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Fluid Flow Characteristic of EAF Molten Steel with Different Bottom-Blowing Gas Flow Rate Distributions

机译:具有不同底部吹气气流分布的EAF钢水流体流动特性

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As an efficient stirring method, bottom-blowing technology was applied in the present electric arc furnace (EAF) steelmaking process to improve the dynamic conditions of the molten steel. This article describes the development of a numerical model to simulate the 3D multiphase flows (gas, steel, and slag). Comparisons among uniform and non-uniform (linear and triangle distributions) bottom-blowing gas rate arrangements were performed with both metallurgic and dynamic parameters obtained from the numerical simulation process and separated liquid steel analysis. The numerical simulation results indicated that the bottom-blowing scheme with the gas rate in a linear change distribution had the best stirring effects in the molten bath. In addition, the dynamic conditions in the molten bath were worse when the bottom-blowing gas rate change was focused on the nozzle near the eccentric bottom tapping area. Furthermore, water model and industrial experiments were performed. For this purpose, 120 sets of heat industry data were collected in the 100 t EAF steelmaking process. The results showed that the non-uniform bottom-blowing scheme is more able to improve the dynamic conditions of the molten bath compared with the conventional uniform gas rate distribution, which further validated the reliability of the present numerical simulation results.
机译:作为一种有效的搅拌方法,在本电弧炉(EAF)炼钢工艺中应用底部吹风技术,以改善钢水的动态条件。本文介绍了模拟3D多相流量(气体,钢和渣)的数字模型的开发。使用从数值模拟过程和分离的液钢分析中获得的冶金和动态参数进行均匀和不均匀(线性和三角形分布)底部吹气气速装置的比较。数值模拟结果表明,具有线性变化分布中的气流速率的底部吹风方案在熔融浴中具有最佳的搅拌作用。另外,当底部吹风液速率变化聚焦在偏心底部敲击区域附近的喷嘴上时,熔浴中的动态条件差。此外,进行水模型和工业实验。为此目的,在100 T EAF炼钢过程中收集了120套热行业数据。结果表明,与常规均匀的燃气速率分布相比,不均匀的底部吹风方案更能改善熔融浴的动态条件,这进一步验证了本数值模拟结果的可靠性。

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