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EXPERIMENTAL INVESTIGATION OF FREEZING BEHAVIOR OF MELT/SOLID PARTICLES MIXTURE ON TO METAL STRUCTURE

机译:熔融/固体颗粒混合物对金属结构冷冻行为的实验研究

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The freezing and penetration of molten core fuel and structural materials penetrating into flow channels are important thermal-hydraulics phenomena to safety assessment of postulated core disruptive accidents in liquid metal reactors. The main objective of this study is to investigate fundamental characteristics of freezing and penetration behavior involved in melt and solid mixture flowing on-to structure material. In our study, solid copper particles mixed with molten wood's metal (melting point 78.8°C) was used as a simulant melt, while stainless steel and brass were used as freezing structures. A series of fundamental experiments was performed to study the effects of solid particles on the freezing and penetration behavior under the various thermal conditions of molten metal and varying solid particle volume fraction and structure metal. The melt flow and distribution were observed using a digital video camera. The melt penetration length on the structure and proportion of adhered frozen metal on to structure surfaces were measured in the present series of experiments. The results indicate that penetration length becomes shorter with increasing solid particles volume fraction in melt. The present results will be utilized to build a relevant database for verification of fast reactor safety analysis codes.
机译:熔融芯燃料和穿透流入流动通道的结构材料的冷冻和渗透是液态金属反应器中假设核心破坏性事故的安全评估的重要热液压现象。本研究的主要目的是研究融合和渗透行为的基本特征,涉及熔融和固体混合物的熔融和固体混合物流动的结构材料。在我们的研究中,使用与熔融木金属(熔点78.8℃)混合的固体铜颗粒作为模拟熔体,而不锈钢和黄铜用作冷冻结构。进行一系列基本实验,以研究固体颗粒对熔融金属的各种热条件下的冷冻和渗透行为的影响,并改变固体颗粒体积分数和结构金属。使用数字摄像机观察熔体流动和分布。在本系列实验中测量粘附的冷冻金属的结构和粘附冷冻金属的结构和比例的熔体渗透长度。结果表明,由于熔体中的固体颗粒体积分数增加,渗透长度变短。将利用当前结果来构建相关数据库,以验证快速反应堆安全分析代码。

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