1 |
Application of predicted bubble-rising velocities for estimating the minimum miscibility pressures of the light crude oil-CO2 systems with the rising bubble apparatus Zhang KQ, Jia N, Zeng FH Fuel, 220, 412, 2018 |
2 |
Drag coefficient fluctuation prediction of a single bubble rising in water Yan XK, Jia Y, Wang LJ, Cao YJ Chemical Engineering Journal, 316, 553, 2017 |
3 |
Hydrodynamic properties in a hydrogen production fermenter using sugary wastewater Chu CY, Lo H, Wang ZF International Journal of Hydrogen Energy, 41(7), 4455, 2016 |
4 |
Hydrodynamic characteristics of bubbles in bubbling fluidized bed with internals Lim JH, Shin JH, Bae K, Kim JH, Lee DH, Han JH, Lee DH Korean Journal of Chemical Engineering, 32(9), 1938, 2015 |
5 |
The effect of bubble release techniques on their behaviour at the initial stages of rise Javor Z, Schreithofer N, Heiskanen K Minerals Engineering, 36-38, 254, 2012 |
6 |
Hydrodynamic Behavior of a Single Bubble Rising in Viscous Liquids Cai ZQ, Bao YY, Gao ZM Chinese Journal of Chemical Engineering, 18(6), 923, 2010 |
7 |
Hydrodynamics of Geldart group A particles in gas-solid fluidized beds Leu LP, Tsai FC Korean Journal of Chemical Engineering, 26(2), 513, 2009 |
8 |
Simultaneous measurement of 3-dimensional shape and behavior of single bubble in liquid using laser sensors Terasaka K, Inoue Y, Kakizaki M, Niwa M Journal of Chemical Engineering of Japan, 37(8), 921, 2004 |
9 |
Shape and terminal velocity of single bubble motion: a novel approach Bozzano G, Dente M Computers & Chemical Engineering, 25(4-6), 571, 2001 |