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Human reliability analysis of the Tehran research reactor using the SPAR-H method

机译:使用SPAR-H方法对德黑兰研究堆的人员可靠性分析

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The purpose of this paper is to cover human reliability analysis of the Tehran research reactor using an appropriate method for the representation of human failure probabilities. In the present work, the technique for human error rate prediction and standardized plant analysis risk-human reliability methods have been utilized to quantify different categories of human errors, applied extensively to nuclear power plants. Human reliability analysis is, indeed, an integral and significant part of probabilistic safety analysis studies, without it probabilistic safety analysis would not be a systematic and complete representation of actual plant risks. In addition, possible human errors in research reactors constitute a significant part of the associated risk of such installations and including them in a probabilistic safety analysis for such facilities is a complicated issue. Standardized plant analysis risk-human can be used to address these concerns; it is a well-documented and systematic human reliability analysis system with tables for human performance choices prepared in consultation with experts in the domain. In this method, performance shaping factors are selected via tables, human action dependencies are accounted for, and the method is well designed for the intended use. In this study, in consultations with reactor operators, human errors are identified and adequate performance shaping factors are assigned to produce proper human failure probabilities. Our importance analysis has revealed that human action contained in the possibility of an external object falling on the reactor core are the most significant human errors concerning the Tehran research reactor to be considered in reactor emergency operating procedures and operator training programs aimed at improving reactor safety.
机译:本文的目的是介绍德黑兰研究堆的人员可靠性分析,使用一种合适的方法来表示人员失败的可能性。在当前的工作中,人为错误率预测技术和标准化的工厂分析风险-人为可靠性方法已被用来量化不同类别的人为错误,广泛应用于核电站。实际上,人员可靠性分析是概率安全性分析研究不可或缺的重要组成部分,否则,概率安全性分析将无法系统,完整地代表实际工厂风险。此外,研究堆中可能的人为失误构成了此类装置相关风险的重要组成部分,将此类装置纳入此类设施的概率安全分析中是一个复杂的问题。标准化的工厂分析风险人可以用来解决这些问题;它是一个文档齐全且系统的人员可靠性分析系统,具有与该领域的专家协商后准备的人员绩效选择表。在这种方法中,通过表格选择绩效塑造因素,考虑到人为行为的依赖性,并且该方法针对预期用途进行了精心设计。在这项研究中,与反应堆操作员协商,确定了人为错误,并分配了适当的性能整形因子以产生适当的人为故障概率。我们的重要性分析表明,可能有外部物体掉到反应堆堆芯上的人为行动是与德黑兰研究堆有关的最重大的人为失误,应在反应堆应急运行程序和旨在提高反应堆安全性的操作员培训计划中加以考虑。

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