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Development and application of a living probabilistic safety assessment tool: Multi-objective multi-dimensional optimization of surveillance requirements in NPPs considering their ageing

机译:生存概率安全性评估工具的开发和应用:考虑到核电厂的老化情况,对核电厂的监视要求进行多目标多维优化

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The benefits of utilizing the probabilistic safety assessment towards improvement of nuclear power plant safety are presented in this paper. Namely, a nuclear power plant risk reduction can be achieved by risk-informed optimization of the deterministically-determined surveillance requirements. A living probabilistic safety assessment tool for time-dependent risk analysis on component, system and plant level is developed. The study herein focuses on the application of this living probabilistic safety assessment tool as a computer platform for multi-objective multi-dimensional optimization of the surveillance requirements of selected safety equipment seen from the aspect of the risk-informed reasoning. The living probabilistic safety assessment tool is based on a newly developed model for calculating time-dependent unavailability of ageing safety equipment within nuclear power plants. By coupling the time-dependent unavailability model with a commercial software used for probabilistic safety assessment modelling on plant level, the frames of the new platform i.e. the living probabilistic safety assessment tool are established. In such way, the time-dependent core damage frequency is obtained and is further on utilized as first objective function within a multi-objective multi-dimensional optimization case study presented within this paper. The test and maintenance costs are designated as the second and the incurred dose due to performing the test and maintenance activities as the third objective function. The obtained results underline, in general, the usefulness and importance of a living probabilistic safety assessment, seen as a dynamic probabilistic safety assessment tool opposing the conventional, time-averaged unavailability-based, probabilistic safety assessment. The results of the optimization, in particular, indicate that test intervals derived as optimal differ from the deterministically-determined ones defined within the existing technical specifications. Substantial risk reduction, supplemented with reduction in costs and dose is implicated if the selected existing surveillance test intervals are replaced with the corresponding optimal ones. By this, the benefits of applying risk-informed decision making are once more emphasized. Also, the importance of the inclusion of safety equipment ageing in the plant long-term probabilistic safety assessment is recognized.
机译:本文介绍了利用概率安全评估对改善核电厂安全的好处。即,可以通过对确定性确定的监视要求进行风险知情的优化来降低核电厂的风险。开发了一种实时概率安全评估工具,用于对组件,系统和工厂级别进行时变风险分析。本文的研究集中在从风险告知推理的角度来看,该活动概率安全性评估工具作为计算机平台的应用,可对所选安全设备的监视要求进行多目标多维优化。生命概率安全性评估工具基于新开发的模型,用于计算核电厂中老化安全设备的时间依赖性不可用。通过将随时间变化的不可用性模型与用于工厂级概率安全性评估模型的商业软件相结合,可以建立新平台的框架,即生活概率性安全性评估工具。这样,获得了随时间变化的核心损坏频率,并在本文中提出的多目标多维优化案例研究中进一步用作第一目标函数。将测试和维护成本指定为第二个,将由于执行测试和维护活动而产生的剂量指定为第三个目标函数。总体而言,所获得的结果强调了进行中的概率安全性评估的有用性和重要性,这被视为一种动态的概率安全性评估工具,与常规的,基于时间平均的基于可用性的概率安全性评估相对。最优化的结果尤其表明,最佳得出的测试间隔不同于现有技术规范中确定的确定间隔。如果将选定的现有监视测试时间间隔替换为相应的最佳测试时间间隔,则意味着将大大降低风险,并降低成本和剂量。通过这种方式,再次强调了应用基于风险的决策的好处。同样,已经认识到将安全设备老化纳入工厂长期概率安全评估的重要性。

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