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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The “trapped fraction” and interfacial jumps of concentration in fission products release from coated fuel particles
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The “trapped fraction” and interfacial jumps of concentration in fission products release from coated fuel particles

机译:从涂覆的燃料颗粒释放裂变产物中浓度的“被困分数”和界面跳跃

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AbstractThe FP Kinetics computer code [1] designed for calculation of fission products release from HTGR coated fuel particles was modified to allow consideration of chemical bonding, effects of limited solubility and component concentration jumps at interfaces between coating layers. Curves of Cs release from coated particles calculated with the FP Kinetics and PARFUME [2] codes were compared. It has been found that the consideration of concentration jumps at silicon carbide layer interfaces allows giving an explanation of some experimental data on Cs release obtained from post-irradiation heating tests. The need to perform experiments for measurement of solubility limits in coating materials was noted.Highlights?The FP Kinetics computer code designed for calculation of fission products release from HTGR coated fuel particles was modified.?Curves of Cs release from coated particles calculated with the FP Kinetics and PARFUME codes were compared.?It has been found that the consideration of concentration jum
机译:<![CDATA [ 抽象 该FP动力学计算机代码[1]设计用于裂变产物计算从HTGR包覆燃料颗粒被修改,以释放允许考虑化学键合的,有限的溶解度和成分浓度的影响在跳跃涂敷层之间的界面。从与FP动力学及PARFUME计算包衣颗粒铯释放的曲线[2]的代码进行比较。已经发现,浓度的考虑跳跃在碳化硅层界面允许给予从照射后加热试验得到的铯释放一些实验数据的解释。执行实验用于在涂覆材料溶解度极限测量的需要指出 亮点 该FP动力学计算机代码设计用于裂变产物释放计算从HTGR涂覆燃料颗粒被修改 铯释放的从涂覆的颗粒曲线。比较 <?CE:对ID =“P00 20" 视图=‘所有’>已经发现的是,考虑浓度JUM的

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