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[1] H. Zhou, Z. G. Luo, T. Zhang, Y. You, Z. S. Zou. DEM Study of Blockage Behaviour of Cohesive Fine Particles in an Orifice Consists of Large Particles, The First International Workshop on Computational Particle Technology and Multiphase Processes[C], 2016, Suzhou, China, P125..
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[2] H. F. Li, H. Zhou, T. Zhang, Y. You, Z. S. Zou, W. R. Xu. Influence of Screw Design on Burden Descending Velocity and Particle Segregation in COREX Shaft Furnace, J. Iron Steel Res. Int., 2016, 23(6): 516-524..
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[3] H. F. Li, H. Zhou, Z. G. Luo, T. Zhang, Y. You, Z. S. Zou. Three Dimensional DEM Simulation of the Effect of Bottom Structure on Solid Flow in COREX Shaft Furnace, Can. Metall. Quart., 2016, 55(1): 112-123..
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[4] Z. G. Luo, H. Zhou, T. Zhang, Y. You, Z. S. Zou, H. F. Li. DEM Simulation of Solid Flow Including Asymmetric Phenomena in COREX Shaft Furnace, J. Iron Steel Res. Int., 2015, 22(12): 1098-1106..
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[5] H. Zhou, Z. G. Luo, T. Zhang, Y. You, Z. S. Zou. Analyses of Solid Flow in COREX Shaft Furnace with AGD by Discrete Element Method, Ironmaking Steelmaking, 2015, 42(10): 774-784..
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[6] H. Zhou, Z. S. Zou, Z. G. Luo, T. Zhang, Y. You, H. F. Li. Analyses of solid flow in latest design COREX shaft furnace by physical simulation, Ironmaking Steelmaking, 2015, 42(3): 209-216..
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[7] H. Zhou, Z. G. Luo, T. Zhang, Y. You, Z. S. Zou. Influence of rolling friction coefficient on inter-particle percolation in a packed bed by discrete element method, Archives of Metallurgy and Materials, 2016, 61(4): 1795-1804..
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[8] H. Zhou, Z. G. Luo, Z. S. Zou, T. Zhang, Y. You. Experimental Study on Burden Descending Behavior in COREX Shaft Furnace with AGD Beams, Steel Research International, 2015, 86(9): 1073-1081..
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[9] H. Zhou, Z. G. Luo, T. Zhang, Y. You, Z. S. Zou, Y. S. Shen. DEM Study of Solid Flow in COREX Shaft Furnace with Areal Gas Distribution Beams, ISIJ International, 2016, 56(2): 245-254..
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[10] Z. G. Luo, H. Zhou, T. Zhang, Y. You, Z. S. Zou, Y. S. Shen. DEM Study of Blockage Behaviour of Cohesive Fine Particles in a Packed Structure of Large Particles, Powder Technology, 2016, DOI: 10.1016/j.powtec.2016.08.053..