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Experimental study of a hydrocyclone under cyclic flow conditions for fine particle separation

机译:水力旋流器在循环流动条件下细颗粒分离的实验研究

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摘要

The difficulty in separating fine particles is described in this paper.The basic separating principle of hydrocyclones and the cyclic experimental research facilities are also introduced.Based on a solid-liquid hydrocyclone used for separating fine particles,the effect of the cyclic flow conditions on hydrocyclone's performance is studied.Effects of the cyclic period ratio,cyclic fiowrate amplitude ratio,Reynolds number,gas liquid ratio,and the cyclical signal type on the hydrocyclone's fine particle separation performance,with emphasis on the relative overflow purifying rate,are all studied in detail.The results show that the separation efficiency of the hydrocyclone operating under cyclic flow conditions can be higher than that in steady conditions when the cyclic period ratio is about 0.68 and the cyclic fiowrate amplitude ratio is around 2%.The rectangular wave seems to be the best cyclic signal for enhancing the hydrocyclone's separation efficiency.
机译:介绍了分离细颗粒的难点。介绍了水力旋流器的基本分离原理和循环实验研究装置。在固液旋流器分离细颗粒的基础上,循环流动条件对旋液分离器的影响。详细研究了循环周期比,循环流速振幅比,雷诺数,气液比和循环信号类型对旋流器细颗粒分离性能的影响,重点是相对溢流净化率。结果表明,当循环周期比约为0.68,循环流速振幅比约为2%时,在循环流动条件下运行的水力旋流器的分离效率可以比在稳定条件下更高。增强水力旋流器分离效率的最佳循环信号。

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