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Inclined jetting and splashing in electric arc furnace steelmaking

机译:电弧炉炼钢中的倾斜喷射和飞溅

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摘要

In Electric Arc Furnace (EAF) steelmaking, liquid metal splashes on the furnace wall due to the impingement of high speed oxygen jet on molten metal surface. The splashed metal droplets cause wear of furnace wall and loss of production. Optimization of the operating condition (lance angle, lance height and flow rate) may reduce splashing and increase productivity. In the present study, the effect of different operating conditions on the wall splashing rate was investigated. Air was injected on water surface in a small-scale thin slice model at different lance angles, lance heights and flow rates. Splashed liquid in the forward direction was collected and measured in each case. The forward splashing rate was found to increase with the increase of lance angle from the vertical and flow rate. The critical depth of penetration as well as the impact velocity for the onset of splashing was found to decreases with the increase of lance angle from the vertical. The effect of lance angle on the dimensionless Blowing number (NB), which is a measure of droplet generation rate, was quantified. A new approach has been proposed for modelling the gas jet impinging phenomenon inside the real furnace using room temperature water model.
机译:在电弧炉(EAF)炼钢中,由于高速氧气射流撞击熔融金属表面,液态金属飞溅到炉壁上。飞溅的金属滴会引起炉壁磨损和生产损失。优化工作条件(喷枪角度,喷枪高度和流量)可以减少飞溅并提高生产率。在本研究中,研究了不同操作条件对壁飞溅率的影响。空气以小尺寸薄片模型以不同的喷枪角度,喷枪高度和流速注入水表面。收集并测量向前飞溅的液体。发现向前飞溅率随垂直和流速的喷枪角度的增加而增加。发现刺入的临界深度以及飞溅开始时的冲击速度随着从垂直方向喷枪角度的增加而降低。量化了喷枪角度对无因次吹气数(NB)的影响,该无因次吹气数是液滴产生速率的度量。提出了一种使用室温水模型对真实炉内气体射流撞击现象进行建模的新方法。

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