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Evaluation of atmospheric dispersion of radioactive materials in a severe accident of the BNPP based on Gaussian model

机译:基于高斯模型的BNPP严重事故中放射性物质在大气中的扩散评估

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Regarding the importance of radioactive materials dispersion in the environment and their effect on living organism's well-being, this article examines the atmospheric dispersion of these materials around the Bushehr nuclear power plant (BNPP) in a hypothetical severe accident. One of practical dispersion models is AERMOD which is based on Gaussian distribution. This model which is an extension of Gaussian model is normally used for predicting the gaseous pollution. The aim of this study is to investigate the dispersion of radioactive materials in BNPP's surroundings due to a specific type of Large Break LOCA (LBLOCA) accident. In this study, the wind direction, wind speed, and the topological conditions of the power planes environment are considered. In order to execute this model, the meteorology and topological data of the region have been provided. Besides, using the CONTAIN code, the data about released radioactive materials from the containment have been provided. The double ended cold leg break (DECL) accident in containment has been modeled and its validity has been checked with FSAR. Extracting all required data, the simulation is done in AERMOD and the volumetric concentration and activity of fission products are calculated. The volumetric activity of fission products in Tangestan, BandarE-Bushehr and Delvar cities are evaluated as 7.5658E + 07, 7.5136E + 07 and 2.9655E + 06 (Bq/m(3)), respectively. From results it could be seen that the most dispersion of the radioactive materials are in direction of the non-residential regions, although the pollution of the cities around the power plant is inevitable.
机译:关于放射性物质在环境中扩散的重要性及其对生物体健康的影响,本文研究了假设的严重事故中布什尔核电站(BNPP)周围这些物质的大气扩散。实用的色散模型之一是AERMOD,它基于高斯分布。该模型是高斯模型的扩展,通常用于预测气体污染。这项研究的目的是调查由于特定类型的大断裂LOCA(LBLOCA)事故导致的放射性物质在BNPP周围的扩散。在这项研究中,考虑了风向,风速以及动力层环境的拓扑条件。为了执行该模型,已经提供了该地区的气象和拓扑数据。此外,还使用了CONTAIN代码,提供了从安全壳中释放出的放射性物质的数据。对安全壳内的双端冷腿折断(DECL)事故进行了建模,并通过FSAR检查了其有效性。提取所有需要的数据,在AERMOD中进行模拟,并计算裂变产物的体积浓度和活性。 Tangestan,BandarE-Bushehr和Delvar城市的裂变产物的体积活度分别为7.5658E + 07、7.5136E + 07和2.9655E + 06(Bq / m(3))。从结果可以看出,尽管发电厂周围城市的污染是不可避免的,但放射性物质的最大散布方向是非居住区。

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