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Evaluation Plan for Passive Debris Cooling System and Refractory Layer

机译:被动碎片冷却系统和耐火层的评估计划

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In the event of a severe accident, it is necessary to prevent the release of radioactive materials into the environment due to damage to a containment vessel. It is also important to mitigate the consequences of such a severe accident. If debris falls down from a reactor vessel onto a pedestal floor, concrete will be eroded by the debris as a result of thermal decomposition and fusion. After continuous erosion, the pedestal may be damaged or a steel liner of the boundary may be penetrated. In addition, concrete decomposition will cause the production of non-condensable gases such as hydrogen and carbon monoxide, resulting in pressurization of the containment vessel. Therefore, we have been developing a safety system to stabilize the core melt and avoid a molten core concrete interaction (MCCI). Although water will be injected into the debris cooling system, it is difficult to hold high-temperature debris at about 2500 K. Heat-resisting materials with high melting points should be installed. The heat-resisting materials can protect the concrete or components of the system (like the core-catcher) against short-term thermal impingement and long-term erosion after water injection. We completed primary screening of heat-resisting materials in 2012 and investigated a eutectic reaction with oxide components in debris/corium and an oxidation-reduction reaction with metal components in corium.
机译:在发生严重事故的情况下,由于损坏容纳容器,有必要防止放射性物质释放到环境中。减轻这种严重事故的后果也很重要。如果碎片从反应器容器下降到基座地板上,则由于热分解和融合,混凝土将被碎片侵蚀。在连续侵蚀之后,基座可能被损坏,或者边界的钢结构可以穿透。此外,混凝土分解将导致生产不可凝聚的气体,如氢和一氧化碳,导致容器的加压。因此,我们已经开发了一种安全系统,以稳定芯熔体并避免熔融核心混凝土相互作用(MCCI)。虽然水将被注入碎屑冷却系统中,但难以在约2500k的高温碎片上保持高温碎片。应安装高熔点的耐热材料。耐热材料可以保护系统的混凝土或部件(如核心捕获器)免受注水后的短期热冲击和长期腐蚀。我们在2012年完成了对耐热材料的初级筛选,并研究了与碎屑/芯中的氧化物组分的共晶反应和芯片中金属组分的氧化还原反应。

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