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SEVERE ACCIDENT ANALYSIS TO PREVENT HIGH PRESSURE SCENARIOS IN THE EPR?

机译:是否需要进行严重的事故分析才能防止EPR中出现高压情况?

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The EPR? has incorporated several design features in order to specifically address major severe accident safety issues. In particular, it was designed with the objective to transfer high pressure core melt scenarios into a low pressure scenario with high reliability so that a high pressure vessel failure can be practically eliminated. It is the key issue in the defense-in-depth approach, for a postulated severe accident with core melting, to prevent any risk of containment failure due to possible Direct Containment Heating or due to reactor vessel rocketing which results from vessel failure at high pressure. Temperature-induced steam generator tube rupture, which could lead to a radiological containment bypass, has also to be prevented.On the basis of the analysis of the main high pressure core melt scenarios which are calculated with the MAAP4.07 code which was developed to support the EPR?, this paper explores the benefits of primary depressurization by dedicated valves on transient evolutions. It specifically addresses the thermal response of the structures by sensitivity studies involving the timing of valve actuation. It outlines that a grace period of at least one hour is available for a delayed valve actuation without inducing excessive loads and without increasing the risk of a temperature-induced steam generator tube rupture.
机译:EPR?为了特别解决重大的严重事故安全问题,已合并了几个设计功能。尤其是,其目的是将高压堆芯熔体情况可靠地转移到低压情况中,从而实际上可以消除高压容器的故障。对于假定的堆芯熔化严重事故,这是深度防御方法中的关键问题,以防止由于可能的直接安全壳加热或由于高压容器故障而导致的反应堆容器爆炸而导致安全壳失效的任何风险。还必须防止温度引起的蒸汽发生器管破裂,该破裂可能导致放射防护旁路。 在对主要的高压堆芯熔体情景进行分析的基础上,该情景是通过为支持EPR?而开发的MAAP4.07代码计算得出的,探讨了通过专用阀进行一次降压对瞬态演化的好处。它通过涉及阀门致动正时的敏感性研究专门解决了结构的热响应问题。它概述了至少一个小时的宽限期可用于延迟的阀门致动,而不会引起过多的负载,也不会增加温度引起的蒸汽发生器管破裂的风险。

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