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MODELING AND EXPERIMENTS OF A PASSIVE DECAY HEAT REMOVAL SYSTEM FOR ADVANCED NUCLEAR REACTORS

机译:先进核反应堆无源衰变散热系统的建模与实验

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Within the field of research and development of innovative nuclear reactors, in particular Generation IV reactors and Small Modular Reactors (SMR), the design and the improvement of safety systems play a crucial role. Among all the safety systems high attention is dedicated to passive systems that do not need external energy to operate, with a very high reliability also in the case of station blackout, and which are largely used in evolutionary technology reactors. The aim of this work is the experimental and numerical analysis of a passive system that operates in natural circulation in order to study the mechanism and the efficiency of heat removal. The final goal is the development of a methodology that can be used to study this class of systems and to assess the thermal-hydraulic code RELAP5 for these specific applications. Starting from a commercial size system, which is the decay heat removal system of the experimental lead cooled reactor ALFRED, an experimental facility has been designed, built and tested with the aim of studying natural circulation in passive systems for nuclear applications. The facility has been simulated and optimized using the thermal-hydraulic code RELAP5-3D. During the experimental tests, temperatures and pressures are measured and the experimental results are compared with the ones predicted by the code. The results show that the system operates effectively, removing the given thermal power. The code can predict well the experimental results but high attention must be dedicated to the modeling of components where non-condensable gases are present (condenser pool and surrounding ambient). This facility will be also used to validate the scaling laws among systems that operate in natural circulation.
机译:在创新核反应堆的研发领域内,特别是IV反应堆和小型模块反应器(SMR),设计和改进安全系统发挥着至关重要的作用。在所有安全系统中,高度关注专用于不需要外部能量来操作的被动系统,在车站停电的情况下也具有非常高的可靠性,并且在很大程度上用于进化技术反应堆。这项工作的目的是一种在自然循环中运行的被动系统的实验性和数值分析,以研究机制和散热效率。最终目标是开发一种方法,可用于研究这类系统,并评估这些特定应用的热液压代码RELAP5。从商业尺寸系统开始,这是实验铅冷却反应器Alfred的衰减除去系统,设计,建造和测试了实验设施,目的是研究被动系统中的核应用的自然循环。使用热液态码RELAP5-3D,已模拟和优化该设施。在实验测试期间,测量温度和压力,并将实验结果与代码预测的实验结果进行比较。结果表明,该系统有效运行,取出给定的热力。该代码可以预测实验结果,但必须高度关注必须专用于存在不可凝聚气体的部件(冷凝器池和周围环境)的建模。该设施也将用于验证在自然循环中运行的系统之间的缩放法律。

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