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Advanced Reactor Passive System Reliability Demonstration Analysis for an External Event

机译:外部事件的先进反应堆无源系统可靠性演示分析

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Many advanced reactor designs rely on passive systems to fulfill safety functions during accident sequences. These systems depend heavily on boundary conditions to induce a motive force, meaning the system can fail to operate as intended because of deviations in boundary conditions, rather than as the result of physical failures. Furthermore, passive systems may operate in intermediate or degraded modes. These factors make passive system operation difficult to characterize within a traditional probabilistic framework that only recognizes discrete operating modes and does not allow for the explicit consideration of time-dependent boundary conditions. Argonne National Laboratory has been examining various methodologies for assessing passive system reliability within a probabilistic risk assessment for a station blackout event at an advanced small modular reactor. This paper provides an overview of a passive system reliability demonstration analysis for an external event. Considering an earthquake with the possibility of site flooding, the analysis focuses on the behavior of the passive Reactor Cavity Cooling System following potential physical damage and system flooding. The assessment approach seeks to combine mechanistic and simulation-based methods to leverage the benefits of the simulation-based approach without the need to substantially deviate from conventional probabilistic risk assessment techniques. Although this study is presented as only an example analysis, the results appear to demonstrate a high level of reliability of the Reactor Cavity Cooling System (and the reactor system in general) for the postulated transient event.
机译:许多先进的反应堆设计都依赖无源系统来在事故序列中履行安全功能。这些系统在很大程度上取决于边界条件以产生动力,这意味着系统可能由于边界条件的偏差而不是物理故障的结果而无法按预期运行。此外,无源系统可以以中间或降级模式运行。这些因素使被动系统的运行难以在传统的概率框架内进行表征,而传统的概率框架仅识别离散的运行模式,而不能明确考虑与时间有关的边界条件。阿贡国家实验室一直在研究用于评估先进小型模块化反应堆停电事件概率风险评估中被动系统可靠性的各种方法。本文概述了针对外部事件的被动系统可靠性演示分析。考虑到可能发生现场洪水的地震,分析重点在于被动反应堆腔冷却系统在潜在的物理损坏和系统洪水之后的行为。评估方法旨在将基于机械方法和基于模拟的方法相结合,以充分利用基于模拟方法的优势,而无需大幅度偏离传统的概率风险评估技术。尽管仅以示例分析的形式提出了这项研究,但结果似乎证明了反应堆腔冷却系统(以及一般而言,反应堆系统)对于假定的瞬态事件具有很高的可靠性。

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