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Analysis of containment venting strategy under severe accident conditions

机译:严重事故情况下安全壳通风策略分析

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Under severe accidents without containment heat removal, the containment integrity can be challenged due to over-pressurization by the steam and non-condensable gas generation. Containment filtered venting has been considered as an effective measure to avoid or delay the containment failure by over-pressurization. In order to minimize the environmental effects and maximize the effectiveness of filtered venting, it is critical to initiate venting in timely manners with sufficient discharge flow rate. It is also important to optimize the vent line size to prevent additional risk of leakage and to minimize the space and the cost requirement. In this study, the various venting strategies are investigated with respect to possible release flow characteristics. First of all, the accident scenarios representing the core meltdown accident with containment pressurization are selected by reviewing relevant literature. With those scenarios, thermal hydraulic behaviors in the containment and the discharge flow depending on the different venting strategies (i.e. vent line size and vent initiation pressure) are analyzed. MAAP5 model for the OPR1000 Korean nuclear power plant has been used for simulation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在没有安全壳散热的严重事故下,由于蒸汽和过高的压力产生过高的压力,安全壳的完整性会受到挑战。安全壳过滤通风被认为是避免或过压导致安全壳失效的有效措施。为了最大程度地减少环境影响并最大化过滤排气的效率,至关重要的是要及时以足够的排气流量启动排气。优化通风管线的尺寸以防止泄漏的额外风险以及最小化空间和成本要求也很重要。在这项研究中,针对可能的释放流动特性研究了各种排气策略。首先,通过回顾相关文献,选择代表安全壳加压的核心熔毁事故的事故情景。在这些情况下,根据不同的排放策略(即排放管线尺寸和排放起始压力)分析了安全壳和排放流中的热力行为。用于韩国OPR1000核电站的MAAP5模型已用于仿真。 (C)2016 Elsevier Ltd.保留所有权利。

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