Center for Environmental Remote Sensing, Chiba University, 1-33 Yayoi-cho, Inage, Chiba, 263-8522, Japan.
Radiation Measurement Research Group, National Institutes for Quantum Science and Technology, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, Japan.
Sci Rep. 2023 Mar 31;13(1):5236. doi: 10.1038/s41598-023-32300-5.
The wildfires in the Chornobyl Exclusion Zone (ChEZ) have caused widespread public concern about the potential risk of radiation exposure from radionuclides resuspended and redistributed due to the fires in 2020. The wildfires were also confirmed in ChEZ in the spring of 2022, and its impact needed to be estimated accurately and rapidly. In this study, we developed a tuning-free burned area detection algorithm (TuFda) to perform rapid detection of burned areas for the purpose of immediate post-fire assessment. We applied TuFda to detect burned areas in the ChEZ during the spring of 2022. The size of the burned areas in February and March was estimated as 0.4 km and 70 km, respectively. We also applied the algorithm to other areas outside the boundaries of the ChEZ and detected land surface changes totaling 553 km in northern Ukraine between February and March 2022. These changes may have occurred as a result of the Russian invasion. This study is the first to identify areas in northern Ukraine impacted by both wildfires and the Russian invasion of Ukraine in 2022. Our algorithm facilitates the rapid provision of accurate information on significant land surface changes whether caused by wildfires, military action, or any other factor.
切尔诺贝利隔离区的野火引发了公众对 2020 年因火灾而悬浮和重新分布的放射性核素可能导致辐射暴露的潜在风险的广泛关注。2022 年春季,隔离区内也确认发生了野火,需要准确、快速地评估其影响。在这项研究中,我们开发了一种无需调整的火烧区域检测算法(TuFda),用于快速检测火烧区域,以便立即进行火灾后评估。我们将 TuFda 应用于 2022 年春季的切尔诺贝利隔离区的火烧区域检测。2 月和 3 月的火烧区域面积分别估计为 0.4 公里和 70 公里。我们还将该算法应用于切尔诺贝利隔离区以外的其他地区,并检测到 2022 年 2 月至 3 月期间乌克兰北部总共有 553 公里的地表变化。这些变化可能是由于俄罗斯的入侵造成的。本研究首次识别出了 2022 年乌克兰北部既受到野火影响又受到俄罗斯入侵影响的地区。我们的算法有利于快速提供有关重大地表变化的准确信息,无论这些变化是由野火、军事行动还是任何其他因素引起的。