Development of the Reliability Assurance Program in a Brazilian nuclear power plant subsidized by a Reliability, Availability and Maintainability Model

J. Gomes, M. Mattar Neto, M. C. Maturana, Patricia Oliveira
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Abstract

The main objective of this work is to present a methodology for the development of a Reliability Assurance Program (RAP) specific to a PWR experimental nuclear installation, through the analysis of the installation and the development of a preliminary RAP subsidized by a Reliability, Availability and Maintainability (RAM) model. The study of an evaluation was carried out in the long-term decay heat removal of the studied experimental plant, whose data were used for application of the RAP. The necessary steps for applying the developed RAP are followed, using the data from the assessment of the studied plant, resulting in a list of components of significant risk for the Program, and in the following steps of sending the list to the experts panel, ranking of SSCs by the panel and development of the final list of significant risk SSCs for using the list in the optimization of the plant. The RAP subsidized by a RAM model will be able to work with the logical relationships between each component of the plant for their effects on energy generation and with the quantitative prediction of the magnitude of each contributor to the occurrence of high-level events, and the developed methodology can be applicable throughout the experimental plant. In this way, it will be possible to implement the RAP in the plant, which will provide a structured way to meet the regulatory requirements for its licensing. Also, it will be possible to complement the plant safety analysis report, which must contain the RAP.
巴西核电厂利用可靠性、可用性和可维护性模型制定可靠性保证计划
这项工作的主要目的是提出一种方法,通过对压水堆实验核装置进行分析,并利用可靠性、可用性和可维护性(RAM)模型制定初步的可靠性保证计划(RAP),从而制定专门针对压水堆实验核装置的可靠性保证计划(RAP)。对所研究实验装置的长期衰变热量去除情况进行了评估研究,其数据被用于应用 RAP。应用所开发的《可靠性和可维护性评估计划》的必要步骤如下:使用所研究工厂的评估数据,得出该计划的重大风险组件清单;将该清单发送给专家小组,由专家小组对 SSC 进行排序,并制定重大风险 SSC 的最终清单,以便在工厂优化中使用该清单。由 RAM 模型辅助的 RAP 将能够处理发电厂各组成部分之间的逻辑关系,以了解其对发电量的影响,并定量预测导致高级别事件发生的各因素的严重程度,所开发的方法可适用于整个实验发电厂。这样,就有可能在发电厂实施《区域行动方案》,从而提供一种结构化的方法来满足其许可的监管要求。此外,还可以补充工厂安全分析报告,该报告必须包含 RAP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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