11 |
Effect of particle collision behavior on heat transfer performance in a down-flow circulating fluidized bed evaporator Jiang F, Wang HY, Liu Y, Qi GP, Al-Rawni AE, Nkomazana P, Li XL Powder Technology, 381, 55, 2021 |
12 |
Impact of polydispersity on the flow dynamics in the riser of a circulating fluidized bed Yang SL, Wang S, Wang H Powder Technology, 381, 489, 2021 |
13 |
Prediction of particle circulation rate in an internally circulating fluidized bed with a central draft tube Chen HW, Song YF, Shi Y, Yang X Powder Technology, 380, 497, 2021 |
14 |
Numerical simulation of baffled circulating fluidized bed with Geldart B particles Benzarti S, Mhiri H, Bournot H Powder Technology, 380, 629, 2021 |
15 |
On the discrimination of particle clusters in circulating fluidized beds Wei XY, Zhu J Powder Technology, 379, 265, 2021 |
16 |
Turbulent mass transfer model for the simulation of liquid-solid CFB risers and its verification Zhang YW, Ren PF, Li WB, Yu KS Powder Technology, 377, 847, 2021 |
17 |
Hydrodynamics characteristics and particle distribution in a liquid-solid circulating fluidized bed boiler Jiang F, Shen Y, Qi GP, Jing WY, Li X, Yare S, Li XL Powder Technology, 377, 41, 2021 |
18 |
Multi-fluid modelling of hydrodynamics in a dual circulating fluidized bed Li SY, Shen YS Advanced Powder Technology, 31(7), 2778, 2020 |
19 |
Clarification of an improved cluster renewal model (ICRM) for heat transfer characteristics in a rolling circulating fluidized bed (RCFB) Wang ZL, Zhao T, Liu K, Takei M Advanced Powder Technology, 31(7), 2866, 2020 |
20 |
Study on scale -up characteristics of oxy-fuel combustion in circulating fluidized bed boiler by 3D CFD simulation Gu JR, Liu QW, Zhong WQ, Yu AB Advanced Powder Technology, 31(5), 2136, 2020 |