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Mathematical Modeling of Scrap Melting in an EAF Using Electromagnetic Stirring

机译:使用电磁搅拌在EAF中熔化的数学建模

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Numerical modeling has been used to investigate the influence of electromagnetic stirring on melting of a single piece of scrap in an eccentric bottom tapping (EBT) electric arc furnace (EAF). The heat transfer and fluid flow in the melt for both conditions with and without electromagnetic stirring were studied. The buoyancy and electromagnetic forces were considered as the source terms for momentum transfer in the studied conditions. The enthalpy-porosity technique was applied to track the phase change of a scrap piece defined in the EBT region of the furnace. Different scrap sizes, preheating temperatures, stirring directions and force magnitudes were considered, and the heat transfer coefficient was estimated from the heat transfer rate at the melt-scrap interface. The results showed that electromagnetic stirring led to a reduced melting time and an increased heat transfer coefficient by a factor of four. The results for Nusselt number versus Grashof number for natural convection and Reynolds number for electromagnetic stirring were compared with those obtained through correlations from previous studies.
机译:数值建模已被用来研究电磁搅拌对偏心底部攻丝(EBT)电弧炉(EAF)中单件废料熔化的影响。研究了在熔体中的热传递和流体流动,用于两个条件,并且没有电磁搅拌。浮力和电磁力被认为是研究病情中的动量转移的源术语。施加焓 - 孔隙率技术以跟踪在炉子的EBT区域中限定的废料片的相变。考虑了不同的废料尺寸,预热温度,搅拌方向和力幅度,并且从熔融废料界面处的传热速率估计传热系数。结果表明,电磁搅拌导致熔点降低,传热系数增加了四倍。将结果与通过先前研究的相关性获得的那些对电磁搅拌的自然对流和雷诺数的射击数与电磁搅拌的雷诺数。

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