可维护性
锅炉给水
可靠性(半导体)
系统安全
计算机科学
树(集合论)
核能
概率逻辑
概率风险评估
环境科学
故障树分析
核工程
核电站
锅炉给水泵
压水堆
断层(地质)
可靠性工程
锅炉(水暖)
功率(物理)
工程类
废物管理
物理
核物理学
人工智能
数学分析
生态学
生物
量子力学
数学
作者
R. A. Fahmy,R. I. Gomaa
出处
期刊:Kerntechnik
[De Gruyter]
日期:2021-04-01
卷期号:86 (2): 164-172
被引量:1
标识
DOI:10.1515/kern-2020-0067
摘要
Abstract The safe and secure designs of any nuclear power plant together with its cost-effective operation without accidents are leading the future of nuclear energy. As a result, the Reliability, Availability, Maintainability, and Safety analysis of NPP systems is the main concern for the nuclear industry. But the ability to assure that the safety-related system, structure, and components could meet the safety functions in different events to prevent the reactor core damage requires new reliability analysis methods and techniques. The Fault Tree Analysis (FTA) is one of the most widely used logic and probabilistic techniques in system reliability assessment nowadays. The Dynamic fault tree technique extends the conventional static fault tree (SFT) by considering the time requirements to model and evaluate the nuclear power plant safety systems. Thus this paper focuses on developing a new Dynamic Fault Tree for the Auxiliary Feed-water System (AFWS) in a pressurized water reactor. The proposed dynamic model achieves a more realistic and accurate representation of the AFWS safety analysis by illustrating the complex failure mechanisms including interrelated dependencies and Common Cause Failure (CCF). A Simulation tool is used to simulate the proposed dynamic fault tree model of the AFWS for the quantitative analysis. The more realistic results are useful to establish reliability cantered maintenance program in which the maintenance requirements are determined based on the achievement of system reliability goals in the most cost-effective manner.
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