首页> 外文期刊>Journal of nuclear science and technology >Fission Gas Release in Irradiated UO{sub}2 Fuel at Burnup of 45 GWd/t during Simulated Reactivity Initiated Accident (RIA) Condition
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Fission Gas Release in Irradiated UO{sub}2 Fuel at Burnup of 45 GWd/t during Simulated Reactivity Initiated Accident (RIA) Condition

机译:在模拟反应性事故(RIA)条件下燃尽45 GWd / t的辐照UO {sub} 2燃料中的裂变气体释放

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摘要

Pulse irradiation simulating reactivity-initiated-accident (RIA) condition was conducted for test rod prepared from fuel irradiated in a commercial reactor and fission gas release behavior from fuel pellet during pulse irradiation was investigated. Optical microscopy (OM) and scanning electron microscopy (SEM) observations and electron probe micro analysis (EPMA) were carried out for the test rod as a part of destructive tests after the pulse irradiation. Fission gas release during pulse irradiation was evaluated by EPMA and puncture test. Xenon depression was observed in the fuel pellet after pulse irradiation at periphery and center region. It is considered that the xenon depression at pellet periphery was due to rim structure formation and fission gas was mainly released from the pellet center region during pulse irradiation. Comparing the fractional fission gas release during pulse irradiation with other results of out-of-pile annealing tests, it was concluded that most fission gas, which was accumulated at grain boundary during base irradiation, was released from the center region of test fuel pellet during pulse irradiation.
机译:对从商业反应堆中辐照的燃料制备的测试棒进行了脉冲辐照模拟反应起始事故(RIA)条件,并研究了脉冲辐照期间燃料颗粒中裂变气体的释放行为。脉冲照射后,作为破坏性测试的一部分,对测试棒进行了光学显微镜(OM)和扫描电子显微镜(SEM)观察以及电子探针显微分析(EPMA)。通过EPMA和穿刺试验评估脉冲照射过程中裂变气体的释放。在外围和中心区域进行脉冲辐照后,在燃料芯块中观察到氙气降低。据认为,在丸粒周边的氙气降低是由于形成了边沿结构,并且在脉冲照射期间主要从丸粒的中心区域释放了裂变气体。将脉冲辐照过程中产生的部分裂变气体与堆外退火试验的其他结果进行比较,得出的结论是,在基本辐照期间聚集在晶界处的大多数裂变气体在测试过程中从测试燃料芯块的中心区域释放。脉冲照射。

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