[1] |
郭慕孙, 李洪钟. 流态化手册[M]. 北京:化学工业出版社, 2007. KWAUK M, LI H Z. Handbook of Fluidization[M]. Beijing:Chemical Industry Press, 2007.
|
[2] |
金涌, 祝京旭, 俞芷青. 流态化工程原理[M]. 北京:清华大学出版社, 2001. JIN Y, ZHU J X, YU Z Q. Fluidization Engineering Principles[M]. Beijing:Tsinghua University Press, 2001.
|
[3] |
VERMA V, PADDING J T, DEEN N G. Effect of bed size on hydrodynamics in 3D gas-solid fluidized beds[J]. AIChE Journal, 2015, 61(5):1492-1506.
|
[4] |
EVGENDIS S P, KARAPANTSIOS T D. Effects of bubble size on void fraction fluctuations in dispersed bubble flows[J]. International Journal of Multiphase Flow, 2015, 75:163-173.
|
[5] |
吴迎亚, 彭丽, 高金森, 等. 基于EMMS模型的气固鼓泡床的模拟及气泡特性的分析[J]. 化工学报, 2016, 67(8):3259-3267. WU Y Y, PENG L, GAO J S, et al. Numerical simulation of gas-solid bubbling bed and bubble characteristics based on EMMS drag model[J]. CIESC Journal, 2016, 67(8):3259-3267.
|
[6] |
LU Y, HUANG J, ZHENG P. Flow structure and bubble dynamics in supercritical water fluidized bed and gas fluidized bed:a comparative study[J]. International Journal of Multiphase Flow, 2015, 73:130-141.
|
[7] |
ASEGEHEGN T W, SCHERIBER M, KRAUTZ H. J. Investigation of bubble behavior in fluidized beds with and without immersed horizontal tubes using a digital image analysis technique[J]. Powder Technology, 2011, 210(3):248-260.
|
[8] |
LI J H, KWAUK M. Exploring complex systems in chemical engineering-the multi-scale methodology[J]. Chemical Engineering Science, 2003, 58(3):521-535.
|
[9] |
WANG W, LI J H. Simulation of gas-solid two-phase flow by a multi-scale CFD approach-extension of the EMMS model to the sub-grid level[J]. Chemical Engineering Science, 2007, 62(1/2):208-231.
|
[10] |
DONG W G, WANG W, LI J H. A multiscale mass transfer model for gas-solid riser flows (Ⅱ):Sub-grid simulation of ozone decomposition[J]. Chemical Engineering Science, 2008, 63(10):2811-2823.
|
[11] |
DONG W G, WANG W, LI J H. A multiscale mass transfer model for gas-solid riser flows (Ⅰ):Sub-grid model and simple tests[J]. Chemical Engineering Science, 2008, 63(10):2798-2810.
|
[12] |
LI J H, GE W, WANG W, et al. From Multiscale Modeling to Meso-science[M]. Berlin:Springer, 2013.
|
[13] |
AGRAWAL K, LOEZOS P N, SYAMLAL M, et al. The role of meso-scale structures in rapid gas-solid flows[J]. Journal of Fluid Mechanics, 2001, 445:151-185.
|
[14] |
IGCI Y, ANDREWS A T, SUNDARESAN S, et al. Filtered two-fluid models for fluidized gas-particle suspensions[J]. AIChE Journal, 2008, 54(6):1431-1448.
|
[15] |
LI J H, KWAUK M. Particle-Fluid Two-Phase Flow-the Energy-Minimization Multi-Scale Method[M]. Beijing:Metallurgical Industry Press, 1994.
|
[16] |
YANG N, WANG W, GE W, et al. Simulation of heterogeneous structure in a circulating fluidized-bed riser by combining the two-fluid model with the EMMS approach[J]. Industrial & Engineering Chemistry Research, 2004, 43(18):5548-5561.
|
[17] |
LU B N, WANG W, LI J H. Searching for a mesh-independent sub-grid model for CFD simulation of gas-solid riser flows[J]. Chemical Engineering Science, 2009, 64(15):3437-3447.
|
[18] |
HOU B L, LI H Z, ZHU Q S. Relationship between flow structure and mass transfer in fast fluidized bed[J]. Chemical Engineering Journal, 2010, 163(1/2):108-118.
|
[19] |
HONG K, WANG W, ZHOU Q, et al. An EMMS-based multi-fluid model (EFM) for heterogeneous gas-solid riser flows(Ⅰ):Formulation of structure-dependent conservation equations[J]. Chemical Engineering Science, 2012, 75:376-389.
|
[20] |
WANG J, GE W, LI J H. Eulerian simulation of heterogeneous gas-solid flows in CFB risers:EMMS-based sub-grid scale model with a revised cluster description[J]. Chemical Engineering Science, 2008, 63(6):1553-1571.
|
[21] |
王维, 洪坤, 鲁波娜, 等. 流态化模拟:基于介尺度结构的多尺度CFD[J]. 化工学报, 2013, 64(1):95-106. WANG W, HONG K, LU B N, et al. Fluidized bed simulation:structure-dependent multiscale CFD[J]. CIESC Journal, 2013, 64(1):95-106.
|
[22] |
SHI Z S, WANG W, LI J H. A bubble-based EMMS model for gas-solid bubbling fluidization[J]. Chemical Engineering Science, 2011, 66(22):5541-5555.
|
[23] |
HONG K, SHI Z S, WANG W, et al. A structure-dependent multi-fluid model (SFM) for heterogeneous gas-solid flow[J]. Chemical Engineering Science, 2013, 99:191-202.
|
[24] |
董卫刚. 循环流化床多尺度传质模型和CFD模拟[D]. 北京:中国科学院过程工程研究所, 2008. DONG W G. A multiscale mass transfer model and CFD simulation for circulating fluidized beds[D]. Beijing:Institute of Process Engineering, CAS, 2008.
|
[25] |
LIU C, WANG W, ZHANG N, et al. Structure-dependent multi-fluid model for mass transfer and reactions in gas-solid fluidized beds[J]. Chemical Engineering Science, 2015, 122:114-129.
|
[26] |
JIANG P, BI H, JEAN R H, et al. Baffle effects on performance of catalytic circulating fluidized bed reactor[J]. AIChE Journal, 1991, 37(9):1392-1400.
|
[27] |
FRYE C, LAKE W, ECKSTROM H. Gas-solid contacting with ozone decomposition reaction[J]. AIChE Journal, 1958, 4(4):403-408.
|
[28] |
FRYER C, POTTER O E. Experimental investigation of models for fluidized bed catalytic reactors[J]. AIChE Journal, 1976, 22(1):38-47.
|
[29] |
SUN G. Influence of particle size distribution and the performance of fluidized bed reactors[D]. Canada:The University of British Columbia, 1991.
|
[30] |
OUYANG S, LIN J, POTTER O E. Ozone decomposition in a 0.254 m diameter circulating fluidized bed reactor[J]. Powder Technology, 1993, 74(1):73-78.
|
[31] |
LI D, RAY A K, RAY M B, et al. Rotational asymmetry of reactant concentration and its evolution in a circulating fluidized bed riser[J]. Particuology, 2012, 10(5):573-581.
|