首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >Development of Technologies on Innovative-Simplified Nuclear Power Plant using High-Efficiency Steam Injector (14) Cooling Characteristics of the particulate core material debris accumulated in horizontal narrow gap
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Development of Technologies on Innovative-Simplified Nuclear Power Plant using High-Efficiency Steam Injector (14) Cooling Characteristics of the particulate core material debris accumulated in horizontal narrow gap

机译:使用高效蒸汽喷射器的创新型简化型核电站技术的发展(14)水平窄间隙中堆积的颗粒状核材料碎片的冷却特性

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When LOCA occurs in proposed nuclear reactor systems, the coolability of the core would be kept by the SI core injection system and therefore the probability of the core meltdown is negligible small. In this research work, we make it clear that the coolability of the RPV bottom is secured even if a part of the core should melt and a substantial amount of debris should be deposited on the lower plenum. In this report, we examined experimentally the coolability of the RPV bottom that a Zircaloy-based loose debris layer is deposited on. We set up a heat supply section made by SUS304 on the loose debris layer and measured the heat flux released into the loose debris bed and the temperature at the lower surface of the heat supply section. In addition, we measured the temperature distribution at the bottom of the loose debris bed. It became clear in this study that the coolability depends on the amount of coolant supplied, and the hot spot would not occur when coolant is supplied. Even if a hotspot should occur in the oxidization of loose metal debris accompanied with rapid heat generation. It is found that when a small amount of coolant can be supplied, it disappears because of a high capillary force of oxidized loose debris. So it is confirmed that the soundness of RPV is basically maintained.
机译:当在建议的核反应堆系统中发生LOCA时,堆芯的可冷却性将由SI堆芯喷射系统保持,因此堆芯熔化的可能性可以忽略不计。在这项研究工作中,我们清楚地表明,即使一部分型芯应融化并且应将大量碎屑沉积在下气室上,也可以确保RPV底部的可冷却性。在此报告中,我们通过实验检查了沉积有基于Zircaloy的松散碎屑层的RPV底部的可冷却性。我们在松散的碎屑层上设置了一个由SUS304制成的供热段,并测量了释放到松散的碎屑层中的热通量和供热段下表面的温度。另外,我们测量了松散的碎屑床底部的温度分布。在这项研究中,很明显,可冷却性取决于所供应冷却剂的量,并且在供应冷却剂时不会出现热点。即使在散乱的金属碎片的氧化中出现热点,并伴有快速发热。已经发现,当可以提供少量的冷却剂时,由于氧化的松散碎屑的高毛细作用力,冷却剂消失了。因此可以确认,RPV的健全性基本得以维持。

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