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Physical and Mathematical Modeling of Multiphase Flows in a Converter

机译:换流器中多相流的物理和数学建模

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Fluid flow in converter bath, affecting the viability, effectiveness, and efficiency of steelmaking, plays a critical role in the productivity and quality level that can be achieved in the process. Due to a large quantity and diversity of the studies on the characteristics of the multiphase flow, it seems very necessary to make a systematic literature review on state-of-the-art developments in the steelmaking process. This paper presents the recent findings of the characteristics of the multiphase flow in the converter by means of physical and mathematical modeling and the resulting implications for simulating the process. Some representatives include supersonic oxygen jet, stirring and mixing, splashing and droplet generation, and energy transfer. The work summarized in this paper can give an in-depth understanding of the fluid flow in converter and provide references for future modeling of the converter steelmaking process. Future contributions to a fundamentally generalized modeling of the converter steelmaking are still needed. More profoundly, the modeling work can facilitate the real-time data-driven precise BOF process control and be an important component to the realization of intelligent manufacturing in steelmaking process.
机译:转炉熔池中的流体流影响炼钢的可行性,有效性和效率,在该过程中可达到的生产率和质量水平中起着至关重要的作用。由于对多相流特性的研究数量众多且种类繁多,因此有必要对炼钢工艺的最新发展进行系统的文献综述。本文通过物理和数学建模介绍了转炉中多相流特性的最新发现,以及对过程进行仿真的结果。一些代表包括超音速氧气喷射,搅拌和混合,飞溅和液滴生成以及能量转移。本文总结的工作可以深入了解转炉中的流体流动,并为转炉炼钢工艺的未来建模提供参考。仍需要对转炉炼钢的基本通用建模做出进一步的贡献。更深层次的是,建模工作可以促进实时数据驱动的精确BOF过程控制,并且是实现炼钢过程智能制造的重要组成部分。

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