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首页> 外文期刊>Annals of nuclear energy >Phenomenological study on the Ex-pin phenomena in the initial phase of HCDA on metal-fueled SFR using simulant
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Phenomenological study on the Ex-pin phenomena in the initial phase of HCDA on metal-fueled SFR using simulant

机译:用混合用燃料SFR在HCDA初始阶段前销现象的现象学研究

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In the initial phase of severe accident in a metal fueled SFR, fuel melts and is ejected into the coolant channel owing to pressure from fission gas. This phenomenon called ex-pin and it is crucial for early termination of the accident in terms of levitation, which induces negative reactivity feedback and coolable geometry. The ejected mass of melt, melt temperature, coolant temperature, ejection pressure, and the void generated by coolant boiling in the channel were parametrically studied in experiments designed to determine the influence of each parameter on levitation and coolable geometry, Experiments were conducted using the simulant materials Wood's metal and water for the molten fuel and sodium coolant. For coolable geometry, less amount of fuel was adhered to the channel wall with high coolant temperature and fragmentation of the melt was promoted under high temperature melt, high ejection pressure, and voided channel. The levitation height was mainly affected by the volume of ejected gas and melt. Levitation height model was developed based on the experiments. Considering change of these parameters along fuel cycle, an accident at the beginning of the fuel cycle is more serious than one at the end of the fuel cycle. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在金属燃料SFR中的严重事故的初始阶段,由于来自裂变气体的压力,燃料熔化并喷射到冷却剂通道中。这种现象称为Ex-PIN,并在悬浮方面提前终止事故至关重要,这引起负反应性反馈和可冷却的几何形状。在设计用于确定每个参数对悬浮和可冷却几何形状的实验中的实验中,熔融,熔体温度,冷却剂温度,喷射压力和通过冷却剂沸腾产生的空隙产生的熔体沸腾的质量和通过冷却剂沸腾产生的空隙。使用模拟剂进行实验材料木材的金属和水为熔融燃料和钠冷却剂。对于可冷却的几何形状,较少量的燃料粘附到具有高冷却剂温度的沟道壁上,并在高温熔体,高喷射压力和空隙通道下促进熔体的碎片化。悬浮高度主要受喷射气体的体积和熔体的影响。基于实验开发了悬浮高度模型。考虑到燃料循环的这些参数的变化,燃料循环开始时的事故比燃料循环结束时更严重。 (c)2019 Elsevier Ltd.保留所有权利。

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