[1] K.B. Mathur, N. Epstein, Spouted Beds, Academic Press, New York, 1974.[2] D.A. Bertuol, C. Toniasso, B.M. Jiménez, L. Meili, G.L. Dotto, E.H. Tanabe, M.L. Aguiar, Application of spouted bed elutriation in the recycling of lithium ion batteries, J. Power Sources 275 (2015) 627-632.[3] J. Berghel, R. Renström, Superheated steam drying of sawdust in continuous feed spouted beds — a design perspective, Biomass Bioenergy 71 (2014) 228-234.[4] J. Alvarez, G. Lopez,M. Amutio, J. Bilbao,M. Olazar, Bio-oil production fromrice husk fast pyrolysis in a conical spouted bed reactor, Fuel 128 (2014) 162-169.[5] M.J.S. José, S. Alvarez, I. García, F.J. Peñas, Conical spouted bed combustor for clean valorization of sludge wastes from paper industry to generate energy, Chem. Eng. Res. Des. 92 (2014) 672-678.[6] S.L. Sun, X.J. BAO,W.S.WEI, Gas residence time distributions in a spouted bed, Chin. J. Chem. Eng. 13 (2005) 291-296.[7] X.M. Chen, J. Dai, Z.H. Luo, CFD modeling using heterogeneous reaction kinetics for catalytic dehydrogenation syngas reactions in a fixed-bed reactor, Particuology 11 (2013) 703-714.[8] A. Shamiri, M. Hussain, F. Mjalli, N. Mostoufi, S. Hajimolana, Dynamics and predictive control of gas phase propylene polymerization in fluidized bed reactors, Chin. J. Chem. Eng. 21 (2013) 1015-1029.[9] X.J. Bao,W. Du, J. Xu, An overviewon the recent advances in computational fluid dynamics simulation of spouted beds, Can. J. Chem. Eng. 91 (2013) 1822-1836.[10] D. Gidaspow, Multiphase Flow and Fluidization: Continuum and Kinetic Theory Description, Academic Press, San Diego, 1994.[11] H.L. Lu, Y.R. He, W.T. Liu, J.M. Ding, D. Gidaspow, J. Bouillard, Computer simulations of gas-solid flow in spouted beds using kinetic-frictional stress model of granular flow, Chem. Eng. Sci. 59 (2004) 865-878.[12] W.Q. Zhong, M.Y. Zhang, B.S. Jin, Z.L. Yuan, Flow behaviors of a large spout-fluid bed at high pressure and temperature by 3D simulation with kinetic theory of granular flow, Powder Technol. 175 (2007) 90-103.[13] W.Q. Zhong, M.Y. Zhang, B.S. Jin, Z.L. Yuan, Three-dimensional simulation of gas/ solid flow in spout-fluid beds with kinetic theory of granular flow, Chin. J. Chem. Eng. 14 (2006) 611-617.[14] Z.H. Wu, A.S.Mujumdar, CFD modeling of the gas-particle flow behavior in spouted beds, Powder Technol. 183 (2008) 260-272.[15] W. Du, X.J. Bao, J. Xu, W.S. Wei, Computational fluid dynamics (CFD) modeling of spouted bed: assessment of drag coefficient correlations, Chem. Eng. Sci. 61 (2006) 1401-1420.[16] R. Bettega, A.R.F. De Almeida, R.G. Correa, F.J. Teixeira, CFD modeling of a semicylindrical spouted bed: numerical simulation and experimental verification, Can. J. Chem. Eng. 87 (2009) 177-184.[17] C.R. Duarte,M. Olazar, V.V. Murata,M.A.S. Barrozo, Numerical simulation and experimental study of fluid-particle flows in a spouted bed, Powder Technol. 188 (2009) 195-205.[18] O. Gryczka, S. Heinrich, N.G. Deen, S.A.M. Van, J.A.M. Kuipers, M. Jacob, L. Morl, Characterization and CFD-modeling of the hydrodynamics of a prismatic spouted bed apparatus, Chem. Eng. Sci. 64 (2009) 3352-3375.[19] S.Y. Wang, X. Li, H.L. Lu, L. Yu, D. Sun, Y.R. He, Y.L. Ding, Numerical simulations of flow behavior of gas and particles in spouted beds using frictional-kinetic stresses model, Powder Technol. 196 (2009) 184-193.[20] S.Y.Wang, Y.J. Liu, Y.K. Liu, L.X.Wei, Q. Dong, C.S.Wang, Simulations of flow behavior of gas and particles in spouted bed with a porous draft tube, Powder Technol. 199 (2010) 238-247.[21] S.Y.Wang, Z.H. Hao, D. Sun, Y.K. Liu, L.X.Wei, S. Wang, Hydrodynamic simulations of gas-solid spouted bed with a draft tube, Chem. Eng. Sci. 65 (2010) 1322-1333.[22] Z.G. Wang, H.T. Bi, C.J. Lim, CFD simulation of spouted beds using a pressure source term, Ind. Eng. Chem. Res. 49 (2010) 5053-5060.[23] S. Simon, A. Andreas, P. Stefan, A comprehensive frictional-kinetic model for gas- particle flows: analysis of fluidized and moving bed regimes, Chem. Eng. Sci. 80 (2012) 279-292.[24] L. Reh, Fluid bed processing, Chem. Eng. Prog. 67 (1971) 58-67.[25] S.B. Savage, Analyses of slow high-concentration flows of granular materials, J. Fluid Mech. 377 (1998) 1-26.[26] P.C. Johnson, R. Jackson, Frictional-collisional constitutive relations for granularmaterials with application to plane shearing, J. Fluid Mech. 176 (1987) 67-93.[27] G. Schaeffer, Instability in the evolution equations describing incompressible granular flow, J. Differ. Equ. 66 (1987) 19-50.[28] S. Ergun, Fluid flow through packed columns, Chem. Eng. Process. 48 (1952) 89-94.[29] N. Yang,W.Wang,W. Ge, J.H. Li, CFD simulation of concurrent-up gas-solid flow in circulating fluidized bedswith structure-dependent drag coefficient, Chem. Eng. J. 15 (2003) 71-80.[30] C.Y. Wen, Y.H. Yu, Mechanics of fluidization, A. I. Ch. E. Ser. 62 (1966) 100-111.[31] Ansys-Fluent Inc., Fluent Users Manual Version 14.0, 2012. (New Hampshire, USA).[32] J.R. Grace, Contacting modes and behavior classification of gas-solid and other twophase suspensions, Can. J. Chem. Eng. 64 (1986) 353-363.[33] Y.L. He, C.J. Lim, J.R. Grace, J.X. Zhu, Measurements of voidage profiles in spouted beds, Can. J. Chem. Eng. 72 (1994) 229-234. |