Overcoming the uncertainty in a research reactor LOCA in level-1 PSA; Fuzzy based fault-tree/event-tree analysis

Q2 Engineering
Masoud Mohsendokht, M. Hashemi-Tilehnoee
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引用次数: 0

Abstract

Probabilistic safety assessment (PSA) which plays a crucial role in risk evaluation is a quantitative approach intended to demonstrate how a nuclear reactor meets the safety margins as part of the licensing process. Despite PSA merits, some shortcomings associated with the final results exist. Conventional PSA uses crisp values to represent the failure probabilities of basic events. This causes a high level of uncertainty due to the inherent imprecision and vagueness of failure input data. In this paper, to tackle this imperfection, a fuzzy approach is employed with fault tree analysis and event tree analysis. Thus, instead of using the crisp values, a set of fuzzy numbers is applied as failure probabilities of basic events. Hence, in the fault tree and event tree analysis, the top events and the end-states frequencies are treated as fuzzy numbers. By introducing some fuzzy importance measures the critical components which contribute maximum to the system failure and total uncertainty are identified. As a practical example, under redesign Iranian heavy water research reactor loss of coolant accident is studied. The results show that the reactor protection system has the largest index in sequences lead to a core meltdown. In addition, the emergency core cooling system has a main role in preventing abnormal conditions.
克服一级PSA研究反应堆LOCA的不确定性;基于模糊的故障树/事件树分析
概率安全评估(PSA)在风险评估中发挥着至关重要的作用,它是一种定量方法,旨在证明核反应堆如何满足许可程序的安全裕度。尽管PSA有优点,但仍存在与最终结果相关的一些缺点。常规PSA使用清晰的值来表示基本事件的失败概率。由于故障输入数据固有的不精确性和模糊性,这导致了高度的不确定性。为了解决这一缺陷,本文将模糊方法应用于故障树分析和事件树分析。因此,不使用清晰的值,而是应用一组模糊数作为基本事件的失败概率。因此,在故障树和事件树分析中,顶部事件和结束状态的频率被视为模糊数。通过引入一些模糊重要性度量,识别了对系统故障和总不确定性贡献最大的关键部件。作为一个实例,对伊朗重水研究堆在重新设计时发生的失水事故进行了研究。结果表明,反应堆保护系统在导致堆芯熔毁的顺序中具有最大的指数。此外,应急堆芯冷却系统在防止异常情况方面具有主要作用。
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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来源期刊
Journal of Optimization in Industrial Engineering
Journal of Optimization in Industrial Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.90
自引率
0.00%
发文量
0
审稿时长
32 weeks
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