首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Physical and mathematical modeling of inclusion removal with gas bottom-blowing in continuous casting tundish
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Physical and mathematical modeling of inclusion removal with gas bottom-blowing in continuous casting tundish

机译:连铸中间包气体吹底去除夹杂物的物理和数学模型

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Gas blowing at the bottom of tundish is an efficient metallurgy technique in clean steelmaking and has been widely concerned. In this paper, spherical alumina particles were selected to model inclusions, 1:3 scale model was utilized, the removal efficiency of inclusions with the gas bottomblowing in the tundish was studied by physical and mathematical modeling. The mathematical model is validated by comparing the predicted and measured residence time distributions and dye flow patterns of tracer. The results show that while the removal efficiency of large size particles has no obvious changes, the gas bottom-blowing has great contribution to the removal of small particles.
机译:在中间包底部吹气是清洁炼钢的有效冶金技术,受到了广泛的关注。本文选择球形氧化铝颗粒对夹杂物进行建模,采用1:3比例模型,通过物理和数学模型研究了中间包中气体底吹对夹杂物的去除效率。通过比较预测的和测量的停留时间分布以及示踪剂的染料流动模式来验证数学模型。结果表明,虽然大颗粒的去除效率没有明显变化,但底吹气体对小颗粒的去除有很大贡献。

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