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The design and experimental validation of an emergency core cooling system for a pool type research reactor

机译:池式研究堆应急堆芯冷却系统的设计与实验验证

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This paper presents the design of the Emergency Core Cooling System (ECCS) for the IEA- Rlm pool type research reactor. This system with passive features, uses sprays installed above the core. The experimental program performed to define system parameters and to demon- start to the licensing authorities, that the fuel elements limiting temperature is not exceeded, is also presented. Flow distribution experiments using a core mock-up in full-scale were per- formed to define the spray header geometry and spray nozzles specifications as well as the system total flow rate. Another set of experiments using electrically heated plates simulating heat fluxes corresponding to the decay heat curve after full power operation at 5 MW was conducted to measure the temperature distribution at the most critical position. The observed water flow pattern through the plates has a very peculiar behavior resulting in a temperature distribution which was modelled by a 2D energy equation numerical solution. In all tested conditions the measured temperatures were shown to be below the limiting value.
机译:本文介绍了用于IEA-Rlm池型研究堆的应急堆芯冷却系统(ECCS)的设计。该系统具有被动功能,使用安装在核心上方的喷雾器。还介绍了执行实验程序以定义系统参数并向许可颁发机构表明未超过燃料元件极限温度的情况。进行了使用全尺寸核心模型的流量分布实验,以定义喷头几何形状和喷嘴规格以及系统总流量。进行了另一组使用电加热板的实验,模拟了在5 MW满功率运行后对应于衰减热曲线的热通量,以测量最关键位置的温度分布。观察到的通过板的水流模式具有非常特殊的行为,从而导致温度分布,该温度分布由2D能量方程数值解建模。在所有测试条件下,测得的温度均显示为低于极限值。

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