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CREEP EVALUATION FOR A PWR REACTOR PRESSURE VESSEL LOWER HEAD UNDER SEVERE ACCIDENT CONDITIONS CONSIDERING SUSTAINED INTERNAL PRESSURE

机译:考虑持续内部压力的严重事故条件下压水堆反应堆压力容器下部的蠕变评估

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In-Vessel Retention (IVR) is one of appropriate severe accident mitigation strategies for AP1000 Nuclear Power Plant (NPP), and assurance of prevention against to thermal failure and structural failure of Reactor Pressure Vessels (RPV) is the prerequisite of IVR. A Finite Element Model fora RPV considering lower head melting was established, the creep calculation was carried out after the temperature field analysis, and the stress-strain responses for different times were obtained. By means of choosing representative evaluation sections and applying the Accumulative Damage Theory based on Larson-Miller Parameter, the Creep Damage calculations and evaluations were conducted. The results showed that the failure modes associated with creep rupture would not happen under IVR condition when a certain amount of internal pressure sustained. The approaches employed in this paper could be utilized in structural integrity evaluation of RPV under IVR for other new type NPPs.
机译:船内保留(IVR)是AP1000核电站(NPP)适当的严重事故缓解策略之一,确保对反应堆压力容器(RPV)的热故障和结构故障的预防是IVR的先决条件。建立了考虑较低头部熔化的RPV有限元模型,在温度场分析后进行了蠕变计算,获得了不同时间的应力-应变响应。通过选择代表性的评估部分并应用基于拉森-米勒参数的累积损伤理论,进行了蠕变损伤的计算和评估。结果表明,当维持一定量的内部压力时,在IVR条件下不会发生与蠕变破裂有关的破坏模式。本文采用的方法可用于其他新型NPP的IVR下RPV的结构完整性评估。

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