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首页> 外文期刊>Thermal engineering >A Model of the Fission Products Release from the Melt Pool during Severe Accident in a Liquid Metal Cooled Fast Reactor
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A Model of the Fission Products Release from the Melt Pool during Severe Accident in a Liquid Metal Cooled Fast Reactor

机译:在液体金属冷却的快速反应器中发生严重事故期间,裂变产品释放的裂变产品的模型

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摘要

Accident scenarios implying the failure of the active and passive reactor protection system are the most severe in their consequences since they are accompanied by the melting of fuel elements, fuel assemblies, and the entire core and, as a consequence, the release of fission products (FP) from the fuel melt and structural materials. The location of reactor facilities near populated areas requires an understanding of the consequences of hypothetical accidents with the destruction of the core. The most important is information on the amount of FP released into the environment. To assess the possible dose load on personnel and the environment in a hypothetical accident, data on the release of radioactive nuclides from the damaged, including molten, core are required. This work presents approaches that can be used to calculate the amount of fission products released from the fuel melt. The proposed approaches are based on general patterns of behavior and release of impurities from liquid solutions. To simulate this process, a system of differential equations is solved. The proposed approaches were implemented in the form of a software module for calculating the release of FP from the melt. Using the developed module, a test problem for the release of FP from a molten oxide fuel was solved, and an analysis of the results of real experiments carried out at the National Laboratory in Oak Ridge was carried out. Satisfactory convergence of the calculated data on the yield of both nonvolatile (Ce, Sr) and volatile (Xe, Kr) fission products is shown.
机译:暗示主动和被动反应堆保护系统的失败的事故情景在其后果中最严重,因为它们伴随着燃料元件,燃料组件和整个核心的熔化,因此裂变产品的释放( FP)来自燃料熔体和结构材料。填充地区附近的反应器设施的位置需要了解假设事故与核心破坏的后果。最重要的是有关释放到环境中的FP数量的信息。为了在假设事故中评估人员和环境的可能载荷,需要有关损坏,包括熔融,核心的放射性核素释放的数据。该工作提供了可用于计算燃料熔体释放的裂变产品的方法的方法。该拟议方法基于液体溶液的一般行为和释放杂质的一般性模式。为了模拟此过程,解决了微分方程系统。所提出的方法是以软件模块的形式实施,用于从熔体计算FP的释放。使用开发模块,解决了来自钢化氧化物燃料的FP的测试问题,进行了在橡木岭国家实验室进行的实验实验结果的分析。显示了令人满意的关于非挥发性(CE,SR)和挥发物(XE,KR)裂变产物的产量的计算数据的收敛性。

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