R. F. Mudde, Gravity-driven bubbly flows, Annu. Rev. Fluid Mech, vol.37, pp.393-423, 2005.

F. Risso, Agitation, mixing, and transfers induced by bubbles, Annu. Rev. Fluid Mech, vol.50, pp.25-48, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01778999

N. Deen, R. Mudde, J. Kuipers, P. Zehner, and M. Kraume, Bubble columns, Ullmann's Encyclopedia of Industrial Chemistry, 2010.

D. Darmana, N. G. Deen, and J. A. Kuipers, Detailed 3D modeling of mass transfer processes in two-phase flows with dynamic interfaces, Chem. Eng. Technol, vol.29, pp.1027-1033, 2006.

D. Jain, Y. M. Lau, J. Kuipers, and N. G. Deen, Discrete bubble modeling for a micro-structured bubble column, 11th International Conference on GasLiquid and Gas-Liquid-Solid Reactor Engineering, vol.100, pp.496-505, 2013.

G. Besagni, F. Inzoli, and T. Ziegenhein, Two-phase bubble columns: A comprehensive review, ChemEngineering, vol.2, p.13, 2018.

W. Deckwer, On the mechanism of heat transfer in bubble column reactors, Chem. Eng. Sci, vol.35, pp.1341-1346, 1980.

J. Heijnen and K. V. Riet, Mass transfer, mixing and heat transfer phenomena in low viscosity bubble column reactors, Chem. Eng. J, vol.28, pp.21-42, 1984.

A. A. Kulkarni, Mass transfer in bubble column reactors: Effect of bubble size distribution, Ind. Eng. Chem. Res, vol.46, pp.2205-2211, 2007.

A. Kitagawa and Y. Murai, Natural convection heat transfer from a vertical heated plate in water with microbubble injection, Chem. Eng. Sci, vol.99, pp.215-224, 2013.

D. Colombet, D. Legendre, F. Risso, A. Cockx, and P. Guiraud, Dynamics and mass transfer of rising bubbles in a homogenous swarm at large gas volume fraction, J. Fluid Mech, vol.763, pp.254-285, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01269183

A. T. Tokuhiro and P. S. Lykoudis, Natural convection heat transfer from a vertical plate-I. Enhancement with gas injection, Int. J. Heat Mass Transfer, vol.37, pp.997-1003, 1994.

H. Ayed, J. Chahed, and V. Roig, Hydrodynamics and mass transfer in a turbulent buoyant bubbly shear layer, AIChE J, vol.53, pp.2742-2753, 2007.

N. G. Deen and J. A. Kuipers, Direct numerical simulation of wall-to liquid heat transfer in dispersed gas-liquid two-phase flow using a volume of fluid approach, Chem. Eng. Sci, vol.102, pp.268-282, 2013.

S. Dabiri and G. Tryggvason, Heat transfer in turbulent bubbly flow in vertical channels, Chem. Eng. Sci, vol.122, pp.106-113, 2015.

B. Gvozdi?, E. Alméras, V. Mathai, X. Zhu, D. P. Van-gils et al., Experimental investigation of heat transport in homogeneous bubbly flow, J. Fluid Mech, vol.845, pp.226-244, 2018.

B. Gvozdi?, O. Dung, E. Alméras, D. P. Van-gils, D. Lohse et al., Experimental investigation of heat transport in inhomogeneous bubbly flow, Chem. Eng. Sci, vol.198, p.260, 2018.

A. Kitagawa, K. Kosuge, K. Uchida, and Y. Hagiwara, Heat transfer enhancement for laminar natural convection along a vertical plate due to sub-millimeterbubble injection, Exp. Fluids, vol.45, pp.473-484, 2008.

K. Sekoguchi, M. Nakazatomi, and O. Tanaka, Forced convective heat transfer in vertical air-water bubble flow, Bull. JSME, vol.23, pp.1625-1631, 1980.

Y. Sato, M. Sadatomi, and K. Sekoguchi, Momentum and heat transfer in two-phase bubble flow-I. Theory, Int. J. Multiphase Flow, vol.7, pp.167-177, 1981.

Y. Sato, M. Sadatomi, and K. Sekoguchi, Momentum and heat transfer in twophase bubble flow-II. A comparison between experimental data and theoretical calculations, Int. J. Multiphase Flow, vol.7, pp.179-190, 1981.

A. Kitagawa, K. Uchida, and Y. Hagiwara, Effects of bubble size on heat transfer enhancement by sub-millimeter bubbles for laminar natural convection along a vertical plate, Int. J. Heat Fluid Flow, vol.30, pp.778-788, 2009.

A. Kitagawa, K. Kimura, and Y. Hagiwara, Experimental investigation of water laminar mixed-convection flow with sub-millimeter bubbles in a vertical channel, Exp. Fluids, vol.48, pp.509-519, 2010.

P. T. Nguyen, M. A. Hampton, A. V. Nguyen, and G. R. Birkett, The influence of gas velocity, salt type and concentration on transition concentration for bubble coalescence inhibition and gas holdup, Chem. Eng. Res. Des, vol.90, pp.33-39, 2012.

A. Cartellier, Optical probes for local void fraction measurements: Characterization of performance, Rev. Sci. Instrum, vol.61, pp.874-886, 1990.

D. P. Van-gils, D. Guzman, C. Sun, and D. Lohse, The importance of bubble deformability for strong drag reduction in bubbly turbulent Taylor-Couette flow, J. Fluid Mech, vol.722, pp.317-347, 2013.

R. Poorte and A. Biesheuvel, Experiments on the motion of gas bubbles in turbulence generated by an active grid, J. Fluid Mech, vol.461, p.127, 2002.

D. P. Van-gils, Python library for (multithreaded) communication with laboratory instruments, 2018.

R. Poorte, On the motion of bubbles in active grid generated turbulent flows, 1998.

E. Alméras, F. Risso, V. Roig, S. Cazin, C. Plais et al., Mixing by bubble-induced turbulence, J. Fluid Mech, vol.776, pp.458-474, 2015.