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Development of integrated response time evaluation methodology for the plant protection system

机译:开发用于植物保护系统的综合响应时间评估方法

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Safety analysis for a nuclear power plant establishes not only an analytical limit in terms of a measured or calculated variable but also an analytical response time required to complete protective action after the analytical limit is reached. If the two constraints are met, the safety limit selected to maintain the integrity of physical barriers used for preventing uncontrolled radioactivity release will not be exceeded during anticipated operational occurrences and postulated accidents. Setpoint determination methodologies have been actively developed to ensure that protective action is initiated before the process conditions reach the analytical limit. However, regarding the analytical response time for the plant protection system (PPS), an integrated evaluation methodology considering the whole design process has not been systematically studied. In order to assure the safety of nuclear power plants, this paper proposes a systematic and integrated response time evaluation methodology that covers safety analyses, system designs, response time analyses, and response time tests. This methodology is applied to the PPS for the advanced power reactor 1400 nuclear power plant in Korea. The quantitative evaluation results are provided herein. The evaluation results using the proposed methodology demonstrate that the PPS completely satisfies the requirement of the analytical response time.
机译:核电厂的安全分析不仅根据测量或计算的变量确定了分析极限,而且还确定了达到分析极限后完成保护作用所需的分析响应时间。如果满足这两个限制,则在预期的操作事件和假定的事故发生期间,不会超过为保持用于防止放射性释放失控的物理屏障的完整性而选择的安全极限。已经积极开发设定点确定方法,以确保在过程条件达到分析极限之前启动保护措施。但是,关于植物保护系统(PPS)的分析响应时间,尚未系统地研究考虑整个设计过程的综合评估方法。为了确保核电厂的安全,本文提出了一种系统的,综合的响应时间评估方法,包括安全分析,系统设计,响应时间分析和响应时间测试。该方法适用于韩国先进的1400号反应堆核电厂的PPS。本文提供了定量评估结果。使用所提出的方法的评估结果表明,PPS完全满足分析响应时间的要求。

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