首页> 外文期刊>Nuclear Technology >THERMAL INTERACTION BETWEEN MOLTEN METAL JET AND SODIUM POOL: EFFECT OF PRINCIPAL FACTORS GOVERNING FRAGMENTATION OF THE JET
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THERMAL INTERACTION BETWEEN MOLTEN METAL JET AND SODIUM POOL: EFFECT OF PRINCIPAL FACTORS GOVERNING FRAGMENTATION OF THE JET

机译:熔融金属射流与钠池之间的热相互作用:主因子对射流分段的影响

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To clarify the effects of the principal factors that govern the thermal fragmentation of a molten metallic fuel jet in the course of fuel-coolant interaction, which is important in evaluating the sequence of core disruptive accidents (CDAs) for metallic fuel fast reactors, basic experiments were carried out using molten metallic fuel simulants (copper and silver) and a sodium pool. Fragmentation of a molten metal jet with a solid crust was caused by internal pressure produced by the boiling of sodium, which is locally entrapped inside the jet due to hydrodynamic motion between the jet and the coolant. The superheating and the latent heat of fu- sion of the jet are the principal factors governing this type of thermal fragmentation. On the other hand, the effect of the initial sodium temperature is regarded as negligible in the case of thermal conditions expected to result in CDAs for practical metallic fuel cores. Based on the fragmentation data for several kinds of jets (Cu, Ag, SUS, U, and U-5 wt% Zr alloy), an empirical correlation is proposed that is applicable to the calculation of a mass median diameter of fragments produced by the thermal fragmentation of the jet with a solid crust under low ambient Weber number conditions.
机译:为了阐明在燃料-冷却剂相互作用过程中控制熔融金属燃料射流热破碎的主要因素的影响,这对于评估金属燃料快堆的堆芯破坏性事故(CDA)的顺序很重要,基础实验使用熔融金属燃料模拟物(铜和银)和钠池进行测试。钠沸腾产生的内部压力会导致熔融金属射流碎裂,形成固体结壳,由于射流与冷却剂之间的流体动力运动,钠会局部滞留在射流内部。射流融合的过热和潜热是控制此类热破碎的主要因素。另一方面,在预期导致实际金属燃料芯使用CDA的热条件下,初始钠温度的影响可以忽略不计。基于几种射流(Cu,Ag,SUS,U和U-5 wt%Zr合金)的碎片数据,提出了一种经验相关性,适用于计算由碳纳米管产生的碎片的质量中值直径在低环境韦伯数条件下,射流与硬壳的热碎裂。

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