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Relationship between turbulent energy dissipation and gas transfer through the air–sea interface Cover

Relationship between turbulent energy dissipation and gas transfer through the air–sea interface

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Open Access
|Jan 2018

References

  1. Anis , A. and Moum , J. N . 1995 . Surface wave-turbulence interactions: scaling ε (z) near the sea surface . J. Phys. Oceanogr . 25 , 1222 1227 .
  2. Ardhuin , F. and Jenkins , A. D . 2006 . On the interaction of surface wave and upper ocean turbulence . J. Phys. Oceanogr . 36 , 551 557 . DOI: 10.1175/JPO2862.1 .
  3. Benilov , A. Yu. and Ly , L. N . 2002 . Modelling of surface waves breaking effects in the ocean upper layer . Math. Comput. Modell . 35 , 191 213 . DOI: 10.1016/S0895-7177(01)00159-5 .
  4. Cavaleri , L. , Bertotti , L. and Bidlot , J.-R . 2015 . Waving in the rain . J. Geophys. Res. Oceans . 120 , 3248 3260 . DOI:10.1002/2014JC010348. DOI: 10.1002/2014JC010348 .
  5. Csanady , G. T . 1990 . The role of breaking wavelets in air-sea gas transfer . J. Geophys. Res . 95 , 749 759 .
  6. Danckwerts , P. V . 1951 . Significance of liquid–film coefficients in gas absorption . Ind. Eng. Chem . 43 , 1460 1467 . DOI: 10.1021/ie50498a055 .
  7. Donelan , M. A. , Skafel , M. G. , Graber , H. , Liu , P. , Schwab , D. and Venkatesh , S . 1992 . On the growth rate of wind–generated waves . Atmos. Ocean . 30 , 457 478 .
  8. Drennan , W. M. , Donelan , M. A. , Terray , E. A. and Katsaros , K. B . 1996 . Oceanic turbulence dissipation measurements in SWADE . J. Phys. Oceanogr . 26 , 808 815 . DOI: 10.1175/1520-0485(1996)026<;0808:OTDMIS>2.0.CO;2 .
  9. Felizardo , F. and Melville , W. K . 1995 . Correlations between ambient noise and the ocean surface wave field . J. Phys. Oceanogr . 25 , 513 532 . DOI: 10.1175/1520-0485(1995)025<;0513:CBANAT>2.0.CO;2 .
  10. Gerbi , G. P. , Trowbridge , J. H. , Terray , E. A. , Plueddemann , A. J. , Kukulka , T . and co-authors. 2009 . Observations of turbulence in the ocean surface boundary layer: energetics and transport . J. Phys. Oceanogr . 39 , 1077 1096 . DOI: 10.1175/2008JPO4044.1 .
  11. Glazman , R. E. , and Greysukh , A . 1993 . Satellite altimeter measurements of surface wind . J. Geophys. Res . 98 , 2475 2483 .
  12. Hanson , J. L. and Phillips , O. M . 1999 . Wind sea growth and dissipation in the open ocean . J. Phys. Oceanogr . 29 , 1633 1648 . DOI: 10.1175/1520-0485(1999)029<;1633:WSGADI>2.0.CO;2 .
  13. Harcourt , R. R. and D’Asaro , E. A . 2008 . Large-eddy simulation of Langmuir turbulence in pure wind seas . J. Phys. Oceanogr . 38 , 1542 1562 . DOI: 10.1175/2007JPO3842.1 .
  14. Hasselmann , K . 1974 . On the spectral dissipation of ocean waves due to whitecapping . Bound.Layer Meteor . 126 , 507 127 .
  15. Huang , C. J. and Qiao , F . 2010 . Wave-turbulence interaction and its induced mixing in the upper ocean . J. Geophys. Res . 115 , C04026 . DOI: 10.1029/2009JC005853 .
  16. Hwang , P. A. and Sletten , M. A . 2008 . Energy dissipation of wind-generated waves and whitecap coverage . J. Geophys. Res . 113 , C02012 , DOI: 10.1029/2007JC004277 .
  17. Jähne , B. , Munnich , K. O. , Bosinger , R. , Dutzi , A. , Huber , W. and Libner , P . 1987 . On the parameters influencing air–water gas exchange . J. Geophys. Res . 92 , 1937 1949 .
  18. Kitaigorodskii , S. A . 1998 . The dissipation subrange in wind wave spectra . Geophysica. 34 , 179 207 .
  19. Kitaigorodskii , S. A . 2001 . On the influence of wind wave breaking on the structure of the subsurface oceanic turbulence . Izv. Atmosph. Ocean. Phys . 37 , 566 576 .
  20. Kitaigorodskii , S. A . 2011a . The influence of wind wave breaking on the dissipation of the turbulent kinetic energy in the upper ocean and its dependence on the stage of wind-wave development . In: Gas Transfer at Water Surfaces 2010 (eds. S. Komori , W. McGillis and R. Kurose ), Kyoto University Press , Kyoto , pp. 29 37 .
  21. Kitaigorodskii , S. A . 2011b . The calculation of the gas transfer between the ocean and atmosphere . In: Gas Transfer at Water Surfaces 2010 , (eds. S. Komori , W. McGillis and R. Kurose , Kyoto University Press , Kyoto . pp. 13 28 .
  22. Kitaigorodskii , S. A. , Donelan , M. A. , Lumley , J. L. and Terray , E. A . 1983 . Wave–turbulence interaction in the upper ocean. Part II: Statistical characteristics of wave and turbulence components of the random velocity field in the marine surface layer . J. Phys. Oceanogr . 13 , 1988 1999 . DOI: 10.1175/1520-0485(1983)013<;1988:WTIITU>2.0.CO;2 .
  23. Lamont , J. C. and Scott , D. S . 1970 . An eddy cell model of mass transfer into the surface of a turbulent liquid . AIChE J . 16 , 513 519 . DOI: 10.1002/aic.690160403 .
  24. Li , M. and Garrett , C . 1993 . Cell merging and the jet/downwelling ratio in Langmuir circulation . J. Mar. Res . 51 , 737 769 . DOI: 10.1357/0022240933223945 .
  25. Liss , P. S. and Merlivat , L . 1986 . Air–sea gas exchange rates: Introduction and synthesis . In: The Role of Air–Sea Exchange in Geochemical Cycling (eds. P. Buat-Menard ), D. Reidel , Norwell, MA , pp. 113 129 .
  26. Lorke , A. and Peeters , F . 2006 . Toward a unified scaling relation for interfacial fluxes . J. Phys. Oceanogr . 36 , 955 961 . DOI: 10.1175/JPO2903.1 .
  27. Mitsuyasu , H. , Tasai , F. , Suhara , T. , Misuno , S. , Ohkuso , M. , Honda , T. , and Rikiishi , K. . 1980 . Observations of the power spectrum of ocean waves using a cloverleaf buoy . J. Phys. Oceanogr . 10 , 286 296 .
  28. Nightingale , P. D. , Malin , G. , Law , C. S. , Watson , A. J. , Liss , P. S. , and co-authors. 2000 . In situ evaluation of air–sea gas exchange parameterizations using novel conservative and volatile tracers . Global Biogeochem. Cycles . 14 , 373 387 .
  29. Phillips , O. M . 1985 . Spectral and statistical properties of the equilibrium range in wind generated gravity waves . J. Fluid Mech . 156 , 505 531 . DOI: 10.1017/S0022112085002221 .
  30. Soloviev , A. V . 2007 . Coupled renewal model of ocean viscous sublayer thermal skin effect and interfacial gas transfer velocity . J. Mar. Syst . 66 , 19 27 . DOI: 10.1016/j.jmarsys.2006.03.024 .
  31. Stokes , G. G . 1847 . On the theory of oscillatory waves . Trans. Cambridge Philos. Soc . 8 , 441 455 .
  32. Terray , E. A. , Donelan , M. A. , Agrawal , Y. C. , Drennan , W. M. , Kahma , K. K. , and co-authors. 1996 . Estimates of kinetic energy dissipation under breaking waves . J. Phys. Oceanogr . 26 , 792 807 . DOI: 10.1175/1520-0485(1996)026<;0792:EOKEDU>2.0.CO;2 .
  33. Thorpe , S. A . 1993 . Energy loss by breaking waves . J. Phys. Oceanogr . 23 , 2498 2502 . DOI: 10.1175/1520-0485(1993)023<;2498:ELBBW>2.0.CO;2 .
  34. Thorpe , S. A. , Osborn , T. R. , Jackson , J. F. E. , Hall , A. J. and Lueck , R. G . 2003 . Measurements of turbulence in the upper–ocean mixing layer using Autosub . J. Phys. Oceanogr . 33 , 122 145 . DOI: 10.1175/1520-0485(2003)033<;0122:MOTITU>2.0.CO;2 .
  35. Toba , Y . 1972 . Local balance in the air–sea boundary processes. I. On the growth processes . J. Oceanogr. Soc. Jpn . 28 , 109 120 . DOI: 10.1007/BF02109772 .
  36. Toba , Y . 1978 . Stochastic form of the growth of wind waves in a single-parameter representation with physical implications . J. Phys. Oceanogr . 8 , 494 507 .
  37. Tokoro , T. , H. , Kayanne , A. , Watanabe , K. , Nadaoka , H. , Tamura , K. and co-authors . 2008 . High gas-transfer velocity in coastal regions with high energy-dissipation rates . J. Geophys. Res . 113 , C11006 . DOI: 10.1029/2007JC004528 .
  38. Vachon , D. , Prairie , Y. T. and Cole , J. J . 2010 . The relationship between near-surface turbulence and gas transfer velocity in freshwater systems and its implications for floating chamber measurements of gas exchange . Limnol. Oceanogr . 55 , 1723 1732 . DOI: 10.4319/lo.2010.55.4.1723 .
  39. Wang , B. , Liao , Q. , Fillingham , J. H. and Bootsma , H. A . 2015 . On the coefficients of small eddy and surface divergence models for the air–water gas transfer velocity . J. Geophys. Res. Oceans . 120 , 2129 2146 . DOI: 10.1002/2014JC010253 .
  40. Wanninkhof , R . 1992 . Relationship between gas exchange and wind speed over the ocean . J. Geophys. Res . 97 , 7373 7381 .
  41. Wanninkhof , R. , Asher , W. E. , Ho , D. T. , Sweeney , C. S. and McGillis , W. R . 2009 . Advances in quantifying air-sea gas exchange and environmental forcing . Ann. Rev. Mar. Sci . 1 , 213 244 . DOI: 10.1146/annurev.marine.010908.163742 .
  42. Weiss , A. , Kuss , J. , Peters , G. and Schneider , B . 2007 . Evaluating transfer velocity–wind speed relationship using a long-term series of direct eddy correlation CO2 flux measurements . J. Mar. Syst. 66 , 130 139 . DOI: 10.1016/j.jmarsys.2006.04.011 .
  43. Wen , S. and Yu , Z . 1985 . Ocean-Wave Theory and Computational Principle (in Chinese). Science Press , Beijing .
  44. Wu , J . 1980 . Wind stress coefficients over sea surface near neutral conditions: a revisit . J. Phys. Oceanogr . 10 , 727 740 . DOI: 10.1175/1520-0485(1980)010<;0727:WSCOSS>2.0.CO;2 .
  45. Young , I. R. and Babanin , A. V . 2006 . Spectral distribution of energy dissipation of wind-generated waves due to dominant wave breaking . J. Phys. Oceanogr . 36 , 376 394 . DOI: 10.1175/JPO2859.1 .
  46. Zappa , C. J. , McGillis , W. R. , Raymond , P. A. , Edson , J. B. , Hintsa , E. J. , and co-authors. 2007 . Environmental turbulent mixing controls on air–water gas exchange in marine and aquatic systems . Geophys. Res. Lett . 34 , L10601 . DOI: 10.1029/2006GL028790 .
  47. Zhao , D. and Toba , Y . 2001 . Dependence of whitecap coverage on wind and wind-wave properties . J. Oceanogr . 57 , 603 616 . DOI: 10.1023/A:1021215904955 .
  48. Zhao , D. and Xie , L . 2010 . A practical bi-parameter formula of gas transfer velocity depending on wave states . J. Oceanogr . 66 , 663 671 . DOI: 10.1007/s10872-010-0054-4 .
  49. Zhao , D. , Toba , Y. , Suzuki , Y. and Komori , S . 2003 . Effect of wind waves on air–sea gas exchange: proposal of an overall CO2 transfer velocity formula as a function of breaking-wave parameter . Tellus. 55 , 478 487 .
Language: English
Page range: 1528133 - 1528133
Submitted on: Jan 25, 2018
Accepted on: Sep 11, 2018
Published on: Jan 1, 2018
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2018 Dongliang Zhao, Nan Jia, Yuanxu Dong, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.