首页> 外文会议>International conference on nuclear engineering >DEVELOPMENT OF PROBABILISTIC RISK ASSESSMENT METHODOLOGY OF DECAY HEAT REMOVAL FUNCTION AGAINST COMBINATION HAZARDS OF STRONG WIND AND RAINFALL FOR SODIUM-COOLED FAST REACTORS
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DEVELOPMENT OF PROBABILISTIC RISK ASSESSMENT METHODOLOGY OF DECAY HEAT REMOVAL FUNCTION AGAINST COMBINATION HAZARDS OF STRONG WIND AND RAINFALL FOR SODIUM-COOLED FAST REACTORS

机译:速冷和强降雨组合危害对强风和暴雨的腐烂除热功能的概率风险评估方法的发展

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This paper describes probabilistic risk assessment (PRA) methodology development against combination hazard of strong wind and rainfall. In this combination hazard PRA, a hazard curve has been evaluated in terms of maximum instantaneous wind speed, hourly rainfall, and rainfall duration. A scenario analysis provided event sequences resulted from the combination hazard of strong wind and rainfall. The event sequence was characterized by the function loss of auxiliary cooling system, of which heat transfer tubes could crack due to cycle fatigue by cyclic contact of rain droplets. This situation could occur if rain droplets ingress into air cooler occurs after the air cooler roof failure due to strong-wind-generated missile impact. This event sequence was incorporated into an event tree which addressed component failure by the combination hazard. Finally, a core damage frequency has been estimated the order of 10~(-7)/year in total by multiplying discrete hazard frequencies by conditional decay heat removal failure probabilities. A dominant sequence is the failure of the auxiliary cooling system by the missile impact after the failure of external fuel tank by the missile impact. A dominant hazard is the maximum instantaneous wind speed of 40-60 m/s, the hourly rainfall of 20-40 mm/h, and the rainfall duration of 0-10 h.
机译:本文介绍了针对强风和降雨的组合危害的概率风险评估(PRA)方法开发。在此组合危害PRA中,已根据最大瞬时风速,每小时降雨和降雨持续时间评估了危害曲线。情景分析提供了由强风和降雨相结合的危害导致的事件序列。事件序列的特征是辅助冷却系统的功能丧失,其中传热管可能由于雨滴的循环接触而由于循环疲劳而破裂。如果由于强风产生的导弹撞击而导致空气冷却器顶板故障后雨滴进入空气冷却器中,则可能会发生这种情况。该事件序列被合并到事件树中,该事件树通过组合危害解决了组件故障。最后,通过将离散的危险频率乘以有条件的衰减除热失效概率,可以估算出核心损坏的频率总计约为10〜(-7)/年。一个主要的顺序是在导弹撞击导致外部燃料箱故障之后,由导弹撞击造成的辅助冷却系统的故障。最主要的危害是最大瞬时风速为40-60 m / s,每小时降雨量为20-40 mm / h,降雨量持续时间为0-10 h。

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