1 |
Effect of granular properties on hydrodynamics in coarse-grid riser flow simulation of Geldart A and B particles Bin Rashid TA, Zhu LT, Luo ZH Powder Technology, 359, 126, 2020 |
2 |
A revisit to saturation carrying capacity and saturated solid fraction in gas-solid upward flow Zhang GH, Chen ZW, Bao J, Wei WS, Bi XT Powder Technology, 373, 627, 2020 |
3 |
A model for predicting transport velocity in gas fluidized-beds Kim D, Won YS, Khurram MS, Joo JB, Choi JH, Ryu HJ Advanced Powder Technology, 29(12), 3070, 2018 |
4 |
Predicting the fast transition conditions by the correlation of particle entrainment rate Won YS, Kim DW, Choi JH Korean Journal of Chemical Engineering, 35(3), 812, 2018 |
5 |
Modifying the inter-phase drag via solid volume fraction gradient for CFD simulation of fast fluidized beds Su MZ, Zhao HB AIChE Journal, 63(7), 2588, 2017 |
6 |
기체 유동층에서 입자 비산속도 상관식에 의한 수송속도의 예측 원유섭, 무하매드 샤자드 쿠람, 정아름, 최정후, 류호정 Korean Chemical Engineering Research, 55(5), 638, 2017 |
7 |
Effect of Hydrodynamic Conditions on Emissions of NOx, SO2, and CO from Co-Combustion of Wheat Straw and Coal Under Fast Fluidized Bed Condition Shahzad K, Saleem M, Kazmi M, Ali Z, Hussain S, Akhtar NA Combustion Science and Technology, 188(8), 1303, 2016 |
8 |
EMISSIONS OF NOx, SO2, AND CO FROM CO-COMBUSTION OF WHEAT STRAW AND COAL UNDER FAST FLUIDIZED BED CONDITION Shahzad K, Saleem M, Ghauri M, Akhtar J, Ali N, Akhtar NA Combustion Science and Technology, 187(7), 1079, 2015 |
9 |
Further integration of the type-A-choking-oriented unified model for fast fluidization dynamics Zhang MC, Zhang C Powder Technology, 286, 132, 2015 |
10 |
Gas mixing study in freely bubbling and turbulent gas-solid fluidized beds with a novel infrared technique coupled with digital image analysis Dang TYN, Gallucci F, Annaland MV Chemical Engineering Science, 116, 38, 2014 |