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DAMAGE DOMAINS CALCULATION ASSOCIATED WITH MULTIPLE DAMAGES IN A STEAM GENERATOR TUBE RUPTURE DYNAMIC EVENT TREE

机译:蒸汽发生器破裂动态事件树中与多个损伤相关的损伤域计算

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The Integrated Safety Assessment (ISA) methodology, developed by the Spanish Nuclear Safety Council (CSN), has been applied to a thermo-hydraulical analysis of a Westinghouse 3-loop PWR plant by means of the dynamic event trees (DET) for Steam Generator Tube Rupture (SGTR) sequences. The ISA methodology allows obtaining the Damage Domains of a SGTR Dynamic Event Tree taking into account the operator actuation times and system response time. The Damage Domains allow to quantify more exactly the risk associated with the sequence even if the contribution to the total risk is due to multiple damages, like dose and core damage in the case of a SGTR. The results shows the impact of the risk associated with the dose as an addition of the risk associated with the core damage. Simulations are performed with SCAIS (Simulation Code system for Integrated Safety Assessment), which includes a dynamic coupling with MAAP thermal hydraulic code.
机译:西班牙核安全委员会(CSN)开发的综合安全评估(ISA)方法已通过蒸汽发生器的动态事件树(DET)应用于西屋3回路压水堆电厂的热工水力分析管破裂(SGTR)序列。 ISA方法允许考虑操作员启动时间和系统响应时间来获取SGTR动态事件树的损害域。即使对总风险的贡献是由于多重损害(如SGTR情况下的剂量和核心损害)造成的,损害域也允许更准确地量化与序列相关的风险。结果显示了与剂量相关的风险的影响,以及与核心损害相关的风险的增加。使用SCAIS(用于集成安全评估的模拟代码系统)执行模拟,该系统包括与MAAP热液压代码的动态耦合。

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