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Tao Song
Tao Song
Harbin Institute of Technology
在 umn.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Optimizing geometric parameters in hydrocyclones for enhanced separations: a review and perspective
L Ni, J Tian, T Song, Y Jong, J Zhao
Separation & Purification Reviews 48 (1), 30-51, 2019
1282019
An overview of operating parameters and conditions in hydrocyclones for enhanced separations
J Tian, L Ni, T Song, J Olson, J Zhao
Separation and Purification Technology 206, 268-285, 2018
1282018
CFD simulation of hydrocyclone-separation performance influenced by reflux device and different vortex-finder lengths
J Tian, L Ni, T Song, J Zhao
Separation and Purification Technology 233, 116013, 2020
442020
Numerical study of foulant-water separation using hydrocyclones enhanced by reflux device: Effect of underflow pipe diameter
J Tian, L Ni, T Song, C Shen, Y Yao, J Zhao
Separation and Purification Technology 215, 10-24, 2019
372019
Experimental study on liquid flow fields in de-foulant hydrocyclones with reflux ejector using particle image velocimetry
T Song, J Tian, L Ni, C Shen, Y Yao
Separation and Purification Technology 240, 116555, 2020
192020
Experimental study on performance of a de-foulant hydrocyclone with different reflux devices for sewage source heat pump
T Song, J Tian, L Ni, C Shen, Y Yao
Applied Thermal Engineering 149, 354-365, 2019
162019
Numerical study of foulant-water separation using hydrocyclones enhanced by ejection device: Effect of ejection velocity
J Tian, L Ni, T Song, C Shen, J Zhao
Energy 163, 641-659, 2018
132018
Experimental study on enhanced separation of a novel de-foulant hydrocyclone with a reflux ejector
T Song, J Tian, L Ni, C Shen, Y Yao
Energy 163, 490-500, 2018
82018
Experimental study of de-foulant hydrocyclone performance with a conical surface
T Song, J Tian, L Ni, C Shen, Y Yao
Powder Technology 366, 283-292, 2020
72020
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