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Numerical analysis of the effect of gap-filling options on the maximum peak temperature of a buffer in an HLW repository

机译:间隙填充选项对HLW储存库中缓冲液最大峰值温度影响的数值分析

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摘要

The gaps around the buffer in a high-level waste (HLW) repository have a significant influence on the temperature of the buffer and its long-term performance. This study carried out numerical simulations to analyze the effect of void and filling options on the peak temperature in the buffer. The presence of void inner and outer gaps around the buffer greatly raised the peak temperature of the buffer. However, this high peak temperature was lowered by fillings (bentonite pellets) into the outer gap, and it also decreased with the increase in the dry density and degree of saturation of fillings and the decrease in outer gap spacing. On the other hand, for the inner gap, it was advantageous to leave it empty in lowering the peak temperature of the buffer. The peak temperature compared to the void inner gap, when also considering the effect of radiation, showed only a very minor reduction when the average temperature in the gap, gap spacing, and the emissivity of the copper canister surface decreased. Based on the results of the above numerical simulations, this study also proposed a buffer-gap system that minimizes the peak temperature of the buffer.
机译:高放废物 (HLW) 储存库中缓冲区周围的间隙对缓冲区的温度及其长期性能有重大影响。本研究进行了数值模拟,以分析空隙和填充选项对缓冲液中峰值温度的影响。缓冲液周围空隙和外部间隙的存在大大提高了缓冲液的峰值温度。然而,填充物(膨润土颗粒)进入外间隙降低了这种高峰值温度,并且随着填充物干密度和饱和度的增加以及外间隙间距的减小而降低。另一方面,对于内部间隙,将其留空以降低缓冲液的峰值温度是有利的。当考虑辐射的影响时,与空隙内部间隙相比,当间隙中的平均温度、间隙间距和铜罐表面的发射率降低时,峰值温度仅显示出非常小的降低。基于上述数值模拟结果,本研究还提出了一种将缓冲液峰值温度降至最低的缓冲间隙系统。

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