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Numerical Analysis of Nitrogen Absorption Rate Accompanied with Marangoni Convection in the Molten Iron under Non-inductive Stirring Condition

机译:非感应搅拌条件下铁水中Marangoni对流氮吸收率的数值分析

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Numerical analysis was carried out to investigate nitrogen absorption rate accompanied with Marangoni convection due to surface tension gradient on the free surface of liquid iron by using the commercial CFD software package. Good agreements between the experimental values and the calculated results were attained with various oxygen contents. It could be deduced that the Marangoni convection occurred continuously until the liquid iron is saturated with nitrogen, since the gradient of the nitrogen concentration could be maintained on the free surface of liquid iron owing to flow of the liquid iron. The decrease in nitrogen absorption rate with increasing oxygen content under non-inductive stirring condition could be attributed to the dwindling of convection in liquid iron and the effective diffusion coefficient as the liquid iron flow changes from the turbulent to the laminar flow.
机译:通过使用商用CFD软件包,进行了数值分析,研究了由于铁水自由表面上的表面张力梯度导致的Marangoni对流伴随的氮吸收率。在各种氧含量下,实验值与计算结果之间取得了良好的一致性。可以推断出,在铁水被氮饱和之前,Marangoni对流连续发生,因为由于铁水的流动,​​可以在铁水的自由表面上保持氮浓度的梯度。在非感应搅拌条件下,氮吸收率随氧含量的增加而降低,这可归因于当铁水从湍流变为层流时,铁水对流的减小以及有效扩散系数。

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