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ON THE FUEL AND COOLANT INTERACTION BEHAVIOR OF PARTIALLY OXIDIZED CORIUM

机译:氧化部分氧化钴的燃料与冷却液相互作用

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To simulate a fuel and coolant interaction phenomenon during a postulated severe accident in a nuclear reactor, a series of experiments were performed using a partially oxidized corium, which is a mixture of UO_2, ZrO_2, Zr, and stainless steel. The composition of the melt was chosen such that a separation of the oxidic liquid from the metallic liquid occurred due to the existence of a miscibility gap. A melting and solidifying experiment and two fuel and coolant interaction experiments to explore the possibility of an energetic steam explosion were performed in the TROI facility. The placement of a metal-rich layer consisting of U, Fe, and ZrO_2 beneath the oxidic corium layer due to the existence of a miscibility gap was observed in the melting and solidifying experiment. An energetic steam explosion with a propagation of the dynamic pressure wave was observed in one test out of the two tests. The physical and chemical analyses were performed for the corium particles collected after the experiments. It is shown that U, Zr, and Fe formed a heterogeneous mixture and the morphology was in irregular shape with many pores at non-uniform sizes. In the case of nonenergetic interaction, where the melt temperature was lower than the energetic case, the mean particle size was bigger than that of the energetic case, and the melt-water interaction resulted in a substantial amount of hydrogen gas generation, while the amount of hydrogen gas generation was negligible in the case with an energetic steam explosion.
机译:为了模拟假定的核反应堆严重事故期间的燃料和冷却剂相互作用现象,使用部分氧化的钴(是UO_2,ZrO_2,Zr和不锈钢的混合物)进行了一系列实验。选择熔体的组成,使得由于可混溶间隙的存在而使氧化液体与金属液体分离。在TROI设施中进行了熔化和固化实验以及两个燃料和冷却剂相互作用的实验,以探索发生高能蒸汽爆炸的可能性。在熔化和凝固实验中,由于存在可混溶间隙,在氧化皮层下面放置了由U,Fe和ZrO_2组成的富金属层。在两个测试中的一个测试中,观察到了带有动态压力波传播的高能蒸汽爆炸。对实验后收集的皮质颗粒进行了物理和化学分析。结果表明,U,Zr和Fe形成异质混合物,其形态为不规则形状,具有许多大小不均的孔。在非能量相互作用的情况下,熔体温度低于高能情况,平均粒径大于高能情况,并且熔体-水相互作用导致大量的氢气产生,而在高能蒸汽爆炸的情况下,氢气的产生量可以忽略不计。

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