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A numerical modelling investigation into design variables influencing mixing efficiency in full scale gas stirred ladles

机译:数值模拟研究影响全尺寸气搅拌钢包混合效率的设计变量

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A mathematical model of a full scale gas stirred ladle was implemented in designed experiments to assess the influence of various design variables on mixing efficiency. The discrete phase (DPM) and volume of fluid (VOF) models were used in conjunction to describe the different phases and the standard k-s approach was used for modelling turbulence. Ladle height was identified as the most influential factor in determining mixing efficiency and could be altered by either changing the aspect ratio or the overall scale of the ladle. Gas injection through multiple tuyeres was also identified as a promising strategy for improving mixing, but the success of this strategy depended greatly on the tuyere arrangement. Incorrect tuyere arrangements created significant flow pattern interference in the ladle, which had a detrimental effect on mixing. At high aspect ratios, it was shown that the cross sectional area of the ladle can become too narrow, causing additional flow pattern interference between the rising plumes and the downward recirculating flows.
机译:在设计的实验中采用了全尺寸气体搅拌钢包的数学模型,以评估各种设计变量对混合效率的影响。离散相(DPM)和流体体积(VOF)模型被用来描述不同的相,标准的k-s方法被用于湍流建模。钢包高度被确定为决定混合效率的最重要因素,可以通过更改钢包的纵横比或钢包的整体比例来更改。通过多个风口注气也被认为是改善混合的一种有前途的策略,但是这种策略的成功很大程度上取决于风口的布置。不正确的风口布置会在钢包中产生明显的流型干扰,从而对混合产生不利影响。在高纵横比下,钢包的横截面面积可能变得太窄,从而导致上升的羽流和向下的再循环流之间产生额外的流型干涉。

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