On the Modeling of Wildfires-Induced Release and Atmospheric Dispersion in Radioactively Contaminated Regions

Damla Polat, M. Diaconeasa
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Abstract

Nuclear energy is one of the most efficient types of electricity production. However, it is one of the biggest fears of people due to the potential radiation effects on human health. Despite the major developments in the nuclear sector, some gaps need to be studied for the higher safety scrutiny of nuclear power plants (NPPs). Besides technical advances for the safer management of an NPP, another important part is having a well-constructed and planned probabilistic risk assessment and management. Realistic probabilistic risk assessment and management provide proper emergency response in case of an accident or hazardous situation to human health. On the other hand, aside from the radiation emitted directly from radioactive sources inside the NPP, there may be indirect radiation emission from dispersions outside the plant’s protected area. For example, we can look at forest fires occurring in radioactively contaminated areas surrounding NPPs that suffered accidents with releases, such as Chernobyl or Fukushima Daiichi. Radioactive particles produced by burning contaminated forests could spread in the air and threaten public health. It has already been observed that fires in forests around Chernobyl can increase the level of radiation in the air. Such events have the possibility to occur in all areas where nuclear facilities are located. The forests contaminated after the Fukushima Daiichi NPP accident, resemble the ones at Chernobyl. This study aims to develop the knowledge for an early sensing and emergency response by doing an atmospheric dispersion modeling and supporting a probabilistic risk assessment for a wildfire scenario in radioactively contaminated areas, such as Chernobyl and Fukushima Daiichi. Also, this study provides a pathway to assessing the risk of nuclear contamination caused by wildfires around nuclear facilities.
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放射性污染地区野火诱发释放和大气扩散的模拟研究
核能是最有效的发电方式之一。然而,由于潜在的辐射对人体健康的影响,它是人们最大的恐惧之一。尽管核能领域取得了重大进展,但为了对核电站进行更高的安全审查,还需要研究一些差距。除了安全管理核电站的技术进步外,另一个重要部分是有一个精心构建和规划的概率风险评估和管理。现实的概率风险评估和管理在发生事故或对人类健康有害的情况时提供适当的应急反应。另一方面,除了核电站内放射源直接释放的辐射外,核电站保护区外的扩散物也可能间接释放辐射。例如,我们可以研究发生在核电站周围放射性污染地区的森林火灾,这些地区曾发生过切尔诺贝利或福岛第一核电站等泄漏事故。燃烧受污染的森林所产生的放射性粒子可能在空气中扩散,威胁公众健康。人们已经观察到,切尔诺贝利周围森林的火灾会增加空气中的辐射水平。这类事件有可能发生在核设施所在的所有地区。福岛第一核电站事故后受到污染的森林与切尔诺贝利类似。本研究旨在通过进行大气扩散建模和支持放射性污染地区(如切尔诺贝利和福岛第一核电站)野火情景的概率风险评估,为早期感知和应急反应发展知识。同时,本研究为评估核设施周围野火造成核污染的风险提供了一条途径。
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