首页> 外文期刊>Journal of Environmental Radioactivity >Public member dose assessment of Bushehr Nuclear Power Plant under normal operation by modeling the fallout from stack using the HYSPLIT atmospheric dispersion model
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Public member dose assessment of Bushehr Nuclear Power Plant under normal operation by modeling the fallout from stack using the HYSPLIT atmospheric dispersion model

机译:通过使用HYSPLIT大气弥散模型对烟囱的沉降进行建模,可以对布什尔核电站正常运行下的公众成员剂量进行评估

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In this work, public dose resulting from fission products released from Bushehr Nuclear Power Plant (BNPP) under normal operation is assessed. Due to the long range transport of radionuclides in this work (80 km) and considering terrain and meteorological data, HYbrid Single-Particle Lagrangian Integrated Trajectory (HYsplit) model, which uses three dimensional long-range numerical models, has been employed to calculate atmospheric dispersion. Annual effective dose calculation is carried out for inhalation, ingestion, and external exposure pathways in 16directions and within 80 km around the site for representative person. The results showed the maximum dose of inhalation and external exposure for adults is 3.8 x 10(-8)Sv/y in the SE direction and distance of 600 m from the BNPP site which is less than ICRP 103 recommended dose limit (1 mSv). Children and infants' doses are higher in comparison with adults, although they are less than 1 mSv. Ingestion dose percentage in the total dose is less than 0.1%. The results of this study underestimate the Final Safety Analysis Report ofBNPP-1 (FSAR)data. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,评估了布什尔核电站(BNPP)在正常运行下释放的裂变产物所产生的公共剂量。由于这项工作中放射性核素的长距离传输(80公里),并考虑了地形和气象数据,因此采用了三维三维数值模型的混合单粒子拉格朗日综合轨迹(HYsplit)模型来计算大气分散。年度有效剂量的计算是针对代表方向的吸入,摄入和外部暴露途径(在16个方向上以及该场所周围80公里以内)。结果显示,成人的最大吸入和外部暴露剂量在SE方向为3.8 x 10(-8)Sv / y,距BNPP部位600 m,小于ICRP 103建议的剂量限制(1 mSv) 。尽管儿童和婴儿的剂量小于1 mSv,但与成人相比,剂量更高。摄入剂量占总剂量的百分比小于0.1%。这项研究的结果低估了BNPP-1(FSAR)数据的最终安全性分析报告。 (C)2017 Elsevier Ltd.保留所有权利。

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