首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >NUMERICAL ANALYSIS OF MULTIPHASE FLOW IN A STEEL OXYGEN CONVERTER WITH TOP AND BOTTOM BLOWING
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NUMERICAL ANALYSIS OF MULTIPHASE FLOW IN A STEEL OXYGEN CONVERTER WITH TOP AND BOTTOM BLOWING

机译:顶部和底部吹钢氧转化器多相流动的数值分析。

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Combined blowing in the steelmaking basic oxygen converter is a technique that allows more agitation in the metal bath, and gives a fast decarburization rate, accelerated removal of impurities and chemical and thermal homogenization. In this work the multiphase flow in an industrial-like basic oxygen converter with top and bottom blowing is analyzed by means of Computational Fluid Dynamics software. Turbulence in the converter is simulated by means of the classical K-e model given that this model yields more numerical stability during the integration for long times. Top jet velocities of Mach 1 and Mach 2, and 50 and 100 m s~(-1) of bottom injection velocities are used, and the results are compared with the conventional top blowing injection. Numerical results show that the combined blowing generates more agitation of the metal bath than that of the top blowing, however, from an operating viewpoint, combined blowing promotes that a significant volume of molten metal be expelled from the converter mouth.
机译:炼钢基本氧气转换器中的组合吹气是一种技术,它可以在金属熔池中进行更多搅拌,并提供快速的脱碳速率,加速的杂质去除以及化学和热均质化。在这项工作中,通过计算流体动力学软件分析了带有顶部和底部吹气的类似工业用的基本氧气转化器中的多相流。借助经典的K-e模型,可以对转炉中的湍流进行仿真,前提是该模型在长时间的积分过程中会产生更大的数值稳定性。使用了1马赫和2马赫的最高射流速度,以及50和100 m s〜(-1)的底部喷射速度,并将结果与​​常规的顶部吹气喷射进行了比较。数值结果表明,组合吹塑比顶部吹塑产生更多的金属熔池搅动,但是,从操作的角度来看,组合吹塑促进从转炉口排出大量熔融金属。

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