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Mathematical Modeling and Computer Simulation of Molten Aluminum Purification by Flotation in Stirred Reactor

机译:搅拌反应釜浮选精炼铝的数学建模和计算机模拟

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摘要

The removal of inclusions by flotation in mechanically agitated vessels is widely used in liquid aluminum treatments. Originating from different sources (oxide skins, refractory, or recycling wastes), inclusions may have disastrous repercussions such as deterioration of the physical properties of the cast products or difficulties during forging processes. With the aim of both a better understanding of the physical processes acting during flotation and the optimization of the refining process, a mathematical modeling of the behavior of the population of inclusions has been set up. Transport phenomena, agglomeration of inclusions, and flotation are considered here. The model combines population balance with convective transport of the inclusions, in order to calculate the time evolution of the inclusion size distribution. An operator-splitting technique is employed to solve the coupled population balance equation (PBE) and the transport equation. The transport equation is solved using a finite volume technique associated with a total variation diminishing scheme, whereas the PBE resolution relies on the fixed pivot technique developed by Kumar and Ramkrishna. A laboratory-scale flotation vessel is modeled and the results of a two-dimensional (2-D) simulation are presented.
机译:在机械搅拌的容器中通过浮选去除夹杂物已广泛用于液态铝处理中。夹杂物来自不同的来源(氧化皮,耐火材料或回收废料),可能会造成灾难性的后果,例如铸件物理性能的下降或锻造过程中的困难。为了更好地了解浮选过程中的物理过程并优化精炼过程,建立了夹杂物行为的数学模型。这里考虑了运输现象,夹杂物的结块和浮选。该模型将种群平衡与对流夹杂物的对流传输相结合,以计算夹杂物大小分布的时间演化。使用算子分解技术来求解耦合的种群平衡方程(PBE)和运输方程。使用与总变化量减小方案关联的有限体积技术来求解运输方程,而PBE分辨率依赖于Kumar和Ramkrishna开发的固定枢轴技术。对实验室规模的浮选船进行了建模,并给出了二维(2-D)模拟的结果。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2009年第3期|363-375|共13页
  • 作者单位

    IJL - SI2M - UMR 7198 Ecole des Mines de Nancy Parc de Saurupt 54042 Nancy France;

    IJL - SI2M - UMR 7198 Ecole des Mines de Nancy Parc de Saurupt 54042 Nancy France;

    ALCAN Centre de Recherches de Voreppe 38341 Voreppe Cedex France;

    IJL - SI2M - UMR 7198 Ecole des Mines de Nancy Parc de Saurupt 54042 Nancy France;

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