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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:在环境中使用134C / 137CS在环境中识别导致福岛达义事故中的大气释放的反应堆单元

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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 (134)Cs/(137)Cs depositions on ground surfaces and atmospheric transport and deposition simulations. Because the values of (134)Cs/(137)Cs are different in reactor units owing to fuel burnup differences, the (134)Cs/(137)Cs 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:通过分析地面表面和大气运输的测量(134)CS /(137)CS沉积的组合,单独鉴定出在2011年3月12日至21日期3月12日至21日期间产生大量空中排放的福岛Daiichi核电反应堆单元。沉积模拟。因为(134)Cs /(137)Cs的值在反应器单元中由于燃料燃烧差异而不同,所以在环境中测量的(134)Cs /(137)CS比率用于确定哪个反应器单元最终污染特定的区域。大气分散模拟模拟用于预测每个主导释放污染的特定区域。最后,通过比较来自两个来源的结果,可以确定产生最大的大气释放量的特定反应器单元。主要的源反应堆单位是2011年3月12日下午的第1单元,第2款于3月14日至2011年3月15日上午的时间。这些结果与我们以前的源期限估计中的假设相对应学习。此外,新发现表明,2011年3月15日晚上的主要来源反应堆是单位2和3,2011年3月20日的主要源反应堆从单元3到单位2进行了时间。

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