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Utilization of 134Cs/137Cs in the environment to identify the reactor units that caused atmospheric releases during the Fukushima Daiichi accident

机译:利用环境中的134Cs / 137Cs来确定在福岛第一核电站事故期间导致大气释放的反应堆单元

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摘要

The Fukushima Daiichi nuclear power reactor units that generated large amounts of airborne discharges during the period of March 12–21, 2011 were identified individually by analyzing the combination of measured 134Cs/137Cs depositions on ground surfaces and atmospheric transport and deposition simulations. Because the values of 134Cs/137Cs are different in reactor units owing to fuel burnup differences, the 134Cs/137Cs ratio measured in the environment was used to determine which reactor unit ultimately contaminated a specific area. Atmospheric dispersion model simulations were used for predicting specific areas contaminated by each dominant release. Finally, by comparing the results from both sources, the specific reactor units that yielded the most dominant atmospheric release quantities could be determined. The major source reactor units were Unit 1 in the afternoon of March 12, 2011, Unit 2 during the period from the late night of March 14 to the morning of March 15, 2011. These results corresponded to those assumed in our previous source term estimation studies. Furthermore, new findings suggested that the major source reactors from the evening of March 15, 2011 were Units 2 and 3 and that the dominant source reactor on March 20, 2011 temporally changed from Unit 3 to Unit 2.
机译:通过分析测得的 134 Cs / 137 Cs在地面上的沉积以及大气传输和沉积模拟。由于燃料消耗率的差异,由于反应堆单元中 134 Cs / 137 Cs的值不同,因此 134 Cs / 137 <在环境中测量的Cs比用于确定哪个反应器单元最终污染了特定区域。使用大气扩散模型模拟来预测每个主要释放污染的特定区域。最后,通过比较两种来源的结果,可以确定产生最主要的大气释放量的特定反应器单元。主要的源反应堆单元是2011年3月12日下午的1号单元,从3月14日深夜到2011年3月15日的早晨的2号单元。这些结果与我们先前的源期估算所假设的相符。学习。此外,新发现表明,从2011年3月15日晚上开始的主要源反应堆是2号和3号机组,而到2011年3月20日,主要源反应堆在时间上从3号机组变为2号机组。

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