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Numerical study on tritium dispersion in coastal waters: The case of Hangzhou Bay, China

机译:近岸海域氚扩散的数值研究——以杭州湾为例

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摘要

Identification of tritium dispersion characteristics is critically important to recognize the environmental impact due to discharge of radioactive liquid effluents from nuclear industry. For the first time, this study simulated the dispersion behavior in the coastal waters of tritium discharged from Qinshan nuclear power base, where the sole heavy water reactor is located and the largest tritium amount was discharged in China. Both the flow field and tritium concentration distribution in Hangzhou Bay were displayed under normal and accidental discharge conditions considering the realistic water dynamic characteristics. Effects of river and tidal flow on tritium dispersion, effects of tritium evaporation factor, as well as public radiation dose were specially discussed. The results show that tidal flow is the major factor in deciding tritium dispersion for the Hangzhou Bay case. River flow could also affect tritium dispersion, particularly in the southwest region of the discharge point. Under normal discharge condition, the maximum tritium concentration in the vicinity of Qinshan nuclear power base is at 104 Bq/m~3 level, which is an order of magnitude higher than the natural background tritium. Under accidental discharge condition, maximum tritium concentration decreases along with an increasing tritium dispersion time. Results furthermore indicate that a considerable tritium evaporation fraction appears for the Hangzhou Bay case. In spite of this, radiation dose involving ingestion and inhalation pathways associated with liquid tritium discharge is still much lower than the regulatory dose limit. This study is expected to recall attentions to tritium dispersion characteristics apart from providing fundamental simulation data for tritium distribution in the waters of Hangzhou Bay.
机译:确定氚的扩散特性对于识别核工业排放放射性液体流出物对环境的影响至关重要。本研究首次模拟了秦山核电基地排放氚在沿海水域的扩散行为,秦山核电基地是我国唯一重水反应堆所在地,也是氚排放量最大的基地。考虑到真实的水动力特性,在正常和意外排放条件下,杭州湾的流场和氚浓度分布均被展示出来。重点讨论了河流和潮汐流对氚扩散的影响、氚蒸发因子的影响以及公众辐射剂量的影响。结果表明:潮汐流是决定杭州湾案例氚扩散的主要因素。河流流量也可能影响氚的扩散,特别是在排放点的西南地区。正常放电条件下,秦山核电基地附近最大氚浓度为104 Bq/m~3水平,比自然本底氚高一个数量级。在意外放电条件下,最大氚浓度随着氚扩散时间的增加而降低。结果进一步表明,杭州湾案例中出现了相当大的氚蒸发部分。尽管如此,与液体氚放电相关的涉及摄入和吸入途径的辐射剂量仍远低于监管剂量限值。本研究除了为杭州湾水域氚分布提供基础模拟数据外,还有望引起人们对氚扩散特性的关注。

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