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Study of cavity modes in BOF by analysis of sound

机译:通过声音分析研究转炉腔模

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摘要

Various cavity modes (i.e. dimpling, splashing and penetrating) are important phenomena in estimating splashing in oxygen steelmaking. Though few studies in the literature have addressed this issue, no investigation can be found focusing on identifying modes by physical means. In the current work, sound produced in a cold air-water model was analysed to distinguish various cavity modes. Wave analysis showed that amplitude of sound increased as the mode changed from one to other. From spectrum analysis, it was found that between a certain range of frequencies, there was considerable difference in the sound level as the mode changed from splashing to penetrating. The presence of a second layer over the bath surface did not affect the general outcomes of the analysis. Present work indicates that it may be possible to identify cavity modes by analysing the sound produced from the bath. This would allow greater control of splashing in oxygen steelmaking and potentially help prevent slopping by controlling operation parameters of the process.
机译:在估算氧气炼钢中的飞溅时,各种型腔模式(即凹坑,飞溅和渗透)是重要的现象。尽管文献中很少有研究解决这个问题,但是没有发现可以通过物理手段识别模式的研究。在当前的工作中,分析了冷空气-水模型中产生的声音以区分各种空腔模式。波动分析表明,声音的振幅随着模式从一种改变到另一种而增加。从频谱分析中发现,在一定频率范围内,随着模式从飞溅变为穿透,声级存在很大差异。浴液表面第二层的存在不影响分析的总体结果。当前的工作表明,可以通过分析浴液产生的声音来识别腔体模式。这将允许更好地控制氧气炼钢中的飞溅,并可能通过控制过程的操作参数来帮助防止喷溅。

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