[1] P. Chandran, S. Bakshi, D. Chatterjee, Study on the characteristics of hydrogen bubble formation and its transport during electrolysis of water, Chem. Eng. Sci. 138(2015) 99-109.[2] X. Jia, W. Hu, X. Yuan, K. Yu, Effect of surfactant type on interfacial area and liquid mass transfer for CO2 absorption in a bubble column, Chin. J. Chem. Eng. 23(3) (2015) 476-481.[3] R. Bai, F. Zhang, S. Liu, W. Wang, Air concentration and bubble characteristics downstream of a chute aerator, Int. J. Multiphase Flow 87(2016) 156-166.[4] S. Maurer, E.C. Wagner, T.J. Schildhauer, J.R.V. Ommen, S.M.A. Biollaz, R.F. Mudde, Xray measurements of bubble hold-up in fluidized beds with and without vertical internals, Int. J. Multiphase Flow 74(2015) 118-124.[5] S. Maurer, E.C. Wagner, J.R.V. Ommen, T.J. Schildhauer, S.L. Teske, S.M.A. Biollaz, A. Wokaun, R.F. Mudde, Influence of vertical internals on a bubbling fluidized bed characterized by X-ray tomography, Int. J. Multiphase Flow 75(2015)237-249.[6] S. Maurer, D. Gschwend, E.C. Wagner, Tilman J. Schildhauer, J.R.V. Ommen, S.M.A. Biollaz, R.F. Mudde, Correlating bubble size and velocity distribution in bubbling fluidized bed based on X-ray tomography, Chem. Eng. J. 298(2016) 17-25.[7] M. Haghnegahdar, S. Boden, U. Hampel, Investigation of surfactant effect on the bubble shape and mass transfer in a milli-channel using high-resolution microfocus X-ray imaging, Int. J. Multiphase Flow 87(2016) 184-196.[8] M.H. Jobehdar, K. Siddiqui, A.H. Gadallah, W.A. Chishty, Bubble formation process from a novel nozzle design in liquid cross-flow, Int. J. Heat Fluid Flow 61(2016) 599-609.[9] L. Kong, W. Li, L. Han, Y. Liu, H. Luo, M.A. Dahhan, M.P. Dudukovic, On the measurement of gas holdup distribution near the region of impeller in a gas-liquid stirred Rushton tank by means of γ-CT, Chem. Eng. J. 188(2012) 191-198.[10] K.A. Shollenberger, J.R. Torczynski, D.R. Adkins, T.J. O'Hern, N.B. Jackson, Gammadensitometry tomography of gas holdup spatial distribution in industrial-scale bubble columns, Chem. Eng. Sci. 52(13) (1995)2037-2048.[11] A. Seeger, K. Affeld, L. Goubergrits, U. Kertzscher, E. Wellnhofer, X-ray-based assessment of the three-dimensional velocity of the liquid phase in a bubble column, Exp. Fluids 31(2) (2001) 193-201.[12] L.J. Xu, L.A. Xu, Gas/liquid two-phase flow regime identification by ultrasonic tomography, Flow Meas. Instrum. 8(3) (1998) 145-155.[13] K.A. Triplett, S.M. Ghiaasiaan, S.I. Abdel-Khalik, D.L. Sadowski, Gas-liquid two-phase flow in microchannels part I:Two-phase flow patterns, Int. J. Multiphase Flow 25(3) (1999) 377-394.[14] F. Hernandez-Alvarado, D.V. Kalaga, D. Turney, S. Banerjee, J.B. Joshi, M. Kawaji, Void fraction, bubble size and interfacial area measurements in co-current downflow bubble column reactor with microbubble dispersion, Chem. Eng. Sci. 168(2017) 403-413.[15] Y.M. Lau, N.G. Deen, J.A.M. Kuipers, Development of an image measurement technique for size distribution in dense bubbly flows, Chem. Eng. Sci. 94(2013)20-29.[16] Y. Qu, C. Cui, S. Chen, J. Li, A fast subpixel edge detection method using Sobel-Zernike moments operator, Image Vis. Comput. 23(1) (2005) 11-17.[17] M. Honkanen, P. Saarenrinne, T. Stoor, J. Niinimaki, Recognition of highly overlapping ellipse-like bubble images, Meas. Sci. Technol. 16(9) (2005) 1760-1770.[18] W. Zhang, X. Jiang, Y. Liu, A method for recognizing overlapping elliptical bubbles in bubble image, Pattern Recogn. Lett. 33(12) (2012) 1543-1548.[19] C. Mockett, R. Perrin, T. Reimann, M. Braza, F. Thiele, Analysis of detached-Eddy simulation for the flow around a circular cylinder with reference to PIV data, Flow Turbul. Combust. 85(2) (2010) 167-180.[20] S.P. Singh, S. Mittal, Flow past a cylinder:Shear layer instability and drag crisis, Int. J. Numer. Methods Fluids 47(1) (2005) 75-98.[21] A. Prasad, C.H.K. Williamson, The instability of the shear layer separating from a bluff body, J. Fluid Mech. 333(1997) 375-402.[22] A. Karn, G.M. Monson, C.R. Ellis, J. Hong, R.E.A. Arndt, J.S. Gulliver, Mass transfer studies across ventilated hydrofoils:A step towards hydroturbine aeration, Int. J. Heat Mass Transf. 87(2015) 512-520.[23] M. Pang, J. Wei, Experimental investigation on the turbulence channel flow laden with small bubbles by PIV, Chem. Eng. Sci. 94(2013) 302-315.[24] A. Vaidheeswaran, T. Hibiki, Bubble-induced turbulence modeling for vertical bubbly flows, Int. J. Heat Mass Transf. 115(2017) 741-752. |