to be used in the next generation of lead-cooled Small Modular Reactors. Within the scope of FALCON and in the frame of investigating the thermal-hydraulics of the ALFRED core, a CFD computational model of the general Fuel Assembly (FA) is built looking for the assessment of its thermal field in nominal flow conditions both for the average FA and the hottest one. Starting from the experience in this kind of simulations and in experimental work, the whole model of the ALFRED Fuel Assembly is first presented and calculation of flow and temperature field in nominal conditions is carried out. Results showed that the thermal hydraulic field predicted in the average FA by the code is in good agreement with analytical correlations and the temperature field on the pin clad is acceptable for clad material temperature constraint. About the results on the hot FA test case, the CFD results highlighted a peak temperature on the clad close to the clad temperature constraint. This result led to an upgrade of the mass flow distribution among the FA for achieving a 20% mass flow increase in the hottest one that guarantees higher temperature margin on the clad.
ALFRED FA热工系统CFD初步评估
在GEN-IV重液态金属冷却反应堆安全研究的背景下,燃料组件在标称条件下的冷却性是一个核心问题。先进铅冷快堆欧洲示范(ALFRED)是一个300兆瓦的池式反应堆,旨在演示第四代LFR技术的安全部署。阿尔弗雷德设计,目前正在由培育阿尔弗雷德建设国际财团开发,是基于原型解决方案,旨在用于下一代铅冷却小型模块化反应堆。在FALCON的范围内,在研究ALFRED堆芯热工力学的框架下,建立了通用燃料组件(FA)的CFD计算模型,以评估其在标称流动条件下的平均FA和最热FA的热场。从此类模拟和实验工作的经验出发,首次提出了ALFRED燃料组件的整体模型,并进行了标称工况下的流场和温度场计算。结果表明,该程序在平均FA中预测的热液场与解析关系式吻合较好,销层上的温度场在包层材料温度约束下是可以接受的。关于热FA测试用例的结果,CFD结果突出了包层上的峰值温度接近包层温度约束。这一结果导致了FA之间质量流分布的升级,以实现最热的质量流增加20%,从而保证了包层上更高的温度裕度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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