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Original Articles

Effect of Overflow Depth of a Hydrocyclone on Particle Separation

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Pages 916-921 | Published online: 07 Jul 2010

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Read on this site (5)

Feng Li, Peikun Liu, Xinghua Yang, Yuekan Zhang, Xiaoyu Li, Lanyue Jiang, Hui Wang & Wenxiu Fu. (2023) Enhancement on the separation precision of fine particles in a novel hydrocyclone with the vorticose involute-line diversion inlet head. International Journal of Coal Preparation and Utilization 43:1, pages 169-189.
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Hongyan Liu, Qing Yin, Qingshan Huang, Shujun Geng, Taobo He & Aqiang Chen. (2022) Experimental investigation on interaction of vortex finder diameter and length in a small hydrocyclone for solid-liquid separation. Separation Science and Technology 57:5, pages 733-748.
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Long Ni, Jinyi Tian, Tao Song, Yongson Jong & Jianing Zhao. (2019) Optimizing Geometric Parameters in Hydrocyclones for Enhanced Separations: A Review and Perspective. Separation & Purification Reviews 48:1, pages 30-51.
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TarekJ. Jamaleddine & MadhumitaB. Ray. (2011) The Drying of Sludge in a Cyclone Dryer Using Computational Fluid Dynamics. Drying Technology 29:12, pages 1365-1377.
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Articles from other publishers (16)

Wenjie Lv, Qi Wei, Yujie Ji, Bing Liu, Hongpeng Ma, Yuan Huang, Haitao Huang, Hualin Wang & Pengbo Fu. (2023) Enhancement of the classification and recovery process of fine mineral particles via a newly developed volute feed hydrocyclone. Environmental Science and Pollution Research 30:36, pages 86047-86059.
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Zhipeng Xiong, Ji Xu & Chunjiang Liu. (2023) Interaction effects of inlet velocity and apex diameter on the separation performance of two-stage cone hydrocyclones. Powder Technology 422, pages 118446.
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Yanxia Xu, Junxiang Ye, Xingfu Song & Jianguo Yu. (2022) Classification of Ultrafine Particles Using a Novel 3D-Printed Hydrocyclone with an Arc Inlet: Experiment and CFD Modeling. ACS Omega 8:1, pages 998-1016.
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Feng Li, Wenxiu Fu, Peikun Liu, Xinghua Yang, Yuekan Zhang, Xiaoyu Li, Yulong Zhang, Lanyue Jiang & Hui Wang. (2022) Investigation of optimal design and separation performance of the hydrocyclone with a vorticose involute-line diversion feeding body. Powder Technology 405, pages 117523.
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Feng Li, Peikun Liu, Xinghua Yang, Yuekan Zhang, Xiaoyu Li, Lanyue Jiang, Hui Wang & Wenxiu Fu. (2022) Effects of apex/vortex ratio on the isobaric surface and particle separation performance of a hydrocyclone. Powder Technology 395, pages 491-500.
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Feng Li, Peikun Liu, Xinghua Yang, Yuekan Zhang, Xiaoyu Li, Lanyue Jiang, Hui Wang & Wenxiu Fu. (2021) Numerical analysis on the effect of the length of arc-shaped vortex finder on the hydrocyclone’s flow field and separation performance. Minerals Engineering 172, pages 107172.
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Feng Li, Peikun Liu, Xinghua Yang, Yuekan Zhang, Lanyue Jiang & Hui Wang. (2021) Numerical analysis of the effect of solid rod on the flow field and separation performance of thick-walled overflow pipe hydrocyclone. Powder Technology 388, pages 261-273.
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Wenshan Guo, Huu Hao Ngo, Rao Y. Surampalli & Tian C. ZhangLong Ni, Jinyi Tian & Tao Song. 2021. Sustainable Resource Management, Volume I. Sustainable Resource Management, Volume I 663 697 .
Wang Lizong, Yu Nanhui, Fan Jijun, Zhang Yonglin, Pei Houchang & Zhang Yifan. (2020) Simulation of Separation of Rice Bran and Broken Rice in Top-suction Rice Mill with Annular Duct. Simulation of Separation of Rice Bran and Broken Rice in Top-suction Rice Mill with Annular Duct.
Tao Song, Yang Yao & Long Ni. (2020) Response surface method to study the effect of conical surface and vortex-finder lengths on de-foulant hydrocyclone with reflux ejector. Separation and Purification Technology 253, pages 117511.
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Jinyi Tian, Long Ni, Tao Song & Jianing Zhao. (2020) CFD simulation of hydrocyclone-separation performance influenced by reflux device and different vortex-finder lengths. Separation and Purification Technology 233, pages 116013.
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Jhao-Yi Lin & Rome-Ming Wu. (2019) Three Output Membrane Hydrocyclone: Classification and Filtration. Molecules 24:6, pages 1116.
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Li Ji, Jiang Chen, Shibo Kuang, Zheng Qi, Kaiwei Chu & Aibing Yu. (2019) Prediction of separation performance of hydrocyclones by a PC-based model. Separation and Purification Technology 211, pages 141-150.
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An-Lin Liu, Yan-Hong Zhang, Liang Ma, Yi-Mou Wang & Meng-Ya He. (2018) Effect of inlet particle arrangement on separating property of a cyclone separator. Korean Journal of Chemical Engineering 35:6, pages 1380-1387.
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M. Narasimha, M.S. Brennan & P.N. Holtham. (2012) CFD modeling of hydrocyclones: Prediction of particle size segregation. Minerals Engineering 39, pages 173-183.
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Yung Sheng Lai, Chun Wei Fu, Chuan Yi Pan & Rome Ming Wu. (2011) A Study on Hydrocyclone with Rotating Blades on Overflow Pipe Wall. Advanced Materials Research 343-344, pages 327-332.
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