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CFD Modeling of Slag-Metal Reactions and Sulfur Refining Evolution in an Argon Gas-Stirred Ladle Furnace

机译:氩气搅拌钢包炉渣金属反应和硫精炼过程的CFD建模

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Accurate prediction of the desulfurization behavior of steel is of great importance for process control during ladle metallurgical furnace (LMF) steel refining. A CFD model capable of simulating multiphase flow with bulk and free surface turbulence phenomena and desulfurization behavior in the gas-stirred ladle has been developed. The fluid flow behavior shows that slag and metal try to entrap each other, forming a two-phase mixing zone. The resulting substantial contact area between the two phases will provide very favorable kinetic conditions for chemical reactions. For reaction kinetics model, the reactions at the metal/slag bath interface as well as the entrapped droplet surface are included. Predicted results show that the sulfur content changing with time in the ladle agrees well with the industrial-scale experimental measurements.
机译:钢水脱硫行为的准确预测对于钢包冶金炉(LMF)钢精炼过程控制至关重要。建立了能够模拟多相流的CFD模型,该相流具有大体积和自由表面湍流现象,并且在搅拌气体的钢包中具有脱硫特性。流体流动行为表明,炉渣和金属试图相互包裹,形成两相混合区。两相之间产生的大量接触面积将为化学反应提供非常有利的动力学条件。对于反应动力学模型,包括在金属/矿渣浴界面以及截留的液滴表面的反应。预测结果表明,钢包中的硫含量随时间变化与工业规模的实验测量结果非常吻合。

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