[1] |
Theologos K N, Nikou I D, Lygeros A I, et al. Simulation and design of fluid catalytic-cracking riser-type reactors[J]. AIChE Journal, 1997, 43(2):486-494.
|
[2] |
Gao J, Xu C, Lin S, et al. Advanced model for turbulent gas-solid flow and reaction in FCC riser reactors [J]. AIChE Journal, 1999, 45(5):1095-1113.
|
[3] |
Das A K, Baudrez E, Marin G B, et al. Three-dimensional simulation of a fluid catalytic cracking riser reactor[J]. Industrial & Engineering Chemistry Research, 2003, 42(12):2602-2617.
|
[4] |
Nayak S V, Joshi S L, Ranade V V. Modeling of vaporization and cracking of liquid oil injected in a gas-solid riser[J]. Chemical Engineering Science, 2005, 60(22):6049-6066.
|
[5] |
Gupta A, Subba Rao D. Model for the performance of a fluid catalytic cracking (FCC) riser reactor: effect of feed atomization [J]. Chemical Engineering Science. 2001, 56(15):4489-4503.
|
[6] |
Pareek V K, Adesina A A, Srivastava A, et al. Modeling of a non-isothermal FCC riser [J]. Chemical Engineering Journal, 2003, 92(1/2/3): 101-109.
|
[7] |
Souza J A, Vargas J V C, Von Meien O F, et al. A two-dimensional model for simulation, control, and optimization of FCC risers [J]. AIChE Journal, 2006, 52(5):1895-1905.
|
[8] |
Kumar V, Reddy A S K. Why FCC riser is taller than model predictions?[J]. AIChE Journal, 2011, 57(10): 2917-2920.
|
[9] |
Ouyang S, Li X G, Potter O E. Circulating fluidized bed as a catalytic reactor: experimental study [J]. AIChE Journal, 1995, 41(6): 1534-1542.
|
[10] |
Breault R W. A review of gas-solid dispersion and mass transfer coefficient correlations in circulating fluidized beds [J]. Powder Technology, 2006, 163(1): 9-17.
|
[11] |
Breault R W, Guenther C P. Mass transfer in the core-annular and fast fluidization flow regimes of a CFB [J]. Powder Technology, 2009, 190(3): 385-389.
|
[12] |
Breault R W, Guenther C. Mass transfer coefficient prediction method for CFD modeling of riser reactors [J]. Powder Technology, 2010, 203(1): 33-39.
|
[13] |
Chalermsinsuwan B, Piumsomboon P, Gidaspow D. Kinetic theory based computation of PSRI riser (Ⅰ): Estimate of mass transfer coefficient [J]. Chemical Engineering Science, 2009, 64(6): 1195-1211.
|
[14] |
Chalermsinsuwan B, Piumsomboon P, Gidaspow D. Kinetic theory based computation of PSRI riser (Ⅱ): Computation of mass transfer coefficient with chemical reaction [J]. Chemical Engineering Science, 2009, 64(6): 1212-1222.
|
[15] |
Prajongkan Y, Piumsomboon P, Chalermsinsuwan B. Computation of mass transfer coefficient and Sherwood number in circulating fluidized bed downer using computational fluid dynamics simulation [J]. Chemical Engineering and Processing: Process Intensification, 2012, 59: 22-35.
|
[16] |
Subbarao D. A cluster model for mass transfer in risers [J]. Sci. Techno., 2008, 3: 131.
|
[17] |
Li Hongzhong, Xia Yashen, Tung Y, Mooson Kwauk. Micro-visualisation of two-phase flow structure in a fast-fluidised bed by micrograph transducer//Basu P, Horio M, Hasatani M. Circulating Fluidized Bed Technology Ⅳ[M]. Pergamon Press, 1990: 183-188.
|
[18] |
Davidson J F. Circulating fluidized bed hydrodynamics [J]. Powder Technology, 2000, 113: 249.
|
[19] |
Rhodes M, Mineo H, Hirama T. Particle motion at the wall of a circulating fluidized bed [J]. Powder Technology, 1992, 70: 207-214.
|
[20] |
Lim K S, Zhou J, Finley C, et al. Cluster descending velocity at the wall of circulating fluidized bed risers//5th International Conference on Circulating Fluidized Beds[C]. 1996.
|
[21] |
Guenther C, Breault R. Wavelet analysis to characterize cluster dynamics in a circulating fluidized bed [J]. Powder Technology, 2007, 173(3): 163-173.
|
[22] |
Horio M, Kuroki H. 3-Dimensional flow visualization of dilutely dispersed solids in bubbling and circulating fluidized beds [J]. Chemical Engineering Science, 1994, 49(15): 2413-2421.
|
[23] |
O'brien T J, Syamlal M. Particle cluster effects in the numerical simulation of a circulating fluidized bed//4th International CFB Conference[C]. 1993.
|
[24] |
Mostoufi N, Chaouki J. Flow structure of the solids in gas-solid fluidized beds [J]. Chemical Engineering Science, 2004, 59: 4217-4227.
|
[25] |
Xia Yashen(夏亚沈), Li Hongzhong(李洪钟). Estimation of the particle agglomeration size in fast fluidized bed [J]. Chemical Engineering and Metallurgy(化工冶金), 1993, 14(3): 245-251.
|
[26] |
Qi Xiaobao(漆小波). Experimental study on the particle concentration of clusters in circulating fluidized bed riser [J]. Journal of Sichuan University: Engineering Sciences(四川大学学报:工程科学版), 2005, (5): 46-50.
|
[27] |
Pitault I, Nevicato D, Forissier M, et al. Kinetic model based on a molecular description for catalytic cracking of vacuum gas oil [J]. Chemical Engineering Science, 1994, 49(24, Part A):4249-4262.
|
[28] |
Wu C, Cheng Y, Jin Y. Understanding riser and downer based fluid catalytic cracking processes by a comprehensive two-dimensional reactor model [J]. Industrial & Engineering Chemistry Research, 2009, 48(1): 12-26.
|