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Behavior of High-burnup LWR-MOX Fuel under a Reactivity-Initiated Accident Condition

机译:在反应性发生的事故条件下高燃烧LWR-MOX燃料的行为

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A pulse-irradiation test CN-1 on a high-burnupMOX fuel with M5TM cladding was conducted at theNuclear Safety Research Reactor (NSRR) of JapanAtomic Energy Agency (JAEA). Although the transientsignals obtained during the pulse-irradiation test did notshow any signs of the occurrence of PCMI failure, thefailure of the test fuel rod was confirmed from the visualinspection carried out after test CN-1. Analyses using fuelperformance codes FEMAXI-8 and RANNS were alsoperformed in order to investigate the fuel behavior duringnormal operation and pulse-irradiation regarding the testfuel rod of CN-1, and the results were consistent with thisobservation result. These experimental and calculationresults suggested that the failure of test fuel rod of CN-1was not caused by hydride-assisted PCMI but hightemperaturerupture following the increase in rod internalpressure. The occurrence of this failure mode might berelated to the ductility remained in the M5TM claddingowing to its low content of the hydrogen absorbed duringnormal operation.
机译:高燃烧的脉冲辐射测试CN-1MAX燃料与M5TM包层进行了日本核安全研究反应堆(NSRR)原子能机构(JAEA)。虽然瞬态在脉冲辐射测试期间获得的信号没有显示任何PCMI失败的迹象,从视觉中确认了测试燃料棒的失效在测试CN-1后进行的检查。使用燃料分析绩效代码Femaxi-8和Rann也是进行以调查燃料行为关于测试的正常操作和脉冲辐照CN-1的燃料棒,结果与此符合观察结果。这些实验和计算结果表明CN-1试验燃料棒的失效不是由氢化物辅助的PCMI引起的,但高温杆内部增加后破裂压力。这种失败模式的发生可能是与延展性相关的延续留在M5TM包层中由于其在吸收期间的氢含量低普通手术。

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