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Numerical prediction on the erosion in the hearth of a blast furnace during tapping process

机译:出钢过程中高炉炉膛侵蚀的数值预测

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The erosion caused by mass transfer in hearth is the most important factor for determining blast furnace campaign life. To support a helpful insight information of mass transfer for the hearth of the No. 2 blast furnace at CSC (China Steel Corporation), a numerical model including the mass transfer of carbon in thermal convective flow from a blast furnace hearth has been developed during the steady tapping process (based on a uninterrupted tapping process assumption). The three dimensional Navier-Stokes equation combined with the transport equations of energy and species with conjugate heat transfer and physical dissolution source is solved by the finite control volume scheme subjected to the segregated iterate under propriety boundary conditions. The results showed the concentration distribution of carbon expressed in terms of mass flux for analyzing the erosion of carbon brick in the blast furnace hearth with the different conditions including the status of dead-man, production of liquid iron, carbon concentration at the inlet and porosity distribution in coke zone during tapping process at steady state. The result is useful to mitigate the erosion caused by mass transfer, and prolong the life span of the blast furnace.
机译:炉膛传质引起的腐蚀是决定高炉运动寿命的最重要因素。为了提供有用的洞悉CSC(中国钢铁总公司)2号高炉炉膛传质的信息,已建立了一个包括高炉炉膛热对流中碳传质的数值模型。稳定的攻丝过程(基于不间断的攻丝过程假设)。在有限边界条件下,采用有限迭代的有限控制体积方案,将三维纳维-斯托克斯方程与具有共轭传热和物理溶解源的能量和物质的输运方程相结合。结果表明,以质量通量表示的碳浓度分布用于分析高炉炉膛中碳砖的腐蚀情况,包括不同条件下的人员死亡情况,铁水产量,进口处碳浓度和孔隙度稳态出钢过程中焦炭区的碳分布该结果对于减轻由传质引起的腐蚀以及延长高炉的寿命是有用的。

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