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首页> 外文期刊>Physics of atomic nuclei >Simulation of Fission Product Release from Microfuel Particles Taking into Account the Effects of Trapped Fraction and Concentration Jumps at the Interfaces
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Simulation of Fission Product Release from Microfuel Particles Taking into Account the Effects of Trapped Fraction and Concentration Jumps at the Interfaces

机译:考虑到捕获部分和浓度跳跃在界面的效果的微膳颗粒释放裂变产品的仿真

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摘要

A modification of the FP Kinetics code [1] has been performed to calculate the fission product release from HTGR microfuel particles, allowing for chemical binding, limited solubility effects, and component concentration jumps at the interfaces of the coating layers. A comparison is made of the release curves of Cs from microfuel particles calculated using the FP Kinetics and PARFUME codes [2]. It is shown that taking into account the concentration jumps at the interfaces of the silicon carbide layer makes it possible to give a noncontradictory explanation of the experimental data obtained for Cs release in post-reactor thermal testing. The need for performing experiments to determine the limits of solubility in coating materials is noted.
机译:已经进行了FP动力学代码[1]的修改以计算HTGR微膳颗粒的裂变产物释放,允许化学结合,有限的溶解度效应,并且组分浓度在涂层的界面处跳跃。 使用FP动力学和Parfume码计算的微膳颗粒的CS的释放曲线进行比较[2]。 结果表明,考虑到碳化硅层的界面处的浓度跳跃使得可以提供对反应后热试验中的CS释放获得的实验数据的非致请性解释。 注意需要进行实验以确定涂料中溶解度的限制。

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