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Experimental study of natural convection in a glass pool inside a cold crucible induction melter

机译:冷坩埚感应熔炉内玻璃池中自然对流的实验研究

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Cold crucible induction melting is evolving as a promising technology for vitrification of high level radioactive waste because of high temperature availability and long melter life. Natural convection in the inductively heated glass pool plays a significant role in the performance of such melters. Experimental investigations were carried out to study the nature of flow patterns and temperature profiles in a sodium borosilicate glass pool inside an engineering scale cold crucible induction melter. Flow patterns were obtained for power levels in the range of 50 to 110 kW. The average surface velocity was found to vary from 5 mm s{sup}(-1) at 50 kW to 22.5 mm s{sup}(-1) at 110 kW. Experimentally measured temperature profiles in the glass pool indicated a well-mixed zone above a thermally stratified layer.
机译:由于高温可用性高和熔化器寿命长,冷坩埚感应熔炼正在发展成为一种用于高放射性废料玻璃化的有前途的技术。感应加热玻璃池中的自然对流在此类熔炉的性能中起着重要作用。进行了实验研究,以研究在工程规模的冷坩埚感应熔炉内的硼硅酸钠玻璃池中的流动模式和温度分布的性质。对于50到110 kW范围内的功率水平,获得了流型。发现平均表面速度从50 kW时的5 mm s {sup}(-1)变化到110 kW时的22.5 mm s {sup}(-1)。在玻璃池中实验测量的温度曲线表明,在热分层层上方有一个充分混合的区域。

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