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A RISK-INFORMED APPROACH TO ADDRESS DIVERSITY REQUIREMENTS IN THE DESIGN OF NEW REACTORS

机译:新反应堆设计中针对地址多样性要求的风险防范方法

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Diversity is defined as the presence of two or more systems or components to perform an identified function, where the different systems or components have different attributes so as to reduce the possibility of common cause failure (CCF). By eliminating CCF an adequate level of diversity between redundant systems or components contributes to improve safety function reliability. Thus it plays an important role in the respect of both qualitative and quantitative high safety objectives for new Nuclear Power Plants, as independence between Defense in Depth (DiD) levels, and respect of quantitative safety goals. This paper presents the main stages of an approach to address diversity requirements for redundant components involved in several DiD levels: Identification of diversity requirements for the main safety functions; Preliminary system reliability analysis for determining the components that need to include diverse provisions; Detailed Failure Mode and Effects Analysis of these components taking into account operating experiences and focusing on the identification of coupling factors amongst critical redundant parts leading to CCF. This approach allows characterizing diversity provisions to limit CCF to consider in future component design. Insights of the application of this approach on redundant safety injection pumps are briefly given in this paper.
机译:多样性被定义为存在两个或多个系统或组件以执行已确定的功能,其中不同的系统或组件具有不同的属性,从而减少了常见原因失败(CCF)的可能性。通过消除CCF,冗余系统或组件之间的足够多样性可以提高安全功能的可靠性。因此,它在新核电厂的定性和定量高安全性目标方面,在深度防御(DiD)级别之间的独立性以及定量安全性目标方面都发挥着重要作用。本文介绍了解决涉及多个DiD级别的冗余组件的多样性要求的方法的主要阶段。初步的系统可靠性分析,用于确定需要包括各种规定的组件;对这些组件的详细故障模式和影响分析要考虑到操作经验,并着重于确定导致CCF的关键冗余部件之间的耦合因素。这种方法允许表征多样性规定,以限制CCF在将来的组件设计中考虑。本文简要介绍了这种方法在冗余安全注射泵上的应用见解。

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