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Modeling of central void formation in LWR fuel pellets due to high-temperature restructuring

机译:LWR燃料芯块中由于高温重组而形成的中央空隙的建模

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Analysis of the GRSW-A model coupled into the FALCON code is extended by simulation of central void formation in fuel pellets due to high-temperature fuel restructuring. The extended calculation is verified against published, well-known experimental data. Good agreement with the data for a central void diameter in pellets of the rod irradiated in an Experimental Breeder Reactor is shown. The new calculation methodology is employed in comparative analysis of modern BWR fuel behavior under assumed high-power operation. The initial fuel porosity is shown to have a major effect on the predicted central void diameter during the operation in question. Discernible effects of a central void on peak fuel temperature and Pellet-Cladding Mechanical Interaction (PCMI) during a simulated power ramp are shown. A mitigating effect on PCMI is largely attributed to the additional free volume in the pellets into which the fuel can creep due to internal compressive stresses during a power ramp.
机译:对FSWCON代码中耦合的GRSW-A模型的分析通过模拟由于高温燃料重组而在燃料颗粒中形成的中心空隙而得到扩展。根据已发布的知名实验数据验证了扩展计算。显示了与在实验育种反应器中辐照的棒的丸粒中的中心空隙直径的数据良好吻合。在假定的大功率运行下,新的计算方法被用于现代BWR燃料性能的比较分析中。在有关操作期间,初始燃料孔隙率显示出对预计的中心空隙直径有重大影响。显示了在模拟的功率斜升过程中,中央空隙对峰值燃料温度和颗粒-包层机械相互作用(PCMI)的明显影响。对PCMI的缓解作用主要归因于颗粒中的额外自由体积,在功率提升期间,由于内部压缩应力,燃料可能会渗入颗粒中的额外自由体积。

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