[1] Asher W E, Karle L M, Higgins B J, et al. The influence of bubble plumes on air-seawater gas transfer velocities[J]. Journal of Geophysical Research, 1996, 101(C5):12027-12041.
[2] Farmer D M, McNeil C L, Johnson B D. Evidence for the importance of bubbles in increasing air-sea gas flux[J]. Nature, 1993, 361(18):620-623.
[3] Woolf D K. Bubbles and Their Role in Gas Exchange[M]. Cambridge:Cambridge University Press, 1997:174-205.
[4] Clift R, Grace J R, Weber M E. Bubbles, Drops, and Particles[M]. New York:Academic Press, 1978:244-284.
[5] Kawase Y, Halard B, Moo-Young M. Liquid phase mass transfer coefficients in bioreactors[J]. Biotechnology and Bioengineering, 1992, 39:1133-1140.
[6] Asselin C, Comeau Y, Ton-That Q A. Alpha correction factors for static aerators and fine bubble diffusers used in municipal facultative aerated lagoons[J]. Water Science Technology, 1998, 38:79-85.
[7] Liss P S, Watson A J, Bock E J, et al. Physical Processes in the Microlayer and the Air-sea Exchange of Trace Gases[M]. Cambridge:Cambridge University Press, 1997:1-33.
[8] Blanchard D C. Electrification of the atmosphere by particles from bubbles in the sea[J]. Progress in Oceanography, 1963, 1:73-197.
[9] Monahan E C. The Ocean as a Source for Atmospheric Particles[M]. Berlin:Springer, 1986:129-163.
[10] De Leeuw G. Spray droplet source function:From laboratory to open ocean[C]//Proceedings of a Workshop on Modeling the Fate and Influence of Marine Spray, 1990:17-28.
[11] Spiel D E. On the births of film drops from bubbles bursting on seawater surfaces[J]. Journal of Geophysical Research, 1998, 103(C11):24907-24918.
[12] Blanchard D C. The ejection of drops from the sea and their enrichment with bacteria and other materials:A review[J]. Estuaries, 1989, 12(3):127-137.
[13] Tian Jing, Bai Guangfu, Jiang Yang. Research of scattering Stokes parameters for ship wake bubbles[J]. Infrared and Laser Engineering, 2018, 47(2):0206003. (in Chinese)
[14] Liu Jian, Gu Kang, Li Mengzhou, et al. 3D measurement decoupling criterion in optical microscopy[J]. Infrared and Laser Engineering, 2017, 46(3):0302001. (in Chinese)
[15] Kitaigorodskii S A, Donelan M A. Wind-wave effects on gas transfer[J]. Switzerland:Springer, 1984:141-170.
[16] Asher W E, Karle L M, Higgins B J. On the difference between bubble-mediated air-water transfer in freshwater and seawater[J]. Journal of Marine Research, 1997, 55(5):1-34.
[17] Cao Ruixue. Measurement and analysis of bubbles in ocean surface layer and sub-surface layer[D]. Qingdao:Institute of Oceanology, Chinese Academy of Sciences, 2006. (in Chinese)
[18] Leifer I, MacDonald I. Dynamics of the gas flux from shallow gas hydrate deposits:Interaction between oily hydrate bubbles and the oceanic environment[J]. Earth and Planetary Science Letters, 2003, 210:411-424.
[19] Lifer I, De Leeuw G, Kunz G, et al. Calibrating optical bubble size by the displaced-mass method[J]. Chemical Engineering Science, 2003, 58:5211-5216.
[20] Leifer I, De Leeuw G, Cohen L H. Optical measurement of bubbles:System, design and application[J]. American Meteorological Society, 2003, 20:1317-1332.
[21] Bhatia A B, Wolf E. On the circle polynomial of Zernike and related orthogonal sets[J]. Mathematical Proceedings of the Cambridge Philosophical Society, 1954, 50(1):40-48.
[22] Teh C-H, Chin R T. On image analysis by the method of moments[J]. IEEE Transaction on Pattern Analysis and Machine Intelligence, 1988, 10(4):496-513.
[23] Teague M R. Image analysis via the general theory of moments[J]. Journal of the Optical Society of America, 1980, 70(8):920-930.
[24] Belkasim S, Hassan E, Obeidi T. Explicit invariance of Cartesian Zernike moments[J]. Pattern Recognition Letters, 2007, 28:1969-1980.