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THERMAL LOADING FAILURE ANALYSIS OF MOLTEN POOL IN THE REACTOR VESSEL

机译:反应釜内熔池热负荷破坏分析

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Uncertainties are addressed in the special context of assessing and managing risks from rare, severe-consequence hazards. Risk Oriented Accident Analysis Methodology (ROAAM) is used to analyze uncertainties during severe accidents analysis in nuclear power plants. In-vessel Retention (IVR) is one of the mitigations for severe accidents which will cause core damage. By external reactor vessel cooling (ERVC), the integrity of the reactor vessel is preserved. The success criterion for IVR is the local heat flux on the wall of lower head is less than the critical heat flux (CHF). This paper analyzes the uncertain parameters which decide the mitigation to be successful or fail. Two bounding structures and 4 molten pool steady states are defined. And the success probability of IVR is evaluated with a molten pool heat transfer model. Then the effectiveness of IVR-ERVC under the two bounding structures is evaluated.
机译:在评估和管理罕见的严重后果性风险的特殊环境中解决不确定性问题。面向风险的事故分析方法论(ROAAM)用于分析核电厂严重事故分析期间的不确定性。船内留存(IVR)是缓解严重事故的一种方法,该事故将导致核心损坏。通过外部反应堆容器冷却(ERVC),可以保持反应堆容器的完整性。 IVR的成功标准是下头壁上的局部热通量小于临界热通量(CHF)。本文分析了决定缓解成功与否的不确定参数。定义了两个边界结构和四个熔池稳态。利用熔池传热模型对IVR的成功概率进行了评估。然后评估了两种边界结构下IVR-ERVC的有效性。

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