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首页> 外文期刊>Progress in Nuclear Energy >Spatial temperature distribution of fuel assembly pre-simulation for a new simple core degradation experiment
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Spatial temperature distribution of fuel assembly pre-simulation for a new simple core degradation experiment

机译:一个新的简单堆芯退化实验的燃料组件空间温度分布预模拟

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A new simple core degradation experiment will be conducted to investigate the distribution of mass and energy during a core degradation process, and the International Standard Problem (ISP) No.31 is chosen as a pre-simulation for the new experiment. The pre-simulation has been conducted using the widely accepted severe accident analysis software MELCOR. Firstly, the numerical analysis model and oxidation model are described, and all the input parameters are in accord with experiment conditions. Then, numerical results are validated by experimental measurements and SCDAP/RELAP5 results. Simulations results agree well with measured data. It is indicated that MELCOR has the capability of predicting the behaviors of fuel elements in reflood correctly. Finally, the visually spatial temperature distribution is obtained by TECPLOT, and the behaviors of molten fuel elements are directly reflected. The evolution of peak temperature in fuel rods during the experiment period can be visible. The peak temperature firstly appeared in outer heated rods of the fourth ring and later showed in a heated fuel rod of the second ring. The behaviors of molten fuel elements are visible in the figures of spatial temperature distribution, and it does help researchers to understand the migration behaviors of molten material accompanied by effective mitigation measures for a severe accident.
机译:将进行一个新的简单的核心退化实验,以研究核心退化过程中质量和能量的分布,并选择国际标准问题(ISP)No.31作为新实验的预模拟。预仿真是使用广为接受的严重事故分析软件MELCOR进行的。首先描述了数值分析模型和氧化模型,所有输入参数均与实验条件相符。然后,通过实验测量和SCDAP / RELAP5结果验证数值结果。仿真结果与实测数据吻合良好。结果表明,MELCOR具有正确预测回油中燃料元素行为的能力。最后,通过TECPLOT获得了视觉上的空间温度分布,并直接反映了熔融燃料元件的行为。在实验期间,燃料棒中峰值温度的变化是可见的。峰值温度首先出现在第四环的外部加热棒中,随后出现在第二环的加热燃料棒中。熔融燃料元素的行为在空间温度分布图中可见,它确实有助于研究人员了解熔融材料的迁移行为以及针对严重事故的有效缓解措施。

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