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Analysis of splashing in Basic Oxygen Furnace through systematic modelling

机译:通过系统建模分析碱性氧气炉中的溅射

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This paper presents the results of using a systematic approach for identifying the interactions between splashing and the variables measured from the basic oxygen furnace. Splashing is a phenomenon in BOF, where a small portion of material (both slag and steel) is splashing from the BOF in an uncontrolled manner. This causes unwanted material losses, which requires additional processing phases resulting to the loss of time and money. Splashing is an undesired phenomenon and thus its analysis is important. Earlier the analysis is carried out mainly manually while the systematic approach used in this paper uses forward-selection for selecting the significant variables and multivariable linear regression as a modelling technique for identifying a model between splashing and process variables. The results show that the procedures used are able to find a variable subset that can be used for explaining changes in splashing. Despite the promising results the process and the studied approach needs more research in the future. Especially, the procedure used needs to be complemented with data selection.
机译:本文介绍了使用系统方法来识别溅起与从基本氧气炉中测量的变量之间的相互作用的方法。飞溅是BOF中的现象,其中一小部分材料(炉渣和钢)以不受控制的方式从BOF飞溅。这导致不需要的材料损失,这需要额外的处理阶段导致时间和金钱损失。飞溅是一种不期望的现象,因此其分析很重要。早些时候,分析主要是手动进行的,而本文使用的系统方法使用正向选择,以选择显着的变量和多变量线性回归作为识别溅起和过程变量之间的模型的建模技术。结果表明,所用的过程能够找到可变子集,可用于解释溅的变化。尽管结果有希望的过程和研究方法在未来需要更多研究。特别是,所使用的程序需要补充数据选择。

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