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Original Articles

Experimental Study of Particle Collection by Small Cyclones

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Pages 1003-1015 | Received 08 Feb 1989, Accepted 08 May 1989, Published online: 08 Jun 2007

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Read on this site (16)

Jianping Zhang, Zhuo Chen, Qinggang Si, Pengju Zhang, Dawen Zhao, Zhiwei Zhang & Baodong Ren. (2024) Dust-removal performance of an improved spherical cylindrical ECP under magnetic confinement effect. Particulate Science and Technology 42:3, pages 460-468.
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Bingtao Zhao, Dongshen Wang, Yaxin Su & Hua-Lin Wang. (2020) Gas-Particle Cyclonic Separation Dynamics: Modeling and Characterization. Separation & Purification Reviews 49:2, pages 112-142.
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Xiaopeng Shang, Bing Feng Ng, Man Pun Wan, Jinwen Xiong & Shmitha Arikrishnan. (2018) Numerical investigation of spatially nonhomogeneous acoustic agglomeration using sectional algorithm. Aerosol Science and Technology 52:8, pages 872-885.
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Yan Yang, Shuli Wang & Chuang Wen. (2017) Gas-liquid two-phase flows in double inlet cyclones for natural gas separation. Cogent Engineering 4:1.
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Ferit Ficici & Vedat Ari. (2013) Optimization of the Preheater Cyclone Separators Used in the Cement Industry. International Journal of Green Energy 10:1, pages 12-27.
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Bingtao Zhao. (2010) Development of a Dimensionless Logistic Model for Predicting Cyclone Separation Efficiency. Aerosol Science and Technology 44:12, pages 1105-1112.
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R. B. Xiang & K. W. Lee. (2008) Effects of Exit Tube Diameter on the Flow Field in Cyclones. Particulate Science and Technology 26:5, pages 467-481.
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ChangH. Jung & Hyun-Seol Park. (2008) A Simplified Model to Estimate the Size Distribution Change of Polydispersed Aerosol for Cyclone Separator. Particulate Science and Technology 26:4, pages 337-348.
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Irfan Karagoz & Atakan Avci. (2005) Modelling of the Pressure Drop in Tangential Inlet Cyclone Separators. Aerosol Science and Technology 39:9, pages 857-865.
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Jolius Gimbun, T.G. Chuah, Thomas S.Y. Choong & A. Fakhru'l-Razi. (2005) A CFD Study on the Prediction of Cyclone Collection Efficiency. International Journal for Computational Methods in Engineering Science and Mechanics 6:3, pages 161-168.
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K.S. Lim, H.S. Kim, Y.O. Park & K.W. Lee. (2005) Particle Collection and Concentration for Cyclone Concentrators. Aerosol Science and Technology 39:2, pages 113-123.
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R.B. Xiang & K.W. Lee. (2001) Exploratory Study on Cyclones of Modified Designs. Particulate Science and Technology 19:4, pages 327-338.
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K.S. Lim, K. W. Lee & M. R. Kuhlman. (2001) An Experimental Study of the Performance Factors Affecting Particle Collection Efficiency of the Electrocyclone. Aerosol Science and Technology 35:6, pages 969-977.
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G. Lidén & A. Gudmundsson. (1996) Optimization of a Cyclone to the 1993 International Sampling Convention for Respirable Dust. Applied Occupational and Environmental Hygiene 11:12, pages 1398-1408.
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AndreaM. Sass-Kortsak, CindyR. O'brien, PaulR. Bozek & JamesT. Purdham. (1993) Comparison of the 10-mm Nylon Cyclone, Horizontal Elutriator, and Aluminum Cyclone for Silica and Wood Dust Measurements. Applied Occupational and Environmental Hygiene 8:1, pages 31-37.
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