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首页> 外文期刊>Journal of nuclear science and technology >Thermal Stress Analysis Of High-burnup Lwr Fuel Pellet Pulse-irradiated In Reactivity-initiated Accident Conditions
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Thermal Stress Analysis Of High-burnup Lwr Fuel Pellet Pulse-irradiated In Reactivity-initiated Accident Conditions

机译:反应性事故条件下脉冲辐照高燃Lwr燃料颗粒的热应力分析

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摘要

For RIA-simulated experiments in the NSRR with high-burnup PWR fuel and BWR fuel, numerical analyses were performed to evaluate the temporal changes of profiles of temperature and thermal stress in pellet induced by pulse power, using the RANNS code. The pre-pulse states of rods were calculated using the fuel performance code FEMAXI-6 along the irradiation histories in commercial reactors and the results were fed to the RANNS analysis as initial conditions of the rod. One-dimensional FEM was applied to the mechanical analysis of the fuel rod, and the calculated cladding permanent strain was compared with the measured value to confirm the validity of the PCMI calculation. The calculated changes in the profiles of temperature and stress in the pellet during an early transient phase were compared with the measured data such as the internal gas pressure rise, cracks and grain structure in the post-test pellet, and discussed in terms of PCMI and grain separation. The analyses indicate that the pellet cracking appearances coincided with the calculated tensile stress state and that the compressive thermal stress suppresses the fission gas bubble expansion leading to grain separation.
机译:对于用高燃比PWR燃料和BWR燃料在NSRR中进行的RIA模拟实验,使用RANNS代码进行了数值分析,以评估脉冲功率引起的颗粒温度和热应力曲线的时间变化。使用燃料性能代码FEMAXI-6沿商用反应堆的辐照历史记录计算棒的预脉冲状态,并将结果作为棒的初始条件输入RANNS分析。将一维有限元方法应用于燃料棒的力学分析,并将计算出的包层永久应变与测量值进行比较,以确认PCMI计算的有效性。将颗粒在早期瞬态阶段的温度和应力分布的计算变化与测得的数据(如内部气体压力升高,后测试颗粒中的裂纹和晶粒结构)进行了比较,并讨论了PCMI和谷物分离。分析表明,粒料开裂外观与计算的拉伸应力状态相吻合,并且压缩热应力抑制了导致颗粒分离的裂变气泡膨胀。

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