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首页> 外文期刊>Annals of nuclear energy >SPHERICAL APPROXIMATION IN GAMMA DOSE CALCULATIONS AND ITS APPLICATION TO AN EMERGENCY RESPONSE ACTION AT KORI REACTOR SITE IN KOREA
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SPHERICAL APPROXIMATION IN GAMMA DOSE CALCULATIONS AND ITS APPLICATION TO AN EMERGENCY RESPONSE ACTION AT KORI REACTOR SITE IN KOREA

机译:伽玛剂量计算中的球形近似及其在韩国KORI反应器现场的应急反应中的应用

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摘要

An approximate method for estimating gamma external dose given from an arbitrary distribution of radioactive material has been developed. For the assessment of external gamma dose, the space over which radioactive material is distributed is assumed to be composed of rectangular cells. The evaluation of three-dimensional integration over the space is an extremely time-consuming task. In this study, a regular hexahedron is modeled as a volume-equivalent sphere to simplify the integration. A comparative study with a point source approximation and the Monte Carlo integration method shows that the present method gives reasonable results in a physical sense. An accident consequence assessment model has been integrated using the Gaussian puff model and an external gamma dose has been assessed for Korean meteorological data. A procedure useful for selecting the most effective protective action to a given environmental condition is also provided here.
机译:已经开发出一种估计方法,该方法用于估计由放射性物质的任意分布给出的γ外部剂量。为了评估外部伽马剂量,假定放射性物质分布的空间由矩形细胞组成。在空间上进行三维集成评估是一项非常耗时的任务。在这项研究中,将正六面体建模为体积等效球体,以简化积分。用点源近似和蒙特卡罗积分方法进行的比较研究表明,本方法在物理意义上给出了合理的结果。事故后果评估模型已使用高斯粉扑模型进行了整合,并且已针对韩国气象数据评估了外部伽马剂量。在此还提供了一种用于选择针对给定环境条件的最有效保护措施的过程。

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