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Abbasi E, Arastoopour H (2011) CFD simulation of CO2 sorption in a circulating fluidized bed using deactivation kinetic model. In: Knowlton TM (ed) Proceeding of the tenth international conference on circulating fluidized beds and fluidization technology, CFB-10, ECI, New York, pp 736-743

Arastoopour H (2001) Numerical simulation and experimental analysis of gas/solid flow systems: 1999 Fluor-Daniel Plenary lecture. Powder Technol 119(2):59-67

Arastoopour H, Gidaspow D (1979a) Analysis of IGT pneumatic conveying data and fast fluidization using a thermohydrodynamic model. Powder Technol 22(1):77-87

Arastoopour H, Gidaspow D (1979b) Vertical countercurrent solids gas flow. Chem Eng Sci 34 (8):1063-1066

Arastoopour H, Gidaspow D (1979c) Vertical pneumatic conveying using four hydrodynamic models. Ind Eng Chem Fundam 18(2):123-130

Arastoopour H, Pakdel P, Adewumi M (1990) Hydrodynamic analysis of dilute gas-solids flow in a vertical pipe. Powder Technol 62:163-170

Benyahia S (2009) On the effect of subgrid drag closures. Ind Eng Chem Res 49(11):5122-5131

Benyahia S (2012a) Analysis of model parameters affecting the pressure profile in a circulating fluidized bed. AIChE J 58(2):427-439

Benyahia S (2012b) Fine-grid simulations of gas-solids flow in a circulating fluidized bed. AIChE J 58(11):3589-3592

Benyahia S, Sundaresan S (2012) Do we need sub-grid scale corrections for both continuum and discrete gas-particle flow models? Powder Technol 220:2-6

Ghadirian E, Arastoopour H (2016) CFD simulation of a fluidized bed using the EMMS approach for the gas-solid drag force. Powder Technol 288:35-44

Gidaspow D (1994) Multiphase flow and fluidization: continuum and kinetic theory descriptions. Academic, NewYork

Igci Y, Andrews AT, Sundaresan S, Pannala S, O’Brien T (2008) Filtered two-fluid models for fluidized gas-particle suspensions. AlChE J 54(6):1431-1448 Jang J, Rosa C, Arastoopour H (2010) CFD simulation of pharmaceutical particle drying in a bubbling fluidized bed reactor. In: Kim SD et al (eds) Fluidization XIII. ECI, New York, pp 853-860

Krishna BSVSR (2013) Predicting the bed height in expanded bed adsorption column using RZ correlation. Bonfring Int J Ind Eng Manage Sci 3(4):107 Li J, Kwauk M (1994) Particle-fluid two-phase flow: the energy-minimization multi-scale method. Metallurgy Industry Press, Beijing

Li F, Song F, Benyahia S, Wang W, Li J (2012) MP-PIC simulation of CFB riser with EMMS- based drag model. Chem Eng Sci 82:104-113

Lu B, Wang W, Li J (2009) Searching for a mesh-independent sub-grid model for CFD simulation of gas-solid riser flows. Chem Eng Sci 64(15):3437-3447 Milioli CC, Milioli FE, Holloway W, Agrawal K, Sundaresan S (2013) Filtered two-fluid models of fluidized gas-particle flows: new constitutive relations. AIChE J 59(9):3265-3275 Nikolopoulos A, Atsonios K, Nikolopoulos N, Grammelis P, Kakaras E (2010) An advanced EMMS scheme for the prediction of drag coefficient under a 1.2 MW CFBC isothermal flow— Part II: numerical implementation. Chem Eng Sci 65(13):4089-4099 Nikolopoulos A, Nikolopoulos N, Charitos A, Grammelis P, Kakaras E, Bidwe AR, Varela G (2013) High-resolution 3-D full-loop simulation of a CFB carbonator cold model. Chem Eng Sci 90:137-150

Sarkar A, Xin S, Sundaresan S (2014) Verification of sub-grid filtered drag models for gas-particle fluidized beds with immersed cylinder arrays. Chem Eng Sci 114:144-154 Sinclair JL, Jackson R (1989) Gas-particle flow in a vertical pipe with particle-particle interactions. AIChE J 35(9):1473-1486

Syamlal M, O’Brien TJ (2003) Fluid dynamic simulation of O3 decomposition in a bubbling fluidized bed. AIChE J 49(11):2793-2801

Wang W, Li J (2007) Simulation of gas-solid two-phase flow by a multi-scale CFD approach— extension of the EMMS model to the sub-grid level. Chem Eng Sci 62(1):208-231 Wang J, Ge W, Li J (2008) Eulerian simulation of heterogeneous gas-solid flows in CFB risers: EMMS-based sub-grid scale model with a revised cluster description. Chem Eng Sci 63 (6):1553-1571

Wen CY, Yu YH (1966) Mechanics of fluidization. Chem Eng Prog Symp Ser 62:100-111

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