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Thermal Analysis for Spent Fuel Using Porous Model

机译:用多孔模型对乏燃料进行热分析

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摘要

In order to establish a thermal analysis technique for spent fuel storage Systems, the porous model, which can simplify the complex configuration of a fuel assembly, has been developed. Thermal conductivity, hydraulic resistance and convective heat transfer were modeled to approximate a fuel assembly as a porous solid, which has equivalent thermo physical properties. Since the model was verified by comparison with experimental results using a single assembly, it was applied to a whole canister analysis including several assemblies. The numerical analysis for a whole canister predicted that the maximum temperature was 621 K at 21.0kW total heat source of fuel assemblies.
机译:为了建立用于乏燃料存储系统的热分析技术,已经开发了可以简化燃料组件的复杂配置的多孔模型。对导热系数,水力阻力和对流传热进行建模,以近似燃料组件为多孔固体,具有等效的热物理特性。由于通过与单个组件的实验结果进行比较来验证该模型,因此将其应用于包括多个组件的整个容器分析。整个碳罐的数值分析预测,在21.0kW的燃料组件总热源下,最高温度为621K。

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