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Zero-dimensional transient model of large-scale cooling ponds using well-mixed approach

机译:充分混合法的大型冷却池零维瞬态模型

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摘要

Nowadays, nuclear power plants around the world produce vast amounts of spent fuel. After discharge, it requires adequate cooling to prevent radioactive materials being released into the environment. One of the systems available to provide such cooling is the spent fuel cooling pond. The recent incident at Fukushima, Japan shows that these cooling ponds are associated with safety concerns and scientific studies are required to analyse their thermal performance. However, the modelling of spent fuel cooling ponds can be very challenging. Due to their large size and the complex phenomena of heat and mass transfer involved in such systems. In the present study, we have developed a zero-dimensional (Z-D) model based on the well-mixed approach for a large-scale cooling pond. This model requires low computational time compared with other methods such as computational fluid dynamics (CFD) but gives reasonable results are key performance data. This Z-D model takes into account the heat transfer processes taking place within the water body and the volume of humid air above its surface as well as the ventilation system. The methodology of the Z-D model was validated against data collected from existing cooling ponds. A number of studies are conducted considering normal operating conditions as well as in a loss of cooling scenario. Moreover, a discussion of the implications of the assumption to neglect heat loss from the water surface in the context of large-scale ponds is also presented. Also, a sensitivity study is performed to examine the effect of weather conditions on pond performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:如今,世界各地的核电站都产生大量的乏燃料。放电后,需要充分冷却以防止放射性物质释放到环境中。可用于提供这种冷却的系统之一是乏燃料冷却池。日本福岛最近发生的事件表明,这些冷却池与安全问题相关,需要科学研究以分析其热性能。但是,乏燃料冷却池的建模可能非常具有挑战性。由于它们的大尺寸以及此类系统中涉及的传热传质的复杂现象。在本研究中,我们基于充分混合的方法为大型冷却池开发了零维(Z-D)模型。与其他方法(例如计算流体动力学(CFD))相比,该模型需要较少的计算时间,但给出的合理结果是关键性能数据。 Z-D模型考虑了水体内发生的传热过程以及其表面上方的湿空气量以及通风系统。 Z-D模型的方法论是根据从现有冷却池收集的数据进行验证的。考虑到正常的操作条件以及在无冷却情况下进行了许多研究。此外,还讨论了在大型池塘中忽略水面热量损失的假设的含义。另外,进行了敏感性研究,以检查天气条件对池塘性能的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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