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Numerical study on the relationship between high sharpness and configurations of the vortex finder of a hydrocyclone by central composite design

机译:基于中心复合设计的水力旋流器高清晰度与旋涡仪构型关系的数值研究

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High separation sharpness of hydrocyclones has attracted much interest with its classification becoming increasingly popular. It is well known that the separation process in hydrocyclones is always accompanied by low sharpness. Therefore, the coarse particles escape by the overflow, and the fine particles are collected through the underflow. This paper presents a numerical study of the effects of the configurations of vortex finder on the separation sharpness of a hydrocyclone. A regression model for the effect of the configurations of vortex finder on the separation sharpness was developed by the application of central composite design. The results show that among the configurations of vortex finder, the effects of the parameters on the separation sharpness follow the order: the diameter (highest) > vortex finder length > the thickness (lowest). A high separation sharpness can be achieved by an appropriate range of the diameter and vortex finder length. According to the fitted regression model, the predicted results of separation sharpness is found to be in satisfactory agreement with the observed data, and an optimal configuration is proposed for the vortex finder to achieve a higher separation sharpness. Based on this result, titanium was recycled from acid leaching tailings using a hydrocyclone with a high sharpness during titanium dioxide production through the optimization of vortex finder. (C) 2014 Elsevier B.V. All rights reserved.
机译:水力旋流器的高分离清晰度引起了人们的极大兴趣,其分类变得越来越流行。众所周知,水力旋流器的分离过程总是伴随着低清晰度。因此,粗颗粒通过溢流逸出,细颗粒通过底流收集。本文提供了一个数值研究涡流探测器的配置对水力旋流器分离锐度的影响。通过中心复合设计的应用,建立了涡流探测器构型对分离锐度影响的回归模型。结果表明,在涡流探测器的配置中,参数对分离锐度的影响遵循以下顺序:直径(最高)>涡流探测器长度>厚度(最低)。通过适当范围的直径和涡旋仪长度,可以实现高分离清晰度。根据拟合的回归模型,发现分离锐度的预测结果与观察到的数据令人满意,并且为涡流探测器提出了获得更高分离锐度的最佳配置。基于此结果,通过优化涡旋仪,在二氧化钛生产过程中使用高清晰度的水力旋流器从酸浸尾矿中回收了钛。 (C)2014 Elsevier B.V.保留所有权利。

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