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Assessment of extreme hydrological conditions in the Bothnian Bay, Baltic Sea, and the impact of the nuclear power plant “Hanhikivi-1” on the local thermal regime

机译:评估波斯尼亚贝尔尼亚湾的极端水文条件以及核电站“Hanhikivi-1”对当地热状况的影响

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摘要

The results of the study aimed to assess the influence of future nuclear power plant “Hanhikivi-1”udupon the local thermal conditions in the Bothnian Bay in the Baltic Sea are presented. A number of experimentsudwith different numerical models were also carried out in order to estimate the extreme hydro-meteorological conditions in the area of the construction. The numerical experiments were fulfilled both with analytically specified external forcing and with real external forcing for 2 years: a cold year (2010) and a warm year (2014). The study has shown that the extreme values of sea level and water temperature and the characteristics of wind waves and sea ice in the vicinity of the future nuclear power plant can be significant and sometimes catastrophic. Permanent release of heat into the marine environment from an operating nuclear power plant will lead to a strong increase in temperature and the disappearance of ice cover within a 2 km vicinity of the station. These effects should be taken into account when assessing local climate changes in the future.
机译:提出了旨在评估未来核电站“ Hanhikivi-1” udup对波罗的海博特尼亚湾局部热状况的影响的研究结果。为了估计建筑区域的极端水文气象条件,还进行了许多使用不同数值模型的实验。通过分析指定的外部强迫和实际外部强迫进行了两年的数值实验:寒冷的一年(2010年)和温暖的一年(2014年)。研究表明,未来核电站附近的海平面和水温的极值以及风浪和海冰的特征可能很重要,有时甚至是灾难性的。从运行中的核电站向海洋环境中永久释放热量将导致温度急剧升高,并导致电站2公里范围内的冰盖消失。在评估未来的局部气候变化时,应考虑这些影响。

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