不同几何形状气举浮选柱水油分离的数学建模

D. Barros, J. G. O. Marinho, J. Soletti
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引用次数: 0

摘要

石油是世界上最重要的商品之一,它会产生一些对环境最有害的废物,如采出水。因此,研究能够处理废水的技术对于促进该废物的处理和降低该部门的成本非常重要。在处理废水的方法中,浮选是物理分离操作中使用的主要方法之一。该技术的效率对内部水动力流动有很大的影响。基于动量方程和连续性平衡方程,建立了气举浮选柱油水分离流体动力学的数学模型。为了简化所使用的建模,我们只考虑阻力作为这种现象中最相关的界面力。采用Ansys CFX 13.0软件对数据进行评价。创建了三个柱,并将所有数据提交到含有1000ppm油的模拟流出物中。通过对三列效率选择的评价和对逆流设计的观察,得出84.72%为最佳结果。该结果可以与柱模型相关联,该模型允许更好的相接触,作为再循环区域的理想湍流。尽管提出的模型进行了简化,但可以观察到模拟结果与文献中提出的结果之间存在良好的关联。
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MATHEMATICAL MODELING OF AN AIRLIFT FLOTATION COLUMN WITH DIFFERENT GEOMETRIES FOR WATER AND OIL SEPARATION
Petroleum is one of the top commodities in the world, which produces some of the most environmentally hazardous wastes, such as produced water. Thus, research on technologies capable of processing wastewater are important for promoting the treatment of this waste and reducing costs in the segment. Among the processes used to treat wastewater, flotation is one of the leading methods used in physical separation operations. The efficiency of this technique has a high influence on internal hydrodynamic flows. This paper proposes a mathematical modeling to fluid dynamics of oil-water separation in an airlift flotation column based on momentum and continuity balance equations. To simplify the modeling used, we considered only the drag force as the most relevant interfacial force in this phenomenon. The software Ansys CFX 13.0 was used to evaluate the data. Three columns were created, and all data were submitted to a simulated effluent, containing 1000 ppm of oil. By evaluating efficiency selection in three columns and observing the countercurrent design, we found 84.72% as the best result achieved. This result can be associated with a column model that allows better phase contact as an ideal turbulence in the recirculation zone. Despite the simplifications in the proposed model, it is possible to observe a good association between the results obtained in the simulations and the ones presented in the literature.
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