Convective Heat Transfer in CANDU Spent Fuel Racks After a Loss of Coolant

Derek Logtenberg, W. Grant, P. Chan, E. Corcoran
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Abstract

The event at the Fukushima Daiichi Spent Fuel Pools (SFPs) has renewed interest in quantifying the safety margins related to loss of coolant accidents in Irradiated Fuel Bays (IFBs). Thermal-hydraulic analyses of exposed spent CANDU fuel has been limited to a small number of bundles due to its complex bundle geometry and open rack design. This paper presents a process to predict the steady state temperature and velocity of air as it passes through a rack of spent fuel using analytical models and Computational Fluid Dynamics (CFDs) techniques. The scenario acts as lower bound estimate for the effectiveness of convection during a complete loss of coolant in a fuel bay by examining the heat-up of a stand-alone rack without flow resistance of the bundles. The correct incorporation of flow resistance is a necessary step before conclusions are made about the available safety margins of irradiated fuel bays.
输掉冷却剂后CANDU乏燃料架内的对流换热
福岛第一乏燃料池(SFPs)的事件重新引起了人们对量化与辐照燃料舱(IFBs)冷却剂损失事故相关的安全边际的兴趣。由于CANDU燃料束的复杂几何形状和开放式机架设计,暴露的废CANDU燃料的热水力分析一直局限于少量的燃料束。本文提出了一种利用分析模型和计算流体动力学(cfd)技术来预测空气通过乏燃料机架时的稳态温度和速度的方法。该方案作为对流有效性的下限估计,在燃料舱中冷却剂完全损失期间,通过检查无束流阻力的独立机架的加热。在得出辐照燃料舱可用安全裕度的结论之前,正确地考虑流动阻力是必要的步骤。
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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