安全法规对罕见事件发生的影响:韩国核电厂案例

Bongseok Choi, Hong Chong Cho
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引用次数: 0

摘要

减缓气候变化和能源供应安全是全球最重要的问题。要实现碳中和并将全球升温控制在 1.5 摄氏度以内,必须加快对能源行业的投资,促进清洁能源的发展。核能发电作为基本负荷,有助于能源转型,因为它是低碳能源,可以大规模部署;然而,由于事故风险、放射性废物管理问题和公众接受度等原因,核能发电面临特殊挑战。考虑到宏观经济数据与核发电数据在时间序列上的相似性,本研究采用宏观时间序列方法估算了核反应堆中罕见事件(RE)的发生频率。我们采用 Barro 和 Jin(2021 年)开发的贝叶斯马尔可夫链蒙特卡洛方法,利用从国际原子能机构的动力反应堆信息系统中获得的发电量(兆瓦时)面板数据,估算反应堆发生罕见事件的可能性。研究结果表明,随着核安全法规的加强和监管人员的增加,发生可再生能源事故的频率明显降低。尽管直接用作安全绩效的实际指标有其局限性,但观察其与世界核运营者协会绩效指标的相似模式,可为旨在防止重大灾难事件的中间安全管理的政策影响提供启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of safety regulation on rare event occurrence: The case of nuclear power plants in Korea
Climate change mitigation and energy supply security are the most important issues worldwide. To attain carbon neutrality and restrict global warming to 1.5°C, expediting investments in energy sectors and facilitating the expansion of clean energy is imperative. Nuclear power generation, as a base load, contributes to the energy transition because it is low-carbon and can be deployed on a large scale; however, particular challenges arise due to the risk of accidents, radioactive waste management problems, and public acceptance. Considering the similarity between macroeconomic data and nuclear power generation data from a time-series perspective, this study estimates the frequency of rare event (RE) occurrence in nuclear reactors using macro time-series methodology. We employ the Bayesian Markov Chain Monte Carlo method, developed by Barro and Jin (2021), to estimate the likelihood of RE occurrences for the reactors using the panel data of electricity production (MWh) obtained from the International Atomic Energy Agency's Power Reactor Information System. The findings indicate that the frequency of RE occurrences significantly decreases as nuclear safety regulations strengthen and the regulatory workforce increases. Despite the limitations of being directly utilized as practical indicators for safety performance, observing its similar pattern with the World Association of Nuclear Operators performance indicators provides insights for policy implications in intermediate safety management aimed at preventing major disaster incidents.
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