首页> 外文会议>International topical meeting on probabilistic safety assessment and analysis >MODELING AND ESTIMATION OF COMMON CAUSE FAILURE LIKE PRE-INITIATOR HUMAN FAILURE EVENTS USING EXPERIENCE DATA
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MODELING AND ESTIMATION OF COMMON CAUSE FAILURE LIKE PRE-INITIATOR HUMAN FAILURE EVENTS USING EXPERIENCE DATA

机译:使用经验数据的预发起者人类故障事件如前发起常见原因的建模与估算

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Motivated by an idea that CCF-like pre-initiator HFEs might already have been counted in CCF probabilities, CCF experience data for pressure transmitters, level transmitters, and channel bistables from the CCF Database and Analysis System developed by the US NRC were investigated. The investigation confirmed that CCF-like pre-initiator HFEs were included in the CCF data base for the selected components. Various HFEs caused CCFs and they can be grouped into two general categories, HFEs during calibration and HFEs in restoring components after previous activities. Also, for all three components, CCFs caused by HFEs, if ranked by the number of retrieved events, were the second major events. However, if ranked by the contributions to the CCF basic events probabilities which were measured by the contributions to the expected number of CCF basic events, N_k (k = the number of failed components), CCFs caused by the HFEs were the most dominant contributors in level transmitters and channel bistable cases. For CCF group size of 4, the contributions of CCFs caused by HFEs to N_4 was 86.1 % and 100% for level transmitters and channel bistables, respectively. For pressure transmitters, CCFs caused by HFEs contributed to about 2.5% of N_4 and about 20% for N_2 and N_3. Based on the results of this study, it was concluded that, for those three components, it would be better not to model CCF-like pre-initiator HFEs as separate HFE basic events but let them be included in CCF basic events because: 1) Contributions from CCF-like pre-initiator HFEs were already included in their CCF probabilities which can be estimated based on actual CCF experience data and 2) a simple HFE basic event alone may not be able to represent well the complexity and variety of HFEs which can cause CCFs. It is believed that the same conclusion can be applicable to other types of instrumentation components.
机译:通过了解CCF概率可能已经计算了CCF样的预发起者HFE,CCF验证了来自CCF数据库和美国NRC开发的CCF数据库和分析系统的压力变送器,液位发射机和通道双态数据的CCF体验数据。该研究证实,CCF样前引发剂HFE包含在所选组分的CCF数据碱中。各种HFE导致CCFS,它们可以分为两个一般类别,校准和HFES在以前的活动之后恢复组件的汇率。此外,对于所有三个组件,如果由HFES引起的CCF,如果由检索到的事件的数量排名,则是第二个主要事件。但是,如果通过对CCF基本事件的贡献进行排名,这些概率由对CCF基本事件的预期数量的贡献测量,N_K(k =失败组件的数量),由HFE引起的CCF是最占优势的贡献者电平发射器和通道双稳态壳体。对于CCF组大小为4,CCFS由HFES对N_4引起的CCF的贡献分别为液位发射器和通道双体的86.1%和100%。对于压力变送器,HFE引起的CCF可导致N_2和N_3的N_4和约20%的约2.5%。基于本研究的结果,得出结论,对于这三种组分,最好不要将CCF样前激发剂HFS模拟为单独的HFE基本事件,但让它们包含在CCF基本事件中,因为:1) CCF样前的Pre-Insiator HFE的贡献已经包含在其CCF概率中,这些概率可以根据实际的CCF经验数据估计,2)单独的简单的HFE基本事件可能无法代表可以的复杂性和各种HFE导致CCFS。据信,相同的结论可以适用于其他类型的仪器组件。

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