Capítulo de livro Revisado por pares

The Effects of Bubbles on Mass Transfer Across the Breaking Air-Water Interface

2011; American Geophysical Union; Linguagem: Inglês

10.1029/gm127p0285

ISSN

2328-8779

Autores

Satoru Komori, Ryuta Misumi,

Tópico(s)

Oil Spill Detection and Mitigation

Resumo

The Effects of Bubbles on Mass Transfer Across the Breaking Air-Water Interface Satoru Komori, Satoru Komori Department of Mechanical Engineering, Kyoto University, Kyoto, JapanSearch for more papers by this authorRyuta Misumi, Ryuta Misumi Department of Mechanical Engineering, Kyoto University, Kyoto, JapanSearch for more papers by this author Satoru Komori, Satoru Komori Department of Mechanical Engineering, Kyoto University, Kyoto, JapanSearch for more papers by this authorRyuta Misumi, Ryuta Misumi Department of Mechanical Engineering, Kyoto University, Kyoto, JapanSearch for more papers by this author Book Editor(s):M. A. Donelan, M. A. DonelanSearch for more papers by this authorW. M. Drennan, W. M. DrennanSearch for more papers by this authorE. S. Saltzman, E. S. SaltzmanSearch for more papers by this authorR. Wanninkhof, R. WanninkhofSearch for more papers by this author First published: 01 January 2002 https://doi.org/10.1029/GM127p0285Citations: 6Book Series:Geophysical Monograph Series AboutPDFPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShareShare a linkShare onEmailFacebookTwitterLinkedInRedditWechat Summary This chapter contains sections titled: Introduction Measurements of Properties of Bubbles Entrained by Wave Breaking Dns for Estimation of Mass Transfer by a Bubble Contribution of Bubbles to Mass Transfer Velocity Conclusions References W. S. Broecker, T. H. Peng, G. Ostlund, M. Stuiver, The distribution of bomb radiocarbon in the ocean, J. Geophys. Res., 90, 6953– 6970, 1985. 10.1029/JC090iC04p06953 CASWeb of Science®Google Scholar R. Cember, Bomb radiocarbon in the Red Sea : A medium-scale gas exchange experiment, J. Geophys. Res., 94, 2111– 2123, 1989. 10.1029/JC094iC02p02111 CASWeb of Science®Google Scholar D. Farmer, C. L. McNeil, B. D. Johnson, Evidence for the importance of bubbles in increasing air-sea gas flux, Nature, 361, 620– 623, 1993. 10.1038/361620a0 Web of Science®Google Scholar P. Geiβler, B. Jähne, Measurements of bubble size distributions with an optical technique based on depth from focus, Air-Water Gas Transfer, B. Jähne, E. C. Monahan, 351– 362, Aeon Verlag, Hanau, Germany, 1995. Google Scholar J. S. Gulliver, and A. J. Zaske, Computational experiments to quantify measurements uncertainty in gas exchange coefficient, in Gas Transfer at Water Surfaces, edited by M. A. Donelan, W. M. Drennan, E. S. Saltzman, and R. Wanninkhof, pp. xxx– xxx, AGU, Geophys. Monogr. Ser., 127, 2001. Google Scholar R. Keeling, On the role of large bubbles in air-sea gas exchange and supersaturation in the ocean, J. Marine Res., 51, 237– 271, 1993. 10.1357/0022240933223800 CASWeb of Science®Google Scholar S. Komori, R. Nagaosa, Y. Murakami, Turbulence structure and mass transfer across a sheared air-water interface in wind-driven turbulence, J. Fluid Mech., 249, 161– 183, 1993. 10.1017/S0022112093001120 CASWeb of Science®Google Scholar S. Komori, T. Shimada, Gas transfer across a winddriven air-water interface and the effects of sea water on CO2 transfer, Air-Water Gas Transfer, B. Jähne, E. C. Monahan, 553– 569, Aeon Verlag, Hanau, Germany, 1995. Google Scholar S. Komori, T. Shimada, R. Misumi, Turbulence structure and mass transfer at a wind-driven air-water interface, Wind-over-Wave, Couplings: Perspective and Prospects, S. G. Sajjadi, N. H. Thomas, J. C. R. Hunt, 273– 285, Oxford University Press, Oxford, 1999. Google Scholar R. Kurose, S. Komori, Drag and lift forces on a rotating sphere in a linear shear flow, J. Fluid Mech., 384, 183– 198, 1999. 10.1017/S0022112099004164 CASWeb of Science®Google Scholar P. S. Liss, L. Merlivat, Air-sea gas exchange rates : introduction and synthesis, The Role of Air-Sea Exchange in Geochemical Cycling, P. Buat-Menard, 113– 127, 1986. 10.1007/978-94-009-4738-2_5 Google Scholar V. G. Levich, Physicochemical Hydrodynamics, Prentice - Hall, 1962. Google Scholar L. Merlivat, L. Memery, Gas exchange across an airwater interface: experimental results and modeling of bubble contribution to transfer, J. Geophys. Res., 88, 707– 724, 1983. 10.1029/JC088iC01p00707 Web of Science®Google Scholar U. Schimpf, H. Hauβecker, and B. Jahne, On the investigations of air-water gas exchange and surface micro turbulence using thermography, in Gas Transfer at Water Surfaces, edited by M. A. Donelan, W. M. Drennan, E. S. Saltzman, and R. Wanninkhof, pp. xxx– xxx, AGU, Geophys. Monogr. Ser., 127, 2001. Google Scholar R. Wanninkhof, Relationship Between Wind Speed and Gas Exchange Over the Ocean, J. Geophys. Res., 97, 7373– 7382, 1992. 10.1029/92JC00188 Web of Science®Google Scholar R. Wanninkhof, W. E. Asher, R. Weppernig, H. Chen, P. Schlosser, C. Langdon, R. Sambrotto, Gas transfer experiment on Georges Bank using two volatile deliberate tracers, J. Geophys. Res., 98, 20237– 20248, 1993. 10.1029/93JC01844 Web of Science®Google Scholar A. J. Watson, R. C. Upstill-Goddard, P. S. Liss, Air-sea gas exchange in rough and stormy seas measured by a dual-tracer technique, Nature, 349, 145– 147, 1991. 10.1038/349145a0 CASWeb of Science®Google Scholar D. K. Woolf, S. A. Thorpe, Bubbles and the air-sea exchange of gases in near-saturation conditions, J. Marine Res., 49, 435– 466, 1991. 10.1357/002224091784995765 CASWeb of Science®Google Scholar Citing Literature Gas Transfer at Water Surfaces, Volume 127 ReferencesRelatedInformation

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