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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 33, 2006 - Issue 2
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Articles

Modelling of void initiation and breaking phenomena in a packed bed

Pages 101-110 | Published online: 18 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Y. L. Li, S. S. Cheng, P. Zhang & J. Guo. (2016) Development of 3-D mathematical model of raceway size in blast furnace. Ironmaking & Steelmaking 43:4, pages 308-315.
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V. Singh & G. S. Gupta. (2008) Behavior of Granular Material in Packed Bed Under Influence of Gas Injected Through a Nozzle. Particulate Science and Technology 26:3, pages 214-221.
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Articles from other publishers (5)

Xiang Li, Keliang Pang, Cai Liang, Daoyin Liu, Jiliang Ma & Xiaoping Chen. (2023) Particle attrition-breakage model for CFD-DEM simulation based on FRM and WPM: Application in blast furnace raceway. Powder Technology 414, pages 118105.
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Guangchao Wei, Hao Zhang, Xizhong An & Qinfu Hou. (2022) Effect of particle shape on raceway size and pressure drop in a blast furnace: Experimental, numerical and theoretical analyses. Advanced Powder Technology 33:2, pages 103455.
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Jing Guo, Shusen Cheng, Hongbo Zhao, Hongwei Pan, Pengyu Du & Zhaojie Teng. (2013) A Mechanism Model for Raceway Formation and Variation in a Blast Furnace. Metallurgical and Materials Transactions B 44:3, pages 487-494.
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Liangying Wen & Xiaotao T. Bi. (2011) Simulation of cavity formation hysteresis in the presence of granular compaction. Chemical Engineering Science 66:4, pages 674-681.
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Liangying Wen & Xiaotao T. Bi. (2011) Cavity formation and breakup forces in conical spouted beds. Powder Technology 206:3, pages 227-232.
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