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A Novel Multiphase Methodology Simulating Three Phase Flows in a Steel Ladle

机译:一种模拟钢包中三相流的新型多相方法

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Mixing phenomena in metallurgical steel ladles by bottom gas injection involves three phases namely, liquid molten steel, liquid slag and gaseous argon. In order to numerically solve this three-phase fluid flow system, a new approach is proposed which considers the physical nature of the gas being a dispersed phase in the liquid, while the two liquids namely, molten steel and slag are continuous phases initially separated by a sharp interface. The model was developed with the combination of two algorithms namely, IPSA (inter phase slip algorithm) where the gas bubbles are given a Eulerian approach since are considered as an interpenetrating phase in the two liquids and VOF (volume of fluid) in which the liquid is divided into two separate liquids but depending on the physical properties of each liquid they are assigned a mass fraction of each liquid. This implies that both the liquid phases (steel and slag) and the gas phase (argon) were solved for the mass balance. The Navier–Stokes conservation equations and the gas-phase turbulence in the liquid phases were solved in combination with the standard k - ε turbulence model. The mathematical model was successfully validated against flow patterns obtained experimentally using particle image velocimetry (PIV) and by the calculation of the area of the slag eye formed in a 1/17th water–oil physical model. The model was applied to an industrial ladle to describe in detail the turbulent flow structure of the multiphase system.
机译:通过底部气体注入在冶金钢包中的混合现象涉及三个阶段,即液态钢水,液态渣和气态氩。为了从数值上解决该三相流体流动系统,提出了一种新方法,该方法考虑了气体的物理性质是在液体中的分散相,而钢水和矿渣这两种液体是连续相,最初被清晰的界面。该模型是通过结合两种算法开发的,即IPSA(相间滑动算法),其中气泡被认为是两种液体之间的互穿相,而VOF(液体体积)被认为是一种欧拉方法,将其分为两种不同的液体,但根据每种液体的物理性质,将它们分配为每种液体的质量分数。这意味着液相(钢和炉渣)和气相(氩气)均已解决以达到质量平衡。结合标准k-ε湍流模型,解决了Navier-Stokes守恒方程和液相中的气相湍流。通过使用粒子图像测速仪(PIV)并通过计算在1/17水油物理模型中形成的渣眼面积,成功地针对通过实验获得的流动模式对数学模型进行了验证。该模型被应用于工业钢包,以详细描述多相系统的湍流结构。

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