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Research of Gas-Liquid Multiphase Flow in Oxygen-Enriched Bottom Blowing Copper Smelting Furnace

机译:富含氧底吹铜冶炼炉中气液多相流的研究

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Based on ENFI's self-developed bottom-blowing continuous copper smelting process, the normal operation bottom-blown copper smelting furnace is the research object. Based on the determination of the physical parameters of the slag phase and matte phase in the furnace, the bottom-blow furnace model consistent with the actual bottom blowing system is established by using the commercial software platforms. Fhe VOF multiphase flow model and the standard k-ε turbulence model are used to simulate the three-phase flow process of gas-slag-matte in the furnace. The gas-liquid two-phase flow law in the furnace, the velocity field of each phase in the furnace, and the splashing mechanism of the melting furnace are analyzed. The characteristics of each flow region in the furnace are obtained. This study can also provide a reference for the design and operational system formulation of the bottom blowing furnace.
机译:基于ENFI的自动开发的底部吹铜冶炼过程,正常操作底部吹铜冶炼炉是研究对象。基于炉子中的炉渣相和哑光相的物理参数的确定,通过使用商业软件平台建立与实际底部吹吹系统一致的底吹炉模型。 FHE VOF多相流动模型和标准K-ε湍流模型用于模拟炉内气渣遮罩的三相流程。分析了炉中的气液两相流法,分析了炉中的每相的速度场,以及熔炉的溅射机理。获得炉中每个流动区域的特性。该研究还可以为底部吹炉的设计和操作系统制定提供参考。

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