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Numerical Analysis on Flow Behavior of Molten Iron and Slag in Main Trough of Blast Furnace during Tapping Process

机译:高炉出铁过程中铁水和炉渣在铁水槽内流动行为的数值分析。

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摘要

The three-dimensional model was developed according to number 4 of the main trough of blast furnace at China Steel Co. (CSC BF4). The k-ε equations and volume of fluid (VOF) were used for describing the turbulent flow at the impinging zone of trough, indicating fluids of liquid iron, molten slag, and air in the governing equation, respectively, in this paper. The pressure field and velocity profile were then obtained by the finite volume method (FVM) and the pressure implicit with splitting of operators (PISO), respectively, followed by calculating the wall shear stress through Newton's law of viscosity for validation. Then, the operation conditions and the main trough geometry were numerically examined for the separation efficiency of iron from slag stream. As shown in the results, the molten iron losses associated with the slag can be reduced by increasing the height difference between the slag and iron ports, reducing the tapping rate, and increasing the height of the opening under the skimmer.
机译:该三维模型是根据中钢公司高炉主槽的编号4(CSC BF4)开发的。本文用k-ε方程和流体体积(VOF)来描述水槽撞击区的湍流,并在控制方程中分别指出了液态铁,熔渣和空气的流体。然后分别通过有限体积法(FVM)和算子分裂隐含压力(PISO)获得压力场和速度曲线,然后通过牛顿粘度定律计算壁切应力进行验证。然后,数值分析了操作条件和主槽的几何形状,以便从渣流中分离铁。如结果所示,可以通过增加炉渣和铁口之间的高度差,降低出钢率以及增加撇渣器下的开口的高度来减少与炉渣有关的铁水损失。

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  • 来源
    《Advances in numerical analysis》 |2017年第2017期|6713160.1-6713160.10|共10页
  • 作者单位

    Department of Chemical Engineering, National Chung Hsing University, Taichung, Taiwan;

    Ceramic Materials Section (T62), New Materials Research & Development Department, China Steel Corporation, Kaohsiung, Taiwan;

    Department of Chemical Engineering, National Chung Hsing University, Taichung, Taiwan;

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