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Dynamic Coupling of Computational Fluid Dynamics and Thermodynamics Software: Applied on a Top Blown Converter

机译:计算流体动力学和热力学软件的动态耦合:应用于顶吹转炉

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摘要

A novel modeling approach is presented where a computational fluid dynamics software is coupled to thermodynamic databases to obtain dynamic simulations of metallurgical process phenomena. The modeling approach has been used on a fundamental model of a top-blown converter. Reactions between gas-steel, gas-slag, steel-slag and gas-steel-slag have been considered. The results show that the mass transport in the surface area is totally controlled by convection. Also, that a large amount of CO produced during the decarburization might slow down the rate of decarburization in droplets ejected from the bath. For the present simulation conditions reflecting laboratory experiments, it was also seen that the amount of slag (FeO and/or SiO_2) created is close to zero, i.e. only gas (CO + CO_2) is created as the oxygen jet hits the steel bath. It was also illustrated how an extrapolation of the decarburization rate, sampled from a few seconds of simulation, could be done to get a rough estimate of the carbon content at a later stage in the process as long as the carbon content is relatively high. The overall conclusion is that it is possible to make a dynamic coupling of the Thermo-Calc databases and a CFD software to make dynamic simulations of metallurgical processes such as a top-blown converter.
机译:提出了一种新颖的建模方法,其中将计算流体动力学软件与热力学数据库耦合以获得冶金过程现象的动态模拟。该建模方法已用于顶吹式转换器的基本模型。已经考虑了气钢,气渣,钢渣和气钢渣之间的反应。结果表明,表面区域的传质完全受对流控制。而且,在脱碳过程中产生大量的CO可能会减慢从熔池中喷出的液滴中脱碳的速度。对于反映实验室实验的当前模拟条件,还可以看到,所产生的炉渣(FeO和/或SiO_2)接近于零,即当氧气射流撞击钢水浴时,仅产生气体(CO + CO_2)。还说明了如何进行脱碳速率的外推(从几秒钟的模拟采样中得出),只要碳含量相对较高,就可以在过程的后期对碳含量进行粗略估计。总的结论是,可以对Thermo-Calc数据库和CFD软件进行动态耦合,从而对冶金工艺(例如顶吹转炉)进行动态仿真。

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