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Comparison of separation performance between single and two inlets hydrocyclones

机译:单入口和两个入口水力旋流器的分离性能比较

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Experimental studies have been carried out about the particle separation performance of single and two inlets hydrocyclones. Two types of hydrocyclones having the same total inlet holes area were examined. Hydrocyclone A (with single inlet hole) and hydrocyclone B (with two inlet holes) were used. An aqueous slurry of silica particles (0.5 wt% with a median diameter of about 2.1 μm) was tested using a 20 mm-diameter hydrocyclone with a 15% underflow ratio. It was found that the optimum flow rate which gives the highest separation performance of the hydrocyclone B is the same flow rate for each inlet Usage of the hydrocyclone B indicated smaller cut size and higher particle collection efficiency compared to that of the hydrocyclone A, under the same flow rate or same pressure drop conditions. The time of flight model was used to predict the 50% cut size diameter for single inlet hydrocyclone, and the model was modified to the two inlets hydrocyclone. It was found that the calculated results agree well with the experimental results for the hydrocyclone A, and for the hydrocyclone B under the low total flow rates conditions.
机译:关于单入口和两个入口水力旋流器的颗粒分离性能已经进行了实验研究。检查了两种具有相同总入口孔面积的水力旋流器。使用了水力旋流器A(带有单个入口孔)和水力旋流器B(带有两个入口孔)。使用具有15%下溢率的20mm直径的水力旋流器测试二氧化硅颗粒的含水浆料(0.5wt%,中值直径为约2.1μm)。结果发现,在每个进水口处,水力旋流器B的分离性能最高的最佳流速是相同的。在水力旋流器A的作用下,与水力旋流器A相比,水力旋流器B的切割尺寸较小,颗粒收集效率更高。相同的流量或相同的压降条件。飞行时间模型用于预测单入口水力旋流器的切割尺寸直径的50%,并将模型修改为两个入口水力旋流器。发现在低总流量条件下,水力旋流器A和水力旋流器B的计算结果与实验结果吻合良好。

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