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Numerical and physical modelling of aluminium barbotage process

机译:铝驳船过程的数值和物理建模

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摘要

Today the aluminium refining process, especially barbotage is one of the most essential necessary technological stages in obtaining aluminium. It gives possibility to remove undesirable hydrogen and non-metallic and metallic inclusions from aluminium. Phenomena that take place during the barbotage process are rather complicated, but the knowledge about their character enables to optimize and control this process. Modelling research is used to outline these phenomena. Physical and mathematical modelling can be applied in carrying out aluminium barbotage process. Mathematical modelling uses numerical methods to solve the system of differential equations. The paper presents results of physical and numerical modelling of the refining process taking place in the continuous reactor URC-7000. Physical modelling was carried out for the different flow rate of refining gas (argon). It was in the range between 2 to 25 dm3/min. Numerical calculation was done using commercial program in Computational Fluid Dynamics (CFD). Model Volume of Fluid (VOF) was applied in modelling the multiphase flow. Obtained results were compared in order to verify the numerical settings and correctness of the choice.
机译:如今,铝的精炼工艺(特别是重汽工艺)已成为获取铝的最重要的必要技术步骤之一。它提供了从铝中去除不良氢以及非金属和金属夹杂物的可能性。在讨价还价过程中发生的现象相当复杂,但是有关其性状的知识可以优化和控制该过程。建模研究用于概述这些现象。物理建模和数学建模可以应用于进行铝制驳船过程。数学建模使用数值方法来求解微分方程组。本文介绍了在连续反应器URC-7000中进行的精炼过程的物理和数值模拟结果。针对精炼气体(氩气)的不同流速进行了物理建模。其范围为2至25 dm3 / min。数值计算是使用计算流体力学(CFD)中的商业程序进行的。将流体模型体积(VOF)应用于多相流建模。比较获得的结果,以验证数字设置和选择的正确性。

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