[1] X.L. Zhu, C.H. Yang, C.Y. Li, Y.B. Liu, L. Wang, T. Li, Q. Geng, Comparative study of gas-solids flow patterns inside novel multi-regime riser and conventional riser, Chem. Eng. J. 215-216(2013) 188-201. [2] J.W. Chew, R. Hays, J.G. Findlay, T.M. Knowlton, S.B.R. Karri, R.A. Cocco, C.M. Hrenya, Reserve core-annular flow of Geldart Group B particles in risers, Powder Technol. 221(2012) 1-12. [3] X.H. Wang, S.Q. Gao, Y.H. Xu, J.S. Zhang, Gas-solids flow patterns in a novel dualloop FCC riser, Powder Technol. 152(2005) 90-99. [4] Kunii, O. Levenspiel, Fluidization Engineering, Butterworth-Heinemann, Massachusetts, 1991. [5] J.R. Grace, A.A. Avidan, T.M. Knowlton, Circulating Fluidized Beds, Blackie Academic & Professional, London; New York, 1997. [6] L.S. Fan, C. Zhu, Principles of Gas-Solid Flows, Cambridge University Press, New York, 1998. [7] W.C. Yang, Handbook of Fluidization and Fluid-Particle Systems, Marcel Dekker, 2003. [8] J. Yerushalmi, D.H. Turner, A.M. Squires, The fast fluidized bed, Ind. Eng. Chem. 15(1) (1976) 47-53. [9] J.M. Matsen, Mechanisms of choking and entrainment, Powder Technol. 32(1982) 21-33. [10] M. Horio, H. Kuroki, Three-dimensional flow visualization of dilutely dispersed solids in bubbling and circulating fluidized beds, Chem. Eng. Sci. 49(15) (1994) 2413-2421. [11] S.V. Manyele, J.H. Pärssinen, J.X. Zhu, Characterizing particle aggregates in a highdensity and high-flux CFB riser, Chem. Eng. J. 88(2002) 151-161. [12] F. Shaffer, B. Gopalan, R.W. Breault, R. Cocco, S.B.R. Karri, R. Hays, T. Knowlton, High speed imaging of particle flow fields in CFB risers, Powder Technol. 242(2013) 86-89. [13] R. Cocco, F. Shaffer, R. Hays, S.B.R. Karri, T. Knowlton, Particle clusters in and above fluidized beds, Powder Technol. 203(2010) 3-11. [14] A.T. Harris, J.F. Davidson, R.B. Thorpe, The prediction of particle cluster properties in the near wall region of a vertical riser, Powder Technol. 127(2002) 128-143. [15] D. Bai, E. Shibuya, Y. Masuda, K. Nishio, N. Nakagawa, K. Kato, Distinction between upward and downward flows in circulating fluidized beds, Powder Technol. 84(1995) 75-81. [16] X.H. Liu, S.Q. Gao, W.L. Song, J.H. Li, Effect of particle acceleration/deceleration on particle clustering behavior in dilute gas-solid flow, Chem. Eng. Sci. 61(2006) 7087-7095. [17] T. Brien, M. Syamlal, Particle cluster effects in the numerical simulation of a circulating fluidized bed, Preprint Volume for Circulating Fluidized Beds IV 1993, pp. 345-350. [18] X.T. Bi, J.X. Zhu, Y. Jin, Z.Q. Yu, Forms of Particle Aggregation in CFB, Proceedings of the Sixth Chinese Conference on Fluidization, Wuhan, China, 1993. [19] H.X. Shi, Q.H. Wang, L.H. Xu, Z.Y. Luo, K.F. Cen, Visualization of clusters in a circulating fluidized bed by means of particle-imaging velocimetry (PIV) technique, Proceedings of the 9th International Conference on Circulating Fluidized Beds, Hamburg, Germany 2008, pp. 1013-1019. [20] J. Xu, J. Zhu, Visualization of particle aggregation and effects of particle properties on cluster characteristics in a CFB riser, Chem. Eng. J. 168(2011) 376-389. [21] J. McMillan, F. Shaffer, B. Gopalan, J.W. Chew, C. Hrenya, R. Hays, S.B.R. Karri, R. Cocco, Particle cluster dynamics during fluidization, Chem. Eng. Sci. 100(2013) 39-51. [22] J.S. Yang, J. Zhu, Cluster identification using image processing, China Part. 23(2015) 16-24. [23] D.N. Mondal, S. Kallio, H. Saxén, Length scales of solid clusters in a two-dimensional circulating fluidized bed of Geldart B particles, Powder Technol. 269(2015) 207-218. [24] A. Cahyadi, A. Anantharaman, S.L. Yang, S.B.R. Karri, J.G. Findlay, R.A. Cocco, J.W. Chew, Review of cluster characteristics in circulating fluidized bed (CFB) risers, Chem. Eng. Sci. 158(2017) 70-95. [25] A. Anantharaman, A. Issangya, S.B.R. Karri, J. Findlay, C.M. Hrenya, R.A. Cocco, J.W. Chew, Annulus flow behavior of Geldart Group B particles in a pilot-scale, Powder Technol. 305(2017) 816-828. [26] C.W. Chan, J.P.K. Seville, D.J. Parker, J. Baeyens, Particle velocities and their residence time distribution in the riser of a CFB, Powder Technol. 203(2010) 187-197. [27] C. Guenther, R. Breault, Wavelet analysis to characterize cluster dynamics in a circulating fluidized bed, Powder Technol. 173(2007) 163-173. [28] L.C. Gómez, F.E. Milioli, Numerical study on the influence of various physical parameters over the gas-solid two-phase flow in the 2D riser of a circulating fluidized bed, Powder Technol. 132(2003) 216-225. [29] H.L. Lu, S.Y. Wang, Y.R. He, J.M. Ding, G.D. Liu, Z.H. Hao, Numerical simulation of flow behavior of particles and clusters in riser using two granular temperatures, Powder Technol. 182(2008) 282-293. [30] S.Y. Wang, Z.H. Shen, H.L. Lu, W.T. Liu, Y.L. Ding, Numerical predictions of flow behavior and cluster size of particles in riser with particle rotation model and cluster-based approach, Chem. Eng. Sci. 63(2008) 4116-4125. [31] A.K. Sharma, K. Tuzla, J. Matsen, J.C. Chen, Parametric effects of particle size and gas velocity on cluster characteristics in fast fluidized beds, Powder Technol. 111(2000) 114-122. [32] A. Kiani, R. Sotudeh-Gharebagh, N. Mostoufi, Cluster size distribution in the freeboard of gas-solid fluidized bed, Powder Technol. 246(2013) 1-6. [33] J. Xu, J. Zhu, A new method for the determination of cluster velocity and size in a circulating fluidized bed, Ind. Eng. Chem. Res. 51(2012) 2143-2151. |