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High Cycle Thermal Fatigue Damage Prediction in Mixing Zones of Nuclear Power Plants: Engineering Issues Illustrated on the FATHER Case

机译:核电厂混合区的高循环热疲劳损伤预测:父亲案中所示的工程问题

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Nuclear power plant piping may be submitted to High Cycle Thermal Fatigue phenomenon in mixing zones. French nuclear engineers have at their disposal a simplified approach for assessing the sensibility of the areas with regard to this kind of damage. The engineering tools are quite complex since they involve multi-disciplinary physic phenomena: thermal-hydraulics, mechanics and materials. The results are only qualitative and globally conservative, and this method is only used to identify and to classify the mixing zones which could present a risk. In this framework, this paper proposes to perform a more realistic application of this engineering method on the particular case of the FATHER experiment. The idea is to compare the numerical prediction results with the expertises performed on the FATHER mock-up. Some generic engineering issues raised by nuclear fatigue analyses are here illustrated by the sensitivity analyses which have been performed. The determination of the fatigue loading and the choice of the material criterion are particularly discussed since they are very significant parameters in the analysis.
机译:核电厂管道可以在混合区中提交至高循环热疲劳现象。法国核工程师掌握了一种简化的方法,用于评估该地区对这种损害的敏感性。工程工具非常复杂,因为它们涉及多学科物理现象:热液压,力学和材料。结果仅是定性和全球保守的,这种方法仅用于识别并分类可能呈现风险的混合区。在本框架中,本文提出对父亲实验的特定情况进行这种工程方法的更现实的应用。该想法是将数值预测结果与父地模拟的专业进行比较。通过核疲劳分析提出的一些通用工程问题通过已经进行的敏感性分析说明。特别讨论了疲劳负载和材料标准的选择,因为它们是分析中非常重要的参数。

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