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Oxide-Metal Ratio Dependence of Central Void Formation of Mixed Oxide Fuel Irradiated in Fast Reactors

机译:快堆中辐照混合氧化物燃料中心空隙形成的氧化物与金属比的关系

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Based on thermal computation results obtained using an irradiation behavior analysis code, we have evaluated the effect of oxide-metal ratio on fuel restructuring from the results of postirradiation examinations for the B14 irradiation test fuel, which was a mixed oxide fuel and was irradiated in the experimental reactor Joyo. The thermal computation results showed that fuel restructuring in the stoichiometric oxide fuel was accelerated, though the fuel temperature in the stoichiometric oxide fuel was evaluated as lower than that of the hypo-stoichiometric one. We explained this behavior as follows: first, the fuel temperature decreased due to the high thermal conductivity at stoichiometry; second, the pore migration velocity increased due to the increase in vapor pressure caused by the high vapor pressure of UO_(3), which was derived from the high oxygen potential at stoichiometry. In addition, our results indicated that the central void diameter strongly depended on not only fuel temperature, but also vapor pressure.
机译:基于使用辐照行为分析代码获得的热计算结果,我们从B14辐照测试燃料(辐照混合燃料)的辐照后检查结果中评估了氧化物-金属比对燃料重组的影响。实验反应堆卓越。热计算结果表明,尽管化学计量的氧化物燃料中的燃料温度被评估为低于次化学计量的氧化物燃料中的燃料温度,但是加速了化学计量的氧化物燃料中的燃料重组。我们对这种行为的解释如下:首先,由于化学计量比高的热导率,燃料温度降低了。其次,由于由UO_(3)的高蒸气压引起的蒸气压升高,孔隙迁移速度增加,这是由化学计量的高氧势得出的。此外,我们的结果表明,中心空隙直径不仅取决于燃料温度,还取决于蒸气压。

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