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EFFECTIVENESS OF RCS DEPRESSURIZATION STRATEGY FOR SEVERE ACCIDENT MANAGEMENT

机译:RCS降压策略对严重事故管理的有效性

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摘要

In developing the severe accident management guideline (SAMG), it was highly considered to maintain the integrity of reactor pressure vessel (RPV) as a key strategy aimed to reduce the risk of containment failure and fission product releases into the environment effectively.For the operating nuclear power plants with no dedicated safety features for the severe accident management (SAM), the improvement of the current mitigative strategy in SAMG domain could be one of counter-measures to extend the survival time of RPV.In this study, the effectiveness of the RCS depressurization to delay the RPV survival time with different RCS depressurization rate was evaluated for station blackout (SBO) accident assuming only SIT is available for Uljin unit 1 plant by MELCOR 1.8.5 code. According to the analysis results, it was shown that the conditions for RCS depressurization such as depressurization capacity and the time interval are the key elements to extend the RPV integrity in such a way to earn time for restoring the heat sink in order to prevent the accident propagation to the RPV failure.
机译:在制定严重事故管理方针(SAMG)时,高度被认为保持反应堆压力容器(RPV)的完整性,作为旨在减少遏制失效风险和裂变产品释放有效地进入环境的关键策略。 对于对严重事故管理(SAM)没有专门的安全特征的操作核电站,SAMG结构域目前的可缓解策略的改善可能是延长RPV的存活时间的反措施之一。 在这项研究中,RCS减压延迟具有不同RCS减压率的RPV存活时间的效果被评估为驻地停电(SBO)事故,假设仅适用于Melcor 1.8.5代码的Uljin Unit 1工厂。根据分析结果,显示RCS减压的条件如减压能力和时间间隔是延长RPV完整性的关键元件,以获得恢复散热器的时间,以防止事故传播到RPV失败。

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