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首页> 外文期刊>ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B. Mechanical Engineering >Contribution of Human Reliability in Power Probabilistic Safety Assessment Models Versus Shutdown Models
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Contribution of Human Reliability in Power Probabilistic Safety Assessment Models Versus Shutdown Models

机译:人力可靠性在功率概率安全评估模型与关机模型的贡献

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摘要

Human reliability analysis is a method, which evaluates the human error probabilities of human failure events, which may arise when human actions are required in operation of the considered facility or system. The objective of the work is to show the contribution of human failure events in probabilistic safety assessment with focus on comparison of this contribution over the different plant operating states. The method integrates the diagnosis and action part, which are evaluated for all steps, which are needed for modeling of the human action under investigation considering the parameters, which impact the human failure probability and which are obtained from database. The results show that the risk contribution of human failure events is notably higher in low power and shutdown states than in full power operation. The results show that the human factor in shutdown plant states is the most important risk contributor regarding the contribution to the core damage frequency and regarding the risk reduction worth and risk achievement worth. Only at some plant operating states, some other groups of equipment show larger risk achievement worth than group of human failure events.
机译:人的可靠性分析是一种方法,该方法评估人类失败事件的人类误差概率,这可能会在被考虑的设施或系统的运作中所需的人类行动时出现。该工作的目标是展示人类失败事件在概率安全评估中的贡献,重点是对不同植物经营国家的贡献的比较。该方法集成了对所有步骤进行评估的诊断和动作部分,这是考虑到人类故障概率和从数据库中获得的参数的调查中的人体行为进行建模所需的所有步骤。结果表明,低功率和关闭状态的人体故障事件的风险贡献比全动力运行更高。结果表明,关闭植物状态的人类因素是关于对核心损伤频率的贡献以及有关风险减少价值和风险成就的贡献最重要的风险贡献者。只有在一些植物经营国家,其他一些设备群体均表现出更大的风险成就价值,比人类失败事件群体。

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